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Journal articles on the topic 'Remote Control Devices'

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1

Högberg, Björn. "Remote control of nanoscale devices." Science 359, no. 6373 (January 18, 2018): 279. http://dx.doi.org/10.1126/science.aar6580.

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2

Rohit, Bhavani, and Rengamani J. "Household Purposes in A Single Touch Via Bluetooth Using Smartphones." Indonesian Journal of Electrical Engineering and Computer Science 9, no. 2 (February 1, 2018): 351. http://dx.doi.org/10.11591/ijeecs.v9.i2.pp351-353.

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<p>Technology emerges in our environment day by day. But, still, we lag in keep on using multiple remotes for every device in our homes. Once Bluetooth came up it changes. People started using mobile phones connected to their devices to hear songs wireless and change channels using a mobile phone. A further implementation is kept on moving with multiple remotes for their usage. So, we had an idea that all our household devices may be controlled on our mobile phones via Bluetooth which is cheaper even for urban peoples. Now, all home devices with remote are IR based which doesn't work on sunlight, fluorescent bulbs due to interference. Switch over Bluetooth control reduces remotes in a sense called plastics. Mobile applications are evolved user-friendly to all the people on the day to day lives. Merge those applications to the household devices to control all household devices operated via remote such as TV, DVD, Home theatres, AC, even Table fan etc., Instead of removing IR's just interface Bluetooth chip on those household devices to control every remote device by using your smartphone. Why I am moving to Bluetooth instead of Wi-Fi. Bluetooth is cheaper, advanced to control devices in the range of 50 meters. But IR is useful to 10 meters, and once you block the signal, it will not work.</p>
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3

Arz, Winfried, and Torsten Niederdränk. "Remote control for hearing aid devices." Journal of the Acoustical Society of America 124, no. 1 (2008): 29. http://dx.doi.org/10.1121/1.2960809.

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4

Rat, C. L., and M. Panoiu. "Wind turbine remote control using Android devices." IOP Conference Series: Materials Science and Engineering 294 (January 2018): 012070. http://dx.doi.org/10.1088/1757-899x/294/1/012070.

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5

Nguyen, Duc-Thang, and Taehong Kim. "An SDN-Based Connectivity Control System for Wi-Fi Devices." Wireless Communications and Mobile Computing 2018 (July 24, 2018): 1–10. http://dx.doi.org/10.1155/2018/9359878.

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In recent years, the prevalence of Wi-Fi-enabled devices such as smartphones, smart appliances, and various sensors has increased. As most IoT devices lack a display or a keypad owing to their tiny size, it is difficult to set connectivity information such as service set identifier (SSID) and password without any help from external devices such as smartphones. Moreover, it is much more complex to apply advanced connectivity options such as SSID hiding, MAC ID filtering, and Wi-Fi Protected Access (WPA) to these devices. Thus, we need a new Wi-Fi network management system which not only facilitates client access operations but also provides a high-level authentication procedure. In this paper, we introduce a remote connectivity control system for Wi-Fi devices based on software-defined networking (SDN) in a wireless environment. The main contributions of the proposed system are twofold: (i) it enables network owner/administrator to manage and approve connection request from Wi-Fi devices through remote services, which is essential for easy connection management across diverse IoT devices; (ii) it also allows fine-grained access control at the device level through remote control. We describe the architecture of SDN-based remote connectivity control of Wi-Fi devices. While verifying the feasibility and performance of the proposed system, we discuss how the proposed system can benefit both service providers and users.
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6

Vijaya Sri Kompalli, Dr, K. Sandhya, K. Asritha Thanmai, and D. Siva Sree. "State Dependency to Optimize Access of Home Appliances using Remote Control." International Journal of Engineering & Technology 7, no. 2.32 (May 31, 2018): 381. http://dx.doi.org/10.14419/ijet.v7i2.32.15719.

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Internet of Things (IoT) is a combination of hardware and software technology that produces trillions of data by connecting multiple devices and sensors with the cloud and computing and accessing the required data through intelligent means of connecting and utilizing various tools. With numerous connected devices and appliances, the smart home is one of the emphasized areas of IoT. Smart home concept deals with inter connecting the working of multiple devices using IoT. In view of this, multiple home appliances are operated using the common remote controller access. When IoT devices are meant to operate based on remote control there is an immense role of identifying the state dependencies of various devices. If one device is in ON state, then it will show the status of other devices also whether to be in ON state or OFF state or choice of none of devices to be in state of ON or OFF. Till now, state dependencies of devices in home appliances are manually identified. Therefore, in order to control devices of home appliances with in a precise location, a design issue based on identification of state dependencies by using graph matrices for multiple devices can be made for better utilization to save energy and also to restrict the unnecessary access of devices.
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7

Wang, Fang, Chang Liu, and Li Shi. "C/S-Based Network Remote Control System." Applied Mechanics and Materials 484-485 (January 2014): 353–57. http://dx.doi.org/10.4028/www.scientific.net/amm.484-485.353.

