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Steady-state analysis of the integrated natural gas and electric power system with bi-directional energy conversion

机译:具有双向能量转换的天然气和电力集成系统的稳态分析

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Nowadays, the electric power system and natural gas network are becoming increasingly coupled and interdependent. A harmonized integration of natural gas and electricity network with bi-directional energy conversion is expected to accommodate high penetration levels of renewables in terms of system flexibility. This work focuses on the steady-state analysis of the integrated natural gas and electric power system with bi-directional energy conversion. A unified energy flow formulation is developed to describe the nodal balance and branch flow in both systems and it is solved with the Newton-Raphson method. Both the unification of units and the per-unit system are proposed to simplify the system description and to enhance the computation efficiency. The applicability of the proposed method is demonstrated by analyzing an IEEE-9 test system integrated with a 7-node natural gas network. Later, time series of wind power and power load are used to investigate the mitigation effect of the integrated energy system. At last, the effect of wind power and power demand on the output of Power to Gas (P2G) and gas-fired power generation (GPG) has also been investigated. (C) 2016 Elsevier Ltd. All rights reserved.
机译:如今,电力系统和天然气网络之间的耦合和相互依存关系日益紧密。天然气和电力网络与双向能源转换的协调集成,有望在系统灵活性方面适应高渗透率的可再生能源。这项工作着重于具有双向能量转换的天然气和电力集成系统的稳态分析。开发了统一的能量流公式来描述两个系统中的节点平衡和分支流,并使用牛顿-拉夫森方法对其进行了求解。提出了单位和单位系统的统一,以简化系统描述并提高计算效率。通过分析与7节点天然气网络集成的IEEE-9测试系统,证明了该方法的适用性。随后,使用风能和功率负载的时间序列来研究集成能源系统的缓解效果。最后,还研究了风能和电力需求对燃气发电(P2G)和燃气发电(GPG)输出的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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