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A critical switching flow index for transient stability assessment in smart grid topology control

机译:智能电网拓扑控制中瞬态稳定性评估的关键开关流量指标

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Smart grid topology control makes power system more flexible and efficient. For example, it has been demonstrated that economic benefit and corrective action in contingency can be achieved by topology control. However, transient stability is a major concern in applying smart grid topology control since a potential large disturbance of line flows is involved. In this paper, a critical switching flow concept is proposed as a transient stability index to assess system transient stability associated with topology control. This new index is based on system worst scenario in offline study and thus can be used to evaluate switching plan and avoid transient instability in real time operation without online dynamic simulations. Monte Carlo based algorithm is developed to determine critical switching flow for planned system and validated in simplified WSCC 9 bus system and IEEE 24 bus reliability test system to demonstrate a potential use of the new concept.
机译:智能电网拓扑控制使电力系统更加灵活,高效。例如,已经证明,通过拓扑控制可以实现应急的经济效益和纠正措施。然而,由于涉及线流的潜在大扰动,瞬态稳定性是应用智能电网拓扑控制的主要问题。在本文中,提出了一种临界开关流概念作为评估与拓扑控制相关的系统瞬态稳定性的瞬态稳定性指标。此新索引基于离线研究中的系统最差场景,因此可用于评估切换计划并在没有在线动态模拟的情况下实时操作避免瞬态不稳定。开发了基于蒙特卡罗的算法,以确定计划系统的关键开关流程,并以简化的WSCC 9总线系统和IEEE 24总线可靠性测试系统验证,以展示新概念的潜在使用。

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