Academic literature on the topic 'Sensors (IR 217 sensor'

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Journal articles on the topic "Sensors (IR 217 sensor"

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Manoj, Kumar M., Hemavathi.R, and Prasanna Kumar H. "Driverless Metro Train Shuttle between the Stations using LabVIEW." International Journal of Trend in Scientific Research and Development 2, no. 1 (2017): 917–25. https://doi.org/10.31142/ijtsrd7088.

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The aim of this paper is to illustrate an improvement in the existing technology used in metro train movements. This train is equipped with a controller and an IR Object sensor that enables the automatic stopping of the train from one station to another station. This paper presents the development process of a prototype for a driverless train implemented using a RASPBERRY PI controller. Simulation for the systems circuits is done with LabVIEW software. The hardware circuit is interfaced with actuators and sensors for automation purposes using LabVIEW. A hardware comprised of IR sensor, RASPBER
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Andreev, V. P. "Obstacle shape determination by mobile robot sensor system using GP2Y0A (Sharp) type IR distance sensors." Power engineering: research, equipment, technology 26, no. 1 (2024): 195–207. http://dx.doi.org/10.30724/1998-9903-2024-26-1-195-207.

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PURPOSE. When organizing a mobile robot (MR) movement in a non-deterministic environment, the SLAM problem arises, which includes the detection of an obstacle presence by the MR sensor system, the distance to the obstacle and its shape. To solve this problem, an infrared (IR) analog distance sensor is often used, the information flow from which is relatively small and can be processed in real time using low-performance microcontrollers. However, such a sensor can only detect an obstacle and determine а distance to a certain point on its surface. The goal is to develop a method for determining
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Butt, Muhammad Ali, and Ryszard Piramidowicz. "Standard slot waveguide and double hybrid plasmonic waveguide configurations for enhanced evanescent field absorption methane gas sensing." Photonics Letters of Poland 14, no. 1 (2022): 10. http://dx.doi.org/10.4302/plp.v14i1.1121.

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Herein, a numerical study on standard slot waveguide and double hybrid plasmonic waveguide based on a silicon-on-insulator platform is presented. The geometric parameters of both the waveguides are optimized for the operational wavelength of 3.39 μm (absorption line of methane gas) to obtain the maximum evanescent field ratio (EFR). By utilizing Lambert-Beer’s law, the gas sensing capability of both the waveguides is determined. It is found out that both the waveguides of length 100 μm offer high EFR resulting in the 3dB decay of the propagating mode power for the methane gas concentration of
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Fong, Andrew, and Gary M. Hieftje. "Simple Near-Infrared Spectrometric Sorption-Based Vapor Sensor." Applied Spectroscopy 49, no. 9 (1995): 1261–67. http://dx.doi.org/10.1366/0003702953965182.

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A new class of near-IR sensors has been devised which relies on spectroscopic near-IR detection of analytes sorbed on a preconcentrating layer. The new sensors furnish both qualitative and quantitative information by detection of molecular vibrational overtone and combination absorption bands and by measurement of changes in the scattering of the silica-gel medium. A silica-gel thin-layer chromatography (TLC) plate was used as the adsorbent medium. This method is responsive to vapors ranging from water to carbon tetrachloride. Ethyl- and octylderivatized TLC plates were also tested and general
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Kuznezova, A. V., A. V. Rybakov, A. I. Melnikova, I. Ya Khasanshin, D. N. Semenov, and V. I. Kruglov. "Physical and software bases of the device operation for remote measurement of human body temperature." Journal of Physics: Conference Series 2176, no. 1 (2022): 012080. http://dx.doi.org/10.1088/1742-6596/2176/1/012080.

