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微网用分布式电源变流器下垂特性控制策略 被引量:44
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作者 黄杏 金新民 《电工技术学报》 EI CSCD 北大核心 2012年第8期93-100,共8页
分析了微网用分布式电源变流器的工作原理和基于基波电压的等效模型,提出了一种新的微网用分布式电源变流器控制策略。其中基于电压源输出特性的内环电压矢量控制策略,实现了变流器从并网状态到离网状态的无缝切换;基于下垂特性的外环... 分析了微网用分布式电源变流器的工作原理和基于基波电压的等效模型,提出了一种新的微网用分布式电源变流器控制策略。其中基于电压源输出特性的内环电压矢量控制策略,实现了变流器从并网状态到离网状态的无缝切换;基于下垂特性的外环功率控制策略,保证了微网内多台分布式电源变流器的无互联信号线并联应用;基于平移下垂特性曲线的电网二次同步控制策略,实现了变流器离网状态到并网状态的无缝切换。本文对所提出的这一控制策略进行了详细的理论分析,并利用多台容量为25kVA的微网用分布式电源变流器组成的微网系统实验电路,通过实验结果验证了这一控制策略的可行性。 展开更多
关键词 用分布式电源 下垂特性 无缝切换 微网控制系统
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Research on the Hybrid Energy Storage based Photovoltaic Piconets and the Isolated Net Running Comprehensive Control System in the Campus Environment
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作者 Xuejin Chen Dongyang Hu Huijing Cao Zhen Sha Sichen Xiong 《International Journal of Technology Management》 2015年第9期74-76,共3页
In this paper, we conduct research on the hybrid energy storage based photovoltaic piconets and the isolated net running comprehensive control system in the campus environment. Piconets flexible operation mode and the... In this paper, we conduct research on the hybrid energy storage based photovoltaic piconets and the isolated net running comprehensive control system in the campus environment. Piconets flexible operation mode and the efficient power supply without perfect stable control. Micro the early stage of network development related to micro network operation concepts are modeled on the control of large power system. Our proposed approach is proven to be effective and feasible through the numerical simulation and theoretical analysis which will be meaningful. 展开更多
关键词 Hybrid Energy Storage Photovoltaic Piconets Isolated Net Control System.
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Networking Intelligent Pressure Sensor Using Digital Lock-in Amplification Technology
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作者 陶安利 郑娟娟 +1 位作者 王力涵 历运周 《Journal of Measurement Science and Instrumentation》 CAS 2011年第1期38-41,共4页
Introducing a System-on-Chip (SoC) microcontroller (C8051F350) into a ceramic pressure sensor has resulted in the design of a intelligent sensor. An improved algorithm for digital phassensitive detection is used ... Introducing a System-on-Chip (SoC) microcontroller (C8051F350) into a ceramic pressure sensor has resulted in the design of a intelligent sensor. An improved algorithm for digital phassensitive detection is used to perform lock-in amplification of the sensor signal. The compensation for the sensor error is realized by the detection of the sensor's supply voltage and working temperature. The system also has the function of short/open circuit fault detection and can ommamicate with other digital equipment through an RS-485 communication interface. In the design, full utilization of the SoC microcontroller' s internal resource results in the simple hardware structure. Experimental results show that the error of the sensor is less than 0.5% at range ratio 1 : 10. Employing the microcontroller and using lock-in amplification algorithm are an effective method for achieving an intelligent sensor of slowly-varying physical quantities, thereby improving the measuring accuracy and performance. 展开更多
关键词 sensor networks pressure sensor intelligent design lock-in amplifier
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