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Combined photovoltaic and unified power quality controller to improve power quality

机译:结合光伏和统一电能质量控制器以提高电能质量

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摘要

Rapid growth of nonlinear loads leads to lots of power quality problems such as harmonics, unbalance operation and excessive source-end neutral current in three-phase supplying networks. This paper proposes an combined Photovoltaic (PV) Unified Power Quality Controller (UPQC) for compensation of source voltage deficiencies (e.g. sag and swell). Meanwhile, considering the Advanced Generalized Theory of Instantaneous Power (A-GTIP) algorithm, the proposed UPQC leads to suppress grid-end current harmonics caused by the distorted-unbalanced load-terminal voltages. Hence, the grid-end currents could remain purely sinusoidal. Additionally, using combined UPQC and PV system there will be capital investment savings since one less converter will be used in comparison with separated UPQC and PV. In this paper a new Maximum Power Point Tracking (MPPT) algorithm is also proposed to efficiently improve the performance of the solar panels. The proposed algorithm is composed of two parts, set point calculation and fine tuning. The set point calculation part, based on the short circuit current method, first approximates maximum power. Second, exact amount of the maximum power will be tracked by the fine tuning part which is based on the perturbation and observation method (P&O). Then, output of the MPPT circuit would be connected to the DC side of the AUPQC. Matlab/Simulink simulations verify the performance of the proposed PV-UPQC performance.
机译:非线性负载的迅速增长会导致很多电能质量问题,例如谐波,三相不平衡运行以及三相供电网络中过多的源端中性电流。本文提出了一种组合式光伏(PV)统一电能质量控制器(UPQC),用于补偿电源电压不足(例如骤降和骤升)。同时,考虑到先进的瞬时功率广义理论(A-GTIP)算法,提出的UPQC可以抑制由负载端电压不平衡引起的电网端电流谐波。因此,电网端电流可以保持纯正弦波状。此外,由于使用了UPQC和PV的组合系统,与分离的UPQC和PV相比,使用的转换器要少一个,因此可以节省资本投资。本文还提出了一种新的最大功率点跟踪(MPPT)算法,以有效提高太阳能电池板的性能。该算法由设定点计算和微调两部分组成。设定点计算部分基于短路电流法首先估算最大功率。其次,微调部分将基于微扰和观察方法(P&O)跟踪最大功率的确切量。然后,MPPT电路的输出将连接到AUPQC的DC侧。 Matlab / Simulink仿真验证了所提出的PV-UPQC性能的性能。

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