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Abstract A method of automated control of human temperature in public places is proposed, which allows determining people with elevated temperature immediately at the control point. To develop the technique, an experimental stand was designed and implemented in a rack with six built-in infrared sensors. To recognize a person with an elevated temperature, an artificial neural network was used in the form of a multilayer perceptron, at the input of which there were IR sensor data. The conducted experiments showed that the trained model based on the F1-metric efficiency of 0.89 to 0.94 determines
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Suzi, Seroja Sarnin, Jumaatul Hidayati Binti Mohammad Nur, Fadzlina Naim Nani, et al. "Smart insects repeller." Indonesian Journal of Electrical Engineering and Computer Science (IJEECS) 17, no. 1 (2020): 205–12. https://doi.org/10.11591/ijeecs.v17.i1.pp205-212.

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One of the key issues for those involved in farming and greenhouse is the use of pesticides. In a recent headline, there has been an epidemic of insect infestation that has destroyed 211 hectares of rice plants. These concerns have led to the discussion of possible over-use of pesticides that are not just killing dangerous pests, but also other animals that help combat the pest. In order to overcome the problem, a research was conducted by introducing a smart insect killer. In this developing project, Pyroelectric (PIR) sensor will be using as a motion detector towards insects. This sensor pla
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Halley, Sleight, Kannan Ramaiyan, James Smith, et al. "Mixed Potential Electrochemical Sensors for Natural Gas Leak Detection – Field Testing of Portable Sensor Package." ECS Meeting Abstracts MA2023-01, no. 52 (2023): 2604. http://dx.doi.org/10.1149/ma2023-01522604mtgabs.

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According to the EPA, methane (CH4) emissions from oil and gas infrastructure accounted for 211 million metric tons of CO2 equivalent in 2020 [1]. Actual emissions may exceed this by a factor of three [2]. Current natural gas leak detection technologies largely consist of optical sensors such as IR spectrometers [3]. Optical sensors have high sensitivity, but the high cost and fragility of these sensors limit practical applications and continuous monitoring in the field. Mixed potential electrochemical sensors (MPES) are low cost, robust, selective and sensitive, making them a viable option fo
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Belcore, E., M. Piras, A. Pezzoli, G. Massazza, and M. Rosso. "RASPBERRY PI 3 MULTISPECTRAL LOW-COST SENSOR FOR UAV BASED REMOTE SENSING. CASE STUDY IN SOUTH-WEST NIGER." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLII-2/W13 (June 4, 2019): 207–14. http://dx.doi.org/10.5194/isprs-archives-xlii-2-w13-207-2019.

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<p><strong>Abstract.</strong> The technology of UAV (Unmanned Aerial Vehicles) is rapidly improving and UAV-integrated sensors have kept up with it, providing more efficient and effective solutions. One of the most sought-after characteristics of on-board sensors is the low costing associated to good quality of the collected data. This paper proposes a very low-cost multiband sensor developed on a Raspberry device and two Raspberry Pi 3 cameras that can be used in photogrammetry from drone applications. The UAV-integrated radiometric sensor and its performance were tested in
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Xu, He, Yan Xu, Peiyuan Wang, Hongpeng Yu, Ozoemena Anthony Ani, and X. Z. Gao. "Measurement of wheel-terrain contact angle for WMRs on rough terrain using laser scanning sensor." Industrial Robot: An International Journal 44, no. 6 (2017): 798–807. http://dx.doi.org/10.1108/ir-03-2017-0053.

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Purpose The purpose of this paper is to explore a novel measurement approach for wheel-terrain contact angle using laser scanning sensors based on near-terrain perception. Laser scanning sensors have rarely been applied to the measurement of wheel-terrain contact angle for wheeled mobile robots (WMRs) in previous studies; however, it is an effective way to measure wheel-terrain contact angle directly with the advantages of simple, fast and high accuracy. Design/methodology/approach First, kinematics model for a WMR moving on rough terrain was developed, taking into consideration wheel slip and
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Aditya, Vikra, Dirja Nur Ilham, Fauzun Atabiq, Dina Miftahul Jannah, and Muhammad Khoiruddin Harahap. "Designing an IoT-based footstep counter for sports shoes." JATAED: Journal of Appropriate Technology for Agriculture, Environment, and Development 1, no. 1 (2023): 7–13. http://dx.doi.org/10.62671/jataed.v1i1.2.

