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首页> 外文期刊>Renewable Power Generation, IET >Voltage and frequency regulation of standalone self-excited induction generator for micro-hydro power generation using discrete-time adaptive control
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Voltage and frequency regulation of standalone self-excited induction generator for micro-hydro power generation using discrete-time adaptive control

机译:离散时间自适应控制用于微水力发电的独立自励感应发电机的电压和频率调节

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摘要

This study deals with the development of a control system for voltage and frequency regulation of a micro hydro power generation system, fed by self-excited induction generator (IG). The generation system considers a four-wire three-phase grid, composed by three phases plus neutral conductor, fed by three-phase three-wires IG. The neutral conductor is created from the neutral point of star connection of excitation capacitors bank. The four-wire configuration allows the connection of three-phase loads in star or delta configuration, as well as single-phase loads. The voltage regulation is performed through a four-legs distribution static synchronous compensator (DSTATCOM) shunt connected to the AC bus. It is considered the employment of adaptive control techniques and the compensation of load current unbalances, which offers suitable voltage regulation in conditions of system's parameters variations such as load connection and disconnection, and changes in IG's unmodelled parameters, and voltage unbalance compensation, respectively. Frequency regulation is obtained by electronic load control connected to the DC bus of DSTATCOM. Experimental results were obtained to demonstrate the good performance of the voltage and frequency regulation control system during loads transient, including three-phase and single-phase loads.
机译:这项研究涉及由自激感应发电机(IG)供电的微型水力发电系统的电压和频率调节控制系统的开发。发电系统考虑由三相加中性导体组成的四线三相电网,并由三相三线IG供电。中性导体是从励磁电容器组星形连接的中性点产生的。四线配置允许星形或三角形配置的三相负载以及单相负载的连接。电压调节通过连接到AC总线的四脚分布静态同步补偿器(DSTATCOM)分流器执行。可以考虑采用自适应控制技术和补偿负载电流不平衡,从而在系统参数变化(例如负载连接和断开)以及IG未建模参数的变化和电压不平衡补偿的情况下分别提供合适的电压调节。通过连接到DSTATCOM直流母线的电子负载控制来获得频率调节。获得的实验结果证明了电压和频率调节控制系统在包括三相和单相负载在内的瞬态负载期间的良好性能。

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