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A Maximum Correntropy Criteria Based Adaptive Algorithm for an Improved Power Quality SPV System

机译:改进电能质量SPV系统的基于最大熵准则的自适应算法

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This paper presents an improved power quality solar photovoltaic (SPV) system, using a maximum correntropy criteria (MCC) based intelligent adaptive control algorithm. The proposed system is integrated into a three phase 4 wire distribution system. It feeds the active power of the solar PV (PPV) to the loads connected at the Point of Common Coupling (PCC) and delivers the excess power (in daytime) of the solar PV array to the distribution system at unity power factor (UPF). The proposed system mitigates the power quality problems by providing the reactive power and harmonics power locally and maintains the Supply Current (is) total harmonic distortion (TED) within the set limits by various international standards. In the first stage, a DC-DC converter is used to extract the PV peak power (PPV_Peak) to optimize the PV system. It utilized a perturb and observe (P&O) approach for peak power extraction. In the second stage, a 3 phase 4 leg voltage source converter (VSC) is used to convert the DC power into AC power. The VSC is controlled by using an MCC based adaptive control algorithm. It extracts the fundamental active component of the load current (wpL) from the nonlinear load current. The controller is adaptive in nature and adapts its step size parameter as the system conditions change and show a good dynamic response. The system performance is validated on a laboratory prototype in steady state and dynamic conditions.
机译:本文提出了一种改进的电能质量太阳能光伏(SPV)系统,它使用基于最大熵准则(MCC)的智能自适应控制算法。拟议的系统已集成到三相4线配电系统中。它将太阳能PV(PPV)的有功功率馈送到在公共耦合点(PCC)处连接的负载,并将太阳能PV阵列的多余功率(白天)以单位功率因数(UPF)输送到配电系统。 。所提出的系统通过局部提供无功功率和谐波功率来缓解电能质量问题,并将电源电流(is)总谐波失真(TED)维持在各种国际标准所设定的限制内。在第一阶段,使用DC-DC转换器提取PV峰值功率(PPV_Peak),以优化PV系统。它利用扰动和观察(P&O)方法提取峰值功率。在第二阶段中,使用三相4脚电压源转换器(VSC)将直流电转换为交流电。通过使用基于MCC的自适应控制算法来控制VSC。它从非线性负载电流中提取负载电流的基本有功分量(wpL)。控制器本质上是自适应的,并随着系统条件的变化而自适应其步长参数,并表现出良好的动态响应。系统性能已在稳态和动态条件下的实验室原型上得到验证。

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