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Integrated coordination scheduling framework of electricity-natural gas systems considering electricity transmission N−1 contingencies and gas dynamics

机译:考虑输电N-1突发事件和气体动力学的电-气系统综合协调调度框架

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This paper discusses a security-constrained integrated coordination scheduling framework for an integrated electricity-natural gas system (IEGS), in which both tight interdependence between electricity and natural gas transmission networks and their distinct dynamic characteristics at different timescales are fully considered. The proposed framework includes two linear programming models. The first one focuses on hour-based steady-state coordinated economic scheduling on power outputs of electricity generators and mass flow rates of natural gas sources while considering electricity transmission $N-1$ contingencies. Using the steady-state mass flow rate solutions of gas sources as the initial value, the second one studies second-based slow gas dynamics and optimizes pressures of gas sources to ensure that inlet gas pressure of gas-fired generator is within the required pressure range at any time between two consecutive steady-state scheduling. The proposed framework is validated via an IEGS consisting of an IEEE 24-bus electricity network and a 15-node 14-pipeline natural gas network coupled by gas-fired generators. Numerical results illustrate the effectiveness of the proposed framework in coordinating electricity and natural gas systems as well as achieving economic and reliable operation of IEGS.
机译:本文讨论了一个集成的电力-天然气系统(IEGS)的安全受限的集成协调调度框架,该框架充分考虑了电力和天然气传输网络之间的紧密相互依存关系以及它们在不同时标上的独特动态特性。所提出的框架包括两个线性规划模型。第一个重点是在考虑电力传输的同时,对发电机的输出功率和天然气源的质量流量进行基于小时的稳态协调经济调度 $ N-1 $ 意外事件。第二篇以气源的稳态质量流量解作为初始值,研究了基于第二种气体的慢速动力学并优化了气源的压力,以确保燃气发电机的进气压力在所需压力范围内在两次连续的稳态调度之间的任何时间。所提议的框架通过一个IEGS进行了验证,该IEGS由一个IEEE 24总线电力网络和一个15节点的14管道天然气网络组成,该网络由燃气发电机组耦合。数值结果说明了该框架在协调电力和天然气系统以及实现IEGS经济可靠运行方面的有效性。

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