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Supply-Side Load Optimization After Considering Environmental Cost

机译:考虑环境成本后供应侧负荷优化

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摘要

The wide application of renewable energy makes distributed power generation play an increasingly important role, which brings a certain influence to traditional power generation. In the overall environment of smart grid planning, reasonable optimization of load supply side will greatly reduce the cost of power generation, smooth the fluctuation of load, and improve the economy of energy utilization. The optimization of supply side load using time-of-use (TOU) could promote the optimal allocation of resources, which is conducive to the sustainable development of clean energy. This paper aimed at researching the operational mode of traditional power plant and wind power when considering the demand response TOU and considering the constraints of environmental cost, thermal power load, overall dispatching and other factors to optimize the operation mode. In this paper, a multi-objective optimization model with the objective function of minimum curtailment wind rate and maximum power generation profit was established. The effectiveness of the proposed model and the improved algorithm was verified by an example. This paper also provided some support for further research on supply-side renewable energy generation and thermal power optimization considering energy storage.
机译:可再生能源的广泛应用使分布式发电发挥着越来越重要的作用,这对传统发电带来了一定的影响。在智能电网规划的整体环境中,负载供应侧合理优化将大大降低发电成本,平滑负荷波动,提高能源利用的经济性。供应侧负荷的优化使用使用时间(tou)可以促进资源的最佳配置,这有利于清洁能源的可持续发展。本文旨在研究传统发电厂和风力电力的运行方式,考虑到环境成本,热力负荷,总调度等因素,以优化操作模式的要求。在本文中,建立了具有最小缩减风率的目标函数和最大发电利润的多目标优化模型。通过示例验证了所提出的模型和改进算法的有效性。本文还提供了一些支持,以考虑储能的供应侧可再生能源发电和热功率优化研究。

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