← 返回

面向多阶段与新兴技术的低碳转型测试系统

Low-Carbon Transition Test System With Multiple Stages and Emerging Technologies

作者 Mingchen Ma · Haiyang Jiang · Jiaxin Wang · Yi Wang · Weiran Li · Hongyi Wei · Ning Zhang · Yun Su
期刊 IEEE Transactions on Power Systems
出版日期 2025年8月
卷/期 第 41 卷 第 1 期
技术分类 系统集成
技术标签 微电网 构网型GFM 调峰调频 光储一体化
相关度评分 ★★★★ 4.0 / 5.0
关键词
语言:

中文摘要

本文提出PROSPECT-43测试系统,用于评估低碳电力系统转型路径与规划算法。系统含AC-DC混合输电网络、低碳电源、新型负荷(数据中心、电氢耦合)、储能及碳预算约束,支持长期规划与技术协同分析。

English Abstract

Power systems worldwide are undergoing a transition toward a low-carbon future. The structure of low-carbon power systems and the pathways to achieve them remain uncertain due to the rapid evolution of low-carbon technologies. Moreover, advanced planning algorithms should be developed to address the high complexity of planning problems. A standard test system is required to evaluate various prospects of power system transition and planning optimization algorithms. This paper introduces a novel test system, PROSPECT-43, dedicated to the power system’s transition towards the carbon-mitigation target. The test system represents a load center region with an AC-DC hybrid transmission network. The test system incorporates multiple emerging technologies such as low-carbon generation technology, transmission technology and new types of loads (including data centers and power-to-hydrogen industry), enabling researchers to explore the impact of individual technologies and their synergies. The test system provides comprehensive data necessary for long-term power system planning, including candidate units, load growth, the carbon emission budget, etc. This paper provides a detailed description of the test system from the perspectives of the transmission network, generation, storage, and load. In addition, benchmark low-carbon transition pathways are proposed for the test system.
S

SunView 深度解读

该测试系统高度契合阳光电源在光储融合、构网型储能系统(如PowerTitan、ST系列PCS)及iSolarCloud平台的系统级解决方案布局。其AC-DC混合架构、电氢耦合负荷建模可直接支撑阳光电源风光储氢一体化项目设计;碳预算与多阶段规划框架有助于优化PowerStack系统在电网侧储能中的调峰调频策略。建议将PROSPECT-43纳入阳光电源技术预研与算法验证体系,强化构网型PCS在弱电网/零碳园区场景的仿真验证能力。