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Quantification of benefits achieved by coordinated control of power flow controlling devices

机译:通过协调控制潮流控制设备实现的收益量化

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The Transmission System Operators (TSOs) in Europe are facing increasing challenges in both planning and operating their transmission systems. More integration of renewables increased the need for congestion management frequently. The highly variable energy output of renewables demands the expansion of existing network to accommodate them and managing power flows that are no longer centrally dispatchable. Moreover due to European electricity market deregulation, TSOs do not have direct control over the conventional generation utilities. Power flow controlling devices such as Phase Shifting Transformers and High Voltage Direct Current can replace expensive means of congestion management such as generation re-dispatch by making the existing grid more flexible in operation. Several of such devices are already installed in the European system. However, coordination among these devices with respect to their operation is essential. This paper quantifies the benefits of inter-TSO coordination in order to avoid costly means of congestion management. It shows the amount of financial savings a TSO can achieve each day in order to solve security problems with the help of TSO coordination which, otherwise, would have required to re-dispatch generators in order to address the same. The main focus is on the European power system. The demonstration is performed on IEEE 118-bus system.
机译:欧洲的传输系统运营商(TSO)在规划和操作其传输系统方面面临越来越多的挑战。可再生能源的更多整合增加了对拥堵管理的频繁需求。可再生能源的高度可变的能源输出要求扩展现有网络,以适应可再生能源并管理不再可集中调度的电力流。此外,由于欧洲电力市场的放松管制,TSO无法直接控制常规发电设施。诸如相移变压器和高压直流电之类的潮流控制设备可以使现有电网运行更加灵活,从而取代昂贵的拥塞管理手段,例如发电重新调度。欧洲系统中已经安装了几种这样的设备。然而,这些设备之间就其操作而言的协调是必不可少的。为了避免昂贵的拥塞管理手段,本文量化了TSO之间协调的好处。它显示了TSO每天可以通过TSO协调来解决安全问题而节省的资金,否则,TSO可能需要重新调度发电机才能解决该问题。主要重点是欧洲电力系统。该演示在IEEE 118总线系统上执行。

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