首页|期刊导航|东北电力技术|火电深度调峰下计及双收益共享的农业园区系统调度策略

火电深度调峰下计及双收益共享的农业园区系统调度策略OA

Scheduling Strategy for Agricultural Park System Considering Dual Benefit Sharing Under Thermal Power Deep Adjustment

中文摘要英文摘要

针对大规模新能源并网下,火电机组参与深度调峰所导致的农业园区系统运行成本升高问题,本文提出计及双收益共享的农业园区系统优化调度方法.首先,分析不同深度调峰状态下火电机组调峰成本,建立农业园区系统运行模型;其次,构建基于 STIRPAT 模型与岭回归分析的农业碳汇收益预测模型,提出考虑农业碳汇与可再生能源机组参与国家核证自愿减排量(chinese certified emission reduction,CCER)的双收益共享机制;最后,利用大 M 法将火电机组深度调峰成本转化为线性约束,以农业园区系统运行成本最低为优化目标,构建农业园区系统日前优化调度模型.通过算例仿真分析表明,相比于仅考虑运行成本最优方案,本文所提优化调度策略,系统总运行成本降低 39.72%,新能源消纳增加 32.06%.

According to the problem of increased operating costs of agricultural park systems caused by the participation of thermal power units in deep peak shaving under the large-scale integration of new energy into the grid,it proposes an optimized scheduling method for agricultural park systems that takes into account the sharing of dual benefits.Firstly,it analyzes the peak shaving costs of thermal power units under different peak shaving depths and establishes a system operation model for agricultural parks.Secondly,it constructs an agricultural carbon sink revenue prediction model based on the STIRPAT model and ridge regression,and proposes a dual benefit sharing mechanism considering agricultural carbon sinks and the participation of renewable energy units in Chinese Certified Emission Reduction(CCER).Finally,it transforms the deep peak shaving cost of thermal power units into a linear constraint by using the large M method.With the optimization objective of minimizing the operating cost of the agricultural park system,it constructs a day-before optimal scheduling model for the agricultural park system.The simulation analysis through case studies shows that,compared with only considering the optimal operating cost scheme,using the optimized scheduling strategy proposed it reduces the total operating cost of the system by 39.72%and increases the consumption of new energy by 32.06%.

贺培龙;董健;刘夏宇;王海鑫;HASSAN Bevrani

沈阳工业大学电气工程学院,辽宁 沈阳 110870国网辽宁省电力有限公司经济技术研究院,辽宁 沈阳 110055国网甘肃省电力公司兰州供电公司,甘肃 兰州 730000沈阳工业大学电气工程学院,辽宁 沈阳 110870库尔德斯坦大学工程学院,伊朗 吉兰 6617715175

信息技术与安全科学

碳交易低碳经济火电机组深度调峰双收益共享机制农业碳汇

carbon tradinglow carbon economydeep peak shaving of thermal power unitsdual benefit sharing mechanismagri-cultural carbon sink

《东北电力技术》 2026 (6)

37-45,9

高等学校学科创新引智计划(D23005)辽宁省科技计划联合计划项目(2023JH2/101700275)辽宁省教育厅基本科研项目(JYTQN2023288)辽宁省研究生教育教学改革研究项目(LNYJG2024043)

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