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Reliability assessment for distribution optimization models: A non-simulation-based linear programming approach

机译:配电优化模型的可靠性评估:一种基于非仿真的线性规划方法

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The advent of smart grids and active distribution networks has boosted the relevance of reliability in the operation and planning of distribution systems. As is customary, reliability is assessed analytically through several standard indices. Unfortunately, analytical reliability assessment relies on simulation, thereby requiring the use of inexact heuristic-or metaheuristic-based solution methods to operate and plan distribution systems when economic and reliability criteria are jointly considered. In order to overcome this shortcoming, this paper presents a new optimization-based approach to compute the standard network-dependent reliability indices that are widely used in reliability-constrained distribution optimization models. As a major salient feature over the conventional simulation-based method, reliability indices are equivalently determined by an efficient approach based on linear programming where the network topology is explicitly represented by decision variables of the optimization process. The proposed approach has been tested on several benchmarks including a 1080-node system. Numerical simulations show that the proposed approach yields the same results as the conventional algorithm. Moreover, the moderate computational effort is suitable for the subsequent integration of the proposed equivalent formulation in reliability-constrained optimization models for distribution operation and planning. Such successful numerical experience backs the potential of the proposed formulation to enable the use of sound techniques different from the available heuristics and metaheuristics to solve reliability-constrained operational and planning optimization models for distribution systems.
机译:智能电网和有源配电网的出现提高了配电系统的运行和规划中可靠性的相关性。按照惯例,通过几个标准指标对可靠性进行分析评估。不幸的是,分析可靠性评估依赖于仿真,因此,当共同考虑经济和可靠性标准时,要求使用不精确的启发式或基于元启发式的解决方法来操作和计划配电系统。为了克服这一缺点,本文提出了一种基于优化的新方法来计算标准网络相关的可靠性指标,该指标已广泛应用于可靠性受限的配电优化模型中。作为传统基于仿真的方法的主要显着特征,可靠性指标是通过基于线性规划的有效方法等效地确定的,其中,网络拓扑由优化过程的决策变量明确表示。该提议的方法已经在包括1080节点系统在内的多个基准上进行了测试。数值仿真表明,该方法产生的结果与常规算法相同。此外,适度的计算工作量适合将拟议的等效公式随后集成到可靠性受限的优化模型中,以进行配电运营和计划。这种成功的数字经验支持了所提出的公式的潜力,从而使得能够使用与可用的启发式和元启发式方法不同的声音技术来解决可靠性受限的配电系统运营和计划优化模型。

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