CMOS Indoor Light Energy Harvesting System for Wireless Sensing Applications
暂无分享,去创建一个
[1] Olga Boric-Lubecke,et al. Electromagnetic generator: As respiratory effort energy harvester , 2011, 2011 IEEE Power and Energy Conference at Illinois.
[2] David Renshaw,et al. Analysis of CMOS Photodiodes. I. Quantum efficiency , 2003 .
[3] D. Belot,et al. Single-chip CMOS pulse generator for UWB systems , 2006, IEEE Journal of Solid-State Circuits.
[4] Thad Starner,et al. Human-Powered Wearable Computing , 1996, IBM Syst. J..
[5] J. Wenck,et al. AC Power Supply Circuits for Energy Harvesting , 2007, 2007 IEEE Symposium on VLSI Circuits.
[6] Erick O. Torres,et al. Electrostatic Energy-Harvesting and Battery-Charging CMOS System Prototype , 2009, IEEE Transactions on Circuits and Systems I: Regular Papers.
[7] S. Mashohor,et al. Evaluation of Genetic Algorithm based solar tracking system for Photovoltaic panels , 2008, 2008 IEEE International Conference on Sustainable Energy Technologies.
[8] Pai H. Chou,et al. Energy-efficient platform designs for real-world wireless sensing applications , 2005, ICCAD-2005. IEEE/ACM International Conference on Computer-Aided Design, 2005..
[9] Rachel Courtland. The end of the shrink , 2013, IEEE Spectrum.
[10] Kumar V Naveen,et al. A reliable ultracapacitor based solar energy harvesting system for Wireless Sensor network enabled intelligent buildings , 2011, 2011 2nd International Conference on Intelligent Agent & Multi-Agent Systems.
[11] Kang-Yoon Lee,et al. A design of transceiver for 13.56 MHz RFID reader using the peak detector with automatic reference voltage generator and voltage limiter , 2010, 2010 International SoC Design Conference.
[12] Nuno Paulino,et al. Start-up circuit for low-power indoor light energy harvesting applications , 2013 .
[13] R. Jacob Baker,et al. CMOS Circuit Design, Layout, and Simulation , 1997 .
[14] Jorge R. Fernandes,et al. A study on MOSFET rectifiers with transistors operating in the weak inversion region , 2012, 2012 19th IEEE International Conference on Electronics, Circuits, and Systems (ICECS 2012).
[15] L. Chaar,et al. Review of photovoltaic technologies , 2011 .
[16] J. Silva-Martinez,et al. Adjustable CMOS voltage limiters for low-voltage applications , 1996, 1996 IEEE International Symposium on Circuits and Systems. Circuits and Systems Connecting the World. ISCAS 96.
[17] Martin Steglich,et al. Core–shell heterojunction solar cells on silicon nanowire arrays , 2012 .
[18] L. Colalongo,et al. A 0.2V–1.2V converter for power harvesting applications , 2008, ESSCIRC 2008 - 34th European Solid-State Circuits Conference.
[19] Enrico Dallago,et al. Integrated stabilized photovoltaic energy harvester , 2009, 2009 16th IEEE International Conference on Electronics, Circuits and Systems - (ICECS 2009).
[20] Bernard H. Stark,et al. Start-up circuit with low minimum operating power for microwatt energy harvesters , 2011, IET Circuits Devices Syst..
[21] Guido Torelli,et al. Voltage Gain Analysis of Integrated Fibonacci-Like Charge Pumps for Low Power Applications , 2007, IEEE Transactions on Circuits and Systems II: Express Briefs.
[22] Cyril Condemine,et al. Efficient Power Management Circuit: From Thermal Energy Harvesting to Above-IC Microbattery Energy Storage , 2008, IEEE J. Solid State Circuits.
[23] M. Serpelloni,et al. Analysis of an electromechanical generator implanted in a human total knee prosthesis , 2012, 2012 IEEE Sensors Applications Symposium Proceedings.
[24] Joseph A. Paradiso,et al. Energy scavenging for mobile and wireless electronics , 2005, IEEE Pervasive Computing.
[25] Rajeevan Amirtharajah,et al. Integrated Solar Energy Harvesting and Storage , 2009, IEEE Transactions on Very Large Scale Integration (VLSI) Systems.