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With the rapid development of network communication technology, the computer can not only control the local equipment, but also control remote devices through the network. With the development of the network and its applications in-depth development, in the past few years, many new network applications are familiar to people based on its application. Network control system is the one, where the network is used as a tool to connect the bridge side and device-side operations. C/S mode
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8

Chen, Yu Liang, Yong You Du, Zhao Huan Jia, and Wei Zhao. "Design for Digital Display Device and the Function of Control of Concrete Truck-Mixer Drum." Applied Mechanics and Materials 55-57 (May 2011): 68–72. http://dx.doi.org/10.4028/www.scientific.net/amm.55-57.68.

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The paper discusses the principles and shortcomings of the concrete mixer truck’s hydraulic control mechanism. The stepper motor technology controlled by the electrical impulses is used to develop a new digital display control device, and determine design principle and implementation process of the electronic control part. At the same time, it develops control device’s digital display mechanism and wireless remote control devices. At last, it compares the performance advantages and disadvantages between the traditional mechanical control handler and the digital display remote controller according to the engineering practice.
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9

Khizhniak, Т. А., O. O. Husev, and I. S. Lipinskyi. "REMOTE CONTROL OF ELECTROMECHANICAL DEVICES IN THE CLIMATE CONTROL SYSTEM." Tekhnichna Elektrodynamika 2016, no. 5 (September 6, 2016): 32–34. http://dx.doi.org/10.15407/techned2016.05.032.

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10

Liu, Yu Quan, Huang Sheng Hua, and Li Wang. "Improved Control Model for Relay Protective Settings Remote Control and its Application." Applied Mechanics and Materials 313-314 (March 2013): 347–54. http://dx.doi.org/10.4028/www.scientific.net/amm.313-314.347.

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For a long time, settings complexity makes the settings remote modification technology is difficult to be applied on the relay protective devices effectively. To solve the key technical problems of relay protective devices settings remote modification, this paper makes an in-depth research of setting group remote control model. The setting group remote control model based on protective relaying and fault information system is proposed with the setting group services mapping between IEC61850 and IEC60870-5-103. The setting group remote control models working mechanism is deeply analysed via the setting group views. Base on the analysis, an enhanced control flow and task block method are provided to avoid the edit setting group data being changed abnormally, which improves the reliability of setting group remote control remarkably. The setting group remote control model introduced in this paper is applied successfully and its reliability is approved.
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11

Mussivand, T., K. S. Holmes, and W. J. Keon. "REMOTE MONITORING AND CONTROL OF IMPLANTED MEDICAL DEVICES." ASAIO Journal 45, no. 2 (March 1999): 208. http://dx.doi.org/10.1097/00002480-199903000-00336.

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12

Rákay, Róbert. "WIRELESS SERVOMOTOR CONTROL FOR REMOTE ACTUATION." TECHNICAL SCIENCES AND TECHNOLOGIES, no. 4(18) (2019): 127–33. http://dx.doi.org/10.25140/2411-5363-2019-4(18)-127-133.

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Urgency of the research. Actual trends of home and hobby automation focus on implementation solutions to everyday life situations. The main goal is usually to simplify or remotely control a task with low cost devices. Target setting. When designing automation systems of different devices, developers are trying to find the most reliableand effective solution with fulfilling every base requirement. Actual scientific researches and issues analysis. To prepare this paper, different publicly available datasheets and experimental solutions were analyzed as well as conclusions of our previous and other ongoing experiments were used to create the knowledge base about this topic. Uninvestigated parts of general matters defining. There are many different communication solutions and every manufacturer of communication device provides its own solution. This paper is insufficient to describe them all. But creates base for further result comparison with other future solutions of the same task. The proposed solution is not connected to any moving object. In a real application the requirements of torque and system power consumption has to be considered. The research objective. In this article a model of a remote control system is proposed for a home automation, in this article a wireless connection is created to remotely control position of servomotor. The statement of basic materials. To propose a future model of home appliance control system it is necessary to implement the newest communication technologies. Using the new communication protocols such BLE, LoRA or nRF provides good basis to solve this issue. Conclusions. The proposed paper introduces a model wireless remote control system for simple tasks such controlling of lights or dimmers. The tested system provides a good basis for future real life application, however, it needs to be adapted to specific tasks.
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13

Behan, Miroslav, and Ondrej Krejcar. "The Concept of the Remote Devices Content Management." Journal of Computer Networks and Communications 2012 (2012): 1–7. http://dx.doi.org/10.1155/2012/194284.

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Modern mobile communication devices which are often used as remote access to information systems bring up many advantages for user. Unfortunately in some cases when user has several different mobile devices for the same remote access, a problem of multiplatform and multivendor environment fragments productivity by user knowledge in principals of approach to possible services, controlling or management of devices as well as features is available. The customizable interface of remote device management benefits by the control of all owned, authorized, or publically accessible devices from single point of user perspective. We propose a concept of such information system which takes into account mobile devices and their content. Concept is suitable not only for Apple iOS or Google Android, but also it covers all mobile platforms as well as the sensors capabilities of mobile devices which can turn such mobile Smart Device to Smart and mobile sensor concentrator.
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14

McDonald, Joseph D., Sadaf Kazi, Cale M. Darling, Francis T. Durso, and Kenneth A. Glover. "HF/E Audit of a Locomotive Remote Control Device." Ergonomics in Design: The Quarterly of Human Factors Applications 22, no. 3 (July 2014): 4–12. http://dx.doi.org/10.1177/1064804614526201.

