Three Area Power System Load Frequency Control Using Fuzzy Logic Controller

C. Balamurugan
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引用次数: 5

Abstract

System frequency is one of the most important parameters of a power system. Du to generation-load mismatches, the system frequency can vary over a small range. When the power consumed by loads and overall losses is greater than the generated power, the operating frequency of the system will decrease, resulting in a situation known as the under frequency condition. In some other case, if some of the loads in a system are disconnected from the system suddenly, or lost, it leads to a condition called as the over frequency condition. This condition is char acterized by greater input power than the consumed power by the loads. The rest of the loads in the system will absorb the extra power and the generator inertia, leading to an increase in the system frequency. In both the cases, the system frequency fluctuates from the power system’s limited frequency range, further leading to tripping off of the substation and further collapsing of the entire system. The paper describes a new method employing a smart meter to monitor and control the power system frequency which changes according to the loading conditions in the system, whether under load condition or overload condition.
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基于模糊控制器的三区电力系统负荷频率控制
系统频率是电力系统最重要的参数之一。由于发电负荷不匹配,系统频率可以在很小的范围内变化。当负载消耗的功率和总损耗大于系统产生的功率时,系统的工作频率就会降低,从而出现低频状态。在其他情况下,如果系统中的一些负载突然与系统断开连接或丢失,则会导致称为过频条件的情况。这种情况的特点是输入功率大于负载消耗的功率。系统中的其余负载将吸收额外的功率和发电机惯性,导致系统频率增加。在这两种情况下,系统频率都在电力系统的有限频率范围内波动,进一步导致变电站跳闸,进而导致整个系统崩溃。本文介绍了一种利用智能电表监测和控制电力系统频率的新方法,无论是在负荷状态下还是在过载状态下,电力系统的频率都是根据负荷情况而变化的。
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