首页|空调温控负荷集群参与光伏消纳的潜力评估与互动框架

空调温控负荷集群参与光伏消纳的潜力评估与互动框架

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空调温控负荷集群作为当下最具调节潜力的需求侧响应资源之一,在削峰、填谷、分布式光伏消纳和电网调控中将发挥重要作用.因此,提出一种电力市场环境下,基于数据驱动和深度置信网络的空调温控负荷集群参与分布式光伏消纳的可调节潜力评估与互动框架.首先,利用数据驱动构建了基于深度置信网络的可调节潜力评估模型,实时输出温控负荷集群的可调节潜力;其次,考虑功率调整量在一定范围内变化的前提下,构建基于深度置信网络的需求互动模型,对温控负荷集群进行实时温度调控.最后,以冀北地区某10kV馈线作为实际算例进行分析,结果表明:所提框架能够充分利用空调温控负荷集群的可调节潜力,参与分布式光伏的消纳.
Potential Assessment and Interaction Framework of Air Conditioning Thermostatically Controlled Load Cluster Participating in Photovoltaic Consumption
As one of the most potential demand side response resources,air conditioning thermostatically controlled load(TCL)cluster will play an important role in peak shifting,dis-tributed photovoltaic consumption and power grid regulation.An adjustable potential assessment and interaction framework of air conditioning thermostatically controlled load cluster par-ticipating in photovoltaic consumption based on data-driven and deep belief nets(DBNs)is proposed in the power market environment.Firstly,a data-driven adjustable potential assess-ment model based on deep belief nets is constructed to output the adjustable potential of thermostatically controlled load cluster in real time.Secondly,within the certain range of power adjustment,a demand interaction framework based on deep be-lief nets(DBNs)is also constructed to regulate the real-time temperature setting of thermostatically controlled load cluster.Finally,taking a 10kV feeder in Northern Hebei as an example,the results show that the proposed framework can make full use of the adjustable potential of the air conditioning thermostatic-ally controlled load cluster,participate in the consumption of distributed photovoltaic,and have high engineering application value.

air conditioning thermostatically controlled load clusterdata drivendeep belief nets(DBNs)potential as-sessmentdemand interaction

陈璨、杜维柱、白恺、孙贝贝、孙靓、付新园、吴俊勇

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国网冀北电力有限公司电力科学研究院,北京市西城区 100045

国网冀北电力有限公司,北京市西城区 100052

北京交通大学电气工程学院,北京市海淀区 100044

空调温控负荷集群 数据驱动 深度置信网络 潜力评估 需求互动

国家电网公司新型电力系统科技攻关行动计划重大专项

5100-202114296A-0-0-00

2024

现代电力
华北电力大学

现代电力

CSTPCD北大核心
影响因子:0.807
ISSN:1007-2322
年,卷(期):2024.41(3)