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首页> 外文期刊>IEEE Transactions on Industry Applications >A Decoupled Adaptive Noise Detection Based Control Approach for a Grid Supportive SPV System
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A Decoupled Adaptive Noise Detection Based Control Approach for a Grid Supportive SPV System

机译:网格支持SPV系统的基于解耦自适应噪声检测的控制方法

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摘要

A grid supportive two-stage three-phase four-wire solar photovoltaic (SPV) system is presented in this paper, wherein a boost converter is used as a first stage to serve the function of maximum power point tracking (MPPT) and a four-leg voltage source converter (VSC) is used to feed the extracted SPV energy, along with supporting distribution system for improvement in the power quality. Unlike conventional SPV inverters, the proposed solar energy conversion system provides extra functionalities such as balancing of grid currents, reactive power compensation, mitigation of harmonics, and neutral current elimination in grid side neutral conductor. An extra feed-forward term is added in the control loop to provide fast dynamic responses. The PV array voltage is continuously adjusted using a boost converter to achieve MPPT. A control approach employing decoupled adaptive noise detection (DAND) algorithm is used for controlling the four-leg grid-tied VSC. The DAND algorithm is a simple approach using two multipliers, one integrator, and one summer per phase for detection of useful component of load current. The proposed control algorithm gives features such as simple structure, fast convergence, frequency adaptive detection, and good steady-state performance. The grid currents are found adhering to an IEEE-519 standard, even under nonlinear and unbalanced loads at common point of interconnection.
机译:本文提出了一种支持电网的两阶段三相四线太阳能光伏(SPV)系统,其中升压转换器用作第一阶段,以发挥最大功率点跟踪(MPPT)的功能,并具有四级支脚电压源转换器(VSC)用于馈送提取的SPV能量,以及用于改善电能质量的辅助配电系统。与常规的SPV逆变器不同,拟议的太阳能转换系统提供了额外的功能,例如电网电流平衡,无功功率补偿,谐波抑制以及电网侧中性导体中性线消除。在控制回路中添加了一个额外的前馈项,以提供快速的动态响应。使用升压转换器连续调节光伏阵列电压,以实现MPPT。采用解耦自适应噪声检测(DAND)算法的控制方法用于控制四脚并网VSC。 DAND算法是一种简单的方法,使用两个乘法器,一个积分器和每个相一个求和器来检测负载电流的有用分量。该控制算法具有结构简单,收敛速度快,频率自适应检测,稳态性能好等特点。即使在互连公共点的非线性和不平衡负载下,也发现电网电流符合IEEE-519标准。

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