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Reliability optimization design of distribution systems via multi-level hierarchical procedures and generalized reduced gradient method

机译:基于多层层次程序和广义降梯度法的配电系统可靠性优化设计

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This paper develops an optimization method for reliable design of substations. Reliability indices used are failure rate and interruption duration, which are commonly used in the distribution systems. Through applying the proposed method, the optimal reliability indices of apparatus are obtained, which minimize the total cost comprising apparatus investment cost and interruption cost, and also satisfy reliability constraints of load point. Three kinds of interruption cost including initial interruption cost, outage frequency cost and interruption duration cost are considered. The optimization technique employed in this paper to solve the nonlinear programming problems is the generalized reduced gradient (GRG) method. For simplification of computation of large or complex systems, the multi-level hierarchical optimization is applied. It starts by dividing the system into several subsystems, and finds the optimal reliability indices for subsystems. Then by repeatedly taking the previous "subsystem" as the following "system" and the previous "constituent" as the following "subsystem", and applying the GRG method, we can finally find the desired reliability indices for components of the primitive system. To demonstrate the application of the method, a secondary substation of the Taiwan Power Company is taken as an example, computation results of the application example show that the interruption cost is effectively reduced. The proposed method is applicable to existing substation expansion and new substation establishment.
机译:本文提出了一种变电站可靠设计的优化方法。所使用的可靠性指标是故障率和中断持续时间,它们通常在配电系统中使用。通过所提出的方法,获得了设备的最佳可靠性指标,使设备投资成本和中断成本等总成本降到最低,并且满足了负荷点的可靠性约束。考虑了三种中断成本,包括初始中断成本,中断频率成本和中断持续时间成本。本文用于解决非线性规划问题的优化技术是广义降梯度(GRG)方法。为了简化大型或复杂系统的计算,应用了多层分层优化。首先将系统分为几个子系统,然后找到子系统的最佳可靠性指标。然后,通过将先前的“子系统”作为后续的“系统”,并将先前的“组成部分”作为后续的“子系统”,并应用GRG方法,我们最终可以找到原始系统组件所需的可靠性指标。为了说明该方法的应用,以台湾电力公司的变电站为例,该应用实例的计算结果表明,有效降低了中断成本。该方法适用于现有变电站的扩建和新变电站的建立。

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