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Optimal Flow Analysis of a Unified Energy System with Effects of P2G

机译:P2G效应统一能源系统的最佳流动分析

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The reformation of energy hubs has significantly augmented the apprehensions about the levels of dependency between different energy sources which often can also be discussed as independent systems conventionally. This research brings focus on the formulation and analysis of an integrated system with bi-directional energy conversions and its effects on the stability of the system for the benefit of overall secure and cost-effective operations. A general unification approach is adopted for the integration of two energy systems to execute optimal flow analysis in the form of one system based on Newton-Raphson scheme. PV solar energy is added into the system via electrical power system (EPS) to analyze the effects of renewable energy on electric network. A case study is presented to analyze the operational status of EPS and natural gas system (NGS) and effects of different factors on each system. The applicability of the proposed method is established by analysis of 20-Node Belgian gas network combined with IEEE-39 test system. The proposed method verifies not only that integrated systems with P2G capabilities and bi directional conversion increases the rate of smooth and reliable operations significantly but also discusses the limitations still present.
机译:能源中心的改革大大增加了对不同能源之间依赖程度的担忧,这通常也可以作为独立系统常规讨论。该研究带来了对具有双向能量转换的集成系统的配方和分析及其对系统稳定性的影响,以实现整体安全和成本效益的操作。一般统一方法是通过基于Newton-Raphson方案的一个系统的形式来执行两个能量系统来执行最佳流动分析。通过电力系统(EPS)将光伏太阳能添加到系统中,分析可再生能源对电网的影响。提出了一个案例研究,分析了EPS和天然气系统(NGS)的运营状况,以及对每个系统的不同因素的影响。建议方法的适用性是通过分析20节点比利时气体网络与IEEE-39测试系统的分析建立。该方法不仅验证了具有P2G功能和双向转换的集成系统,显着增加了平滑且可靠的操作速率,而且还讨论了仍存在的限制。

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