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首页> 外文期刊>Power Systems, IEEE Transactions on >Optimal Black Start Allocation for Power System Restoration
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Optimal Black Start Allocation for Power System Restoration

机译:电力系统恢复的最佳黑启动分配

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摘要

Equipment failures, operator errors, natural disasters and cyber-attacks can and have caused extended blackouts of the electric grid. Even though such events are rare, preparedness for them is critical because extended power outages endanger human lives, compromise national security, or result in economic losses of billions of dollars. Since most of the generating units cannot restart without connecting to an energized grid, the system operator relies on a few units with the ability to start autonomously, called Black Start (BS) units, to restore the power system. Allocating and maintaining these units is costly and can severely impact the restoration security and time. We formulate an optimization problem to optimally allocate BS units in the grid, while simultaneously optimizing over the restoration sequence. We extend existing optimal allocation models by including grid considerations such as active power nodal balance, transmission switching, nodal reactive power support and voltage limits. In order to aid the branch and bound tree that solves the resulting large scale mixed integer program, we propose a randomized heuristic that is executed multiple times in parallel on a high-performance computing environment to find feasible solutions. We proceed to solve the IEEE-39, the IEEE-118, and a simplified WECC system with 225 nodes and 136 generators to near optimality.
机译:设备故障,操作员失误,自然灾害和网络攻击都可能导致电网停电。尽管此类事件很少发生,但为它们做好准备是至关重要的,因为长时间的停电会危及生命,危及国家安全,或造成数十亿美元的经济损失。由于大多数发电机组都必须在未连接到通电的电网的情况下才能重启,因此系统操作员依靠少数具有自动启动功能的单元(称为Black Start(BS)单元)来恢复电力系统。分配和维护这些单元的成本很高,并且可能严重影响恢复的安全性和时间。我们提出了一个优化问题,以在网格中优化分配BS单元,同时在恢复序列上进行优化。我们通过包括电网考虑因素(例如有功功率节点平衡,传输切换,节点无功功率支持和电压限制)来扩展现有的最佳分配模型。为了帮助解决生成的大规模混合整数程序的分支定界树,我们提出了一种随机启发式算法,该算法在高性能计算环境中并行执行多次,以找到可行的解决方案。我们着手解决IEEE-39,IEEE-118和具有225个节点和136个生成器的简化WECC系统,以达到最佳效果。

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