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Optimal Electricity Procurement in Smart Grids With Autonomous Distributed Energy Resources

机译:具有自主分布能源的智能电网的最佳电力采购

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摘要

Proliferation of private distributed energy resources (DERs) necessitates devising effective energy management frameworks. This paper aims at establishing a decentralized model for the optimal dispatch of DERs in smart grids. The objective function is to minimize expected procurement cost of demand while profit of private DER owners is not sacrificed. Unit management modules (UMMs) embedded in private DERs and a central agent are autonomous agents of the model. The approach is iterative. In each iteration, the central agent announces to UMMs its procurement strategy, which contains purchased powers and their prices. Then, UMMs optimize and send back their output power and selling price proposals in the hope of achieving higher profits. The energy service provider (ESP) gathers the bids and modifies the procurement strategy whenever bids are in line with the cost minimization objective. The service provider releases the last procurement strategy in response to which UMMs synchronously update and send back their bids. The mutual interaction between UMMs and ESP is continued to the point in which no further modification in ESP’s procurement strategy is experienced. The effectiveness of the proposed algorithm is demonstrated by its implementation in a system with a few DERs from different types.
机译:私有分布式能源(DERs)的扩散有必要设计有效的能源管理框架。本文旨在建立一种用于智能电网中DER最优调度的分散模型。目标功能是在不牺牲私有DER所有者的利润的情况下,将需求的预期采购成本降至最低。嵌入在专用DER中的单元管理模块(UMM)和中央代理是该模型的自治代理。该方法是迭代的。在每次迭代中,中央代理都会向UMM宣布其采购策略,其中包含购买的权力及其价格。然后,UMM会优化并发送其输出功率和售价建议,以期获得更高的利润。只要投标符合成本最小化目标,能源服务提供商(ESP)就会收集投标并修改采购策略。服务提供商发布最新的采购策略,以响应UMM同步更新并发回其投标。 UMM与ESP之间的相互互动一直持续到无法对ESP的采购策略进行进一步修改的地步。所提出算法的有效性通过其在具有多个不同类型DER的系统中的实现来证明。

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