互联多能系统中能源枢纽的最优调度

A. Zidan, H. Gabbar
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引用次数: 12

摘要

由于社会对能源的完全依赖,最重大的挑战之一是生产电力和热能来满足需求。由于化石燃料发电机的高绿色气体排放和持续增长的能源需求,将CHP(热电联产)和可再生资源整合正在取得进展。本文提出了能源枢纽模型作为多能源载体(即电力和天然气)在智能配电网中实现资源鲁棒运行的强有力解决方案。能源枢纽同时运营不同的能源网络,如天然气和电力。能源中心将天然气和电力作为其投入,包括可再生能源的任何贡献。能源中心的功能是以最低的成本和绿色气体排放来满足电力和热量需求。热电联产是促进电力和天然气网络整合的核心能源枢纽。拟议的枢纽将根据上述技术在一年中的不同季节进行安排,以最大限度地降低成本和二氧化碳排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal scheduling of energy hubs in interconnected multi energy systems
Because of society's full dependence on energy, one of the most significant challenges is to produce electricity and heat to meet demands. Integrating CHP (combined heat and power) and renewable resources is developing progressive advances due to the high green gas emissions from fossil fuels-based generators and the continuous growing energy demand. In this paper, energy hub model is presented as a strong solution for multi energy carriers (i.e., electricity and natural gas) for robust operation of the resources in smart distribution network. Energy hub operates different energy networks such as gas and electricity simultaneously. Energy hub enters gas and electricity as its inputs, including any contribution from the renewable energy sources. Energy hub function is supplying electricity and heat demands with minimum costs and green gas emissions. CHP presents the heart of energy hub to facilitate integration of electricity and natural gas networks. The proposed hub is scheduled by the aforementioned technologies during the different seasons of a year to minimize the costs and CO2 emissions.
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