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Logarithmic Utilities for Aggregator Based Demand Response

机译:基于聚集器的需求响应的对数实用程序

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This paper proposes a distributed scheme for demand response and user adaptation in smart grid networks. Our system model considers scarce distributed power sources and loads. User preference is modelled as `willingness to pay' parameter and logarithmic utility functions are used to model the behaviour of users. The energy management problem is cast as an optimization problem, where the objective is to maximize the utility services to the clients based on price-based demand response scheme. We have addressed the issue concerning the allocation of power among users from multiple sources/utilities within a distributed power network based on users' demands and willingness to pay. We envision a central entity providing a coordinated response to the huge number of scattered consumers, collecting power from all generators and assigning the power flow to the interested users. We propose a two layer price-based demand response architecture. The lower level energy management scheme deals with the power allocation from aggregator to the consumers, and the upper level deals with the distribution of power from utilities to aggregators to ensure the demand-supply balance.
机译:本文提出了一种用于智能电网网络中需求响应和用户适应的分布式方案。我们的系统模型考虑了稀缺的分布式电源和负载。用户偏好被建模为“支付意愿”参数,对数效用函数被用来模拟用户的行为。能源管理问题被视为一个优化问题,其目标是基于基于价格的需求响应方案来最大限度地为客户提供公共服务。我们已经解决了有关基于用户的需求和支付意愿从分布式电源网络中的多个来源/公用事业向用户分配电力的问题。我们设想了一个中央实体,可以对大量分散的用户提供协调的响应,从所有发电机收集电能,并将电能流分配给感兴趣的用户。我们提出了一种基于价格的两层需求响应架构。下层的能源管理方案处理从聚合器到用户的电力分配,上层处理从公用事业到聚合器的电力分配,以确保需求-供应平衡。

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