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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Investigation of control of power flow by using phase shifting transformers: Turkey case study
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Investigation of control of power flow by using phase shifting transformers: Turkey case study

机译:用相移变压器控制电流控制:土耳其案例研究

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Transmission systems are needed to be upgraded based on expected/unexpected load growth factor by years. However, it is not so easy to install and upgrade the transmission system, which requires transmission planning calculation ahead of time. Traditionally, transmission companies built extra transmission lines to meet that load growth, but it is not easy and cost-effective to upgrade the system every time loads increase. Some unexpected load growth may occur for some load points that is not in the part of planning calculation. For those situations, the transmission system may face serious congestion problems. Transmission companies have been looking for a way to control power flow rather than building extra electricity capacity. With the development of technology, more complex and integrated flexible alternating current transmission system technologies that can control power flows by changing the voltage amplitude, the angle, and the impedance of the transmission line are now widely used. Phase-shifting transformer (PST) is one of the most widely used devices that can be used for controlling power flow. PST can vary the amount or direction of the active power flow by injecting voltage at different phases into the transmission line on which PSTs are installed. In this study, possible location case studies of PST in the Turkish transmission network will be investigated. Static analyses will be performed using the PSS/E and Python programs. The maximum and minimum production status of distributed wind power plants will be analyzed comparatively in the energy corridor with PST. Capacity improvement and power flow dispatch from each case study with and without PST will be compared. Finally, we propose a mathematical model to suitably determine the angle of PST in order to minimize real power losses that are caused by PST and provide N-1 security.
机译:需要基于预期/意外的负载增长因子升级传输系统多年。但是,安装和升级传输系统并不是那么容易,这需要提前传输计划计算。传统上,传输公司建立了额外的传输线以满足该负荷增长,但每次载荷增加时,升级系统并不容易和成本效益。一些意外的负载增长可能发生在规划计算的一些负载点中。对于那些情况,传输系统可能面临严重的拥塞问题。传输公司一直在寻找一种控制电力流量而不是建立额外的电力能力的方法。随着技术的发展,通过改变电压幅度,角度和阻抗来控制功率流动的更复杂和集成的柔性交流传输系统技术现在广泛地使用。移相变压器(PST)是可用于控制电力流量的最广泛使用的设备之一。 PST可以通过将不同阶段的电压注入到安装PST的传输线上的电压来改变有源电流的量或方向。在这项研究中,将研究土耳其传输网络中PST的可能定位案例研究。将使用PSS / E和Python程序执行静态分析。分布式风电厂的最大和最低生产状态将在PST的能量走廊中相对分析。将进行比较每种案例研究的能力改进和电力流量,并将进行比较。最后,我们提出了一种数学模型来适当地确定PST的角度,以便最小化由PST引起的实际功率损耗并提供N-1安全性。

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