Real-Time Pricing-Based Scheduling Strategy in Smart Grids: A Hierarchical Game Approach
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This paper proposes a scheduling strategy based on real-time pricing in smart grids. A hierarchical game is employed to analyze the decision-making process of generators and consumers. We prove the existence and uniqueness of Nash equilibrium and utilize a backward induction method to obtain the generation and consumption strategies. Then, we propose two dynamic algorithms for the generators and consumers to search for the equilibrium in a distributed fashion. Simulation results demonstrate that the proposed scheduling strategy can match supply with demand and shift load away from peak time.
2019 ◽
Vol 7
(5)
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pp. 1280-1293
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Keyword(s):
2017 ◽
Vol 8
(5)
◽
pp. 2249-2257
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