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首页> 外文期刊>Mathematical Problems in Engineering >Load Aggregator-Based Integrated Demand Response for Residential Smart Energy Hubs
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Load Aggregator-Based Integrated Demand Response for Residential Smart Energy Hubs

机译:基于负载聚合器的住宅智能能源枢纽综合需求响应

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摘要

In order to attract more flexible resource to take part in integrated demand response (IDR), this can be realized by introducing load aggregator-based framework. In this paper, based on residential smart energy hubs (S.E. Hubs), a two-level IDR framework is proposed, in which S.E. Hub operators play the role of load aggregators. The framework includes day-ahead bidding and real-time scheduling. In day-ahead bidding, S.E. Hub operators have to compete dispatching amount for maximal profit; hence, noncooperative game approach is formulated to describe the competition behavior among operators. In real-time scheduling, the dispatching model is formulated to minimize the error between real-time scheduling amount and bidding amount. Moreover, in order to reduce the influence of IDR on residential users, 4 categories of users' flexible loads are modeled according to load consumption characteristic, and then these models are considered as the constraints in real-time scheduling. A case study is designed to validate the effectiveness of the proposed two-level IDR framework. And simulation results confirm that smart grid, S.E. Hub operators, and residential users can benefit simultaneously.
机译:为了吸引更多灵活的资源参与集成需求响应(IDR),可以通过引入基于负载聚合器的框架来实现。本文基于住宅智能能源中心(S.E. Hubs),提出了一个两级IDR框架,其中S.E.集线器操作员扮演负载聚合器的角色。该框架包括提前出价和实时调度。在提前竞标中,S.E。集线器运营商必须竞争调度量以获得最大利润;因此,制定了非合作博弈方法来描述运营商之间的竞争行为。在实时调度中,制定了调度模型以最小化实时调度量和投标量之间的误差。此外,为了减少IDR对居民用户的影响,根据负荷消耗特性对4类用户的弹性负荷进行了建模,然后将这些模型视为实时调度的约束。案例研究旨在验证所提出的两级IDR框架的有效性。仿真结果证实了智能电网S.E.集线器运营商和居民用户可以同时受益。

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