An optimal power flow control method for grid-connected inverters

Navid Yektay, A. Darudi, M. H. Javidi
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引用次数: 1

Abstract

Most of the modern renewable energy technologies generate DC electric power, which is incompatible with AC grids. In order to control the power flow from DC bus of such generating units to AC grids, grid-connected inverters are essential. This paper proposes an optimization-based control method for single-phase grid-connected inverters which could be considered as a mixture of Model Predictive Control (MPC) and Direct Power Control (DPC). The proposed method minimizes switching frequency and, simultaneously, takes into account power quality constraints such as standard output current harmonics and Total Harmonic Distortion (THD). Due to long computational time required for running optimization problem, solutions for a set of outputs are computed off-line and stored in a look-up table. An open-loop control method based on the look-up table is proposed. Furthermore, in order to provide small signal regulation and disturbance compensation, an on-line algorithm is implemented. Simulation results assure that, the method works accurately in an ideal environment and dramatically lower switching frequencies are achieved. In addition, the closed-loop method not only provides continuous control on output power, but also compensates possible disturbances.
并网逆变器最优潮流控制方法
大多数现代可再生能源技术产生直流电,这与交流电网不兼容。为了控制从直流母线到交流电网的潮流,并网逆变器是必不可少的。本文提出了一种基于优化的单相并网逆变器控制方法,它可以看作是模型预测控制(MPC)和直接功率控制(DPC)的混合控制。该方法最大限度地降低了开关频率,同时考虑了标准输出电流谐波和总谐波失真(THD)等电能质量约束。由于运行优化问题需要较长的计算时间,因此对一组输出的解进行脱机计算并存储在查找表中。提出了一种基于查找表的开环控制方法。此外,为了提供小信号调节和干扰补偿,实现了一种在线算法。仿真结果表明,该方法在理想环境下工作准确,开关频率显著降低。此外,闭环方法不仅可以对输出功率进行连续控制,还可以对可能出现的干扰进行补偿。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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