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      Achieving an optimal trade-off between revenue and energy peak within a smart grid environment

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          Abstract

          We consider an energy provider whose goal is to simultaneously set revenue-maximizing prices and meet a peak load constraint. In our bilevel setting, the provider acts as a leader (upper level) that takes into account a smart grid (lower level) that minimizes the sum of users' disutilities. The latter bases its decisions on the hourly prices set by the leader, as well as the schedule preferences set by the users for each task. Considering both the monopolistic and competitive situations, we illustrate numerically the validity of the approach, which achieves an 'optimal' trade-off between three objectives: revenue, user cost, and peak demand.

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          Most cited references27

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          Autonomous Demand-Side Management Based on Game-Theoretic Energy Consumption Scheduling for the Future Smart Grid

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            Smart Grid — The New and Improved Power Grid: A Survey

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              Demand Side Management: Demand Response, Intelligent Energy Systems, and Smart Loads

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                Author and article information

                Journal
                2016-01-21
                Article
                1601.05678
                5d03c02b-9da1-42fd-99ce-f36eb67eb3d0

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                math.OC
                ccsd

                Numerical methods
                Numerical methods

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