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Shoes are general footwear that can be used when exercising, working, formal events, or just to sweeten your appearance. Shoes used for sports have a slightly different shape from shoes in general, in terms of covering the left and right sides, the base, and the design, but most shoes do not have a device to count the steps taken. To overcome this, researchers have created a tool in shoes that can count the user's footsteps while exercising. A step counter on shoes based on the internet of things uses NodeMCU and an IR sensor which functions to detect every step of the shoe wearer. The result
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Dissertations / Theses on the topic "Sensors (IR 217 sensor"

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Jayabharath, Kumar Suri. "Sensor systems for positioning and identification in ubiquitous computing." Thesis, Linköping University, Department of Computer and Information Science, 2006. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-5767.

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<p>Technologies for position sensing and identification are important to have in ubiquitous computing environments. These technologies can be used to track users, devices, and artefacts in the physical milieu, for example, locating the position of a cellular phone in av physical environment. The aim of this thesis was to survey and classify available technologies for location sensing and identification. </p><p>We have made a literature study on both commercial and research-oriented systems and technologies for use in indoor and outdoor environments. We compared the characteristics of the under
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Antonsson, Tess, and Sofia Jönsson. "Pac-King : Placement of IR Sensors on Line Following Robot and Construction of a Gripper and Lift." Thesis, KTH, Skolan för industriell teknik och management (ITM), 2019. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-264510.

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Line following robots are a practical mechatronics solution in a world that is becoming more and more automated. With added gripping and lifting abilities, a very versatile robot can be created. The goal of this thesis was to create a prototype that could navigate a black line using infrared sensors whilst gripping and lifting a package. A working prototype was built and five different sensor placements were evaluated to assess which was optimal for linefollowing. The results showed that too close placement of the sensors led to a less stable system while more distance between the sensors made
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McConney, Michael Edward. "Learning and applying material-based sensing lessons from nature." Diss., Atlanta, Ga. : Georgia Institute of Technology, 2009. http://hdl.handle.net/1853/29749.

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Thesis (Ph.D)--Polymer, Textile and Fiber Engineering, Georgia Institute of Technology, 2010.<br>Committee Chair: Tsukruk, Vladimir; Committee Member: Shofner, Meisha; Committee Member: Srinivasarao, Mohan; Committee Member: Thio, Yonathan; Committee Member: Weissburg, Marc. Part of the SMARTech Electronic Thesis and Dissertation Collection.
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Sandström, Joakim. "Utveckling av sensorbaserat system för personräkning i inomhusmiljö." Thesis, Umeå universitet, Institutionen för tillämpad fysik och elektronik, 2021. http://urn.kb.se/resolve?urn=urn:nbn:se:umu:diva-183770.

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I det här arbetet presenteras ett system som utvecklats i syfte att kunna räkna personer. Systemet är tänkt att användas i mötesrum för upp till tio personer och använder sig av infraröd teknik i form av thermopile arrayer. I arbetet har tre olika sensorer använts för utvärdering. Sensorerna som använts är Panasonic Grid-EYE med pixelupplösningen 8×8 och detekteringsvinkeln 60°×60° samt två stycken Heimann 32x32d, båda med upplösningen 32×32 pixlar, men med detekteringsvinkeln 90°×90° respektive 105°×105°. Systemet är programmerat med hjälp av utvecklingskortet STM32L476RG och är skrivet i spr
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Molén, Eskhult Emelie. "Folkrättsliga problem vid användandet av adaptivt kamouflage." Thesis, Försvarshögskolan, 2013. http://urn.kb.se/resolve?urn=urn:nbn:se:fhs:diva-4061.