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Conducting a complete human factors/ergonomics (HF/E) audit of a unique technological device can be complicated. Designing an instrument to aid HF/E practitioners in this process can help to ensure that organizational and operator needs are taken into consideration, relevant HF/E principles are followed, and future audits for similar devices are streamlined. Our team designed such an instrument to evaluate a locomotive remote control device. We provide illustrations of the process cycle and time requirements for each phase to be used as a planning tool for HF/E practitioners who are faced with a similar challenge.
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15

Son, Mas Sumarsono. "PENGEMBANGAN MIKROKONTROLER SEBAGAI REMOTE CONTROL BERBASIS ANDROID." JURNAL TEKNIK INFORMATIKA 11, no. 1 (May 4, 2018): 67–74. http://dx.doi.org/10.15408/jti.v11i1.6293.

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ABSTRAK Remote kontrol diciptakan untuk memudahkan komunikasi antar peralatan yang memiliki perangkat penghubung. Alat komunikasi yang dapat dihubungkan adalah perangkat smartphone android yang berkomunikasi dengan alat lain seperti mikrokontroler. Salah satu jenis mikrokontroler adalah ATMega 16 yang dapat diprogram menggunakan bahasa Bascom AVR sehingga dapat mengendalikan perangkat lainnya untuk bergerak yaitu motor servo. Motor servo ini diintegrasikan dengan mikrokontroler dalam menggerakkan media pintu gerbang rumah. Dalam melakukan penelitian ini menggunakan metode eksperimental yaitu mengintegrasikan smartphone android, mikrokontroler ATMega 16, dan prototipe gerbang rumah yang dihubungkan dengan motor servo sebagai penggerak utama gerbang. Dari penelitian yang dilakukan mendapatkan kesimpulan bahwa prototipe ini telah berhasil dirancang dan antar alat dapat berkomunikasi dengan baik sehingga pergerakan pintu gerbang rumah sepenuhnya mampu dikontrol oleh smartphone android. ABSTRACT Remote controls are created to facilitate communication between devices with connecting devices. Communication tools that can be connected are android smartphone devices that communicate with other devices such as microcontrollers. One type of microcontroller is ATMega 16 which can be programmed using Bascom AVR language so it can control other devices to move the servo motor. Servo motor is integrated with the microcontroller in moving the media gate home. In doing this research using experimental method that is integrating android smartphone, microcontroller ATMega 16, and prototype gate home which connected with servo motor as main gate drive. From the research conducted to get the conclusion that the prototype has been successfully designed and inter-tool can communicate well so that the movement of the home gate is fully capable of being controlled by android smartphone. How To Cite : Sumarsono, Saptaningtyas, D.W. (2018). PENGEMBANGAN MIKROKONTROLER SEBAGAI REMOTE CONTROL BERBASIS ANDROID. Jurnal Teknik Informatika, 11(1), 67-74. doi 10.15408/jti.v11i1.6293 Permalink/DOI: http://dx.doi.org/10.15408/jti.v11i1.6293
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16

Reithinger, Juergen. "Device to transmit and receive data for remote control of hearing devices." Journal of the Acoustical Society of America 124, no. 4 (2008): 1902. http://dx.doi.org/10.1121/1.3001087.

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17

Kuldashov, O. Kh, G. O. Kuldashov, and Z. Yu Mamasodikova. "Optoelectronic Double-Wave Method for Remote Control of Vegetable Fiber Moisture." Herald of the Bauman Moscow State Technical University. Series Instrument Engineering, no. 4 (127) (August 2019): 84–96. http://dx.doi.org/10.18698/0236-3933-2019-4-84-96.

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The paper introduces an optoelectronic two-wave method for remote control of raw cotton moisture. To improve the quality of materials obtained from the fiber, it is necessary to proper organize its storage and comply with the optimal modes of processing technology at all stages of production. Proper storage and selection of technological processing depend on the quality indicators of the fiber, namely its moisture. The study shows that currently used methods and devices for the fiber moisture control do not meet the requirements of rapidity and the required measurement accuracy. We found it relevant to develop highly sensitive, accurate and reliable control devices for raw cotton moisture using new high-performance semiconductor radiation sources in the near infrared region. The paper presents a block diagram of an optoelectronic device for remote control of raw cotton moisture. The device uses LED19-PR with a typical maximum emission wavelength of 1.95 µm as radiation sources. The results of remote control of raw cotton moisture are given.
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18

Oklobdzija, Danilo, and Branislav Jevtovic. "Using XML Web services as a platform for remote access and control of embedded systems." Facta universitatis - series: Electronics and Energetics 21, no. 1 (2008): 23–36. http://dx.doi.org/10.2298/fuee0801023o.

