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A Unified Energy Flow Analysis in Integrated Electricity and Natural Gas Systems Considering State Variables of Energy Hub

机译:考虑能量枢纽状态变量的综合电力和天然气系统中的统一能量流分析

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With the integration of multiple energy conversion units into the integrated electricity and natural gas systems (IEGS), the analysis and calculation of energy flow becomes more complex. Furthermore, the state variables of multiple energy conversion units are needed to detailed model in the energy flow algorithm process. To cope with that, a unified energy flow algorithm is proposed in this paper, considering the influence of coupled units on energy flow calculation in IEGS. Firstly, the multi-energy conversion units are abstracted as a energy hub (EH), which provides a unified modeling method to describe the energy flow relationship between different energy networks. Secondly, the electric and gas inputs of EH are added to form a new state variable column vector based the original sub-network state variables. Then, a new Jacobian matrix is derived based on Newton-Raphson method to form an iterative relationship. Finally, case study is verified on the modified IEEE39-NGS20 test system. The proposed energy flow algorithm can effectively reduce computational burden in multi-energy networks.
机译:随着多种能量转换单元的集成到综合电力和天然气系统(IEG),能量流量的分析和计算变得更加复杂。此外,在能量流算法过程中需要多种能量转换单元的状态变量。为了应对这一点,本文提出了一种统一的能量流算法,考虑到耦合单元对IEG中的能量流量计算的影响。首先,多能量转换单元被抽象为能量集线器(EH),其提供统一的建模方法来描述不同能量网络之间的能量流动关系。其次,添加EH的电气和气体输入以形成基于原始子网状态变量的新状态变量列向量。然后,基于Newton-Raphson方法导出新的Jacobian矩阵以形成迭代关系。最后,在修改的IEE39-NGS20测试系统上验证了案例研究。所提出的能量流算法可以有效地降低多能量网络中的计算负担。

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