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Adaptivt kamouflage är en signaturanpassningsteknik som ger stridsfordon förmågan att anpassa sin värmesignatur utefter omgivningen eller imitera andra objekts signatur, i syfte att undgå upptäckt eller identifiering.I denna studie genomförs en analys om vilka folkrättsliga problem som kan uppstå vid användandet av adaptivt kamouflage.Studiens resultat visar att de folkrättsliga problem som kan uppstå vid användningen av adaptivt kamouflage är distinktionsproblem, då tekniken möjliggör för stridsfordon att imitera signaturen av civila personbilar. Denna användning av adaptivt kamouflage kan an
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Book chapters on the topic "Sensors (IR 217 sensor"

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Sharma, Rahul, Honc Daniel, and František Dušek. "Sensor Fusion: An Application to Localization and Obstacle Avoidance in Robotics Using Multiple IR Sensors." In Nostradamus 2014: Prediction, Modeling and Analysis of Complex Systems. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-07401-6_38.

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S. Diarah, Reuben, Christian Osueke, Adefemi Adekunle, Segun Adebayo, Adedayo Banji Aaron, and Olaluyi Olawale Joshua. "Types of Temperature Sensors." In Wireless Sensor Networks - Design, Applications and Challenges. IntechOpen, 2023. http://dx.doi.org/10.5772/intechopen.110648.

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There are three main types of temperature sensors: thermometers, resistance temperature detectors and thermocouples. These sensors measure a physical property that changes as a function of temperature, and temperature sensors are classified into contact and non-contact sensors. Contact sensors detect the degree of hotness or coldness of an object when placed in direct contact with the object. It can be used to sense the degree of hotness or coldness in liquids, solids or gases in a wide range of temperatures. Contact temperature sensors include thermometers, thermocouples and thermistors. A thermometer detects the body temperature of human beings, and a thermocouple is a thermoelectrical thermometer that works on the principle of the Seebeck effect; they are cheap; hence, their model and basic materials are easy to get, and non-contact sensors are not placed in contact with the object that it measures; however, they measure the temperature by utilizing the radiation of the heat source. IR sensors detect the energy of an object remotely and emit a sign to an electronic circuit that senses the object’s temperature by a specific calibration diagram. Other types of temperature sensors are available and produced based on the working principle, size, temperature range and their function and application.
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Srinivasan, Suganthi, Rakesh Rajegowda, and Eshwar Udhayakumar. "Latest Advancements in Perception Algorithms for ADAS and AV Systems Using Infrared Images and Deep Learning." In Digital Image Processing - Latest Advances and Applications [Working Title]. IntechOpen, 2023. http://dx.doi.org/10.5772/intechopen.1003683.

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Perception system plays an important role in Advanced driver assistance systems (ADAS) &amp; Autonomous vehicles (AV) to understand the surrounding environment and further navigation. It is highly challenging to achieve the accurate perception of ego vehicle mimicking human vision. The available ADAS and AV solutions could able to perceive the environment to some extent using multiple sensors like Lidars, Radars and Cameras. National Highway Traffic Safety Administration Crash reports of ADAS and AV systems shows that the complete autonomy is challenging to achieve using the existing sensor suite. Particularly, in extreme weather, low light and night scenarios, there is a need for additional perception sensors. Infrared camera seems to be one of the potential sensors to address such extreme and corner cases. This chapter aimed to discuss the advantage of adding infrared sensors to perceive the environment accurately. The advancements in deep learning approaches further leverages to enhance ADAS features. Also, the limitations of current sensors, the need for infrared sensors and technology, artificial intelligence and current research focus using IR images are discussed in detail. Literature shows that by adding IR sensor to existing sensor suite may lead a way to achieve level 3 and above autonomous driving precisely.
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Stopforth, Riaan. "Medical monitoring wearable technology." In Medical Devices Innovation for Africa: enabling industrialisation. University of Cape Town Libraries, 2022. http://dx.doi.org/10.15641/uctlib40376.

