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首页> 外文期刊>Discrete dynamics in nature and society >Control of Chaos in a Single Machine Infinite Bus Power System Using the Discrete Sliding Mode Control Technique
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Control of Chaos in a Single Machine Infinite Bus Power System Using the Discrete Sliding Mode Control Technique

机译:使用离散滑模控制技术的单机无限母线电力系统中的混沌控制

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Under certain conditions, power systems may exhibit chaotic behaviors which are harmful and undesirable. In this paper, the discrete time sliding mode control technique is used to control a chaotic power system. The objective of the control is to eliminate the chaotic oscillations and to bring order to the power system. Two discrete time sliding mode control (DSMC) schemes are proposed for a fourth order discrete time chaotic power system. The first DSMC control scheme is based on the well-known exponential reaching law. The second DSMC control scheme is based on the recently developed double power reaching law. It is shown that the states of the controlled system converge to their desired values. Simulation results are presented for different values of the gains of the controllers as well as for different initial conditions. These results indicate that both control schemes work well. However, the simulation results show that the second control scheme gave better results since it was able to greatly reduce the chattering problem.
机译:在某些条件下,电力系统可能会表现出有害和不良的混沌行为。在本文中,离散时间滑模控制技术用于控制混沌电力系统。控制的目的是消除混沌振荡并为电力系统带来秩序。针对四阶离散时间混沌电力系统,提出了两种离散时间滑模控制(DSMC)方案。第一个DSMC控制方案基于众所周知的指数到达律。 DSMC的第二种控制方案基于最近开发的双功率到达定律。结果表明,受控系统的状态收敛到其期望值。给出了针对控制器增益的不同值以及不同初始条件的仿真结果。这些结果表明,两种控制方案都可以正常工作。然而,仿真结果表明,由于第二种控制方案能够大大减少颤振问题,因此效果更好。

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