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An accurate power flow control strategy based on voltage-based power flow control in Microgrid

机译:基于微电网中基于电压的潮流控制的精确潮流控制策略

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In microgrid, distributed generation (DG) unit should control the output active and reactive power to main grid accurately in the grid-connected mode. The traditional voltage-based power flow control method has the limitation in power control that the steady-state error of output power may exist which usually caused by the frequency and amplitude fluctuation in grid voltage. In many references, the steady-state error of output reactive power has been eliminated by amplitude compensation, while the steady-state error of output active power has been seldom analyzed. This paper analyzed the steady-state error of active power and proposed an accurate power flow control strategy based on output voltage frequency reference compensation in order to eliminate the steady-state error of output active power. Simulation and experiment results are both presented, which validate the performance of proposed method.
机译:在微电网中,分布式发电(DG)单元应在并网模式下精确控制向主电网的输出有功功率和无功功率。传统的基于电压的功率流控制方法在功率控制中存在局限性,即可能存在输出功率的稳态误差,这通常是由电网电压的频率和幅度波动引起的。在许多参考文献中,通过幅度补偿消除了输出无功功率的稳态误差,而很少分析输出有功功率的稳态误差。本文分析了有功功率的稳态误差,提出了一种基于输出电压频率参考补偿的精确潮流控制策略,以消除输出有功功率的稳态误差。仿真结果和实验结果均得到验证,验证了所提方法的有效性。

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