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Amedicalwearabletechnologywasdesignedwithalltheelectronicdevicesneededforthesmartwatchto perform medical monitoring functions such as body temperature sensing and heart ratesensing. The medical smartwatch requires an enclosure for the electronic devices and a mechanismthatwouldbewornonahumanwrist.Themedicalsmartwatchwasdesignedtohaveelectronicdevicessuch as an electrocardiography (ECG) sensor, impulse and oximeter sensor, light emitting diode(LED) light, a battery, Bluetooth module, humidity and temperature sensors, flame sensor, vibrator,electromyography(EMG)sensor,Infrared(IR)LEDsensor,transistor,andaArduinoboardandmanymore. The focus was designing an enclosure that will interface between these electronic devices andthe user. This paper shows the design that was considered for the enclosure, and the effect a casing has on the temperature and ECG sensors.
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Srinivas, Amgoth, Sangati Ram Mohan, Mekala Mallikarjun Reddy, Sandi Anuhya, Sirinomula Sai Krishna, and Mukkamala Sarvari Priya. "VEHICLE MOVEMENT BASED STREET LIGHT OPERATION FOR PREVENTING ENERGY AND HUMAN INTERVENTION." In Futuristic Trends in Artificial Intelligence Volume 3 Book 1. Iterative International Publisher, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3bfai1p1ch4.

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The goal of this work is to reduce street light energy consumption by implementing an algorithm that can control the electricity at night. This can be done through the use of sensors and an Arduino UNO. The work's counter will monitor the number of objects that pass through the road. This method can help reduce the electricity consumption of the street lights. The system will be designed with the help of an Arduino UNO, which will automatically turn on or off the lights when a vehicle moves. This work's working diagram provides an overview of the various aspects of the project. For instance, if there is no vehicle within the IR sensor module's path, the receiver can't receive the infrared signal. This means that the lights remain on in open loop condition while the circuit is in standby. The IR module is currently in close loop condition. If a car blocks one of the sensors, the microcontroller will switch on the first three LEDs. When the vehicle moves forward, the second sensor will also be turned ON. The first LED from the previous set will then be turned off. This procedure continues for the other sensors and LEDs.
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Coffey, Aodhán L., and Tomás E. Ward. "Combined Ambient and Wearable Sensors for Gesture-Based Environmental Control in the Home." In Recent Advances in Ambient Intelligence and Context-Aware Computing. IGI Global, 2015. http://dx.doi.org/10.4018/978-1-4666-7284-0.ch001.

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Home-based therapy will need to play a huge role in the future if we are to achieve effective and cost-efficient forms of rehabilitation. Creative solutions are already being implemented by researchers with the development of revolutionary applications for healthcare leveraging commercially available technology. In this chapter, the authors endeavour to contribute to this goal, describing their ongoing contributions through the application of combined ambient and wearable sensors for gesture-based environmental control. The authors describe in detail the development of three novel systems: an autonomous sensor glove that classifies hand gestures and controls Infrared (IR)-based devices, a smart watch that recognises motion gestures to interact with Radio Frequency (RF) controlled devices, and a hybrid (sensor glove and LEAP motion controller) sensor solution for achieving high fidelity hand and finger motion capture/playback with applications for virtual ambient systems.
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N. Nagarjuna, Mr, Mrs P. Lavanya Kumari, Mrs K. Susheela, and Mrs R. Sasikala. "ARDUINO BASED SMART PARKING SYSTEM." In Futuristic Trends in IOT Volume 3 Book 1. Iterative International Publisher, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3bbio1p1ch11.

