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An Adaptive Control Strategy for Low Voltage Ride Through Capability Enhancement of Grid-Connected Photovoltaic Power Plants

机译:通过并网光伏电站能力增强的低压乘骑自适应控制策略

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摘要

This paper presents a novel application of continuous mixed -norm (CMPN) algorithm-based adaptive control strategy with the purpose of enhancing the low voltage ride through (LVRT) capability of grid-connected photovoltaic (PV) power plants. The PV arrays are connected to the point of common coupling (PCC) through a DC-DC boost converter, a DC-link capacitor, a grid-side inverter, and a three-phase step up transformer. The DC-DC converter is used for a maximum power point tracking operation based on the fractional open circuit voltage method. The grid-side inverter is utilized to control the DC-link voltage and terminal voltage at the PCC through a vector control scheme. The CMPN algorithm-based adaptive proportional-integral (PI) controller is used to control the power electronic circuits due to its very fast convergence. The proposed algorithm updates the PI controller gains online without the need to fine tune or optimize. For realistic responses, the PV power plant is connected to the IEEE 39-bus New England test system. The effectiveness of the proposed control strategy is compared with that obtained using Taguchi approach-based an optimal PI controller taking into account subjecting the system to symmetrical, unsymmetrical faults, and unsuccessful reclosing of circuit breakers due to the existence of permanent fault. The validity of adaptive control strategy is extensively verified by the simulation results, which are carried out using PSCAD/EMTDC software. With the proposed adaptive-controlled PV power plants, the LVRT capability of such system can be improved.
机译:本文提出了一种基于连续混合范数(CMPN)算法的自适应控制策略,旨在提高并网光伏电站的低压穿越(LVRT)能力。 PV阵列通过DC-DC升压转换器,DC链路电容器,电网侧逆变器和三相升压变压器连接到公共耦合点(PCC)。 DC-DC转换器基于分数开路电压法用于最大功率点跟踪操作。电网侧逆变器用于通过矢量控制方案控制PCC上的直流母线电压和端子电压。基于CMPN算法的自适应比例积分(PI)控制器由于其非常快的收敛性而被用于控制电力电子电路。所提出的算法可在线更新PI控制器的增益,而无需进行微调或优化。为了获得现实的响应,光伏电站已连接到IEEE 39总线的New England测试系统。将所提出的控制策略的有效性与使用基于Taguchi方法的最佳PI控制器所获得的控制策略进行了比较,其中考虑了使系统遭受对称,不对称故障以及由于永久性故障而导致断路器重合闸失败的问题。仿真结果已广泛验证了自适应控制策略的有效性,该仿真结果是使用PSCAD / EMTDC软件进行的。通过提出的自适应控制光伏电站,可以提高此类系统的LVRT能力。

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