[26] N. Paulino,et al. Survey and analysis of the design issues of a low cost micro power DC-DC step up converter for indoor light energy harvesting applications , 2012, Proceedings of the 19th International Conference Mixed Design of Integrated Circuits and Systems - MIXDES 2012.
[27] Rajeevan Amirtharajah,et al. Energy harvesting photodiodes with integrated 2D diffractive storage capacitance , 2008, Proceeding of the 13th international symposium on Low power electronics and design (ISLPED '08).
[28] R. Berenguer,et al. Low power voltage limiter design for a full passive UHF RFID sensor , 2011, 2011 IEEE 54th International Midwest Symposium on Circuits and Systems (MWSCAS).
[29] Hongwei Gao,et al. Energy Harvesting With Microbial Fuel Cell and Power Management System , 2011, IEEE Transactions on Power Electronics.
[30] S. Saggini,et al. Supercapacitor-based hybrid storage systems for energy harvesting in wireless sensor networks , 2010, 2010 Twenty-Fifth Annual IEEE Applied Power Electronics Conference and Exposition (APEC).
[31] Brendan O'Flynn,et al. Design considerations of sub-mW indoor light energy harvesting for wireless sensor systems , 2010, JETC.
[32] James Lim,et al. MEMS/ECD Method for Making Bi(2-x)Sb(x)Te3 Thermoelectric Devices , 2008 .
[33] Gerard Villar Pique,et al. State-of-the-Art of Integrated Switching Power Converters , 2011 .
[34] E. Dunlop,et al. Potential of solar electricity generation in the European Union member states and candidate countries , 2007 .
[35] Nuno Paulino,et al. A Voltage Limiter Circuit for Indoor Light Energy Harvesting Applications , 2013, DoCEIS.
[36] Zhiyong Ren,et al. Efficient energy harvester for microbial fuel cells using DC/DC converters , 2011, 2011 IEEE Energy Conversion Congress and Exposition.
[37] Ian Oppermann,et al. An ultra wideband low complexity circuit transceiver architecture for sensor networks , 2005, 2005 IEEE International Symposium on Circuits and Systems.
[38] Purushottam Kulkarni,et al. Energy Harvesting Sensor Nodes: Survey and Implications , 2011, IEEE Communications Surveys & Tutorials.
[39] D. C. Hamill,et al. Simple maximum power point tracker for photovoltaic arrays , 2000 .
[40] Yi Zhao,et al. A wireless sensing platform utilizing ambient RF energy , 2013, 2013 IEEE 13th Topical Meeting on Silicon Monolithic Integrated Circuits in RF Systems.
[41] Ke-Horng Chen,et al. Single-Inductor Multi-Output (SIMO) DC-DC Converters With High Light-Load Efficiency and Minimized Cross-Regulation for Portable Devices , 2009, IEEE Journal of Solid-State Circuits.
[42] Jorge R. Fernandes,et al. An energy harvesting circuit for self-powered sensors , 2010, Proceedings of the 17th International Conference Mixed Design of Integrated Circuits and Systems - MIXDES 2010.
[43] Pallab Midya,et al. Dynamic maximum power point tracker for photovoltaic applications , 1996, PESC Record. 27th Annual IEEE Power Electronics Specialists Conference.
[44] E. Dallago,et al. A 0.35μm CMOS Solar energy scavenger with power storage management system , 2009, 2009 Ph.D. Research in Microelectronics and Electronics.
[45] Charles R. Farrar,et al. Energy Harvesting for Structural Health Monitoring Sensor Networks , 2008 .
[46] Hiroyuki Arai,et al. Dual-band RF energy-harvesting circuit for range enhancement in passive tags , 2011, Proceedings of the 5th European Conference on Antennas and Propagation (EUCAP).
[47] Mingliang Michael Liu. Demystifying Switched Capacitor Circuits , 2006 .
[48] John F. Dickson,et al. On-Chip High-Voltage Generation in Integrated Circuits Using an Improved Multiplier Technique , 1976 .
[49] Chi-Ying Tsui,et al. Integrated single-inductor dual-input dual-output boost converter for energy harvesting applications , 2008, 2008 IEEE International Symposium on Circuits and Systems.
