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Decentralized Transactive Energy for Flexible Resources in Distribution Systems

机译:分散系统中灵活资源的分散的缩小能量

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The increasing penetration of proactive agents in electric power distribution systems calls for mechanisms to coordinate their trading activities. The commonly employed centralized and distributed methods for supply-demand coordination are not only limited by hardware requirements but also restrictive for active participation of the market agents. This paper proposes a novel decentralized transactive coordination framework that allows participants to bid and clear transactions via a bilateral interaction process. The framework is based on 1) power consumption flexibility individually reported by demand agents using model-predictive control, 2) bilateral supply-side bidding individually determined by the supply agents using a Markowitz Portfolio Optimization model, and 3) individual simultaneous clearing of transactions by demand agents based on second-price sealed-bid auctions. The suppliers bid in the market to achieve desired returns while minimizing their risks. The demand agents harness their demand flexibility by competitively clearing the supplier bids. Unlike traditional approaches, the proposed framework does not require master nodes to orchestrate transactions and, therefore, facilitates massive participation of market agents. Simulation cases demonstrate that the proposed framework successfully performs the market function for bilateral transactions among thousands of proactive agents.
机译:在电力分配系统中提高主动性代理的渗透要求机制协调其交易活动。供应需求协调的常用集中和分布式方法不仅限于硬件要求,而且限制了市场代理的积极参与。本文提出了一种新型分散的缩放协调框架,允许参与者通过双边互动过程出价和清除交易。该框架基于1)功耗灵活性由需求代理单独报告,使用模型预测控制,2)双边供应侧竞标由供应代理单独确定,使用Markowitz产品组合优化模型,3)个人同时清除交易基于二价密封拍卖的需求代理。供应商在市场上出价以实现所需的回报,同时最大限度地减少其风险。需求代理通过竞争地清零供应商出价来利用它们的需求灵活性。与传统方法不同,所提出的框架不需要掌握掌点以协调交易,因此促进了市场代理的大规模参与。仿真案例表明,拟议的框架成功地为数千名积极代理商的双边交易进行了市场职能。

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