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This paper has pointed out the need for new technologies for integrating embedded devices in heterogeneous distributed networks, and outlines the perspectives opened by applying service-oriented paradigm for realizing interaction with embedded devices. As a foundation for interaction with embedded devices, XML and Web services have been used. Strong integration power of XML and Web services make presented framework appropriate for unique approach to all resources of embedded device regardless of applied technology. Developed Web services based middleware, provides application designers with a high level of semantic abstraction, hiding the complexity of the applied technologies. This makes presented framework suitable for use in many domains, independent of embedded devices physical realization or network characteristics. Two ways to achieve such integration have been presented in this paper: device level for modern embedded devices, and using service oriented gateway for "legacy" embedded systems. .
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19

Yang, Zebo, and Tatsuo Nakajima. "Connecting Smart Objects in IoT Architectures by Screen Remote Monitoring and Control." Computers 7, no. 4 (September 24, 2018): 47. http://dx.doi.org/10.3390/computers7040047.

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Electronic visual display enabled by touchscreen technologies evolves as one of the universal multimedia output methods and a popular input intermediate with touch–interaction. As a result, we can always gain access of an intelligent machine by obtaining control of its display contents. Since remote screen sharing systems are also increasingly prevalent, we propose a cross-platform middleware infrastructure which supports remote monitoring and control functionalities based on remote streaming for networked intelligent devices such as smart phone, computer and smart watch, etc. and home appliances such as smart refrigerator, smart air-conditioner and smart TV, etc. We aim to connect all these devices with display screens, so as to make possible remote monitoring and controlling a certain device by whichever one (usually the nearest one) of display screens among the network. The system is a distributed network consisting of multiple modular nodes of server and client, and is compatible to prevalent operating systems such as Windows, macOS, Unix-like/Linux and Android, etc.
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20

N. Shehab, Jinan. "Remote Control using Voice Recognition based on Arduino." DJES 12, no. 3 (September 1, 2019): 22–28. http://dx.doi.org/10.24237/djes.2019.12304.

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Home automation becomes important, because it gives the user convenient and easy method to use home appliances. This paper aims to help people with special needs or physical disabilities and injuries by paralysis to control any device using infrared technology using voice commands based on the voice recognition system (voice recognition unit V3) system can recognize voice commands, convert them to desired data coordination and data transmission via IR transmitter and microcontroller (Arduino Uno) Receiving this signal by IR sensor to control TV receiver then get a full remote control that works by voice commands. The software consists of a Micro C language programmable microcontroller. This system is of low cost and flexible with growing variety of devices that can be controlled.
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21

Lamberti, Fabrizio, and Andrea Sanna. "Extensible GUIs for Remote Application Control on Mobile Devices." IEEE Computer Graphics and Applications 28, no. 4 (July 2008): 50–57. http://dx.doi.org/10.1109/mcg.2008.70.

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22

Liang, Zixian, Xulin Lin, and Xunya Jiang. "Remote control of light behavior by transformation optical devices." Optics Express 18, no. 3 (January 19, 2010): 2049. http://dx.doi.org/10.1364/oe.18.002049.

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23

Amin, Adeel, and M. N. A. Khan. "A Survey of GSM Technology to Control Remote Devices." International Journal of u- and e-Service, Science and Technology 7, no. 6 (December 31, 2014): 153–62. http://dx.doi.org/10.14257/ijunesst.2014.7.6.14.

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24

Reiter, Levi A., and Jorge Camunas. "Hearing aid remote control devices and the pacemaker patient." Hearing Journal 54, no. 4 (April 2001): 48. http://dx.doi.org/10.1097/01.hj.0000294516.61324.4d.

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25

Cantraine, Francis R. L., and Edouard J. A. Coussaert. "Safety factors in the remote control of infusion devices." International Journal of Clinical Monitoring and Computing 13, no. 1 (February 1996): 45–55. http://dx.doi.org/10.1007/bf02918211.

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26

Sánchez, Juan Manuel, Omar Sogamoso Heredia, and Edwin Villarreal López. "DEVELOMPENT OF A VEHICLE SECURITY SYSTEM WITH LOCAL AND REMOTE CONTROL AND EVENT NOTIFICATIONS." Redes de Ingeniería 4, no. 2 (December 30, 2013): 96. http://dx.doi.org/10.14483/2248762x.5927.

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This article describes the development of a security monitoring device for vehicles which gives instant reports to the user about any anomaly that occurs in his absence. This device also allows remote and local control actions, using GSM technology and Bluetooth, giving more functionality than common vehicle security systems. In this paper the different development stages are presented, starting with a short review about existing relevant devices in order to identify the necessary functional requirements and innovation opportunities. Later, a block diagram of the device is presented and the specific design parameter are detailed. The final experimentation showed that the developed equipment has a greater functionality than existing devices and lower production cost.
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Liu, Cheng Ze, Yi Zhang, Bao Liang Cheng, Xiao Min Zhao, and Ran Duan. "Design and Implementation of Remote Control Software for Nuclear Inspecting Devices." Advanced Materials Research 760-762 (September 2013): 1212–15. http://dx.doi.org/10.4028/www.scientific.net/amr.760-762.1212.