[50] J.M. Conrad,et al. A survey of energy harvesting sources for embedded systems , 2008, IEEE SoutheastCon 2008.
[51] Karin Ackermann,et al. Third Generation Photovoltaics Advanced Solar Energy Conversion , 2016 .
[52] A.P. Chandrakasan,et al. Voltage Scalable Switched Capacitor DC-DC Converter for Ultra-Low-Power On-Chip Applications , 2007, 2007 IEEE Power Electronics Specialists Conference.
[53] P. Woias,et al. Thermal energy harvesting using an electrostatic generator , 2013, 2013 IEEE 26th International Conference on Micro Electro Mechanical Systems (MEMS).
[54] François Krummenacher,et al. A reconfigurable micro power solar energy harvester for ultra-low power autonomous microsystems , 2013, 2013 IEEE International Symposium on Circuits and Systems (ISCAS2013).
[55] Robert W. Erickson,et al. DC–DC Power Converters , 2007 .
[56] Hiroyuki Arai,et al. DTV band micropower RF energy-harvesting circuit architecture and performance analysis , 2011, 2011 IEEE International Conference on RFID-Technologies and Applications.
[57] Guangyong Zhu,et al. Switched-capacitor power supplies: DC voltage ratio, efficiency, ripple, regulation , 1996, 1996 IEEE International Symposium on Circuits and Systems. Circuits and Systems Connecting the World. ISCAS 96.
[58] Nuno Paulino,et al. A MOSFET only, step-up DC-DC micro power converter, for solar energy harvesting applications , 2010, Proceedings of the 17th International Conference Mixed Design of Integrated Circuits and Systems - MIXDES 2010.
[59] Michiel Steyaert,et al. Area-driven optimisation of switched-capacitor DC/DC converters , 2008 .
[60] C. N. Carvalho,et al. InOx semiconductor films deposited on glass substrates for transparent electronics , 2006 .
[61] Sanjay Kumar,et al. Research Study of Energy Harvesting in Wireless Sensor Networks , 2013 .
[62] R. Müller,et al. A new solar radiation database for estimating PV performance in Europe and Africa , 2012 .
[63] Hui Shao,et al. The Design of a Micro Power Management System for Applications Using Photovoltaic Cells With the Maximum Output Power Control , 2009, IEEE Transactions on Very Large Scale Integration (VLSI) Systems.
[64] D. C. Hamill,et al. Synthesis, simulation and experimental verification of a maximum power point tracker from nonlinear dynamics , 2001, 2001 IEEE 32nd Annual Power Electronics Specialists Conference (IEEE Cat. No.01CH37230).
[65] Michael Hayes,et al. Autonomous wireless sensor network based Building Energy and Environment Monitoring system design , 2010, 2010 The 2nd Conference on Environmental Science and Information Application Technology.
[66] Gordon E. Moore. Cramming more components onto integrated circuits With unit cost falling as the number of components per circuit rises , by 1975 economics may dictate squeezing as many as 65 , 000 components on a single silicon chip , .
[67] Fan Zhang,et al. Power losses and efficiency analysis of multilevel dc-dc converters , 2005, Twentieth Annual IEEE Applied Power Electronics Conference and Exposition, 2005. APEC 2005..
[68] H. Nagayoshi,et al. Evaluation of multi MPPT thermoelectric generator system , 2007, 2007 26th International Conference on Thermoelectrics.
[69] Sheldon S. Williamson,et al. Photosynthetic electrochemical cell charging infrastructure versus photovoltaic cell charging infrastructure for future electric vehicles , 2011, 2011 IEEE Vehicle Power and Propulsion Conference.
[70] E. Dallago,et al. A Self-Powered Electronic Interface for Electromagnetic Energy Harvester , 2011, IEEE Transactions on Power Electronics.
[71] Luca Benini,et al. Design of a Solar-Harvesting Circuit for Batteryless Embedded Systems , 2009, IEEE Transactions on Circuits and Systems I: Regular Papers.
[72] Prashant J. Shenoy,et al. Cloudy Computing: Leveraging Weather Forecasts in Energy Harvesting Sensor Systems , 2010, 2010 7th Annual IEEE Communications Society Conference on Sensor, Mesh and Ad Hoc Communications and Networks (SECON).
[73] Franziska Hoffmann,et al. Design Of Analog Cmos Integrated Circuits , 2016 .
