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首页> 外文期刊>Universal Journal of Control and Automation >Optimal Control of Automatic Generation with Automatic Voltage Regulator Using Particle Swarm Optimization
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Optimal Control of Automatic Generation with Automatic Voltage Regulator Using Particle Swarm Optimization

机译:基于粒子群算法的自动调压器自动发电最优控制

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A simultaneous study of load frequency control and automatic voltage regulation is considered. The single-area and two-area power systems have been considered with a combined model of AGC and AVR for analysis of frequency and voltage deviation. The primary aspect of the design is to keep real power control as to preserve frequency of the system in a prescribed limit. Reactive power control is used to keep the voltage magnitude of synchronous generator at a tolerable limit. The transients produced in dynamic responses are controlled using intelligent and soft-computing technique. The fuzzy logic controller and particle swarm optimization based PID controllers are considered. The steady state error and settling time of the dynamic responses are observed and found to be reduced very effectively. The frequency and terminal voltage results of a single-area power system with proposed PSO-PID controller is compared to the responses of system with controllers presented in literature and found to be more effective. The comparison of fuzzy logic controller with PSO-PID is done by observing the nature of two-area responses. The result obtained by soft computing algorithm and intelligent controller is analyzed on the basis of settling-time, undershoot and ISE Error.
机译:考虑同时研究负载频率控制和自动电压调节。已经考虑将单区域和两区域电力系统与AGC和AVR的组合模型一起用于分析频率和电压偏差。设计的主要方面是保持有功功率控制,以将系统频率保持在规定的极限内。无功功率控制用于将同步发电机的电压幅度保持在可容忍的极限。动态响应中产生的瞬变使用智能和软计算技术进行控制。考虑了基于模糊逻辑控制器和粒子群优化的PID控制器。观察到动态响应的稳态误差和建立时间,并发现可以非常有效地减少稳态误差和建立时间。将带有建议的PSO-PID控制器的单区域电力系统的频率和端电压结果与文献中介绍的带有控制器的系统的响应进行比较,发现更有效。模糊逻辑控制器与PSO-PID的比较是通过观察两区域响应的性质来完成的。根据建立时间,下冲和ISE误差,分析了通过软计算算法和智能控制器获得的结果。

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