Academic literature on the topic 'Self-sufficient integrated sensor system'

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Journal articles on the topic "Self-sufficient integrated sensor system"

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König, A., and K. Thongpull. "Lab-on-Spoon – a 3-D integrated hand-held multi-sensor system for low-cost food quality, safety, and processing monitoring in assisted-living systems." Journal of Sensors and Sensor Systems 4, no. 1 (2015): 63–75. http://dx.doi.org/10.5194/jsss-4-63-2015.

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Abstract. Distributed integrated sensory systems enjoy increasing impact leveraged by the surging advance of sensor, communication, and integration technology in, e.g., the Internet of Things, cyber-physical systems, Industry 4.0, and ambient intelligence/assisted-living applications. Smart kitchens and "white goods" in general have become an active field of R&D. The goal of our research is to provide assistance for unskilled or challenged consumers by efficient sensory feedback or context on ingredient quality and cooking step results, which explicitly includes decay and contamination
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Leschik, Josef, Anton Harasim, and Jens Müller. "Intelligent hermetically sealed LTCC Package with an integrated sensor system for avionics." Additional Conferences (Device Packaging, HiTEC, HiTEN, and CICMT) 2012, CICMT (2012): 000507–11. http://dx.doi.org/10.4071/cicmt-2012-wp25.

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In this article, the fabrication process and the first results of a deep-drawn LTCC housing with integrated sensors in the field of avionic are presented This housing includes a pressure sensor that monitors the density of the housing - “self monitoring”. Furthermore, a humidity and a temperature sensor in the inner or outer layers of the LTCC decks are implemented, so that the internal state of the circuit can be monitored. Due to high integration (miniaturization) of the sensors the condition of the circuit can be monitored continuously. This allows the assembly upon the occurrence of an irr
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Jo, Tae Hee, Jae Hoon Ma, and Seung Hyun Cha. "Elderly Perception on the Internet of Things-Based Integrated Smart-Home System." Sensors 21, no. 4 (2021): 1284. http://dx.doi.org/10.3390/s21041284.

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An integrated smart home system (ISHS) is an effective way to improve the quality of life of the elderly. The elderly’s willingness is essential to adopt an ISHS; to the best of our knowledge, no study has investigated the elderly’s perception of ISHS. Consequently, this study aims to investigate the elderly’s perception of the ISHS by comprehensively evaluating its possible benefits and negative responses. A set of sensors required for an ISHS was determined, and interviews were designed based on four factors: perceived comfort, perceived usability, perceived privacy, and perceived benefit. S
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Lee, Jaehoon, Changyeop Jeon, Taehyeong Jeon, et al. "Bridge Resistance Compensation for Noise Reduction in a Self-Balanced PHMR Sensor." Sensors 21, no. 11 (2021): 3585. http://dx.doi.org/10.3390/s21113585.

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Advanced microelectromechanical system (MEMS) magnetic field sensor applications demand ultra-high detectivity down to the low magnetic fields. To enhance the detection limit of the magnetic sensor, a resistance compensator integrated self-balanced bridge type sensor was devised for low-frequency noise reduction in the frequency range of 0.5 Hz to 200 Hz. The self-balanced bridge sensor was a NiFe (10 nm)/IrMn (10 nm) bilayer structure in the framework of planar Hall magnetoresistance (PHMR) technology. The proposed resistance compensator integrated with a self-bridge sensor architecture prese
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Mishu, Mahmuda Khatun, Md Rokonuzzaman, Jagadeesh Pasupuleti, et al. "An Adaptive TE-PV Hybrid Energy Harvesting System for Self-Powered IoT Sensor Applications." Sensors 21, no. 8 (2021): 2604. http://dx.doi.org/10.3390/s21082604.

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In this paper, an integrated thermoelectric (TE) and photovoltaic (PV) hybrid energy harvesting system (HEHS) is proposed for self-powered internet of thing (IoT)-enabled wireless sensor networks (WSNs). The proposed system can run at a minimum of 0.8 V input voltage under indoor light illumination of at least 50 lux and a minimum temperature difference, ∆T = 5 °C. At the lowest illumination and temperature difference, the device can deliver 0.14 W of power. At the highest illumination of 200 lux and ∆T = 13 °C, the device can deliver 2.13 W. The developed HEHS can charge a 0.47 F, 5.5 V super
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Rahmouni, Mohamed, and Julia Malysheva. "AN INTEGRATED AIRCRAFT NAVIGATION SYSTEM WITH OPTICAL HORIZON SENSOR." Aviation 16, no. 4 (2012): 109–14. http://dx.doi.org/10.3846/16487788.2012.753681.

