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Design, modeling and simulation of Fuzzy controlled SVC for 750 km (λ/8) Transmission line

机译:750 km(λ/ 8)输电线路模糊控制SVC的设计,建模与仿真

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Flexible AC transmission system (FACTS) is a technology, which is based on power electronic devices, used to enhance the existing transmission capabilities in order to make the transmission system flexible and independent operation. The FACTS technology is a promising technology to achieve complete deregulation of Power System i.e. Generation, Transmission and Distribution as complete individual units. The loading capability of transmission system can also be enhanced nearer to the thermal limits without affecting the stability. Complete close-loop smooth control of reactive power can be achieved using shunt connected FACTS devices. Static VAR Compensator (SVC) is one of the shunt connected FACTS device, which can be utilized for the purpose of reactive power compensation. Intelligent FACTS devices make them adaptable and hence it is emerging in the present state of art. This paper attempts to design and simulate the Fuzzy logic control of firing angle for SVC in order to achieve better, smooth and adaptive control of reactive power. The design, modeling and simulations are carried out for λ /8 Transmission line and the compensation is placed at the receiving end (load end).
机译:柔性交流输电系统(FACTS)是一种基于电力电子设备的技术,用于增强现有的输电能力,以使输电系统灵活独立运行。 FACTS技术是一种有前途的技术,可以完全解除对电力系统的管制,即将发电,输电和配电作为完整的单个单元。在不影响稳定性的情况下,还可以提高传输系统的负载能力,使其接近热极限。使用并联的FACTS装置可以实现无功功率的完整闭环平滑控制。静态无功补偿器(SVC)是并联连接的FACTS设备之一,可用于无功功率补偿。智能FACTS设备使其具有适应性,因此在当前的技术水平中正在兴起。本文试图设计和仿真SVC点火角的模糊逻辑控制,以实现更好,平滑和自适应的无功功率控制。对λ/ 8传输线进行设计,建模和仿真,并将补偿放置在接收端(负载端)。

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