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Frequency stabilization of isolated and grid connected hybrid power system models

机译:隔离和并网混合动力系统模型的频率稳定度

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This paper investigates the load frequency control (LFC) of two different configurations of power system model. The first one is worked as an isolated hybrid power system (HPS) (IHPS) while the second one is a grid tied HPS (GHPS). In IHPS, the power generating units are diesel engine generator (DEG), wind turbine generator (WTG) and solar thermal power generation (STPG). It is considered in such a way that the generation persists throughout the day with uninterrupted power supply. The energy storage device used in this work is superconducting magnetic energy storage (SMES). The three scenarios considered in isolated mode are (a) HPS with one DEG, one WTG and one STPG, (b) HPS with one DEG and one STPG and (c) HPS with one DEG and one WTG. As concerned to GHPS, a combination of WTG and steam thermal power plant is considered. A conventional proportional-integral-derivative (PID) controller has been used as supplementary control mechanism. The PID controller gains and the tunable parameters of the SMES are tuned by the use of quasi-oppositional harmony search (QOHS) algorithm. Initially, integral of time absolute error based objective function is minimized and, subsequently, three performance indices such as integral of absolute error, integral of square error and integral of time square error are calculated to test the designed efficiency of the proposed QOHS based PID controller. The transient responses of systems pertaining to step and random changes in the load demand are analyzed. The simulated results obtained by the QOHS algorithm reveals that it may be imposed to boost LFC performance of the power system.
机译:本文研究了两种不同配置的电力系统模型的负载频率控制(LFC)。第一个是隔离式混合动力系统(HPS)(IHPS),而第二个是并网HPS(GHPS)。在IHPS中,发电机组是柴油发动机发电机(DEG),风力涡轮发电机(WTG)和太阳热能发电(STPG)。可以这样认为:在不间断电源的情况下,发电可以持续一整天。这项工作中使用的能量存储设备是超导磁能量存储(SMES)。在隔离模式下考虑的三种情况是(a)具有一个DEG,一个WTG和一个STPG的HPS,(b)具有一个DEG和一个STPG的HPS,以及(c)具有一个DEG和一个WTG的HPS。关于GHPS,考虑将WTG和蒸汽火力发电厂相结合。传统的比例积分微分(PID)控制器已用作辅助控制机制。通过使用准对立和声搜索(QOHS)算法对SMES的PID控制器增益和可调参数进行调整。首先,最小化基于时间绝对误差的目标函数的积分,然后,计算三个性能指标,例如绝对误差积分,平方误差积分和时间平方误差积分,以测试所提出的基于QOHS的PID控制器的设计效率。分析了与负载需求的阶跃变化和随机变化有关的系统的瞬态响应。通过QOHS算法获得的仿真结果表明,可以将其应用于提高电力系统的LFC性能。

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