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Remote control systems are usually adopted in nuclear facilities inspecting activities due to radioactive environments. Analysis on requirements and structural design are made, and functional modules are described in detail. Remote control software for nuclear equipment inspection is developed with combination of OpenGL 3-dimensional graphics and virtual reality technologies. Operators may try offline simulation before sending commands to control hardware, which improves accuracy and reliability of remote control system.
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Yao, Albert W. L., and R. T. Lin. "Development of a Cloud Based Remote Mobile Monitoring and Control System for Manufacturing." Applied Mechanics and Materials 789-790 (September 2015): 1082–86. http://dx.doi.org/10.4028/www.scientific.net/amm.789-790.1082.

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The purpose of this study is to develop a remote mobile monitoring and control system for manufacturing factory by using the cloud computing technology and information and communication (ICT) technology. In conjunction with the cloud and ICT technologies and mobile devices, modern manufacturing systems can be integrated to promote competitive strength to transmit the information and control commands toward the remote monitoring systems instantly via mobile devices. In such a way, this remote system could enhance the efficiency of information flow and the competitive strength and add unknown value to industries. This study adopts the cloud and ICT technologies as the main communication media to develop a remote monitoring and control system with smart mobile devices. The results of this study show the successful integration of the intelligent mobile devices and cloud networks for manufacturing system.
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Li, Jian Yi, and Hui Juan Wang. "Design of the Remote Control Car System Based on Brain-Computer Interface." Applied Mechanics and Materials 391 (September 2013): 584–87. http://dx.doi.org/10.4028/www.scientific.net/amm.391.584.

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In this paper, the basic concept and research status of BCI is introduced. After having analyzed properties of EEG, the required EEG characteristics information suitable for BCI system are selected. This information is amplified, processed, extracted and classified into control commands needed by BCI system, the external device communication and control, and finally communication and control of external devices is implemented.
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Kang, Inshik, Hyunok Song, and Hoekyung Jung. "User command acquisition based IoT automatic control system." Indonesian Journal of Electrical Engineering and Computer Science 13, no. 1 (January 1, 2019): 307. http://dx.doi.org/10.11591/ijeecs.v13.i1.pp307-312.

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<p>Recently, researches are being conducted to build a smart environment using various sensors and devices and to provide customized services to users through IoT (Internet of Things). The existing IoT system operates the device only by using the threshold value. So, there are problems that device operates when a service that does not consider a user characteristic is provided or when user not necessary. In this paper, to solve these problems, the system collects the remote control commands and compares it with the value of device operation threshold and sets the changed threshold value. In addition, devices not registered in the server constitute the environment by linking with existing task. Therefore, it is possible to provide a customized service to the users.</p>
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Lorenz, Andreas. "A Conceptual Framework for Interoperability of Mobile User Interfaces with Ambient Computing Environments." International Journal of Mobile Human Computer Interaction 2, no. 3 (July 2010): 58–73. http://dx.doi.org/10.4018/jmhci.2010070105.

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The use of mobile and hand-held devices is a desirable option for implementation of user interaction with remote services from a distance, whereby the user should be able to select the input device depending on personal preferences, capabilities and availability of interaction devices. Because of the heterogeneity of available devices and interaction styles, the interoperability needs particular attention by the developer. This paper describes the design of a general solution to enable mobile devices to have control on services at remote hosts. The applied approach enhances the idea of separating the user interface from the application logic, leading to the definition of virtual or logical input devices physically separated from the controlled services.
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Sudarma, Made, IBA Swamardika, and IW Dani Pranata. "Design and Implementations of Control System Quadruped Robot Driver Application Based on Windows Platform." International Journal of Electrical and Computer Engineering (IJECE) 5, no. 2 (April 1, 2015): 251. http://dx.doi.org/10.11591/ijece.v5i2.pp251-258.

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Wireless remote device control system is a controlling method which is widely used in various fields. By using wireless communication media, remote control system becomes more efficient and flexible. Computer application is one of the devices which can be used to perform remote controlling. Computer application can be made in accordance with the need of its users in conducting device controlling from the distance. Remote controlling is also can be applied on the robotic field. One of the examples is wireless remote controlling of Quadruped Robot. By utilizing its Windows application such as Visual Basic in order to establish communication with wireless communication module such as Xbee-PRO, a control system can be designed which can be used to control the movement of Quadruped Robot wirelessly. Wireless communication module is also has to be installed and able to perform data communication with the device to be controlled that is Quadruped Robot. The addition of camera which is also using wireless communication system will be very helpful for the users in knowing the condition around Quadruped Robot.
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Patel, Karan. "Operating Electric Equipment with IR Sensor and IOT." International Journal for Research in Applied Science and Engineering Technology 9, no. VI (June 20, 2021): 1935–41. http://dx.doi.org/10.22214/ijraset.2021.35408.

