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Improving Power Flow Control in AC Transmission System Using Phase Shifting Transformer (PST)

机译:使用相移变压器(PST)提高交流传输系统的电流控制

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Obtaining optimal power flow has been a challenge over the years for power system engineers. Several ways and technologies ranging from conventional to the use of modern Flexible Alternating Current Transmission Systems (FACTS) devices have been incorporated into the power system to ensure optimal flow of power. FACTS devices used are capable of mitigating several power system problems ranging from line overloading, voltage instability, transient instability, and Power system congestion and so on. Phase shifting transformer (PST) is a FACTS device that is capable of controlling power flow problems in a network by varying its phase angle. PST, when installed at appropriate locations on the power system is capable of redirecting and redistributing power flow from overloaded lines to the less loaded ones, hence ensuring an optimal performance and improved performance of the power system.This paper evaluates the effect of incorporating the PST on the IEEE 5 bus system. Newton-Raphson load flow technique is employed in modeling the IEEE 5 bus system and the PST. Simulation was carried out using MATLAB software package for both the steady state condition and with the incorporation of PST. Results showed that overloading on some transmission lines was checked and mitigated by redistribution of active power across the system. There was also reduction of losses on the lines.
机译:在电力系统工程师们多年来,获得最佳动力流是挑战。从传统到使用现代柔性交流传输系统(事实)设备的几种方式和技术已经结合到电力系统中,以确保最佳的功率流动。使用的事实设备能够减轻从线路过载,电压不稳定,瞬态不稳定和电力系统拥塞等的几个电源系统问题。相移变压器(PST)是一种事实装置,其能够通过改变其相位角来控制网络中的功率流问题。 PST,当安装在电力系统上的适当位置时,能够将电流从过载的线路重定向和重新分配到较少负载的线路,因此确保了电力系统的最佳性能和改进的性能。本文评估了掺入PST的效果在IEEE 5总线系统上。 Newton-Raphson负载流技术用于建模IEEE 5总线系统和PST。使用MATLAB软件包进行仿真,用于稳态条件和PST的掺入。结果表明,在整个系统上重新分配有效电力,检查和减轻了一些传输线的过载。还有降低损失的损失。

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