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A steady-state harmonic controller for a series compensator with uncertain load dynamics

机译:具有不确定负载动态的串联补偿器的稳态谐波控制器

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摘要

Series compensators can be used to solve a number of power quality issues in electrical distribution systems. These devices are connected in series between the point of common coupling and a load and they inject a series voltage to compensate voltage sags, swells, unbalances, and many other power quality issues. A series compensator requires a harmonic-tracking algorithm within its controller to eliminate harmonics. However, the uncertainty introduced by linear and non-linear loads connected downstream makes it difficult to guarantee closed-loop stability in every case. To overcome this problem this paper proposes a control algorithm to compensate harmonics that can be adapted in real time avoiding the need for an accurate model of the plant at the design stage. This controller is implemented in a series compensator to eliminate harmonics in two situations: filtering voltage harmonics from the grid voltage and filtering current harmonics generated by a non-linear load. The proposed algorithm was validated on a 5 kVA prototype of a series compensator. (C) 2017 Elsevier B.V. All rights reserved.
机译:串联补偿器可用于解决配电系统中的许多电能质量问题。这些设备串联在公共耦合点和负载之间,并注入一个串联电压以补偿电压骤降,骤升,不平衡以及许多其他电能质量问题。串联补偿器需要在其控制器内使用谐波跟踪算法来消除谐波。但是,由下游连接的线性和非线性负载引入的不确定性使得在每种情况下都难以保证闭环稳定性。为了克服这个问题,本文提出了一种可补偿谐波的控制算法,该算法可以实时调整,从而避免了在设计阶段需要精确的工厂模型的情况。该控制器在串联补偿器中实现,以消除两种情况下的谐波:从电网电压中滤除电压谐波和滤除非线性负载产生的电流谐波。该算法在串联补偿器的5 kVA原型上得到了验证。 (C)2017 Elsevier B.V.保留所有权利。

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