4.7 Article

Demand Response Management in the Smart Grid in a Large Population Regime

Journal

IEEE TRANSACTIONS ON SMART GRID
Volume 7, Issue 1, Pages 189-199

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TSG.2015.2431324

Keywords

Consumer welfare; demand response management (DRM); large population; profit optimization; Stackelberg game

Funding

  1. Research Council of Norway [240079/F20]
  2. European Commission [PIRSES-GA-2013-627490]
  3. Department of Energy Grant
  4. National Security Agency through the Information Trust Institute, University of Illinois
  5. U.S. Air Force Office of Scientific Research Multi-Disciplinary University Research Initiative [FA9550-10-1-0573]

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In this paper, we introduce a hierarchical system model that captures the decision making processes involved in a network of multiple providers and a large number of consumers in the smart grid, incorporating multiple processes from power generation to market activities and to power consumption. We establish a Stackelberg game between providers and end users, where the providers behave as leaders maximizing their profit and end users act as the followers maximizing their individual welfare. We obtain closed-form expressions for the Stackelberg equilibrium of the game and prove that a unique equilibrium solution exists. In the large population regime, we show that a higher number of providers help to improve profits for the providers. This is inline with the goal of facilitating multiple distributed power generation units, one of the main design considerations in the smart grid. We further prove that there exist a unique number of providers that maximize their profits, and develop an iterative and distributed algorithm to obtain it. Finally, we provide numerical examples to illustrate the solutions and to corroborate the results.

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