Consider the Allocation of "Wind-Solar-Storage" Energy Storage Capacity in Carbon Emission Trading

Guoying Liu, Chenxin Yu, Huirong Cao, Zhijian Liu, Xinyu Meng
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Abstract

Aiming at the fact that more and more carbon emission trading (CET) is included in the industry, an energy storage capacity planning model considering carbon emission trading is proposed. First, analyze the CET trading rules, and establish a carbon emission trading model that maximizes the profit of each power generation entity. Secondly, according to the construction cost and service life, the energy storage cost model allocated to the unit energy is established, and the maximum marginal benefit of the system is used as the objective function to optimize the energy storage capacity. Finally, energy storage is configured in an industrial park in the south. Through the analysis of energy storage capacity allocation in the CET market environment, the effectiveness of the model is verified from two aspects of economic and environmental benefits.
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考虑碳排放交易中“风能-太阳能-储能”储能容量的分配
针对行业碳排放权交易越来越多的现状,提出了一种考虑碳排放权交易的储能容量规划模型。首先,分析碳排放权交易规则,建立各发电主体利润最大化的碳排放权交易模型。其次,根据建设成本和使用寿命,建立单位能量分配的储能成本模型,以系统边际效益最大化为目标函数,对储能容量进行优化。最后,在南部的一个工业园区配置储能。通过对CET市场环境下储能容量配置的分析,从经济效益和环境效益两个方面验证了模型的有效性。
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