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Security Check for Scheduling Plans Based on Contingency Screening and Parallel Computation for Multi-period Cases

机译:基于偶然筛选和并行计算的多周期案例的安全检查安全检查计划

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Since security check for scheduling plans faces the problem of heavy computing burdens and inefficient utilization of parallel computation platform, a method based on contingency screening and parallel computation for multi-period cases is proposed to complete the calculation within a given time. Scheduling plans are divided into groups with adjacent time stamps based on core number of parallel computation platform and average number of screened contingencies to ensure that transient stability analysis, static security analysis and dynamic stability analysis can be finished in similar time. Security check results of day-ahead, intraday and real-time plan are designated with priority from low to high to form the queue for contingency screening. Queue of security check results will be updated once the security and stability analysis of a plan with higher priority is finished. Plans with available historical results will be chosen to reduce the number of plans needing security and stability analysis for all contingencies. The procedure of security check consists of three stages, including power flow data generation, security and stability analysis and decision-making. Dispatch strategy will finish the calculation of all plans at each stage and allocate cores by the submission time of plans to ensure load balance. Real engineering applications in actual power grid have fully confirmed the validity and rapidity of this method.
机译:由于对调度计划的安全检查面临着沉重的计算负担和平行计算平台的低效利用的问题,因此提出了一种基于多个时段外壳的临时筛选和并行计算的方法来完成给定时间内的计算。调度计划分为具有基于核心数量的相邻时间戳的组,以及平均屏蔽突发事件的次数,以确保瞬态稳定性分析,静态安全性分析和动态稳定性分析可以在类似的时间内完成。安全检查结果日前,日内和实时计划的优先级从低到高,以形成应急筛选的队列。一旦完成了更高优先级的计划的安全性和稳定性分析,就会更新安全检查结果的队列。将选择具有可用历史业绩的计划,以减少所有突发事件需要安全和稳定性分析的计划数量。安全检查程序包括三个阶段,包括电流数据生成,安全性和稳定性分析和决策。派遣策略将完成每个阶段的所有计划的计算,并通过提交计划的提交时间分配核心,以确保负载余额。实际电网中的实际工程应用完全证实了这种方法的有效性和快速性。

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