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In response to the escalating issue of modern-day traffic congestion, the development of smart auto parking systems has emerged as a promising solution. Our team has successfully created an Arduino-based car parking system with the goal of optimizing parking space utilization and enhancing overall traffic flow. This innovative system provides invaluable assistance to drivers in locating available parking spaces swiftly and efficiently. It achieves this through the utilization of Infrared (IR) sensors, which are adept at detecting the presence or absence of vehicles within the parking area. By employing this technology, we aim to not only enhance convenience but also contribute to the improvement of urban traffic management. The application of parking management software is pivotal in automating various aspects of parking administration. This software streamlines processes related to enforcement, issuance, and overall facilitation of parking services. This is particularly valuable for a diverse range of entities, including private garages, public parking facilities, municipal authorities, and educational institutions that allocate space for parking purposes. One notable feature of our system is the ability for drivers to quickly locate available parking slots, ultimately saving them valuable time. This is made possible by incorporating IR sensors that provide accurate distance estimates. The Arduino microcontroller plays a central role in processing the sensor input, generating the necessary output, and displaying the results on a 20x4 LCD display. The successful implementation of this system was achieved through the precise programming of both the IR sensors and the Arduino microcontroller.
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Nigam, Akhil. "Interfacing of Automatic Waste Segregation System Using Arduino UNO." In Advances in Transdisciplinary Engineering. IOS Press, 2024. https://doi.org/10.3233/atde241319.

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We live in the urban region where the piling up of waste heaps is often observed. The waste produced throughout the country is massive and often gets difficult to be segregated manually. The world is becoming smart so must be the solution to our problems. The main objective of our product is to separate metallic waste, wet waste and dry waste automatically. When the waste is thrown into the main bin, the IR sensor sense the waste and the other sensor attached sense the category of waste. Then according to the algorithm fed, the waste is segregated and is thrown in the respective bins with the help of servo motor. This setup produces an automatic way of segregating waste and reduces the manual efforts. This product is made with the help of Arduino UNO and sensors.
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R., Dhaya. "IoT-Based Solar Charged Wireless Vehicle Parking Network." In Computer-Assisted Learning for Engaging Varying Aptitudes. IGI Global, 2022. http://dx.doi.org/10.4018/978-1-6684-5058-1.ch011.

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Vehicle parking and vehicle parking place have become inevitable things for the present situation and it contributes to traffic congestion in an indirect manner. The proposed work aims to solve the problem of effectively utilizing the available parking space through an IoT-based parking network during peak hours as well as to charge the system with solar energy as a renewable to ensure reliability in terms of saving time, space, and energy. Because IoT can convey information via the network without encompassing human contacts in the cloud and also permits a user to use affordable wireless technology. the innovative idea of this proposed vehicle parking network is of using solar as renewable energy to charge the sensors in the network. Hence, it is proposed to use the Infrared sensor to be positioned alongside the parking space ESP module. IR sensors will update the current state of available parking spaces for ESP uses light energy observed by the sensors will be used to charge the network. The outcome will benefit the users to manage the parking space effectively and efficiently.
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Sureshraj, S. P., S. Narayanasamy, D. Yobu, Dr R. Ravi, Mr V. Naveen, and Ms P. Vanmathi. "SOLAR POWERED PREVENTION TECHNIQUES ENTRY OF MONKEYS INSIDE RESIDENTIAL AREA." In Futuristic Trends in Renewable & Sustainable Energy Volume 3 Book 3. Iterative International Publishers, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3birs3p12ch2.

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This Project is Proposed to prevent the entry of Monkey inside Residential area. The aim of this project is to prevent the monkey from entering into campus especially in classroom, staffroom and also in water filter. He This Project is Proposed to prevent the entry of Monkey inside Residential area. The aim of this project is to prevent the monkey from entering into campus especially in classroom, staffroom and also in water filter. Here, for Implementation we use solar as the power source and Infrared Radiation (IR) Sensor to restrict the entry of the Monkey. The proposed system consists of three main components: a solar power generation system, an intelligent monitoring system, and a deterrent mechanism. The solar power generation system harnesses sunlight to generate electricity, ensuring a self-sufficient and eco-friendly energy supply for the prevention system. The intelligent monitoring system employs advanced sensors, cameras, and computer vision algorithms to detect monkey activity and identify potential entry points. Real-time data processing and analysis enable timely responses to intrusion attempts.re, for Implementation we use solar as the power source and Infrared Radiation (IR) Sensor to restrict the entry of the Monkey. The proposed system consists of three main components: a solar power generation system, an intelligent monitoring system, and a deterrent mechanism. The solar power generation system harnesses sunlight to generate electricity, ensuring a self-sufficient and eco-friendly energy supply for the prevention system. The intelligent monitoring system employs advanced sensors, cameras, and computer vision algorithms to detect monkey activity and identify potential entry points. Real-time data processing and analysis enable timely responses to intrusion attempts.
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Conference papers on the topic "Sensors (IR 217 sensor"