[74] Yumei Wen,et al. An ultra-low input voltage power management circuit for indoor micro-light energy harvesting system , 2010, 2010 IEEE Sensors.
[75] Leon O. Chua,et al. Topological generation and analysis of voltage multiplier circuits , 1977 .
[76] Yuan Ren,et al. Adaptive maximum power point tracking control of fuel cell power plants , 2008 .
[77] Liang Xu,et al. The Research on Solar Power System of Wireless Sensor Network Node for Forest Monitoring , 2010, 2010 International Conference on Web Information Systems and Mining.
[78] Alex S. Weddell,et al. Photovoltaic Sample-and-Hold Circuit Enabling MPPT Indoors for Low-Power Systems , 2012, IEEE Transactions on Circuits and Systems I: Regular Papers.
[79] Xiong Yu,et al. Innovative Microbial Fuel cell for energy harvesting , 2012, 2012 IEEE Energytech.
[80] Deokjung Kim,et al. A new peak power tracker for cost-effective photovoltaic power system , 1996, IECEC 96. Proceedings of the 31st Intersociety Energy Conversion Engineering Conference.
[81] Toshihisa Shimizu,et al. Generation control circuit for photovoltaic modules , 2001 .
[82] P.L. Chapman,et al. Comparison of Photovoltaic Array Maximum Power Point Tracking Techniques , 2007, IEEE Transactions on Energy Conversion.
[83] A. A. Elvin,et al. Vibrational Energy Harvesting From Human Gait , 2013, IEEE/ASME Transactions on Mechatronics.
[84] Nuno Paulino,et al. A DC-DC Step-Up μ-Power Converter for Energy Harvesting Applications, Using Maximum Power Point Tracking, Based on Fractional Open Circuit Voltage , 2011, DoCEIS.
[85] David E. Culler,et al. Perpetual environmentally powered sensor networks , 2005, IPSN 2005. Fourth International Symposium on Information Processing in Sensor Networks, 2005..
[86] Regan Zane,et al. Power Management System for Online Low Power RF Energy Harvesting Optimization , 2010, IEEE Transactions on Circuits and Systems I: Regular Papers.
[87] Michael D. Seeman,et al. A comparative analysis of Switched-Capacitor and inductor-based DC-DC conversion technologies , 2010, 2010 IEEE 12th Workshop on Control and Modeling for Power Electronics (COMPEL).
[88] Luca Benini,et al. Designing and managing sub-milliwatt energy harvesting nodes: Opportunities and challenges , 2009, 2009 1st International Conference on Wireless Communication, Vehicular Technology, Information Theory and Aerospace & Electronic Systems Technology.
[89] T. W. Kang,et al. Receptive properties of the human body of emitted electromagnetic waves for energy harvesting , 2012, Proceedings of the 2012 IEEE International Symposium on Antennas and Propagation.
[90] M. Trapanese. Optimization of a Sea Wave Energy Harvesting Electromagnetic Device , 2008, IEEE Transactions on Magnetics.
[91] B. O'Flynn,et al. Energy harvesting embedded wireless sensor system for building environment applications , 2009, 2009 1st International Conference on Wireless Communication, Vehicular Technology, Information Theory and Aerospace & Electronic Systems Technology.
[92] S.R. Sanders,et al. Analysis and Optimization of Switched-Capacitor DC–DC Converters , 2008, IEEE Transactions on Power Electronics.
[93] M. Veerachary,et al. A Single-Stage Power Conversion System for the PV MPPT Application , 2006, 2006 IEEE International Conference on Industrial Technology.
[94] Richard Hornsey,et al. Correction to "Analysis of CMOS photodiodes-part II: lateral photoresponse" , 2003 .
[95] J. Tsai,et al. Piezoelectric rubber films for human physiological monitoring and energy harvesting , 2013, 2013 IEEE 26th International Conference on Micro Electro Mechanical Systems (MEMS).
[96] Khai D. T. Ngo,et al. Steady-state analysis and design of a switched-capacitor DC-DC converter , 1994 .
[97] T. Otterpohl,et al. Power management for thermal energy harvesting in aircrafts , 2008, 2008 IEEE Sensors.
[98] S. Kalogirou. Solar Energy Engineering: Processes and Systems , 2009 .