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Nowadays, there countless devices that have the use of Infrared (IR) sensors which mandates the remote controllers to control and appropriately make use of them. Therefore, the use of many remote controllers arises many difficulties to handle simultaneously. However, the application of IR and IoT (Internet of Things) technologies can solve such problems. The paper is focused to solve such problems and giving the application control to the users. Thus, the current work deals with the technology that will help the user to control their respective devices anywhere in the world by means of internet access with mobile applications. The technology in the present work can operate 360-direction devices. It is needed to fix it across the ceiling and connect it with WIFI, so the use of the mobile application, Google Assistant, Amazon Alexa, Google Home Mini to manage the device (one at a time) can be done. However, the only limitation of the technology is that the device must be connected to the internet.
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Zheng, Wenbin, Zhe Yang, Lei Feng, and Ping Fu. "Remote Automatic Meter Reading System." International Journal of Online Engineering (iJOE) 13, no. 10 (November 7, 2017): 48. http://dx.doi.org/10.3991/ijoe.v13i10.6751.

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In order to satisfy the development of the cities and the requirements of modern factories, the network of water has been changing the pattern of the city quickly. It is possible to use automatic meter reading technology to read the data of the meters which were only read by human manual to solve the resource supply pipe network monitoring problem as the 2G/3G technology development. We designed a remote wireless automatic meter reading device to achieve the actual needs of users. STM32 works well as the core control devices to satisfy the requirements, combined with surveillance cameras and 3G wireless module to complete the hardware circuit design, which includes STM32 control circuit, sensor data acquisition part, 3G wireless module interface section, the analog video signal processing section and so on. The software was designed according to the users needs, the test results show that the device satisfies the requirements and could be used in the resource monitoring directly.
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Hao, Nan, Jin-Yi Li, Meng Xiong, Xing-Hua Xia, Jing-Juan Xu, and Hong-Yuan Chen. "Remote Control of Reversible Localized Protein Adsorption in Microfluidic Devices." ACS Applied Materials & Interfaces 6, no. 15 (July 31, 2014): 11869–73. http://dx.doi.org/10.1021/am5039938.

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Lo, Shou-Chih, Ti-Hsin Yu, and Chih-Cheng Tseng. "A remote control and media-sharing system using smart devices." Journal of Systems Architecture 60, no. 8 (September 2014): 671–83. http://dx.doi.org/10.1016/j.sysarc.2014.04.005.

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37

Kiryanov, Daniel, and Roman Lavrenov. "Remote Control Application for "Servosila Engineer" on Android Mobile Devices." Proceedings of International Conference on Artificial Life and Robotics 25 (January 13, 2020): 440–43. http://dx.doi.org/10.5954/icarob.2020.os18-4.

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38

KODAMA, Chie, Yuki AKIZUKI, and Youko INOUE. "The effects of visibility for operating the remote-control devices." JOURNAL OF THE ILLUMINATING ENGINEERING INSTITUTE OF JAPAN 86, Appendix (2002): 192–93. http://dx.doi.org/10.2150/jieij1980.86.appendix_192.

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39

Platte, Hans-joachim, Gunter Oberjatzas, and Walter Voessing. "A New Intelligent Remote Control Unit for Consumer Electronic Devices." IEEE Transactions on Consumer Electronics CE-31, no. 1 (February 1985): 59–69. http://dx.doi.org/10.1109/tce.1985.289883.

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40

RAHMIATI, PAULINE, GINANJAR FIRDAUS, and NUGRAHA FATHORRAHMAN. "Implementasi Sistem Bluetooth menggunakan Android dan Arduino untuk Kendali Peralatan Elektronik." ELKOMIKA: Jurnal Teknik Energi Elektrik, Teknik Telekomunikasi, & Teknik Elektronika 2, no. 1 (January 1, 2015): 1. http://dx.doi.org/10.26760/elkomika.v2i1.1.

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ABSTRAKDalam suatu ruangan yang dipenuhi peralatan elektronik, remote control sangatlah penting. Keterbatasan sebuah remote control untuk mengendalikan hanya satu peralatan elektronik tentu menjadi kendala tersendiri. Untuk mengurangi kendala tersebut direalisasikan remote control yang dapat mengendalikan seluruh peralatan elektronik menggunakan perantara Bluetooth yang terintegrasi pada Android dan Arduino. Android akan mengirimkan perintah pada Arduino melalui Bluetooth, Arduino menerjemahkan perintah menjadi kode ke infra merah yang selanjutnya diterima oleh receiver peralatan elektronik. Dilakukan pengujian terhadap sistem remote control sehingga menghasilkan kesimpulan bahwa sistem remote control tersebut dapat berfungsi pada tiga versi Android berbeda, persentasi keberhasilan dari alat kendali 94,8% menggunakan tombol dan 92,8% menggunakan perintah suara, waktu akses rata-rata 0,17385 detik untuk perintah menggunakan tombol dan 0,20995 detik untuk perintah menggunakan perintah suara, dan jarak optimal pengirim infra merah (Tx) terhadap penerima infra merah (Rx) adalah 320 cm dengan lebar 180,8 cm.Kata Kunci: Alat kendali, Bluetooth, Arduino, AndroidABSTRACTIn a room full of electronic equipment, control device are very important. The limitations of a remote control to control only one electronic device become obstacles that it needs a lot of control devices To reduce these constraints are realized remote control that can control the entire electronic devices using integrated Bluetooth intermediaries on Android and Arduino. Android will send commands to the Arduino via Bluetooth, Arduino code to translate the commands into infrared subsequently accepted by the receiver electronics. The first test installs Android application on three different versions. The second experiment tests all the tool buttons control for each electronic equipment. The third test is to examine the percentage of success of the control apparatus , producing 94.8 % success using the control buttons and 92.8 % control success using voice commands. The four test calculate the access time when sending a command until the electronic device executes the corresponding command. This test result in an average access time of 0.17385 seconds for commands using the buttons and 0.20995 seconds for command using voice control. The fifth testing is to test the coverage area of infrared , infrared sender optimal distance ( Tx ) to the infrared receiver ( Rx ) is 320 cm by 180.8 cm widthKeywords: remote control, Bluetooth, Arduino, Android
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Herrmann, Roman, and Ludger Schmidt. "Design and Evaluation of a Natural User Interface for Piloting an Unmanned Aerial Vehicle." i-com 17, no. 1 (April 25, 2018): 15–24. http://dx.doi.org/10.1515/icom-2018-0001.

