基于遗传算法的分布式发电机组自动调节器设置优化

N. Bulatov, A. Kryukov
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引用次数: 35

摘要

智能电网的概念设想建立一个发达的电力系统运行自动控制系统,该系统涉及广泛应用集成到能源集群中的分布式发电厂。这些技术完全适用于主要为牵引用户(列车)以及非牵引和非运输用户提供可靠、高质量电力供应的铁路供电系统。为了使分布式发电机组有效运行,有必要结合RESS的具体特点,解决自动励磁调节器(AER)和自动调速调节器(ASR)的最优调谐问题。本文介绍了一种用于求解分布式电站汽轮发电机组AER和ASR设置优化问题的自适应遗传算法。在MATLAB中对分布式发电系统的计算机模型进行了研究,结果表明,采用自适应遗传算法计算的AER和ASR调谐系数在非牵引用户供电系统中具有所需的稳定裕度、良好的阻尼机电振荡和标准的电能质量值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of automatic regulator settings of the distributed generation plants on the basis of genetic algorithm
The smart grid concept envisages the creation of a developed automatic control system of the electric power system operation that involves a wide application of distributed generation plants integrated into the energy clusters. These technologies are fully applicable to the railway electricity supply systems (RESS) which are mainly intended for the reliable high quality electricity supply of the traction consumers (trains) as well as non-traction and non-transport ones. For effective operation of the distributed generation plants, it is necessary to solve the problem of the optimal tuning automatic excitation regulators (AER) and automatic speed regulators (ASR), taking into account the specific features of RESS. The paper presents a description of an adaptive genetic algorithm for solving the problems of settings optimization for AER and ASR of the distributed plant turbine generators operating in RESS. The studies of computer models of electric power systems with distributed generation plants in MATLAB show that the AER and ASR tuning coefficients calculated with the proposed adaptive genetic algorithm provide the required stability margin, good damping electromechanical oscillations and standard power quality values in the power supply system of non-traction consumers.
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