Multi-regions Bundled Planning of Wind Farm, Thermal, Energy Storage with Renewable Energy Consumption

S. Ma, Liu Lu, Heng Zhang, Haozhong Cheng, Xiaohu Zhang, Jianzhong Lu
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Abstract

Renewable energy and renewable energy consumption is vital in enhancing carbon neutral worldwide. However, present research on multi-regions bundled planning often focus on the aspects of wind and thermal bundled power system planning and energy storage, etc. Research on multi-regions bundled planning of wind farm, thermal power, energy storage with renewable energy consumption is scarce. This paper first introduces indices of bundle proportion and wind power adequacy in transmission expansion planning (BWT-STEP) model which takes into account consumption ratio and energy storage. Then relevant BWT-STEP model and difference of involving energy storage in sending end is innovated. Finally, validity of the proposed model is verified by a modified two-regional RTS-24 system, and the results indicate that the BWT-STEP model is effective for power system planning studies.
风电场、热能、蓄能与可再生能源多区域捆绑规划
可再生能源和可再生能源消费对促进全球碳中和至关重要。然而,目前对多区域捆绑规划的研究多集中在风热捆绑发电系统规划和储能等方面。对风电场、火电、储能与可再生能源消纳的多区域捆绑规划研究较少。本文首先介绍了考虑用电量比和储能的输电网扩容规划(BWT-STEP)模型中的束占比和风电充足度指标。在此基础上,提出了相应的BWT-STEP模型,并提出了在发送端涉及储能的差异。最后,通过改进的两区域RTS-24系统验证了该模型的有效性,结果表明BWT-STEP模型在电力系统规划研究中是有效的。
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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