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Adaptive Dead-Time Compensation for Grid-Connected PWM Inverters of Single-Stage PV Systems

机译:单级光伏系统并网PWM逆变器的自适应死区补偿

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摘要

This study presents a new software-based plug-in dead-time compensator for grid-connected pulsewidth modulated voltage-source inverters of single-stage photovoltaic (PV) systems using predictive current controllers (PCCs) to regulate phase currents. First, a nonlinear dead-time disturbance model is reviewed, which is then used for the generation of a feed-forward compensation signal that eliminates the current distortion associated with current clamping effects around zero-current crossing points. A novel closed-loop adaptive adjustment scheme is proposed for fine tuning in real time the compensation model parameters, thereby ensuring accurate results even under the highly varying operating conditions typically found in PV systems due to insolation, temperature, and shadowing effects, among others. The algorithm implementation is straightforward and computationally efficient, and can be easily attached to an existent PCC to enhance its dead-time rejection capability without modifying its internal structure. Experimental results with a 5-kW PV system prototype are presented.
机译:这项研究提出了一种新的基于软件的插入式死区时间补偿器,用于单级光伏(PV)系统的并网脉宽调制电压源逆变器,该逆变器使用预测电流控制器(PCC)来调节相电流。首先,回顾了非线性死区时间干扰模型,然后将其用于生成前馈补偿信号,该信号消除了与零电流交叉点附近的电流钳位效应相关的电流失真。提出了一种新颖的闭环自适应调整方案,用于实时微调补偿模型参数,从而即使在日照,温度和遮蔽效应等光伏系统中通常存在的高度变化的工作条件下,也可以确保准确的结果。该算法实现简单,计算效率高,并且可以轻松地附加到现有的PCC上,以增强其死区抑制能力,而无需修改其内部结构。给出了5kW光伏系统原型的实验结果。

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