高风电渗透率下考虑电网频率支撑需求的储能系统配置方法
TM761+.2%TM614; 提出了一种高风电渗透率下考虑电网频率支撑需求的储能系统配置方法.以频率变化率和频率偏差为限制条件,建立新能源系统所能承受的最大功率增量与等效惯性常数、调差系数以及风电渗透率等已知参数的联系.通过对3阶虚拟同步机控制策略下的储能系统容量与控制参数进行量化配置,提高不同风电渗透率系统对不平衡功率的消纳能力.以储能配置在频率支撑中贡献的等效单位调节功率为参考,对不同功率增量下储能系统的频率响应贡献、调频出力占比以及输出功率特性进行刻画与分析.仿真验证了该配置方法下的储能系统可控性强,能够较为精准地提供电网所需的有功调节量,有效改善风电并网环境....
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Published in | 电力自动化设备 Vol. 41; no. 10; pp. 36 - 43 |
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Main Authors | , , , , |
Format | Journal Article |
Language | Chinese |
Published |
东北电力大学现代电力系统仿真控制与绿色电能新技术教育部重点实验室,吉林吉林132012%国网吉林省电力公司,吉林长春130000
10.10.2021
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Subjects | |
Online Access | Get full text |
ISSN | 1006-6047 |
DOI | 10.16081/j.epae.202110014 |
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Abstract | TM761+.2%TM614; 提出了一种高风电渗透率下考虑电网频率支撑需求的储能系统配置方法.以频率变化率和频率偏差为限制条件,建立新能源系统所能承受的最大功率增量与等效惯性常数、调差系数以及风电渗透率等已知参数的联系.通过对3阶虚拟同步机控制策略下的储能系统容量与控制参数进行量化配置,提高不同风电渗透率系统对不平衡功率的消纳能力.以储能配置在频率支撑中贡献的等效单位调节功率为参考,对不同功率增量下储能系统的频率响应贡献、调频出力占比以及输出功率特性进行刻画与分析.仿真验证了该配置方法下的储能系统可控性强,能够较为精准地提供电网所需的有功调节量,有效改善风电并网环境. |
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AbstractList | TM761+.2%TM614; 提出了一种高风电渗透率下考虑电网频率支撑需求的储能系统配置方法.以频率变化率和频率偏差为限制条件,建立新能源系统所能承受的最大功率增量与等效惯性常数、调差系数以及风电渗透率等已知参数的联系.通过对3阶虚拟同步机控制策略下的储能系统容量与控制参数进行量化配置,提高不同风电渗透率系统对不平衡功率的消纳能力.以储能配置在频率支撑中贡献的等效单位调节功率为参考,对不同功率增量下储能系统的频率响应贡献、调频出力占比以及输出功率特性进行刻画与分析.仿真验证了该配置方法下的储能系统可控性强,能够较为精准地提供电网所需的有功调节量,有效改善风电并网环境. |
Author | 孙同 刘洪波 彭晓宇 张崇 张书钰 |
AuthorAffiliation | 东北电力大学现代电力系统仿真控制与绿色电能新技术教育部重点实验室,吉林吉林132012%国网吉林省电力公司,吉林长春130000 |
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Author_FL | SUN Tong PENG Xiaoyu ZHANG Shuyu LIU Hongbo ZHANG Chong |
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Title | 高风电渗透率下考虑电网频率支撑需求的储能系统配置方法 |
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