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Lin, Pen-Sheng, Arne Quellmalz, Po-Han Huang, et al. "Sensitivity-optimized waveguide-based methane gas sensor in the mid-IR." In CLEO: Science and Innovations. Optica Publishing Group, 2024. http://dx.doi.org/10.1364/cleo_si.2024.sf3a.2.

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We demonstrate methane gas sensing using suspended silicon waveguides and experimentally validate the sensitivity optimization of waveguide-based gas sensors by varying waveguide lengths. This method enables application-optimized integrated optical gas sensors.
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Cao, Ningyuan, Shreyas Sen, and Arijit Raychowdhury. "Collaborative intelligence in optical/IR camera based wireless sensor nodes for HVAC control." In 2017 IEEE SENSORS. IEEE, 2017. http://dx.doi.org/10.1109/icsens.2017.8234091.

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Kumar, N. Dinesh, and A. Sushmitha Mala. "Practical Implementation of 3D Smart Walking Stick for Blind People." In International Conference on Women Researchers in Electronics and Computing. AIJR Publisher, 2021. http://dx.doi.org/10.21467/proceedings.114.51.

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The gift of god that is precious is vision through which, one can see the beautiful world and enjoy. But many people throughout the world are deprived of this According to October 2017 report of World Health Organization (WHO) an estimated 253 million people live with vision impairment. 36 million are blind and 217 million have moderate to severe vision impairment. Un-operated cataract is the main reason for blindness in low income and developing countries Even in China by the end of 2017, the population over 60 will reach 241 million, accounting for 17.3 percent of the country's total populat
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Mohammadmoradi, Hessam, Sirajum Munir, Omprakash Gnawali, and Charles Shelton. "Measuring People-Flow through Doorways Using Easy-to-Install IR Array Sensors." In 2017 13th International Conference on Distributed Computing in Sensor Systems (DCOSS). IEEE, 2017. http://dx.doi.org/10.1109/dcoss.2017.26.

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Pullano, S. A., M. Greco, S. Messineo, A. Brunetti, and A. S. Fiorillo. "IR-Light induced pyroelectric effect for cell cultures characterization." In 2017 IEEE SENSORS. IEEE, 2017. http://dx.doi.org/10.1109/icsens.2017.8234444.

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Lee, Byeong-ho, Seongwook Lee, Young-Jun Yoon, Kyoung-Min Park, and Seong-Cheol Kim. "Adaptive clutter suppression algorithm for human detection using IR-UWB radar." In 2017 IEEE SENSORS. IEEE, 2017. http://dx.doi.org/10.1109/icsens.2017.8234016.

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Currano, Luke J., Kostas Gerasopoulos, and David Shrekenhamer. "Bilayer metasurfaces integrated with MEMS switches for tunable transmissive IR filters." In 2017 IEEE SENSORS. IEEE, 2017. http://dx.doi.org/10.1109/icsens.2017.8234290.

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Schott, M., E. Pignanelli, S. Gratz-Kelly, and A. Schütze. "1.8 - Modulares IR-Messsystem zur Überwachung der Wasserstoffqualität für Brennstoffzellenfahrzeuge." In 13. Dresdner Sensor-Symposium 2017. AMA Service GmbH, Von-Münchhausen-Str. 49, 31515 Wunstorf, Germany, 2017. http://dx.doi.org/10.5162/13dss2017/1.8.

