提出一种面向电力系统调控需求的储能系统集中控制策略,以提高电网接纳风电规模,减少弃风电量。同时根据储能系统荷电状态(state of charge,SOC),对储能系统充放电指令进行实时修正,防止储能系统过充过放,优化其运行性能。建立了储能系...提出一种面向电力系统调控需求的储能系统集中控制策略,以提高电网接纳风电规模,减少弃风电量。同时根据储能系统荷电状态(state of charge,SOC),对储能系统充放电指令进行实时修正,防止储能系统过充过放,优化其运行性能。建立了储能系统经济性评估模型,用以评估储能系统提高风电接纳的运行经济效益。以收益最大为目标,确定储能系统容量配置。基于某地区实测数据对上述控制策略和经济性评估模型进行验证,结果表明提出的面向系统调控需求的储能系统控制方法能够扩大风电入网规模,有效利用电网可接纳风电空间。展开更多
With the acceleration of urbanization,cities are the main targets for carbon neutrality and urban energy is the terminal of energy consumption and the integration point of various energy systems.Therefore,there is a n...With the acceleration of urbanization,cities are the main targets for carbon neutrality and urban energy is the terminal of energy consumption and the integration point of various energy systems.Therefore,there is a need to promote the development of urban green energy and achieve low input and high output to achieve a low-carbon economy in cities.Previous studies have not considered the input-output efficiency of urban green-energy development.This study fills this gap.Based on the economic-energy-environmental framework,an input-output efficiency-evaluation index system for urban green-energy development was constructed.Based on improved data-envelopment analysis,a comparative evaluation of the input-output efficiency of green-energy development was carried out in 30 provinces in China in 2019.Considering the differences in regions,the development of urban green energy in different provinces was classified.From the perspective of a low-carbon economy,economic growth factors and environmental constraint factors were set.Together with the generalized Divisia index approach,the input-output efficiency optimization directions of urban green-energy development were obtained.The results showed that the input-output efficiencies of urban green-energy development in Jiangsu,Zhejiang,Fujian,Inner Mongolia,Ningxia and other provinces and cities were relatively high.Provinces with faster economic development and higher environmental carrying capacity have advantages after optimization and will become pilot areas for the development of urban green energy.This research provides a reference for the development of urban green energy in various provinces from the input and output perspective.展开更多
文摘提出一种面向电力系统调控需求的储能系统集中控制策略,以提高电网接纳风电规模,减少弃风电量。同时根据储能系统荷电状态(state of charge,SOC),对储能系统充放电指令进行实时修正,防止储能系统过充过放,优化其运行性能。建立了储能系统经济性评估模型,用以评估储能系统提高风电接纳的运行经济效益。以收益最大为目标,确定储能系统容量配置。基于某地区实测数据对上述控制策略和经济性评估模型进行验证,结果表明提出的面向系统调控需求的储能系统控制方法能够扩大风电入网规模,有效利用电网可接纳风电空间。
文摘With the acceleration of urbanization,cities are the main targets for carbon neutrality and urban energy is the terminal of energy consumption and the integration point of various energy systems.Therefore,there is a need to promote the development of urban green energy and achieve low input and high output to achieve a low-carbon economy in cities.Previous studies have not considered the input-output efficiency of urban green-energy development.This study fills this gap.Based on the economic-energy-environmental framework,an input-output efficiency-evaluation index system for urban green-energy development was constructed.Based on improved data-envelopment analysis,a comparative evaluation of the input-output efficiency of green-energy development was carried out in 30 provinces in China in 2019.Considering the differences in regions,the development of urban green energy in different provinces was classified.From the perspective of a low-carbon economy,economic growth factors and environmental constraint factors were set.Together with the generalized Divisia index approach,the input-output efficiency optimization directions of urban green-energy development were obtained.The results showed that the input-output efficiencies of urban green-energy development in Jiangsu,Zhejiang,Fujian,Inner Mongolia,Ningxia and other provinces and cities were relatively high.Provinces with faster economic development and higher environmental carrying capacity have advantages after optimization and will become pilot areas for the development of urban green energy.This research provides a reference for the development of urban green energy in various provinces from the input and output perspective.