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Analysis and experimental validation for power calculation based on p-q theory in single-phase wireless-parallel inverters

机译:基于P-Q理论在单相无线并行逆变器中的功率计算分析与实验验证

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Droop control method is the fundamental theory in wireless parallel operation. In droop method, the output active power and reactive power need to be calculated accurately for adjusting angular frequency and amplitude of inverter output voltage. So the accuracy and speed of power calculation is very important for the performance of parallel operation. Traditional calculation methods in single-phase inverter have a slow and oscillating transient response and could be easily impacted by disturbance and variation of load such as nonlinear and light load. In this paper, an optimized power calculation based on p-q theory is proposed and analyzed to solve the problem and improve dynamic performance. Finally, experimental results are presented from three single-phase 1kw inverters, validating the performance of the proposed method.
机译:下垂控制方法是无线并行操作中的基本理论。在下垂方法中,需要准确地计算输出有源功率和无功功率,以调节逆变器输出电压的角频率和幅度。因此功率计算的准确性和速度对于并行操作的性能非常重要。单相逆变器中的传统计算方法具有缓慢且振荡的瞬态响应,并且可以通过诸如非线性和光负荷的负载的干扰和变化容易地影响。本文提出并分析了基于P-Q理论的优化功率计算,解决了解决问题,提高动态性能。最后,实验结果由三个单相1kW逆变器提出,验证了所提出的方法的性能。

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