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Xu, Dehui, Bin Xiong, Guoqiang Wu, Yinglei Ma, Errong Jing, and Yueling Wang. "3D monolithic integrated thermoelectric IR sensor." In 2012 IEEE Sensors. IEEE, 2012. http://dx.doi.org/10.1109/icsens.2012.6411203.

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Scheianu, Andrei, George Suciu, Ioana Petre, and Alexandru Drosu. "HYBRID VLC COMMUNICATIONS SYSTEM FOR E-LEARNING BASED ON THE ARM CORTEX-A53 PROCESSOR." In eLSE 2020. University Publishing House, 2020. http://dx.doi.org/10.12753/2066-026x-20-115.

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VLC (Visible Light Communications) technology represents nowadays a new paradigm that could have a significant impact on future wireless communications. Although this technology has many advantages, one of the most common problem generated by the use of optical communication systems (based on the light in the visible spectrum), is the increased degree of disruption of the communication channel under the direct sunlight influence. The purpose of this article is to present the technological developments specific to the VLC/IR-RF (Visible Light Communication / Infrared - Radio-Frequency) hybrid s
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Reports on the topic "Sensors (IR 217 sensor"

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Ratmanski, Kiril, and Sergey Vecherin. Resilience in distributed sensor networks. Engineer Research and Development Center (U.S.), 2022. http://dx.doi.org/10.21079/11681/45680.

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With the advent of cheap and available sensors, there is a need for intelligent sensor selection and placement for various purposes. While previous research was focused on the most efficient sensor networks, we present a new mathematical framework for efficient and resilient sensor network installation. Specifically, in this work we formulate and solve a sensor selection and placement problem when network resilience is also a factor in the optimization problem. Our approach is based on the binary linear programming problem. The generic formulation is probabilistic and applicable to any sensor
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Kuznetsov, Victor, Vladislav Litvinenko, Egor Bykov, and Vadim Lukin. A program for determining the area of the object entering the IR sensor grid, as well as determining the dynamic characteristics. Science and Innovation Center Publishing House, 2021. http://dx.doi.org/10.12731/bykov.0415.15042021.

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Currently, to evaluate the dynamic characteristics of objects, quite a large number of devices are used in the form of chronographs, which consist of various optical, thermal and laser sensors. Among the problems of these devices, the following can be distinguished: the lack of recording of the received data; the inaccessibility of taking into account the trajectory of the object flying in the sensor area, as well as taking into consideration the trajectory of the object during the approach to the device frame. The signal received from the infrared sensors is recorded in a separate document in
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Kulhandjian, Hovannes. AI-based Pedestrian Detection and Avoidance at Night using an IR Camera, Radar, and a Video Camera. Mineta Transportation Institute, 2022. http://dx.doi.org/10.31979/mti.2022.2127.

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In 2019, the United States experienced more than 6,500 pedestrian fatalities involving motor vehicles which resulted in a 67% rise in nighttime pedestrian fatalities and only a 10% rise in daytime pedestrian fatalities. In an effort to reduce fatalities, this research developed a pedestrian detection and alert system through the application of a visual camera, infrared camera, and radar sensors combined with machine learning. The research team designed the system concept to achieve a high level of accuracy in pedestrian detection and avoidance during both the day and at night to avoid potentia
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Porcel Magnusson, Cristina. Unsettled Topics Concerning Coating Detection by LiDAR in Autonomous Vehicles. SAE International, 2021. http://dx.doi.org/10.4271/epr2021002.

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Autonomous vehicles (AVs) utilize multiple devices, like high-resolution cameras and radar sensors, to interpret the driving environment and achieve full autonomy. One of these instruments—the light detection and ranging (LiDAR) sensor—utilizes pulsed infrared (IR) light, typically at wavelengths of 905 nm or 1,550 nm, to calculate object distance and position. Exterior automotive paint covers an area larger than any other exterior material. Therefore, understanding how LiDAR wavelengths interact with vehicle coatings is extremely important for the safety of future automated driving technologi
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