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光伏系统中基于改进滑模的逆变器控制器的实时数字仿真器(RTDS)实现

RTDS implementation of an improved sliding mode based inverter controller for PV system.

作者信息

Islam Gazi, Muyeen S M, Al-Durra Ahmed, Hasanien Hany M

机构信息

The Petroleum Institute, Electrical Engineering Department, PO Box 2533, Abu Dhabi, UAE.

Electrical Power & Machines Department, Faculty of Engineering, Ain Shams University, Egypt.

出版信息

ISA Trans. 2016 May;62:50-9. doi: 10.1016/j.isatra.2015.10.022. Epub 2015 Nov 19.

Abstract

This paper proposes a novel approach for testing dynamics and control aspects of a large scale photovoltaic (PV) system in real time along with resolving design hindrances of controller parameters using Real Time Digital Simulator (RTDS). In general, the harmonic profile of a fast controller has wide distribution due to the large bandwidth of the controller. The major contribution of this paper is that the proposed control strategy gives an improved voltage harmonic profile and distribute it more around the switching frequency along with fast transient response; filter design, thus, becomes easier. The implementation of a control strategy with high bandwidth in small time steps of Real Time Digital Simulator (RTDS) is not straight forward. This paper shows a good methodology for the practitioners to implement such control scheme in RTDS. As a part of the industrial process, the controller parameters are optimized using particle swarm optimization (PSO) technique to improve the low voltage ride through (LVRT) performance under network disturbance. The response surface methodology (RSM) is well adapted to build analytical models for recovery time (Rt), maximum percentage overshoot (MPOS), settling time (Ts), and steady state error (Ess) of the voltage profile immediate after inverter under disturbance. A systematic approach of controller parameter optimization is detailed. The transient performance of the PSO based optimization method applied to the proposed sliding mode controlled PV inverter is compared with the results from genetic algorithm (GA) based optimization technique. The reported real time implementation challenges and controller optimization procedure are applicable to other control applications in the field of renewable and distributed generation systems.

摘要

本文提出了一种新颖的方法,用于实时测试大规模光伏(PV)系统的动态和控制方面,同时使用实时数字模拟器(RTDS)解决控制器参数的设计障碍。一般来说,由于控制器的带宽较大,快速控制器的谐波分布较广。本文的主要贡献在于,所提出的控制策略能改善电压谐波分布,并使其更多地分布在开关频率附近,同时具有快速的瞬态响应;因此,滤波器设计变得更加容易。在实时数字模拟器(RTDS)的小时间步长内实现具有高带宽的控制策略并非易事。本文为从业者展示了一种在RTDS中实现这种控制方案的良好方法。作为工业过程的一部分,使用粒子群优化(PSO)技术对控制器参数进行优化,以提高网络干扰下的低电压穿越(LVRT)性能。响应面方法(RSM)非常适合构建逆变器在受到干扰后电压曲线的恢复时间(Rt)、最大超调百分比(MPOS)、调节时间(Ts)和稳态误差(Ess)的分析模型。详细介绍了一种系统的控制器参数优化方法。将基于粒子群优化的优化方法应用于所提出的滑模控制光伏逆变器的瞬态性能与基于遗传算法(GA)的优化技术的结果进行了比较。所报道的实时实现挑战和控制器优化程序适用于可再生和分布式发电系统领域的其他控制应用。

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