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Abstract Controlling an unmanned aerial vehicle is challenging and requires an intensive training. One cause is the teleoperation with the conventional input device, the remote control, whose functions are complicate. This paper presents an alternative concept for the teleoperation. Its realization includes a Thalmic Myo gesture control wristlet and a Microsoft HoloLens head-mounted display. These devices are used to implement an augmented reality interface, a tactile feedback and a gesture and speech input. Finally, this implementation has been evaluated with 30 participants and compared with a conventional remote control. The results show that the proposed interface is a good solution but does not reach the performance of the remote control.
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Cheng, Sheng. "Research on Ping-Pong Balls Collecting Robot Based on Embedded Vision Processing System." Applied Mechanics and Materials 511-512 (February 2014): 838–41. http://dx.doi.org/10.4028/www.scientific.net/amm.511-512.838.

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Nowadays, the design on Ping-Pong balls collecting robot cannot combine autonomous control with remote control. And the existing collecting devices are not efficient enough for the ball collecting job. A design is proposed on the system of Ping-Pong balls collecting robot with autonomous and remote control, based on embedded vision processing. The design also includes a set of wheeled picking-up device. The research showed that the robot can serve the function of collecting Ping-Pong balls efficiently.
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43

Vogiatzidakis, Panagiotis, and Panayiotis Koutsabasis. "Mid-Air Gesture Control of Multiple Home Devices in Spatial Augmented Reality Prototype." Multimodal Technologies and Interaction 4, no. 3 (August 31, 2020): 61. http://dx.doi.org/10.3390/mti4030061.

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Touchless, mid-air gesture-based interactions with remote devices have been investigated as alternative or complementary to interactions based on remote controls and smartphones. Related studies focus on user elicitation of a gesture vocabulary for one or a few home devices and explore recommendations of respective gesture vocabularies without validating them by empirical testing with interactive prototypes. We have developed an interactive prototype based on spatial Augmented Reality (AR) of seven home devices. Each device responds to touchless gestures (identified from a previous elicitation study) via the MS Kinect sensor. Nineteen users participated in a two-phase test (with and without help provided by a virtual assistant) according to a scenario that required from each user to apply 41 gestural commands (19 unique). We report on main usability indicators: task success, task time, errors (false negative/positives), memorability, perceived usability, and user experience. The main conclusion is that mid-air interaction with multiple home devices is feasible, fairly easy to learn and apply, and enjoyable. The contributions of this paper are (a) validation of a previously elicited gesture set; (b) development of a spatial AR prototype for testing of mid-air gestures, and (c) extensive assessment of gestures and evidence in favor of mid-air interaction in smart environments.
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44

Albrecht, Agata, and Adam Muc. "Capabilities of Local and Remote Monitoring and Control of Equipment Used in Marine Ship Industry." New Trends in Production Engineering 1, no. 1 (October 1, 2018): 135–41. http://dx.doi.org/10.2478/ntpe-2018-0017.

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Abstract This article presents two aspects regarding marine equipment control and monitoring. The first one is the issue of remote and local control in the maritime and land industry. The second is the economical and efficient use of redundant devices. This article describes the structure of remote control implemented on vessels. Paper presents an idea of control that combines remote and local control to provide optimal use of redundant devices with simultaneous increase of system reliability. The whole concept is shown on the built physical model with the control and operator panels. The control was implemented using freely programmable controller and HMI panel.
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Silva, Bruno, Hugo Costelha, Luis C. Bento, Marcio Barata, and Pedro Assuncao. "User-Experience with Haptic Feedback Technologies and Text Input in Interactive Multimedia Devices." Sensors 20, no. 18 (September 17, 2020): 5316. http://dx.doi.org/10.3390/s20185316.

