首页> 外文会议>2010 Joint International Conference on Power Electronics, Drives and Energy Systems >Indirect current controlled VSC for reactive power and load control support to self-excited induction generator feeding 3-phase 4-wire isolated power system
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Indirect current controlled VSC for reactive power and load control support to self-excited induction generator feeding 3-phase 4-wire isolated power system

机译:用于无功功率和负载控制的间接电流控制VSC,支持自励感应发电机馈电的三相4线隔离式电源系统

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The increasing demand of electrical power and continuous depreciation of conventional energy resources like oil, gas and coal, have facilitated the researchers to think over distributed electricity generation and consumption from the renewable sources like mini/micro hydro, biogas, wind etc., Three-phase self excited induction generator (SEIG) seems to be a prospective player for generation of low cost, environmental friendly and efficient source of electricity. Advantages of induction generator over alternator is its low cost, easy construction, ruggedness, maintenance free structure, lesser complex control, self protection against faults and good dynamic response. SEIG produce power amidst varying demand of reactive power and poor voltage and frequency regulation under varying speed and load respectively. The paper proposes a VSC based controller for SEIG coupled with uncontrolled prime mover for maintaining the real power at SEIG terminal constant to maintain fixed frequency and reliving the burden of supplying of reactive power to load. The VSC meets the demand of dynamically varying reactive power demanded by load and dissipates excess power at bleeder across its d.c. bus to maintain the real power at SEIG terminals. The regulated voltage and frequency at the terminals of SEIG feeding 3-phase, 4-wire load with neutral current compensation has been demonstrated through simulation results. The proposed scheme suits well for low capacity isolated power system fed through hydel power distributed generation with an uncontrolled turbine driving the SEIG, The proposed scheme is simple and easy to realize through digital processors and cost effective. Performance of the system is simulated in Matlab/Simulink.
机译:越来越多的电力和常规能源折旧等传统能源,如石油,天然气和煤炭,促进了研究人员,以迷你/微水电,沼气,风等等可再生能源的分布式发电和消费思考。阶段自我激动的感应发电机(SEIG)似乎是一代潜在的球员,用于产生低成本,环保和有效的电源。诱导发电机在交流发电机的优点是其成本低,易于施工,坚固性,免维护结构,较小的复杂控制,防止故障和良好的动态响应。 SEIG分别在不同速度和负荷下变化的反应功率和频率调节的不同需求中产生功率。本文提出了一种基于VSC的SEIG控制器,其与不受控制的主要动器相耦合,用于在SEIG端子恒定处保持真实功率,以保持固定频率并重新提供负载的无功功率的负担。 VSC满足动态改变负载要求的无功功率的需求,并在其D.C中渗透到渗流器上的多余功率。公共汽车维持Seig终端的真正力量。通过仿真结果证明了SEIG馈电3相3阶段的端子的调节电压和频率,具有中性电流补偿。所提出的方案适用于通过HUDEL分布发电的低容量隔离电力系统,其具有驱动SEIG的不受控制的涡轮机,通过数字处理器简单且易于实现,并且成本效益简单易于实现。 MATLAB / SIMULINK中模拟系统的性能。

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