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An integration algorithm for a strapdown inertial navigation system with optical horizon sensor based on Kalman filtering is presented. It allows the accuracy of the estimation of aircraft motion parameters to be improved. A self-contained horizon recognition algorithm for the video sequence that enables real-time aircraft attitude determination relative to the horizon line is developed. A scaled-down simulation and performance analysis of the operation of the integrated navigation system is carried out.
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Brochu, Nathaniel, Benjamin Belanger-Huot, Dmytro Humeniuk, et al. "Bacteria Energy Recovery System Using Natural Soil Bacteria in Microbial Fuel Cells." Energies 14, no. 15 (2021): 4393. http://dx.doi.org/10.3390/en14154393.

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This paper describes a two-cycle bacteria energy recovery system (BERS) to power two embedded sensors: an ultra-low portable pH sensor and a sound sensor. The designed unit can handle up to seven microbial fuel cells (MFCs) to charge a super-capacitor. This allows the BERS to provide a constant 0.14 mW without further electrical components for signal conditioning. The two cycles were driven with a 100 kΩ load and a 10 Hz frequency. The BERS is also self-powered with an integrated start-up unit to be self-activated when the MFCs charge the energy-storing unit after three days. The BERS powered
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Lee, An-Chen, and Song-Tsuen Chen. "Collocated Sensor/Actuator Positioning and Feedback Design in the Control of Flexible Structure System." Journal of Vibration and Acoustics 116, no. 2 (1994): 146–54. http://dx.doi.org/10.1115/1.2930405.

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This paper presents a new control design method for the control of flexible systems that not only guarantees closed-loop asymptotic stability but also effectively suppresses vibration. This method allows integrated determination of actuator/sensor locations and feedback gain via minimization of an energy criterion, which is chosen as the integrated total energy stored in the system. The energy criterion is determined via an efficient solution of the Lyapunov equation and minimized with a quasi-Newton or recursive quadratic programming algorithm. The prerequisite for this optimal design method
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Chen, Jie, Hengyu Guo, Zhiyi Wu, et al. "Actuation and sensor integrated self-powered cantilever system based on TENG technology." Nano Energy 64 (October 2019): 103920. http://dx.doi.org/10.1016/j.nanoen.2019.103920.

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Huang, Hui Chun, Wei Jiang, and Ren Jie Hu. "Research on Integrated Monitoring System of High-Voltage Tower." Applied Mechanics and Materials 347-350 (August 2013): 657–60. http://dx.doi.org/10.4028/www.scientific.net/amm.347-350.657.

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The monitoring and stable operation of high-voltage tower is an important direction of strong grid research. Transmission monitoring includes the forecast of early faults and real-time state estimation. There is no domestic report on related research. Some simulation in laboratory had been done and little been reported. The research review was carried out in accordance with existing knowledge and research progress summary, using wireless transmission and self-generating as example, to build high-voltage tower monitoring system including power management systems, sensor systems, data processing
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Dissertations / Theses on the topic "Self-sufficient integrated sensor system"

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[Verfasser], Kittikhun Thongpull, and Andreas [Akademischer Betreuer] König. "Advancing the Automated Design of Integrated Intelligent Multi-Sensory Systems with Self-X Properties / Kittikhun Thongpull. Betreuer: Andreas König." Kaiserslautern : Technische Universität Kaiserslautern, 2016. http://d-nb.info/1081366826/34.

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Johar, Muhammad Akmal bin [Verfasser], and Andreas [Akademischer Betreuer] König. "Exploration and Design of DC MEMS Switches for Integrated Self-x Sensory Systems / Muhammad Akmal bin Johar. Betreuer: Andreas König." Kaiserslautern : Technische Universität Kaiserslautern, 2015. http://d-nb.info/1072072653/34.

