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A novel economic model for enhancing technical conditions of microgrids and distribution networks utilizing an iterative cooperative game-based algorithm

机译:一种新的经济模型,用于利用基于迭代协同游戏算法的微电网和分配网络技术条件

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摘要

This paper presents an economical approach for reliability improvement, harmonic mitigation, and loss reduction in microgrids and active distribution networks, including distributed generations (DGs). By controlling the direction of power flow in the network in proportion to the purposeful change in the generation of the DGs, the three mentioned objective can be improved. Purposeful reduction of line currents and releasing part of the capacity of lines and feeders following flow control reduces loss and improves overall network reliability. Further, the targeted use of storage and power electronic converters in renewable DGs can reduce the harmonic distortions of the network. The proposed method is a stochastic approach based on the locational marginal price (LMP) calculation in DG bus as game-theoretic problem, according to the contributions of DGs on aforementioned objectives. In this method, each player acquires a financial incentive as incremental price, based on a gametheoretic sharing strategy. In other words, each DG that aligns its generation with the aforementioned objectives will increase the price of selling energy. This increase in prices will lead to higher profits. The incentives allocation procedure to each DGs is performed based on a cooperative coalition game-theoretic strategy to guarantee the fairness of the proposed method. As a tool for managing system, the proposed method can control the impact of the pricing in the form of incentives to satisfy each objective depending on its decision in the incentive allocation procedure. To obtain a more realistic framework, demands and generations of renewable DGs are considered as the uncertainty parameters. To validate the proposed method, it is evaluated on the real Taiwan Power Company (TPC) network and, the promising results indicate that the total loss decreased 54.4%, harmonic mitigated 12.3% and the reliability is improved by 12.6% without any budget extension, add/remove equipment or network reconfiguration.
机译:本文提出了一种经济的可靠性改善,谐波缓解和减少微电网和主动分配网络的损失,包括分布代(DGS)。通过以与DG的产生的有目的的改变的网络中的电力流方向,可以提高三个上述目标。在流量控制后,目的减少线电流和释放部分线和馈线的部分,减少损耗并提高整体网络可靠性。此外,可再生DGS中的存储和电力电子转换器的目标使用可以降低网络的谐波扭曲。根据DGS对上述目标的贡献,所提出的方法是基于DG总线作为游戏理论问题的地区边际价格(LMP)计算的随机方法。在这种方法中,基于Gametheoric共享策略,每个玩家将财务激励作为增量价格获取。换句话说,每个DG与上述目标对准其生成将增加销售能源的价格。这种价格的增加将导致更高的利润。根据合作联盟游戏 - 理论策略来执行每个DG的激励程序分配程序,以保证所提出的方法的公平性。作为管理系统的工具,所提出的方法可以根据其在激励分配过程中的决定来控制奖励的影响,以满足各目标。为了获得更现实的框架,可再生DG的需求和几代被认为是不确定性参数。为了验证拟议的方法,它是在真正的台湾电力公司(TPC)网络上进行评估,有希望的结果表明,总损失下降了54.4%,谐波减轻了12.3%,可靠性提高了12.6%,没有任何预算延期,添加/删除设备或网络重新配置。

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