[99] Nuno Paulino,et al. A step-up μ-power converter for solar energy harvesting applications, using Hill Climbing maximum power point tracking , 2011, 2011 IEEE International Symposium of Circuits and Systems (ISCAS).
[100] Jaein Jeong,et al. Design and analysis of micro-solar power systems for Wireless Sensor Networks , 2008, 2008 5th International Conference on Networked Sensing Systems.
[101] Mani B. Srivastava,et al. Power management in energy harvesting sensor networks , 2007, TECS.
[102] Paul D. Mitcheson,et al. Energy harvesting for human wearable and implantable bio-sensors , 2010, 2010 Annual International Conference of the IEEE Engineering in Medicine and Biology.
[103] David Blaauw,et al. Millimeter-scale nearly perpetual sensor system with stacked battery and solar cells , 2010, 2010 IEEE International Solid-State Circuits Conference - (ISSCC).
[104] A.P. Chandrakasan,et al. Minimum Energy Tracking Loop With Embedded DC–DC Converter Enabling Ultra-Low-Voltage Operation Down to 250 mV in 65 nm CMOS , 2008, IEEE Journal of Solid-State Circuits.
[105] Denis C. Daly,et al. Ultra-low-power UWB for sensor network applications , 2008, 2008 IEEE International Symposium on Circuits and Systems.
[106] Janusz A. Starzyk,et al. A DC-DC charge pump design based on voltage doublers , 2001 .
[107] Petr Musílek,et al. Power management with energy harvesting devices , 2010, CCECE 2010.
[108] M. S. Makowski,et al. Performance limits of switched-capacitor DC-DC converters , 1995, Proceedings of PESC '95 - Power Electronics Specialist Conference.
[109] John Douglas Cockcroft,et al. Experiments with High Velocity Positive Ions. (I) Further Developments in the Method of Obtaining High Velocity Positive Ions , 1932 .
[110] Vijay Raghunathan,et al. Design and Power Management of Energy Harvesting Embedded Systems , 2006, ISLPED'06 Proceedings of the 2006 International Symposium on Low Power Electronics and Design.
[111] J. F. Randall,et al. Is AM1.5 applicable in practice? Modelling eight photovoltaic materials with respect to light intensity and two spectra , 2003 .
[112] Skandar Basrour,et al. Photovoltaic energy harvester for micro-scale applications , 2010, Proceedings of the 8th IEEE International NEWCAS Conference 2010.
[113] Pai H. Chou,et al. Everlast: Long-life, Supercapacitor-operated Wireless Sensor Node , 2006, ISLPED'06 Proceedings of the 2006 International Symposium on Low Power Electronics and Design.
[114] R. Bonert,et al. Characterization of double-layer capacitors (DLCs) for power electronics applications , 1998, Conference Record of 1998 IEEE Industry Applications Conference. Thirty-Third IAS Annual Meeting (Cat. No.98CH36242).
[115] L Benini,et al. A high-efficiency wind-flow energy harvester using micro turbine , 2010, SPEEDAM 2010.
[116] Chris Van Hoof,et al. 5μW-to-10mW input power range inductive boost converter for indoor photovoltaic energy harvesting with integrated maximum power point tracking algorithm , 2010, 2011 IEEE International Solid-State Circuits Conference.
[117] Johannes J. H. Paulides,et al. Power From the People , 2011, IEEE Industry Applications Magazine.
[118] Rajeevan Amirtharajah,et al. Ultra-low-voltage circuits for sensor applications powered by free-space optics , 2010, 2010 IEEE International Solid-State Circuits Conference - (ISSCC).
[119] Carlos Manuel Ferreira Carvalho,et al. On the Feasibility of Indoor Light Energy Harvesting for Wireless Sensor Networks , 2014 .
[120] Junqiao Wu,et al. Third generation photovoltaics , 2009 .
[121] Jan M. Rabaey,et al. Energy Scavenging for Wireless Sensor Networks: with Special Focus on Vibrations , 2012 .
[122] Xiaoming Li,et al. Wireless energy autonomous sensor networks for automobile safety systems , 2012, International Multi-Conference on Systems, Sygnals & Devices.