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Pic, Axel. "Numerical and experimental investigations of self-heating phenomena in 3D Hybrid Bonding imaging technologies." Thesis, Lyon, 2019. http://www.theses.fr/2019LYSEI054.

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Dans cette thèse, les phénomènes d’auto-échauffement ont été étudié pour guider la conception de circuits intégrés 3D de nouvelle génération. Grâce à des études expérimentales et numériques, la dissipation thermique dans des imageurs 3D par collage hybride a été analysée et l’impact de l’augmentation de température résultante a été évalué. Premièrement, afin de développer des modèles précis, les propriétés thermiques des matériaux utilisés dans les circuits intégrés ont dû être déterminées. Différents films minces diélectriques impliquant des oxydes, des nitrures et des composés low-k ont été
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Messenger, Robert K. "Integrated Piezoresistive Sensing for Feedback Control of Compliant MEMS." Diss., CLICK HERE for online access, 2007. http://contentdm.lib.byu.edu/ETD/image/etd2115.pdf.

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Bandi, Ajay Kumar. "An integrated sensor system for early fall detection." 2013. http://hdl.handle.net/1805/3651.

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Indiana University-Purdue University Indianapolis (IUPUI)<br>Physical activity monitoring using wearable sensors give valuable information about patient's neuro activities. Fall among ages of 60 and older in US is a leading cause for injury-related health issues and present serious concern in the public health care sector. If the emergency treatments are not on time, these injuries may result in disability, paralysis, or even death. In this work, we present an approach that early detect fall occurrences. Low power capacitive accelerometers incorporated with microcontroller processing units wer
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Möbius, Martin. "Nutzung der Photolumineszenz von Quantenpunkten für die Belastungsdetektion an Leichtbaumaterialien." 2019. https://monarch.qucosa.de/id/qucosa%3A73361.

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Die vorliegende Arbeit beschäftigt sich mit der Entwicklung eines neuartigen, autarken, folienbasierten Sensorsystems für die Belastungsdetektion an Leichtbaumaterialien. Das integrierte Sensorsystem ist in der Lage mechanische Belastungen über die Photolumineszenz von Quantum Dots visuell darzustellen, wodurch strukturelle Defekte in Leichtbaumaterialien frühzeitig erkannt und ein Totalausfall einer gesamten Leichtbaukonstruktion verhindert werden kann. Dies führt neben einer erhöhten Sicherheit einzelner Komponenten und kompletter Konstruktionen auch zu Gewichts-, Kosten- und Rohstoffersparn
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Books on the topic "Self-sufficient integrated sensor system"

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Israel. Defense, multi-sensor integrated system: Memorandum of understanding between the United States of America and Israel, signed at Tel Aviv and Washington, September 13 and October 18, 1991. U.S. Dept. of State, 1998.

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Israel. Defense, multi-sensor integrated system: Memorandum of understanding between the United States of America and Israel, signed at Tel Aviv and Washington, September 13 and October 18, 1991. U.S. Dept. of State, 1998.

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Israel. Defense, multi-sensor integrated system: Memorandum of understanding between the United States of America and Israel, signed at Tel Aviv and Washington, September 13 and October 18, 1991. U.S. Dept. of State, 1998.

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(Editor), T. Kumazawa, L. Kruger (Editor), and K. Mizumura (Editor), eds. The Polymodal Receptor - A Gateway to Pathological Pain (Progress in Brain Research). Elsevier Science, 1996.

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Takao, Kumazawa, Kruger Lawrence, and Mizumura Kazue, eds. The polymodal receptor: A gateway to pathological pain. Elsevier, 1996.

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Book chapters on the topic "Self-sufficient integrated sensor system"

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Kumar, Shailabh. "Self-directed Transport on Nanostructured Plasmonic Sensors." In Integrated Analytical Systems. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-64747-0_4.

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Yu, Tai Ho, and Ching Chung Yin. "A Self-Sensing Wedge-Wave Ultrasonic Motor Using Modal Sensors." In Emboding Intelligence in Structures and Integrated Systems. Trans Tech Publications Ltd., 2008. http://dx.doi.org/10.4028/3-908158-13-3.52.

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Pierleoni, Paola, Alberto Belli, Lorenzo Palma, Michele Palmieri, and Luca Pernini. "A WSN Integrated Solution System for Technological Support to the Self-Sufficient Elderly." In Ambient Assisted Living. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-01119-6_29.

