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Optimal operation of integrated energy system considering virtual heating energy storage

Yingfei Gong, Xuan Yang, Jingkun Xu, Changming Chen, Tianyu Zhao, Shengyuan Liu, Zhenzhi Lin, Li Yang, Haitao Qian, Ke Cao

2021Energy Reports23 citationsDOIOpen Access PDF

Abstract

The integrated energy system (IES) is the physical carrier of the Energy Internet, whose optimal operation has become a hot topic because of its effectiveness in improving energy utilization efficiency. This paper proposes an optimal operation model of integrated energy system, where the internal energy flow transmission characteristic of the heating network is modeled as virtual heating energy storage by the node method to enhance the operating flexibility of IES. The second-order cone relaxation method and the incremental formulation for the piecewise linearization method are utilized to transform the proposed nonlinear model into mixed integer quadratic constraint programming model, which can be effectively solved by the commercial solver. Case studies show that the proposed model effectively reduces the operating costs and improves the renewable energy penetration level of IES.

Topics & Concepts

LinearizationComputer scienceEnergy storageRenewable energyMathematical optimizationSolverEnergy (signal processing)Nonlinear systemSimulationEngineeringElectrical engineeringMathematicsPower (physics)StatisticsQuantum mechanicsPhysicsIntegrated Energy Systems OptimizationOptimal Power Flow DistributionMicrogrid Control and Optimization