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A Techno-Economic Centric Integrated Decision-Making Planning Approach for Optimal Assets Placement in Meshed Distribution Network Across the Load Growth

机译:一种技术经济为中心的综合决策规划方法,用于在负荷增长中最佳资产展示在网状分配网络中

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摘要

The modern distribution networks under the smart grid paradigm have been considered both interconnected and reliable. In grid modernization concepts, the optimal asset optimization across a certain planning horizon is of core importance. Modern planning problems are more inclined towards a feasible solution amongst conflicting criteria. In this paper, an integrated decision-making planning (IDMP) approach is proposed. The proposed methodology includes voltage stability assessment indices linked with loss minimization condition-based approach, and is integrated with different multi-criteria decision-making methodologies (MCDM), followed by unanimous decision making (UDM). The proposed IDMP approach aims at optimal assets sitting and sizing in a meshed distribution network to find a trade-off solution with various asset types across normal and load growth horizons. An initial evaluation is carried out with assets such as distributed generation (DG), photovoltaic (PV)-based renewable DG, and distributed static compensator (D-STATCOM) units. The solutions for various cases of asset optimization and respective alternatives focusing on technical only, economic only, and techno-economic objectives across the planning horizon have been evaluated. Later, various prominent MCDM methodologies are applied to find a trade-off solution across different cases and scenarios of assets optimization. Finally, UDM is applied to find trade-off solutions amongst various MCDM methodologies across normal and load growth levels. The proposed approach is carried out across a 33-bus meshed configured distribution network. Findings from the proposed IDMP approach are compared with available works reported in the literature. The numerical results achieved have validated the effectiveness of the proposed planning approach in terms of better performance and an effective trade-off solution across various asset types.
机译:智能电网范式下的现代配送网络被认为是相互连接和可靠的。在网格现代化概念中,一定规划地平线上的最佳资产优化是核心重要性。现代规划问题更加倾向于相互冲突的标准中可行的解决方案。本文提出了一项综合决策规划(IDMP)方法。所提出的方法包括与损耗最小化条件的方法相关的电压稳定性评估指标,并与不同的多标准决策方法(MCDM)集成,然后是一致的决策制作(UDM)。拟议的IDMP方法旨在坐在网状分销网络中的最优资产,以找到具有正常和负荷增长视野的各种资产类型的权衡解决方案。使用诸如分布式发电(DG),光伏(PV)的可再生DG和分布式静态补偿器(D-STATCOM)单元等资产进行初始评估。针对各种资产优化案件及各自的替代方案的解决方案已经评估了整个规划地平线上的技术唯一,经济唯一的,经济目标和技术经济目标。稍后,各种突出的MCDM方法应用于在不同案例和资产优化方案中找到权衡解决方案。最后,应用UDM以在正常和负载增长水平上寻找各种MCDM方法中的权衡解决方案。所提出的方法在33母线网格配置的分发网络上进行。拟议的IDMP方法的调查结果与文献中报告的可用作品进行比较。实现的数值结果已经验证了拟议的规划方法在更好的性能和各种资产类型的有效权衡解决方案方面的有效性。

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