Integration of wind farm, energy storage and demand response for optimum management of generation and carbon emission

Kasra Shafiei, M. Tarafdar Hagh, Ali Seifi
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Abstract

The optimal operation of power systems is one of the most critical issues for operators. Optimizing the operation of power systems while accommodating the increasing penetration of RES, owing to the intermittent and variable nature of these resources, stands as one of the most critical challenges for power systems. Numerous primary challenges, including fluctuations in load and nonlinear constraints, further complicate the issue, given its substantial dimensions. Therefore, this paper introduces an approach for improving the management of optimal generation and the associated carbon emissions costs of traditional power plants, which is achieved through integrating wind farms and incorporating battery energy storage. This enhancement is achieved by integrating wind farms and utilizing battery storage systems while considering the costs associated with traditional units using fossil fuels and the expenses related to carbon emissions. The simulation incorporates seven load customer types and five traditional generation sources integrated with wind farms and battery storage devices. The simulation results demonstrate that the new problem formulation has significantly improved the ability and performance of optimizing the scheduling of power plant generations.
整合风电场、储能和需求响应,优化发电和碳排放管理
电力系统的优化运行是运营商面临的最关键问题之一。由于可再生能源的间歇性和可变性,优化电力系统的运行,同时适应可再生能源日益增长的渗透率,是电力系统面临的最严峻挑战之一。包括负荷波动和非线性约束在内的众多主要挑战使这一问题变得更加复杂,因为它涉及到很多方面。因此,本文介绍了一种改进优化发电管理和传统发电厂相关碳排放成本的方法,该方法通过整合风电场和电池储能来实现。这种改进是通过整合风电场和利用电池储能系统实现的,同时考虑到了使用化石燃料的传统机组的相关成本以及与碳排放相关的费用。仿真结合了七种负载客户类型和五种传统发电资源,并将其与风力发电场和电池储能设备进行了整合。模拟结果表明,新的问题表述大大提高了优化发电厂发电调度的能力和性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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