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首页> 外文期刊>Automatica Sinica, IEEE/CAA Journal of >A novel cascaded PID controller for automatic generation control analysis with renewable sources
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A novel cascaded PID controller for automatic generation control analysis with renewable sources

机译:用于可再生能源自动发电控制分析的新型级联PID控制器

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摘要

Present day power scenarios demand a high quality uninterrupted power supply and needs environmental issues to be addressed. Both concerns can be dealt with by the introduction of the renewable sources to the existing power system. Thus, automatic generation control (AGC) with diverse renewable sources and a modified-cascaded controller are presented in the paper. Also, a new hybrid scheme of the improved teaching learning based optimization-differential evolution (hITLBO-DE) algorithm is applied for providing optimization of controller parameters. A study of the system with a technique such as TLBO applied to a proportional integral derivative (PID), integral double derivative (PID) and (IDD) is compared to hITLBO-DE tuned cascaded controller with dynamic load change.The suggested methodology has been extensively applied to a 2-area system with a diverse source power system with various operation time non-linearities such as dead-band of, generation rate constraint and reheat thermal units. The multi-area system with reheat thermal plants, hydel plants and a unit of a wind-diesel combination is tested with the cascaded controller scheme with a different controller setting for each area. The variation of the load is taken within 1% to 5% of the connected load and robustness analysis is shown by modifying essential factors simultaneously by +/- 30%. Finally, the proposed scheme of controller and optimization technique is also tested with a 5-equal area thermal system with non-linearities. The simulation results demonstrate the superiority of the proposed controller and algorithm under a dynamically changing load.
机译:当前的电源方案需要高质量的不间断电源,并且需要解决环境问题。可以通过将可再生能源引入现有电力系统来解决这两个问题。因此,本文提出了具有多种可再生资源的自动发电控制(AGC)和改进的级联控制器。此外,改进的基于教学学习的优化-差分进化(hITLBO-DE)算法的新混合方案被用于提供控制器参数的优化。将使用TLBO等技术应用于比例积分微分(PID),积分双导数(PID)和(IDD)的系统与具有动态负载变化的hITLBO-DE调谐级联控制器进行了比较。广泛应用于具有多种电源系统的2区系统,该系统具有各种运行时间非线性,例如死区,发电率约束和再热单元。使用级联控制器方案对带有再热热电厂,海德尔电厂和一个风柴油机组合的多区域系统进行测试,每个区域使用不同的控制器设置。负载的变化在所连接负载的1%到5%之内,并且通过同时修改基本因子+/- 30%来显示鲁棒性分析。最后,还对具有非线性的5等面积热系统测试了所提出的控制器和优化技术方案。仿真结果证明了所提出的控制器和算法在动态变化负载下的优越性。

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