基于智能可控负载的自主混合动力系统频率控制

S. Debbarma, M. Bhattacharya, B. Meena, A. Datta
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引用次数: 8

摘要

近年来,可再生能源技术在电力系统中的渗透增加了系统的复杂性,因此需要有效的控制方法来保证整个系统的稳定运行。本文研究了由风力发电机、柴油发电机、燃料电池和太阳能光伏等多种发电机组组成的自主混合动力系统的频率控制问题,并与电解槽和智能可控热水器相结合。风能和太阳能的间歇性可能会导致严重的频率波动问题。因此,针对所提出的系统,设计了一种新的带有滤波技术的鲁棒PID控制器(PIDF),以使频率偏差最小化到零。在被测过程变量中存在噪声或随机误差时,该控制器通过导数滤波器提高控制性能。采用基于自然萤火虫算法(FA)的优化算法搜索最优控制器参数,并与传统PI控制器进行动态性能比较。首先考虑了1%阶跃载荷摄动(SLP),然后对随机载荷模式进行了研究。此外,还测试了该控制器对风输入功率随机变化的控制性能。关键研究表明,萤火虫优化的PIDF控制器在稳定时间、减少过冲、欠冲和振荡方面远远优于传统的PI控制器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frequency control of autonomous hybrid power system using smart controllable load
In recent years, penetration of renewable energy technologies in electrical power systems have increased the system complexity and therefore require efficient controlling methods to ensure stable operation of the whole system. In present study, the frequency control of autonomous hybrid power system consisting of various generators such as wind turbine generator, diesel engine generator, fuel cell and solar photovoltaic is investigated in integration with aqua electrolyzer and smart controllable water heater. The intermittent nature of wind and solar power may cause a serious problem of frequency fluctuation. Therefore, a new robust PID controller with filtering technique (PIDF) has been designed for the proposed system to minimize the frequency deviation to zero. Proposed controller is provided with derivative filter to improve the performance when there is noise or random error in the measured process variables. Nature-inspired firefly algorithm (FA) based optimization is employed to search for optimal controller parameters and the corresponding dynamic performance are compared with conventional PI controller. Initially investigation has been carried out considering 1% step load perturbation (SLP) and then against random load pattern. Furthermore, performance of proposed controller against random variation of wind input power has been tested. Critical investigation reveal that firefly optimized PIDF controller is far superior to conventional PI controller in terms of settling time, reduced overshoots, undershoots and oscillation.
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