首页> 外文会议>High Performance Computing for Computational Science - VECPAR 2006; Lecture Notes in Computer Science; 4395 >Distributed Security Constrained Optimal Power Flow Integrated to a DSM Based Energy Management System for Real Time Power Systems Security Control
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Distributed Security Constrained Optimal Power Flow Integrated to a DSM Based Energy Management System for Real Time Power Systems Security Control

机译:集成到基于DSM的能源管理系统中的分布式安全约束最优潮流,用于实时电力系统安全控制

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This paper presents the development of the distributed processing based Security Constrained Optimal Power Flow (SCOPF) and its integration to a Distributed Shared Memory Energy Management System (EMS) in order to enable real time power systems security control. The optimization problem is solved by the Interior Points Method and the security constraints are considered by the use of Benders Decomposition techniques. The SCOPF is initially parallelized using MPI and then integrated to the actual DSM based SCADA/EMS system SAGE, thoroughly used in the Brazilian power system including the National System Operation Center (CNOS). Results obtained on both the MPI and DSM platforms are presented for actual large size Brazilian power systems analyzed over a list of about a thousand contingencies. The results obtained demonstrate the high efficiency and applicability of the developed tool at Control Centers for real time security control.
机译:本文介绍了基于分布式处理的安全约束最优潮流(SCOPF)的开发及其与分布式共享内存能量管理系统(EMS)的集成,以实现实时电力系统安全控制。优化问题通过内部点方法解决,安全约束通过使用Benders分解技术加以考虑。首先使用MPI将SCOPF并行化,然后将其集成到基于DSM的实际SCADA / EMS系统SAGE中,该SAGE已在包括国家系统运营中心(CNOS)在内的巴西电力系统中彻底使用。在MPI和DSM平台上获得的结果均针对约一千种突发事件的清单中的实际巴西大型电力系统进行了介绍。获得的结果表明,在控制中心开发的工具可以进行实时安全控制,具有很高的效率和适用性。

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