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Frankiewicz, Artur. "Self-adapting Algorithm for Transmission Power Control in Integrated Meter Reading Systems Based on Wireless Sensor Networks." In Computer Networks. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-21771-5_48.

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König, Andreas. "Automated and Holistic Design of Intelligent and Distributed Integrated Sensor Systems with Self-x Properties for Applications in Vision, Robotics, Smart Environments, and Culinary Assistance Systems." In Advances in Neuro-Information Processing. Springer Berlin Heidelberg, 2009. http://dx.doi.org/10.1007/978-3-642-03040-6_101.

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Li, Mochen, H. Henry Zhang, Li Tan, and Wangling Yu. "Self-Powered Height Sensor With ZigBee Networks for Intelligent Systems." In Handbook of Research on Biomimetics and Biomedical Robotics. IGI Global, 2018. http://dx.doi.org/10.4018/978-1-5225-2993-4.ch018.

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With the development of micro-electro-mechanical systems (MEMS), wireless communication technology, and embedded systems, wireless sensor network (WSN) has been a focus for research among various fields. Wireless sensor technology inspires many innovations for industrial applications and medical robots, and breaks many limitations and inconvenience for such sensing devices. A self-powered height sensing system with ZigBee technology is presented. It specifically targets to replace an original wired system with an integrated wireless sensor that is comprised of all necessary parts: sensing module, processing module, RF transceiver, and power supply. First, the authors present the system framework design including the layout of a wireless sensor node based on ZigBee. Second, with the vibration environment, a self-powered generator was developed through the comparison between piezoelectric and electromagnetic generation. Then several experiments are conducted to test and analyze the feasibility of the whole system. Finally, a future upgraded design is proposed to improve system performance.
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del Rey, Adriana, and Hugo Besedovsky. "The Immune System as a Sensor Able to Affect Other Homeostatic Systems." In Immunopsychiatry. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190884468.003.0005.

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This chapter deals with the capacity of the immune system to sense the intrusion of external challenges and modifications of self-components, and to provide information to the brain about these disturbances. These properties allow us to classify the immune system as a classical sensory organ. Besides its intrinsic function directed at the elimination of dangerous stimuli, the activation of the immune system also affects the functioning of other homeostatic systems, such as the endocrine and the nervous systems. We also discuss our view of how immune-derived information could be processed by the brain and integrated with other inputs that it permanently receives, leading to a resetting of regulatory adaptive systems. Due to the high energetic cost of immunity, we discuss how brain-borne cytokines, in particular IL-1, could affect glucose homeostasis. Deregulation of these immune-neuroendocrine interactions can affect brain mechanisms that include behavior, cognition, mood, and personality.
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Zhang, Jiancai, Hang Mu, Feng Han, and Shumin Han. "A Research and Application of the Processing Methods of Railway Measurement Based on Self-Mobile Scanning Measurement System." In Advances in Transdisciplinary Engineering. IOS Press, 2020. http://dx.doi.org/10.3233/atde200235.

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With the gradual improvement of China’s railway net, the opening of international railways as well as the continuous growth of railway operating mileage, the workload of remeasuring railways is increasing. The traditional methods of remeasuring railways can not meet current high-speed and high-density operating conditions anymore in terms of safety, efficiency and quality, so a safer and more efficient measurement method is urgently needed.This thesis integrated various sensors on a self-mobile instrument, such as 3D laser scanner, digital image sensor and GNSS_IMU, designing a set of intelligent and integrated self-mobile scanning measurement system. This thesis proposed region growing segmentation based on the reflection intensity of point cloud. Through the secondary development of CAD, the menu for automatic processing of self-mobile scanning measurement system is designed to realize rail automatic segmentation, extraction of rail top points, fitting of plane parameters of railway line, calculation of curve elements and mileage management.The results show that self-mobile scanning measurement system overcomes the shortcomings of traditional railway measurement to some extent, and realizes intelligent measurement of railways.
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P. Ori, Zsolt. "Integrated Cyber-Physical System to Support Early Diagnosis and Prevention of Prediabetes and Complications of Type 2 Diabetes." In Type 2 Diabetes [Working Title]. IntechOpen, 2020. http://dx.doi.org/10.5772/intechopen.94232.