[123] Q. Shen,et al. CdSe quantum dot-sensitized solar cell employing TiO2 nanotube working-electrode and Cu2S counter-electrode , 2010 .
[124] A. Goetzberger,et al. Crystalline Silicon Solar Cells , 1998 .
[125] R. Faranda,et al. MPPT techniques for PV Systems: Energetic and cost comparison , 2008, 2008 IEEE Power and Energy Society General Meeting - Conversion and Delivery of Electrical Energy in the 21st Century.
[126] L. Benini,et al. A solar energy harvesting circuit for low power applications , 2008, 2008 IEEE International Conference on Sustainable Energy Technologies.
[127] J. Rabaey,et al. Energy Harvesting - A Systems Perspective , 2007, 2007 IEEE International Electron Devices Meeting.
[128] Nuno Paulino,et al. A CMOS micro power switched-capacitor DC–DC step-up converter for indoor light energy harvesting applications , 2014 .
[129] J.R. Vadus. Some basic needs and concepts for 2020 , 2004, Oceans '04 MTS/IEEE Techno-Ocean '04 (IEEE Cat. No.04CH37600).
[130] T. Skotnicki,et al. Innovative thermal energy harvesting for zero power electronics , 2012, 2012 IEEE Silicon Nanoelectronics Workshop (SNW).
[131] Kyung-Hwan Park,et al. Energy harvesting from ambient electromagnetic wave using human body as antenna , 2013 .
[132] S. K. Panda,et al. Thermal energy harvesting from human warmth for wireless body area network in medical healthcare system , 2009, 2009 International Conference on Power Electronics and Drive Systems (PEDS).
[133] Alireza Khaligh,et al. Unconventional wearable energy harvesting from human horizontal foot motion , 2011, 2011 Twenty-Sixth Annual IEEE Applied Power Electronics Conference and Exposition (APEC).
[134] Guillermo J. Serrano,et al. A 300mV Low-voltage start-up circuit for energy harvesting systems , 2011, 2011 IEEE International Symposium of Circuits and Systems (ISCAS).
[135] Adel Nasiri,et al. Indoor power harvesting using photovoltaic cells for low power applications , 2009, 2009 13th European Conference on Power Electronics and Applications.
[136] Anantha Chandrakasan,et al. Vibration-to-electric energy conversion , 1999, Proceedings. 1999 International Symposium on Low Power Electronics and Design (Cat. No.99TH8477).
[137] Dong Sam Ha,et al. Low-Power Design of a Self-powered Piezoelectric Energy Harvesting System With Maximum Power Point Tracking , 2012, IEEE Transactions on Power Electronics.
[138] Andrew G. Barto,et al. Adaptive Control of Duty Cycling in Energy-Harvesting Wireless Sensor Networks , 2007, 2007 4th Annual IEEE Communications Society Conference on Sensor, Mesh and Ad Hoc Communications and Networks.
[139] William Holderbaum,et al. A contribution to the wireless transmission of power , 2013 .
[140] Michiel Steyaert,et al. A 82% efficiency 0.5% ripple 16-phase fully integrated capacitive voltage doubler , 2009, 2009 Symposium on VLSI Circuits.
[141] Sanjib Kumar Panda,et al. Energy Harvesting From Hybrid Indoor Ambient Light and Thermal Energy Sources for Enhanced Performance of Wireless Sensor Nodes , 2011, IEEE Transactions on Industrial Electronics.
[142] David Blaauw,et al. A Modular 1 mm$^{3}$ Die-Stacked Sensing Platform With Low Power I$^{2}$C Inter-Die Communication and Multi-Modal Energy Harvesting , 2013, IEEE Journal of Solid-State Circuits.
[143] A. Kansal,et al. An environmental energy harvesting framework for sensor networks , 2003, Proceedings of the 2003 International Symposium on Low Power Electronics and Design, 2003. ISLPED '03..
[144] G. Temes,et al. Analog MOS Integrated Circuits for Signal Processing , 1986 .
[145] Santiago Zazo,et al. Cattle-Powered Node Experience in a Heterogeneous Network for Localization of Herds , 2013, IEEE Transactions on Industrial Electronics.
[146] J.A.C. Theeuwes,et al. Ambient RF Energy Scavenging: GSM and WLAN Power Density Measurements , 2008, 2008 38th European Microwave Conference.