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DESIGN OF DC EXCITATION CONTROLLERS FOR GRID-CONNECTED WOUND-ROTOR INDUCTION GENERATORS

机译:并网绕线转子感应发电机直流励磁控制器的设计

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This paper presents analyzed results for the design of a DC excitation controller for a grid-connected wound-rotor induction generator (GCWRIG). The DC excitation controller is performed by using a micro-controller with reduced instruction set chip (RISC) to control the conduction time of a MOSFET switch in a DC-to-DC buck converter. Due to high-speed modulation capability of the proposed RISC micro controller on DC excitation, the characteristics of the studied GCWRIG can be effectively improved than the ones of a conventional grid-connected induction generator (GCIG) with AC excitation capacitors only. Transient characteristics of the studied GCWRIG connected to a practical three-phase low-voltage utility grid are analyzed. The studied GCWRIG system is practically implemented in a laboratory 300 W wound-rotor induction machine driven by a DC motor of 500 W and is practically connected to three-phase, 220 V, 60 Hz distribution system. From the analyzed results using field measurements and computer simulations, it can be concluded that the GCWRIG with the proposed DC excitation controller can provide effective control than the conventional induction generators containing only excitation capacitors under various operation conditions.
机译:本文介绍了并网绕线转子感应发电机(GCWRIG)的直流励磁控制器设计的分析结果。直流激励控制器是通过使用带有缩小指令集芯片(RISC)的微控制器来控制DC-DC降压转换器中MOSFET开关的导通时间来执行的。由于所建议的RISC微控制器对直流励磁具有高速调制能力,因此与仅带有交流励磁电容器的常规并网感应发电机(GCIG)相比,所研究的GCWRIG的特性可以得到有效改善。分析了与实际的三相低压公用电网连接的已研究GCWRIG的瞬态特性。所研究的GCWRIG系统实际上是在由500 W直流电动机驱动的实验室300 W绕线转子感应电机中实施的,并且实际上已连接至三相220 V,60 Hz配电系统。从使用现场测量和计算机仿真得到的分析结果可以得出结论,与所提出的直流励磁控制器相比,具有各种直流励磁控制器的GCWRIG可以在各种工况下比仅包含励磁电容器的常规感应发电机提供更有效的控制。

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