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Optimal Scheduling of Multi-Carrier Energy System Based on Energy Hub Concept Considering Power-to-Gas Storage

机译:考虑能量-气体存储的基于能量枢纽概念的多载波能量系统最优调度

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摘要

Supplying sustainable energy is of a critical prominence nowadays. A main outcome of the galloping development in energy generation technologies is the ability to integrate multi-carrier energy systems that facilitates meeting the fast growth of energy demand. Energy hub is one of the main infrastructures making the incorporation of multi-carrier systems smoother. In this paper, the optimal scheduling problem of an energy hub structure equipped with combined heat and power, boiler, power-to-gas storage, thermal energy storage and electrical energy storage in order to supply power, heat and gas demands is presented. Power to gas is regarded as a new technology that creates a connection between power and gas networks by converting power to the natural gas through two processes of electrolysis and mechanization, respectively. The proposed framework is formulated as a mixed-integer linear programming (MILP) model. The simulation results demonstrate the effectiveness of the integration of multi-carrier energy storage systems in energy hub on the operation cost reduction.
机译:如今,供应可持续能源至关重要。能源发电技术飞速发展的主要成果是能够集成多载波能源系统,从而有助于满足能源需求的快速增长。能源枢纽是使多载波系统的整合更加顺畅的主要基础设施之一。在本文中,提出了一种供热,供热,供气,供热,供气,供热,供气,供热的联合能源枢纽结构的最优调度问题。天然气发电被认为是一项新技术,该技术通过分别通过电解和机械化两个过程将能源转换为天然气,从而在电力和天然气网络之间建立了联系。提出的框架被公式化为混合整数线性规划(MILP)模型。仿真结果证明了在能源枢纽中集成多载波储能系统在降低运营成本方面的有效性。

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