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Secondary Control for a D-STATCOM DC-Link Voltage Under Capacitance Degradation

机译:电容降低下的D-Statcom DC-Link电压的二次控制

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摘要

Degradation of the dc-link capacitance due to aging, cell failure, and fuse failure has a negative impact on the ac-side current THD of a distribution static compensator (D-STATCOM) and power quality. These variations noticeably increase the modulation index and dc-link voltage ripple leading to growing the ac-side current THD of the D-STATCOM. To solve this problem, this article proposes a modification mechanism as a secondary control layer added to the common control structure, nested control loops. This upper-hand layer regulates dc-link voltage set-point based on modulation index magnitude to remain the current THD in the standard range indirectly. This method works in steady-state modes and does not change the primary controllers. Simulation and experimental results show that this mechanism properly controls the device and regulates the THD and improve power quality in the network under dc-link capacitance variations.
机译:由于老化,电池故障和熔断器故障导致的直流连杆电容的降解对分布静态补偿器(D-Statcom)和电能质量的交流侧电流TH具有负面影响。 这些变化明显增加了调制指数和直流链路电压纹波,导致D-Statcom的AC侧电流THD生长。 为了解决这个问题,本文提出了一种修改机制,作为添加到公共控制结构的辅助控制层,嵌套控制循环。 该上手层根据调制指数幅度调节DC-Link电压设定点,间接地保持标准范围的电流THD。 此方法以稳态模式工作,不会改变主控制器。 仿真和实验结果表明,该机制适当地控制了该设备并在DC-Link电容变化下调节了网络中的电力质量并提高了网络中的电力质量。

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