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Remote control devices are commonly used for interaction with multimedia equipment and applications (e.g., smart TVs, gaming, etc.). To improve conventional keypad-based technologies, haptic feedback and user input capabilities are being developed for enhancing the UX and providing advanced functionalities in remote control devices. Although the sensation provided by haptic feedback is similar to mechanical push buttons, the former offers much greater flexibility, due to the possibility of dynamically choosing different mechanical effects and associating different functions to each of them. However, selecting the best haptic feedback effects among the wide variety that is currently enabled by recent technologies, remains a challenge for design engineers aiming to optimise the UX. Rich interaction further requires text input capability, which greatly influences the UX. This work is a contribution towards UX evaluation of remote control devices with haptic feedback and text input. A user evaluation study of a wide variety of haptic feedback effects and text input methods is presented, considering different technologies and different number of actuators on a device. The user preferences, given by subjective evaluation scores, demonstrate that haptic feedback has undoubtedly a positive impact on the UX. Moreover, it is also shown that different levels of UX are obtained, according to the technological characteristics of the haptic actuators and how many of them are used on the device.
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P, Arun Kumar N., and Jagadeesh Chandra A. P. "Development of Remote Instrumentation and Control for Laboratory Experiments using Handheld Devices." International Journal of Online and Biomedical Engineering (iJOE) 15, no. 09 (June 14, 2019): 31. http://dx.doi.org/10.3991/ijoe.v15i09.10606.

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<p class="0abstractCxSpFirst">The unprecedented growth in Internet technologies has created revolutionary changes in the use of collaborative learning tools with remote experimentation. These tools enhance the experiential learning aspects of engineering education. Laboratory experiments are integral part of science and engineering education. Automation is changing the nature of these laboratories, and the focus of the system designer is on the availability of various interfacing tools to access the laboratory hardware remotely with the integration of computer supported learning environment.</p><p class="0abstractCxSpMiddle">Work on laboratory experiments and project works requires access to expensive hardware equipments. The high cost of these instruments along with time consuming development process of experimentation in the educational process creates a significant bottleneck. There is a need for the development of remote laboratory using which the users can access the laboratory instruments and the programmable devices remotely on their smart phones/tablets to perform the laboratory experiments. This implementation avails laboratory facility for complete twenty four hours a day and will increase the productivity of the laboratory hardware and measuring instruments.</p><p class="0abstractCxSpLast">This paper presents the detailed architecture and the implementation details of remote laboratory by which user can perform laboratory experiments remotely. Develop mobile based remote laboratory where user can access remote laboratory on his smart phone or tablet to perform the experiments. Software application is developed on Android platform for the implementation.</p>
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Hyun Seo, Sung, and Kwang Hyun Ro. "A study on design and implementation of dynamic location tracking system for locating remote control." International Journal of Engineering & Technology 7, no. 3.3 (June 8, 2018): 165. http://dx.doi.org/10.14419/ijet.v7i2.33.13877.

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With the development of IoT technology, there is a growing demand for location based services for checking the mobility and identity of users, and remote controls for remote control of household appliances or electronic devices are used for home appliances or electronic devices there are many functions that are not available.In this case, when the remote controller is lost, there are difficulties in that a large number of home appliances or electronic devices can only be started by a limited operation or can’t operate various operations.Especially, many people are losing a lot of remote control in everyday life, and the problem of wasting a considerable amount of time in finding a remote control is also happening.In order to solve this problem, the present invention proposes a method of opening a remote control search application content, registering a unique product number assigned to the remote control, generating a location notification request signal for requesting the location information of the remote controller, And then displays the captured location or dynamic model detected from the location notification response signal on the basis of the indoor framing for 2D or the indoor framing for 3D, It will be able to quickly and accurately locate the remote control that emits the beacon signal. In other words, in this paper, the application contents for remote controller search are opened to register a unique product number assigned to the remote controller, a location notification request signal for requesting the location information of the remote controller, and a location notification response And then displays the captured spot or dynamic model detected from the signal on the beacon for 2D or the 3D model for 3D.In the future, the research method to be carried out is limited to grasp the object information only by the remote controller (one single article object), but it is difficult to quickly recognize the object information transmitted from various objects having mobility used in the home or work We plan to implement and design an algorithm that optimizes the received signal strength of the BLE beacon so that there is no loss of beacon signal in a room that is subject to better system and multipath effects.
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Zhang, Hui, and Hong Hua Wang. "The Design of Automatic Remote Monitoring System for the Temperature and Humidity Based on GPRS." Applied Mechanics and Materials 599-601 (August 2014): 1102–5. http://dx.doi.org/10.4028/www.scientific.net/amm.599-601.1102.

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This paper tries to solve is how to design the four products (food, medicine, and health care products, cosmetics, medical devices) and transmission device and control system of temperature and humidity automatic acquisition of remote monitoring system, so as to solve the existing warehouse temperature and humidity monitoring devices commonly used in single type, stability is not high, poor, convenient the open problem of the poor.
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Bae, Yuseok, and Jongyoul Park. "Adaptive Transformation Engine for Remote Home Control Service using Smart Devices." KIISE Transactions on Computing Practices 20, no. 11 (November 15, 2014): 592–97. http://dx.doi.org/10.5626/ktcp.2014.20.11.592.

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50

Jadhav, Amol D., Bao Yan, Rong-Cong Luo, Li Wei, Xu Zhen, Chia-Hung Chen, and Peng Shi. "Photoresponsive microvalve for remote actuation and flow control in microfluidic devices." Biomicrofluidics 9, no. 3 (May 2015): 034114. http://dx.doi.org/10.1063/1.4923257.

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