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首页> 外文期刊>Neural computing & applications >Demand-side management for smart grid networks using stochastic linear programming game
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Demand-side management for smart grid networks using stochastic linear programming game

机译:使用随机线性编程游戏的智能电网网络的需求方管理

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摘要

This paper analyzes the mode provisioning and scheduling, in light of the aggregation over distributed energy storage system for improving the interactions and energy trading decisions under the smart grid networks. Further a new smart power system equipped with energy storage devices yields efficiency and robustness in a novel structure, which can identify and react on the energy market equilibrium in a timely manner. An energy consumption and stochastic linear programming game in the distributed structure is proposed for the energy payments, so that scheduling for appliances and storage devices can be used here as well. Furthermore, it is easy to implement a proposed two-phase DSLPM (distributed stochastic linear programming management) algorithm to bring about optimality with both energy provider and users to approach payoff sharing under uncertainty. With the incomplete information, a price equilibrium scheme is proposed. Experimental results are shown to verify the consumed energy, payment, and convergence properties of the proposed models.
机译:本文根据分布式能量存储系统的聚集来分析模式配置和调度,以改善智能电网网络下的相互作用和能源交易决策。另外,配备有能量存储设备的新型智能电力系统在新颖结构中产生效率和鲁棒性,可以及时地识别和对能量市场均衡的衡量。提出了用于能源支付的分布式结构中的能量消耗和随机线性编程游戏,从而可以在此处使用用于设备和存储设备的调度。此外,很容易实现提出的两相DSLPM(分布式随机线性编程管理)算法,以使能量提供者和用户在不确定性下接近收益共享的最优性。通过不完整的信息,提出了一种价格均衡方案。实验结果显示,验证所提出的模型的消耗能量,付款和收敛性。

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