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Damping of oscillations using TCPS with BF technique in a three-area thermal system

机译:在三区域热力系统中使用TCP技术和BF技术抑制振荡

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This paper presents Automatic Generation Control (AGC) of two and three area thermal systems. Each area of the systems is equipped with single reheat turbine and has a Generation Rate Constraint (GRC) of 3% per minute. System dynamics has been obtained by considering 1% step load perturbation (SLP) in area 1. Performances of several classical controllers such as Integral (I), Proportional-Integral (PI), Integral-Derivative (ID), Proportional-Integral-Derivative (PID) and Integral-Double Derivative (IDD) has been evaluated and compared in the two area system. Bacteria Foraging (BF) technique has been used for optimization of controller gains. Investigations reveal that IDD controller provides better dynamic than the others. Thyristor-controlled Phase Shifter (TCPS) in tie-line has been used for damping the oscillations in the frequency and tie power deviations. TCPS is applied in both systems with IDD controller in the secondary loop. An appropriate tie-line for use of TCPS in series has been selected. Investigations reveal that using TCPS the oscillations and peak deviations in the responses can be reduced. Simultaneous optimization of Governor Speed Regulation parameter (Ri) for primary control loop and gains IDD controller (KIi, KDi) for the three unequal area system with IDD controller using BF technique provides higher values of Ri, thereby leading to economic and convenient realization of Governors. Sensitivity analysis has been performed to see the robustness of KIi, KDi and Ri obtained at nominal condition on the three area system with TCPS with wide change in loading conditions, Inertia constant(H) and magnitude and location of SLP and established that they are robust.
机译:本文介绍了两个和三个区域热力系统的自动发电控制(AGC)。系统的每个区域都配备有单个再热涡轮机,并具有每分钟3%的发电率约束(GRC)。通过考虑区域1中1%的阶跃负载扰动(SLP)获得了系统动力学。几种经典控制器的性能,例如积分(I),比例积分(PI),积分微分(ID),比例积分微分(PID)和积分双导数(IDD)已在两个区域系统中进行了评估和比较。细菌觅食(BF)技术已用于优化控制器增益。调查表明,IDD控制器提供了比其他控制器更好的动态性能。联络线上的晶闸管控制移相器(TCPS)已用于衰减频率和联络功率偏差中的振荡。 TCPS应用于两个回路中带有IDD控制器的两个系统中。选择了适合串联使用TCPS的联系线。研究表明,使用TCPS可以减少响应中的振荡和峰值偏差。同时优化主控制回路的调速器调速参数(Ri)和使用BF技术的带有IDD控制器的三个不等面积系统的增益IDD控制器(KIi,KDi)可提供更高的Ri值,从而经济而又方便地实现调速器。进行了敏感性分析,以查看在名义条件下使用TCPS在负载条件,惯性常数(H)和SLP的大小和位置变化很大的三区域系统上,在标称条件下获得的KIi,KDi和Ri的鲁棒性,并确定了它们的鲁棒性。

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