Indirect current control of BTB-VSC with cage-rotor induction generator operating in grid connected and isolated mode

V. Verma, P. Pant, Bhim Singh
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引用次数: 2

Abstract

The paper proposes current control scheme for back-to-back voltage source converter (BTB-VSC) to regulate small capacity turbines run cage-rotor induction generator (CRIG) for small capacity power generation. The CRIG is connected to a local grid and supported by a BTB-VSC which regulates bidirectional power flow through a d.c. link. The CRIG is capable to feed partial load connected at the local grid in grid connected mode. In case of isolation, the connected load on local grid is scheduled to match the power rating of CRIG. Frequency at CRIG terminal is regulated by supplying/drawing real power to/from the local grid, whereas voltage is regulated by dynamically compensating reactive power demanded by the load. The scheme thus enforces the drawl of only the rated real power component of current from the CRIG terminals. The proposed scheme is current controlled and thus have better response, simple, easily implementable and requires lesser hardware. Implementation of the proposed scheme done through simulation in Matlab/Power System Blockset and the effectiveness of the system is gauged through simulation results.
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笼形转子感应发电机并网隔离工况下BTB-VSC的间接电流控制
提出了一种背靠背电压源变换器(BTB-VSC)的电流控制方案,用于调节小容量水轮机运行的笼式转子感应发电机(CRIG)的小容量发电。CRIG连接到本地电网,并由BTB-VSC支持,BTB-VSC通过直流链路调节双向功率流。在并网模式下,CRIG能够馈送局部电网连接的部分负荷。在隔离情况下,本地电网的接入负荷被调度为匹配CRIG的额定功率。CRIG终端的频率通过向本地电网提供/提取实际功率来调节,而电压通过动态补偿负载所需的无功功率来调节。因此,该方案强制从CRIG端子只抽取额定实际功率分量的电流。该方案采用电流控制,响应速度快,结构简单,易于实现,硬件需求少。在Matlab/Power System Blockset中对所提出的方案进行了仿真实现,并通过仿真结果对系统的有效性进行了检验。
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