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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Local Secondary Control for Inverter-Based Islanded Microgrids With Accurate Active Power Sharing Under High-Load Conditions
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Local Secondary Control for Inverter-Based Islanded Microgrids With Accurate Active Power Sharing Under High-Load Conditions

机译:高负载条件下基于逆变器的孤岛微电网的本地辅助控制,具有精确的有功功率共享

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摘要

Local secondary control has been successfully used to regulate the frequency of inverter-based islanded microgrids without using communications. In this scenario, noticeable steady-state deviations have been observed in active power sharing caused by the inherent clock drift of the digital processors that implement the local control of inverters. This paper presents a control scheme that performs frequency regulation and improves the active power sharing under high-load conditions, thus alleviating the impact of clock drifts in this situation. The study introduces a theoretical analysis that quantifies the steady-state deviations in active power sharing. It also includes a design procedure for the control parameters based on static and dynamic specifications. Experimental tests validate the expected features of the proposed control. The experimental setup is based on a laboratory microgrid equipped with three independent digital signal processors with different clock drifts.
机译:本地二次控制已成功用于调节基于逆变器的孤岛微电网的频率,而无需使用通信。在这种情况下,由于实现逆变器本地控制的数字处理器的固有时钟漂移,在有功功率共享中观察到了明显的稳态偏差。本文提出了一种控制方案,该方案可以执行频率调节并改善高负载条件下的有功功率分配,从而减轻这种情况下时钟漂移的影响。该研究引入了一种理论分析,该理论分析量化了有功功率共享中的稳态偏差。它还包括基于静态和动态规格的控制参数的设计过程。实验测试验证了提出的控件的预期功能。实验设置基于实验室微电网,该微电网配备了三个具有不同时钟漂移的独立数字信号处理器。

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