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Dietary and exercise interventions are the mainstay of prevention, and they constitute important part in the treatment of type 2 diabetes (DM2) and its complications. Automated, continuous, individualized non-invasive measurement of pathological processes leading to DM2 and complications are needed in terms of self-explaining metrics for improved individualized lifestyle management. Our company, the Ori Diagnostic Instruments, LLC is using tools of Medical Cybernetics (MC) to monitor non-invasive indicators of insulin resistance, exercise capacity, and autonomic dysfunction. The MC approach utilizes mathematical process and measurement models which are connected to a wearable sensor system. This chapter has the purpose to show how already widely available information technologies like smart phones, cloud computing, and sensor devices of the fitness industry could be put together into an integrated cyber-physical system (ICPS) to support fitness goals like fighting cardiometabolic conditions including high insulin resistance and low level of cardiorespiratory fitness and help building resilience with improved physiological reserve capacity. We want to demonstrate also how ICPS can be not only used for fitness self-management but can be extended to become a platform of noninvasive monitoring devices and become a medical software to support person-centered, outcome driven treatments for DM2 and complications in primary care.
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Sivagami, Arasu, Michael Angelo Kandavalli, and Bhaskarrao Yakkala. "Design and Evaluation of an Automated Monitoring and Control System for Greenhouse Crop Production." In Next-Generation Greenhouses for Food Security. IntechOpen, 2021. http://dx.doi.org/10.5772/intechopen.97316.

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An embedded system integrated with sensors based on nanomaterial is proposed for closely monitoring and control microclimate parameters 24 hours a day to maximise production over the whole crop growth season by introducing greenhouse for the cultivation of plants or specific plant species. The system will also eliminate errors in human intervention to optimise production of crops. This system consists of sensors and actuators, an Analogue to Digital Converter (ADC) and a Raspberry Pi. The system will determine whether a defined threshold is passed by any climate parameter and systematically changes via the controller. The current work reduces human input through automated irrigation to optimally utilize a scarce resource, namely water. Climatic parameters for plant growth such as, moisture, humidity, temperature, water pressure in drip pipe, soil salinity etc. are monitored and optimized. Furthermore, work was extended to include GSM to control the entire farm remotely. For its success, it is very important to choose a greenhouse location. For instance, the problems are quite different when choosing an adjoining greenhouse, for instance a sunroom or greenhouse. The greenhouse location should be chosen for sunlight, proximity to power and water sources, wind, drain and freeze pockets, and the proximity of the garden and house. The intention behind accomplishment and devise of GSM based Fertigation System is to construct and evaluate the requirement of water in the yield as farming is the major resource of production which habitually depends on the water accessibility. Irrigation of water is usually done by manual method. To ease the work of the farmer GSM based automatic Fertigation (includes chemigation too) system can be implemented so that water wastage can be reduced and also the fertilizer can be added accordingly. Also the Soil Salinity can be checked and reduced if exceeds certain limit. By using GSM, only GSM command via GSM mobile can control the start and stop action of a motor that feeds the field with the water. GSM is used for controlling the entire process and the entire system backbone. It can be used from any distance to control irrigation. The results are assessed by electronic simulator PROTEUS using the desired optimised parameters, the design of this automated greenhouse system with PIC controller. As the inputs to the microcontroller and as an LCD screen record the respective outputs, the model produces a soil moisture sensor, light sensor and temperature sensor. The system performance is accurate and repeatable for measuring and controlling the four parameters that are crucial for plant growth - temperature, humidity, soil moisture and light intensity. With the reduction in electricity consumption, maintenance and complexity, and a flexible and precise environment control form for agriculture, the new system successfully cured quite a couple of defects in existing systems. Nano composite film sensors (Graphene and Graphene mixed in order to optimise the input of fertilisers for chemical composition determination. Using nano technology in agriculture enforces the firm bond between the engineer and farmer. Nano material film-based gas sensors were used to measure the presence of oxygen and CO2.using graphene nano composite sensors integrated into an embedded system, to detect the presence and levels of gases. Improve crop growth with combined red and blue light for lighting under the leavened and solar-powered LED lighting modules. This was achieved by graph/solar cells. The light was measured at the photosynthesis flux (PPFD) of 165 μmol m-2 s-1 by 10 cm of its LED module. LED lights were provided between 4:00 a.m. and 4:00 p.m. in the daytime treatments and night treatments from 10 to 10 hours. The use of the nighttime interlumination of LEDs was also economical than the interlumination of charts. Thus, nightlighting LEDs can effectively improve plant growth and output with less energy than the summer and winter times. Solar panels are best functioning during times of strong sunlight today, but begin to wan when they become too hot and cloudy. By allowing Solar Panels to produce electricity during harsh weather conditions and increase efficiency, a breakthrough in graphene-based solar panels can change everything. Ultimately with a fully autonomous system, agricultural productivity and efficiency, the length of the growing season, energy consumption and water consumption were recorded and monitored by exporting the data over GSM environment. With the steady decrease in the cost of high-performing hardware and software, the increased acceptance of self-employed farming systems, and the emerging agricultural system industry, the results will be reliable control systems covering various aspects of quality and production quantity.
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Conference papers on the topic "Self-sufficient integrated sensor system"

