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Control Strategy to Eliminate Impact of Voltage Measurement Errors on Grid Current Performance of Three-Phase Grid-Connected Inverters

机译:消除电压测量误差对三相并网逆变器电网电流性能影响的控制策略

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摘要

This study proposes an advanced current control strategy for three-phase grid-connected inverters to reject the impact of the dc offsets and scaling errors in the grid voltage measurement on the grid current performance. The proposed current controller designed in the synchronous (d-q) reference frame is developed with a proportional integral (PI) plus three vector PI controllers. The PI controller regulates the fundamental current to follow its reference, meanwhile, three vector PI controllers tuned at the fundamental grid frequency ( ), , are employed to eliminate the dc, unbalance, harmonic components in the grid current. As a result, the three-phase grid currents are controlled to be balanced, sinusoidal, and extremely low dc component despite the presence of the dc offset and scaling errors in the grid voltage measurement and distorted grid voltage conditions. The main advantage of the proposed control scheme is that it is developed without the need of additional hardware circuit, dc extraction, and harmonic detection scheme so that it can be integrated into the existing grid-connected inverter system without extra cost. The effectiveness of the suggested solution is verified by experimental results under various grid voltage conditions and the grid voltage measurement errors.
机译:这项研究为三相并网逆变器提出了一种先进的电流控制策略,以消除直流偏置和电网电压测量中的定标误差对电网电流性能的影响。在同步(d-q)参考系中设计的拟议电流控制器由比例积分(PI)加三个矢量PI控制器开发而成。 PI控制器调节基本电流以遵循其参考值,同时,采用了三个以基本电网频率()调谐的矢量PI控制器,以消除电网电流中的直流,不平衡,谐波分量。结果,尽管在电网电压测量和失真的电网电压条件下存在直流失调和定标误差,但三相电网电流仍被控制为平衡,正弦和极低的直流分量。所提出的控制方案的主要优点是无需额外的硬件电路,直流提取和谐波检测方案即可进行开发,因此可以将其集成到现有的并网逆变器系统中,而无需花费额外的成本。通过在各种电网电压条件下的实验结果以及电网电压测量误差验证了所建议解决方案的有效性。

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