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摘要:
Renewable energy based distributed generation(DG) has the potential to reach high penetration levels in the residential region. However, its integration at the demand side will cause rapid power fluctuations of the tieline in the residential region. The traditional generators are generally difficult to manage rapid power fluctuations due to their insufficient efficiency requirements and low responding speed. With an effective control strategy, the demand side resources(DSRs) including DGs, electric vehicles and thermostatically-controlled loads at thedemand side, are able to serve as the energy storage system to smooth the load fluctuations. However, it is a challenge to properly model different types of DSRs. To solve this problem, a unified state model is first developed to describe the characteristics of different DSRs. Then a load curve smoothing strategy is proposed to offset the load fluctuations of the tie-line of the residential region, where a control matrix deduced from the unified state model is introduced to manage the power outputs of different DSRs,considering the response order and the comfort levels.Finally, a residential region with households is used to validate the load curve smoothing strategy based on the unified state model, and the results show that the power fluctuation rate of the tie-line is significantly decreased.Meanwhile, comparative study results are shown to demonstrate the advantages of the unified state model based load curve smoothing strategy.
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篇名 Load curve smoothing strategy based on unified state model of different demand side resources
来源期刊 现代电力系统与清洁能源学报(英文) 学科 工学
关键词 Demand side resource(DSR) Power FLUCTUATION Distributed generation(DG) Electric vehicle(EV) Thermostatically-controlled load(TCL) LOAD CURVE SMOOTHING
年,卷(期) 2018,(3) 所属期刊栏目
研究方向 页码范围 540-554
页数 15页 分类号 TM73
字数 语种
DOI
五维指标
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研究主题发展历程
节点文献
Demand
side
resource(DSR)
Power
FLUCTUATION
Distributed
generation(DG)
Electric
vehicle(EV)
Thermostatically-controlled
load(TCL)
LOAD
CURVE
SMOOTHING
研究起点
研究来源
研究分支
研究去脉
引文网络交叉学科
相关学者/机构
期刊影响力
现代电力系统与清洁能源学报(英文)
双月刊
2196-5625
32-1884/TK
No. 19 Chengxin Aven
出版文献量(篇)
386
总下载数(次)
0
总被引数(次)
0
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