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Park, Simon S., and Yusuf Altintas. "Adaptive Control and Monitoring Using the Spindle Integrated Force Sensor System." In ASME 2004 International Mechanical Engineering Congress and Exposition. ASMEDC, 2004. http://dx.doi.org/10.1115/imece2004-60395.

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Applications of spindle integrated force sensors are examined where the cutting forces are reconstructed from the piezoelectric force sensors that are imbedded in the spindle housing. The reconstruction of the cutting forces using the disturbance Kalman filter effectively provides the high bandwidth sensor requirements. The three applications that are presented in this paper are Adaptive Control with Constraint (ACC), chatter detection, and tool breakage detection, all using the spindle integrated sensors. ACC provides effective means of increasing machining productivity through the adjustment
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Figueroa, Fernando, and Carolyn R. Mercer. "Advancing Sensor Technology for Aerospace Propulsion." In ASME 2002 International Mechanical Engineering Congress and Exposition. ASMEDC, 2002. http://dx.doi.org/10.1115/imece2002-33180.

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NASA’s Stennis Space Center (SSC) and Glenn Research Center (GRC) participate in the development of technologies for propulsion testing and propulsion applications in air and space transportation. Future transportation systems and the test facilities needed to develop and sustain them are becoming increasingly complex. Sensor technology is a fundamental pillar that makes possible development of complex systems that must operate in automatic mode (closed loop systems), or even in assisted-autonomous mode (highly self-sufficient systems such as planetary exploration spacecraft). Hence, a great d
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Eom, Kihwan, Wunggun Lee, Jiwon Shin, Hana Lee, and Keehoon Won. "Novel Integrated System of RFID Tag and Self-Powered Oxygen Sensor Indicator." In Mechanical Engineering 2016. Science & Engineering Research Support soCiety, 2016. http://dx.doi.org/10.14257/astl.2016.129.31.

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Sadineni, Suresh B., Jonathan D. Realmuto, and Robert F. Boehm. "An Integrated Performance Monitoring and Solar Tracking System for Utility Scale PV Plants." In ASME 2011 Power Conference collocated with JSME ICOPE 2011. ASMEDC, 2011. http://dx.doi.org/10.1115/power2011-55243.

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Monitoring of photovoltaic (PV) systems is essential for achieving reliable and, maximum yield from solar PV plants. This paper proposes PV plant hierarchy, and a novel near real-time monitoring system combined with a solar tracking controller for utility scale PV installations. Currently, most PV installations employ monitoring at the inverter level, lacking sufficient resolution. Furthermore, the solar tracking and performance monitoring systems are isolated from one another. The proposed design increases monitoring resolution, allowing PV malfunctions to be addressed immediately, effectivel
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Ji, Gefu, Guoqiang Li, and Su-Seng Pang. "Multifunctional MWCNT Reinforced Self-Healing System." In ASME 2012 Pressure Vessels and Piping Conference. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/pvp2012-78759.

