基于能源路由器的多区域虚拟电厂优化调度

TM734; 为避免风、光、热等资源浪费,建立了在风、光电全消纳情况下,基于能源路由器的多区域虚拟电厂(Virtual Power Plant,VPP)优化调度模型,该模型包含风电、光伏、电动汽车(Electric Vehicles,EVs)、垃圾焚烧电厂、燃气轮机、电转气(Power to Gas,P2G)技术以及需求响应.以改进的IEEE 9节点系统为例,利用MATLAB/YALMIP工具求解模型,得到不同场景下调度模型的净运行利润.算例分析表明:VPP通过同时参与电力市场、加装余热回收装置和烟气联合处理装置、P2G技术及各区域间电能互补,极大地提高了能源利用率,同时使得VPP净运行利润增...

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Published in电测与仪表 Vol. 57; no. 24; pp. 84 - 92
Main Authors 牛壮壮, 刘三明, 刘扬
Format Journal Article
LanguageChinese
Published 上海电机学院电气学院,上海201306 25.12.2020
Subjects
Online AccessGet full text
ISSN1001-1390
DOI10.19753/j.issn1001-1390.2020.24.011

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Abstract TM734; 为避免风、光、热等资源浪费,建立了在风、光电全消纳情况下,基于能源路由器的多区域虚拟电厂(Virtual Power Plant,VPP)优化调度模型,该模型包含风电、光伏、电动汽车(Electric Vehicles,EVs)、垃圾焚烧电厂、燃气轮机、电转气(Power to Gas,P2G)技术以及需求响应.以改进的IEEE 9节点系统为例,利用MATLAB/YALMIP工具求解模型,得到不同场景下调度模型的净运行利润.算例分析表明:VPP通过同时参与电力市场、加装余热回收装置和烟气联合处理装置、P2G技术及各区域间电能互补,极大地提高了能源利用率,同时使得VPP净运行利润增大.
AbstractList TM734; 为避免风、光、热等资源浪费,建立了在风、光电全消纳情况下,基于能源路由器的多区域虚拟电厂(Virtual Power Plant,VPP)优化调度模型,该模型包含风电、光伏、电动汽车(Electric Vehicles,EVs)、垃圾焚烧电厂、燃气轮机、电转气(Power to Gas,P2G)技术以及需求响应.以改进的IEEE 9节点系统为例,利用MATLAB/YALMIP工具求解模型,得到不同场景下调度模型的净运行利润.算例分析表明:VPP通过同时参与电力市场、加装余热回收装置和烟气联合处理装置、P2G技术及各区域间电能互补,极大地提高了能源利用率,同时使得VPP净运行利润增大.
Author 刘扬
牛壮壮
刘三明
AuthorAffiliation 上海电机学院电气学院,上海201306
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Liu Sanming
Liu Yang
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Keywords 能源路由器
优化调度
虚拟电厂
资源浪费
P2G技术
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Snippet TM734; 为避免风、光、热等资源浪费,建立了在风、光电全消纳情况下,基于能源路由器的多区域虚拟电厂(Virtual Power Plant,VPP)优化调度模型,该模型包含风电、光伏、电动汽车(Electric Vehicles,EVs)、垃圾焚烧电厂、燃气轮机、电转气(Power to...
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Title 基于能源路由器的多区域虚拟电厂优化调度
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