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Fully Distributed Demand Response Using the Adaptive Diffusion-Stackelberg Algorithm

delete2017-10-01
delete47
PRE
AI
M
Milad Latifi
A
Azam Khalili *
A
Amir Rastegarnia
S
Saeid Sanei
DOI:10.1109/TII.2017.2703132delete
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Abstract

Abstract

En 中文
In this paper, we consider the demand response problem in smart grid consisting of a retailer and multiple residential consumers, where the retailer determines consumers' payments based on their power consumption profile. Our aim is to propose a fully distributed algorithm that is able to optimize the aggregate cost, utility, and retailer's profit simultaneously. To this end, we first formulate the consumer-side trend as a constrained convex optimization problem and propose a fully distributed adaptive diffusion algorithm to solve it. In addition, we design a one-leader N-follower Stackelberg game to model interactions among the retailer and consumers. The proposed framework is able to continuously track the drifts resulting from the changes in the real-time pricing or the consumer preferences. Moreover, it is scalable and does not require network-wide information or rely on central controller. We provide comprehensive simulation results to show the effectiveness of the proposed framework.
Keywords:
Demand response (DR)
diffusion strategy
distributed optimization
penalty method
smart grid
Stackelberg game (SG)
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Journal

IEEE Transactions on Industrial Informatics cover
IEEE Transactions on Industrial Informatics
IF:
9.9
Papers:
8.3K
Citations:
6.0W

Organization

U
University of Surrey
Scholars:
1.2W
Papers: 1.3W
Citations: 22