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A non-standard adaptive control for shunt active power filter without current harmonic detection

机译:无电流谐波检测的非标准自适应有源滤波器的自适应控制

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Conventional control strategies, used in shunt active power filters (SAPF), employ real-time instantaneous harmonic detection schemes which are usually implemented with digital filters. This increases the number of current sensors on the filter structure which results in high cost. Furthermore, these detection schemes introduce time delays which can deteriorate the harmonic compensation performance. Differently from the conventional control schemes, this paper proposes a non-standard control strategy which indirectly regulates the phase currents of the power mains. The reference currents of system are generated by the dc-link voltage controller and is based on the active power balance of SAPF system. The current control strategy is implemented through an adaptive pole placement control strategy integrated to a variable structure control scheme (V S-APPC). The V S-APPC uses the internal model principle (IMP) of reference currents for achieving the zero steady state tracking error. This forces the phase current of the system mains to be sinusoidal with low harmonics content. Experimental results are showing for determining the effectiveness of SAPF proposed control system.
机译:在并联有源功率滤波器(SAPF)中使用的常规控制策略采用实时瞬时谐波检测方案,该方案通常通过数字滤波器来实现。这增加了滤波器结构上的电流传感器的数量,从而导致高成本。此外,这些检测方案引入了时间延迟,这会降低谐波补偿性能。与常规控制方案不同,本文提出了一种非标准控制策略,该策略可以间接调节电源的相电流。系统的参考电流由直流链路电压控制器生成,并基于SAPF系统的有功功率平衡。当前的控制策略是通过集成到可变结构控制方案(VS-APPC)的自适应磁极放置控制策略来实现的。 V S-APPC使用参考电流的内部模型原理(IMP)来实现零稳态跟踪误差。这迫使系统电源的相电流为正弦波,且谐波含量较低。实验结果表明,该方法可确定SAPF提出的控制系统的有效性。

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