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智能型配电网无功补偿系统 被引量:15
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作者 王建强 《电网技术》 EI CSCD 北大核心 2003年第7期80-81,共2页
介绍了一种新型智能型无功补偿系统,该系统由5万次操作寿命免维护真空型电容器开关、智能型控制器、电能传感系统及相应保护元件构成,可自定义不同的时间区域,在各自的时间区域内按电压、无功、电流、定时等独立或混合设置方式投切真空... 介绍了一种新型智能型无功补偿系统,该系统由5万次操作寿命免维护真空型电容器开关、智能型控制器、电能传感系统及相应保护元件构成,可自定义不同的时间区域,在各自的时间区域内按电压、无功、电流、定时等独立或混合设置方式投切真空开关,可按系统的需求自动投入或退出补偿电容器组。文中还给出了运行实例。 展开更多
关键词 配电系统 电力系统 电能传感系统 智能型配电网无功补偿系统
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Self-powered systems by nanogenerators and smart MEMS by piezotronics
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作者 Wang Zhong Lin 《Engineering Sciences》 EI 2012年第5期2-7,共6页
Developing wireless nanodevices and nanosystems is of critical importance for sensing, medical science, environmental/infrastructure monitoring, defense technology and even personal electronics. It is highly desirable... Developing wireless nanodevices and nanosystems is of critical importance for sensing, medical science, environmental/infrastructure monitoring, defense technology and even personal electronics. It is highly desirable for wireless devices to be self-powered without using battery, without which most of the sensor network may be impossible. The pie- zoelectric nanogenerators have the potential to serve as self-sufficient power sources for micro/nano systems. For wurtzite structures that have non-central symmetry, such as ZnO, GaN and InN, a piezoelectric potential (piezopotential) is created in the crystal by applying a strain. The nanogenerator is invented by using the piezopotential as the driving force for electrons to flow in respond to a dynamic straining of piezoelectric nanowires. A gentle straining can produce an output voltage of up to 20 - 50 V from an integrated nanogenerator. Furthermore, piezopotential in the wurtzite structure can serve as gate voltage that can effectively tune/control the charge transport across an interface/junction; electronics fabricated based on such a mechanism is coined as piezotronics, with applications in force/pressure triggercd/controlled electronic devices, sensors, logic units and memory. By using the piezotronic effect, it is showed that the optoelectronic devices fabricated using wurtzite materials can have superior performance as solar cell, photon detector and light emitting diode. Piezotronie is likely to serve as "mechanosensation" for directly interfacing biomechanieal action with silicon based technology and active flexible electronics. The paper gives a brief review about the basis of nanogenertors and piezotronics and their potential applications in smart MEMS (micro-electro-mechanical systems). 展开更多
关键词 slef-powered system NANOGENERATOR piezotronics
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From MEMS to NEMS: Smart Chips with Senses and Muscles
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作者 Ali Jazairy 《Journal of Chemistry and Chemical Engineering》 2013年第10期1001-1005,共5页
The last half-century was transformed by the electronic revolution that essentially reproduced the human brain and its computing capacity on a chip. But over time, scientists have realized that something was missing t... The last half-century was transformed by the electronic revolution that essentially reproduced the human brain and its computing capacity on a chip. But over time, scientists have realized that something was missing to give life, so to speak, to the small chip with a brain: One needed to awaken its senses and develop its muscles! This challenge was solved through MEMS (micro electro mechanical systems). Indeed, MEMS today are equipped with the sense of sight, smell, hearing, taste and touch through microsensors. They are also capable of physical exertion through small muscles called microactuators. These new capabilities open wide fields of imagination and important specific applications. 展开更多
关键词 MEMS MOEMS (micro opto electro mechanical systems) NEMS (nano electro mechanical systems) wavelength-tunable FP (Fabry-P6rot) interferometer DWDM (dense wavelength division multiplexing) telecommunication VECSELS (vertical external cavity surface emitting lasers).
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