基于需求侧管理的线性规划平台微电网最优调度组合

Subho Paul, Archana Tamrakar, N. Padhy
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引用次数: 8

摘要

微电网有助于将可再生能源渗透到现有的配电系统中,通过减少对主电网的依赖来减少全球的总体碳足迹。为了证明微电网概念的大规模部署是合理的,必须保证其经济运行。但由于微网组件和网络本身的非线性特性,使得调度过程十分复杂。同样,非线性解决策略不能保证全局收敛。因此,高效的线性模型微电网资源调度算法以其简单、快速的计算能力受到人们的关注。相反,对于高峰需求管理而言,灵活的负荷调度是微电网运营商实现客户不满最小化的可行且最简单的选择。本文设计了一个微电网调度的线性模型,通过实施需求侧管理策略来管理旨在减少峰值需求的灵活设备,从而达到上述目的。通过对印度商业负荷和住宅负荷组成的配电系统的实际应用,验证了该策略的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Demand Side Management Based Optimal Scheduling Portfolio of a Microgrid in Linear Programming Platform
Microgrid facilitates penetration of renewable energy sources into the existing distribution systems to reduce the overall carbon footprint of the globe by reducing the dependency on the main grid. To justify the large deployment of the microgrid concept, economic operation should be guaranteed. But non-linearities present in the nature of microgrid components and network make the scheduling process complex. Again, non-linear solution strategies do not guarantee global convergence. Therefore, efficient but linear model for microgrid resource scheduling algorithms are gaining interest in present time due to its simplicity and fast computation. On the contrary, for peak demand management, flexible load scheduling is a viable and easiest option to the microgrid operators to minimize the customers' dissatisfaction. This article serves the aforementioned purposes by designing a linear model for microgrid scheduling by implementing demand side management strategies to manage flexible appliances aiming for peak demand reduction. The strategy is implemented on a practical Indian distribution system consisting of commercial and residential loads to prove its efficacy.
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