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Multi-Wall Carbon Nano Tube (MWCNT) reinforced composite structure has been widely researched. However, there are a few studies report the MWCNT as a sensor and an actuator integrated in the same composite structure to form a multifunctional composite. The composite used in this study was based on commercially available thermosetting epoxy polymer, dispersed with thermoplastic particles, and MWCNT. Multifunctional MWCNT reinforced epoxy polymer composite was fabricated and tested. The specimens were damaged by the three point bending load. The sensor and actuator system automatically detected
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Wang, Hongyi, Youyou Fan, Tao Luo, and Zhijian Lu. "A self-powered sun tracking system based on a novel lignt direction sensor." In 2014 IEEE 12th International Conference on Solid -State and Integrated Circuit Technology (ICSICT). IEEE, 2014. http://dx.doi.org/10.1109/icsict.2014.7021218.

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Pozo, Borja, Erlantz Fernandez de Gorostiza, Unai Eletxigerra, Jon Mabe, and Alazne Martínez. "Self-powered thin-film impedance spectroscopy sensor system to measure corrosion presence in aerogenerators or aircrafts." In Active and Passive Smart Structures and Integrated Systems IX, edited by Jae-Hung Han, Shima Shahab, and Gang Wang. SPIE, 2020. http://dx.doi.org/10.1117/12.2553472.

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Chitikeshi, Sanjeevi, Ajay Mahajan, Pavan Bandhil, Lucas Utterbach, and Fernanado Figueroa. "Intelligent Sensors: Strategies for an Integrated Systems Approach." In ASME 2005 International Mechanical Engineering Congress and Exposition. ASMEDC, 2005. http://dx.doi.org/10.1115/imece2005-79403.

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This paper proposes the development of intelligent sensors as an integrated systems approach, i.e. one treats the sensors as a complete system with its own sensing hardware (the traditional sensor), A/D converters, processing and storage capabilities, software drivers, self-assessment algorithms, communication protocols and evolutionary methodologies that allow them to get better with time. Under a project being undertaken at the Stennis Space Center, an integrated framework is being developed for the intelligent monitoring of smart elements. These smart elements can be sensors, actuators or o
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Oesch, Christopher, Ajay Mahajan, Lucas Utterback, Haricharan Padmanaban, Sanjeevi Chitikeshi, and Fernando Figueroa. "Intelligent Sensors for Integrated Health Management Systems." In ASME 2006 International Mechanical Engineering Congress and Exposition. ASMEDC, 2006. http://dx.doi.org/10.1115/imece2006-13576.

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This paper describes work being conducted on the development of intelligent sensors with learning capabilities as part of an integrated systems approach. The integrated systems approach treats the sensor as a complete system with its own sensing hardware (the traditional sensor), A/D converter, processing and storage capabilities, software drivers, self-assessment algorithms, communication protocols and evolutionary methodologies that allow the system to learn its own behavior. The immediate application is the monitoring of rocket test stands, but the technology should be generally applicable
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Adhikari, Pashupati R., Nishat T. Tasneem, Dipon K. Biswas, Russell C. Reid, and Ifana Mahbub. "Reverse Electrowetting-on-Dielectric Energy Harvesting Integrated With Charge Amplifier and Rectifier for Self-Powered Motion Sensors." In ASME 2020 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2020. http://dx.doi.org/10.1115/imece2020-24189.

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Abstract This paper presents a reverse electrowetting-on-dielectric (REWOD) energy harvester integrated with rectifier, boost converter, and charge amplifier that is, without bias voltage, capable of powering wearable sensors for monitoring human health in real-time. REWOD has been demonstrated to effectively generate electrical current at a low frequency range (&amp;lt; 3 Hz), which is the frequency range for various human activities such as walking, running, etc. However, the current generated from the REWOD without external bias source is insufficient to power such motion sensors. In this w
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Reports on the topic "Self-sufficient integrated sensor system"

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African Open Science Platform Part 1: Landscape Study. Academy of Science of South Africa (ASSAf), 2019. http://dx.doi.org/10.17159/assaf.2019/0047.

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This report maps the African landscape of Open Science – with a focus on Open Data as a sub-set of Open Science. Data to inform the landscape study were collected through a variety of methods, including surveys, desk research, engagement with a community of practice, networking with stakeholders, participation in conferences, case study presentations, and workshops hosted. Although the majority of African countries (35 of 54) demonstrates commitment to science through its investment in research and development (R&amp;D), academies of science, ministries of science and technology, policies, rec
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