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储能系统技术 储能系统 ★ 5.0

考虑大规模储能系统、输电扩容与碳排放配额交易的互联多区域电力系统协调规划

Coordinated Planning of Interconnected Multi-regional Power Systems Considering Large-scale Energy Storage Systems, Transmission Expansion, and Carbon Emission Quota Trading

语言:

中文摘要

全球变暖促使各国积极发展减排技术并制定相关政策。本文针对互联多区域电力系统,提出一种计及储能系统规划与输电扩容的协调规划模型,并引入基于市场的碳排放配额交易机制,允许主体买卖碳配额,分析其对减排的促进作用。考虑区域间信息交互受限,采用解析目标级联算法对模型进行解耦求解。通过改进的双区域48节点系统验证了模型与求解方法的有效性。

English Abstract

Global warming has motivated the world's major countries to actively develop technologies and make policies to promote carbon emission reduction.Focusing on interconnected multi-regional power systems,this paper proposes a coordinated planning model for interconnected power systems considering energy storage system planning and transmission expansion.A market-based carbon emission quota trading market that helps reduce carbon emissions is built and integrated into the coordi-nated planning model,where entities can purchase extra or sell surplus carbon emission quotas.Its effects on promoting carbon emission reduction are analyzed.Considering the limitations on information exchange between interconnected regional power systems,the proposed model is decoupled and solved with the analytical target cascading algorithm.A modified two-region 48-bus system is used to verify the effectiveness of the proposed model and solving method.
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SunView 深度解读

该研究的多区域储能与输电协调规划方法对阳光电源PowerTitan大型储能系统和ST系列储能变流器的区域级部署具有重要指导价值。碳配额交易机制可集成到iSolarCloud云平台,为储能系统提供碳资产管理和经济优化功能,提升投资回报率。解析目标级联算法适用于多区域储能集群的分布式协调控制,可优化阳光电源储能EMS能量管理策略,实现跨区域储能资源的协同调度。该模型将储能规划与电网扩容、碳交易深度耦合,为阳光电源开发面向电网侧的储能系统规划工具提供理论支撑,助力大规模储能项目的经济性评估与优化配置。