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基于自供电无线传感网络的天线健康监测系统标准设计图文.doc

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1、南 京 航 空 航 天 大 学 攻读硕士学位硕士课 题 论 证 报 告姓 名学 号专 业研究方向指导老师 12月 10日1 2 3 4 5 6 7 8 9 参 考 文 献 (应 有 20 篇 以 上 1 贺学锋,李江,赵兴强,温志渝,王晓兰.带质量块微型压电式风能采集器研究J.传感技术 学报 ,24(7) :986-989. 2 Yen Kheng Tan. Self-Autonomous Wireless Sensor Nodes With Wind Energy Harvesting for Remote Sensing of Wind-Driven Wildre Spread J.IEE

2、E TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT,60(4:1367-1377. 3 Yen Kheng Tan. Optimized Wind Energy Harvesting System Using Resistance Emulator and Active Rectier for Wireless Sensor Nodes J. IEEE TRANSACTIONS ON POWER ELECTRONICS,26(1,38-50. 4 Emilio Sardini. Self-Powered Wireless Sensor for A

3、ir Temperature and Velocity Measurements With Energy Harvesting Capability J. IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT,60(5:1838-1844. 5 M. A. Weimer, T. S. Paing, and R. A. Zane.Remote area wind energy harvesting for low-power autonomous sensorsJ.in Proc. Power Electron.Spec. Conf, , 1-

4、5. 6 P. D. Mitcheson, E. M. Yeatman, G. K. Rao, A. S. Holmes, and T. C. Green. Energy harvesting from human and machine motion for wireless electronic devicesJ. Proc. IEEE, ,96 (9,14571486. 7 H. J. Jung, S. W. Lee, and D. D. Jang. Feasibility study on a new energy harvesting electromagnetic device u

5、sing aerodynamic instabilityJ.IEEE Trans. Magn,vol. ,45(10 , 43764379. 8 C. Vlad, I. Munteanu, A. I. Bratcu, and E. Ceanga.Output power maximization of low-power wind energy conversion systems revisited: Possible control solutionsJ.Energy Convers. Manage, ,51(2, 305310. 9 E. Sardini and M. Serpellon

6、i.Passive and self-powered autonomous sensors for remote measurementsJ. ,9(2, 118. 10 D. Marioli, A. Flammini, E. Sardini, and M. Serpelloni.An autonomous sensor with energy harvesting capability for airow speedmeasurementsJ. ,892897. 11 Paul D. Mitcheson,Tim C. Green,Eric M. Yeatman. Architecture f

7、or vibration-driven micropower generators. Journal of microelectromechanical systems, : 429-440. 12P. G. Jones,Tudor,M. J. Beeby. An electromagnetic vibration-powered generator for intelligent sensor systems. Sensors and Actuators A: Physical, : 344-349. 13Ching, Neil N.H.,Wong, H.Y. A laser-microma

8、chined multi-modal resonating power transducer for wireless sensing systems. Sensors and Actuators A, : 685-690. 14 Zhu, A Reid, S. Finney and M. Judd. Energy Scavenging Technique for Powering Wireless M. 10 Sensors. Proc. International Conference on Condition Monitoring and Diagnosis, : 881-884. 15

9、G. M. Rebeiz, J. B. Muldavin. RF MEMS Switches and Switch Circuits. IEEE MicroWave Magazine,: 59-71. 16M. Zhu, M. D. Judd and P. J. Moore. Energy Harvesting in Substations for Powering Autonomous Sensors. Sensor Technologies and Applications, : 246 - 251. 17Dwari, S,Dayal, R. Efficient Direct AC-to-

10、DC Converters for Vibration-Based Low Voltage Energy Harvesting. IECON, Industrial Electronics, 34th Annual Conference of IEEE, : 2320 - 2325. 18Suman Dwari, Leila Parsa. An Efficient ACDC Step-Up Converter for Low-Voltage Energy Harvesting. Power Electronics, IEEE Transactions on,: 2188-2199. 19Sta

11、rzyk, J.A.,Ying-Wei Jan,Fengjing Qiu.A DC-DC charge pump design based on voltage doublers. IEEE Transactions on, Fundamental Theory and Applications, : 350-359. 20Dobbs, B.G.,Chapman, P.L.A Multiple-Input DCDC Converter Topology. IEEE, Power Electronics Letters, :6-9. 21Khaligh, A.,Li, Z. Battery, U

12、ltracapacitor, Fuel Cell, and Hybrid Energy Storage Systems for Electric, Hybrid Electric, Fuel Cell, and Plug-In Hybrid Electric Vehicles: State of the Art. Vehicular Technology, IEEE Transactions on,:2806-2814. 22 Khaligh, A , Peng Zeng , Xiaochun Wu. A Hybrid Energy Scavenging Topology for Human-Powered Mobile Electronics. Industrial Electronics, 34th Annual Conference of IEEE, : 448-453. 11 开 题 报 告 专 家 组 考 核 意 见 (包含教授组提出意见和提议,总体考评结论:经过、修改后经过或不经过 教授意见: 总体考评结论:经过。 教授组组员(签字 年 月 日 导 师 意 见 导师(签字) : 年 月 日 系 意 见 责任人(签字) : 年 月 日 学 院 意 见 责任人(签字) : 年 月 日 备 注 12

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