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On the use of optimality conditions decomposition techniques for distributed ATC assessment of multi-area power systems

机译:关于利用最优条件的分解ATC多区电力系统的分布式ATC评估技术

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This paper reports real-time Available Transfer Capability (ATC) assessment of multi-area power systems in a distributed computational framework. Calculation of ATC is formulated as a non-linear optimal power flow problem which is solved by Optimality Conditions Decomposition (OCD) techniques. This coordination and decomposition methodology is implemented in a distributed computing environment which permits real-time ATC assessment for practical large-scale power grids. Robustness and reaction of the distributed methodology subjected to small and large system disturbances are evaluated by several numerical experiments of IEEE-118 test system. Simulation result indicate that the proposed framework is a promising tool towards the development of Distributed Energy Management Systems (DEMS) for real-time power grid monitoring and control.
机译:本文报告了分布式计算框架中的实时可用传输能力(ATC)评估多区电力系统。 ATC的计算被制定为非线性最佳功率流量问题,其通过最优条件分解(OCD)技术来解决。该协调和分解方法在分布式计算环境中实现,该环境允许对实际大规模电网进行实时ATC评估。通过IEEE-118测试系统的几个数值实验评估了小型和大系统干扰的分布式方法的鲁棒性和反应。仿真结果表明,所提出的框架是一个有前途的工具,用于开发分布式能量管理系统(DEMS),用于实时电网监控和控制。

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