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Co-optimization of electricity day-ahead market and steady-state natural gas system using Augmented Lagrangian

机译:使用增强型拉格朗日机共同优化日间电力市场和稳态天然气系统

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A coupled optimization of the electricity and gas systems is presented in this paper. The electricity problem involves a unit commitment with co-optimization of energy and reserves under a power pool, considering all system operational and unit technical constraints. The gas problem involves a large-scale highly non-convex and non-linear problem structure, which is modeled as a Mixed Integer Non-Linear Programming model. The decomposition of the overall problem is based on the Augmented Lagrangian method. An iterative process is implemented, coordinating the two interdependent systems using an alternating minimization method, in which the Lagrange multipliers are updated using a subgradient method. The solution algorithm is evaluated using the Greek power and gas system, employing thirteen gas-fired units and fifty-three gas network nodes. The test results indicate the strong interdependence of the two systems, and demonstrate the efficiency of the presented algorithm in coordinating them.
机译:本文介绍了电力和天然气系统的耦合优化。电力问题涉及机组承诺,并在考虑所有系统运行和机组技术约束的情况下共同优化发电池下的能源和储备。气体问题涉及大规模的高度非凸和非线性的问题结构,该结构被建模为混合整数非线性规划模型。整个问题的分解基于增强拉格朗日方法。使用交替最小化方法来协调两个相互依赖的系统,从而实现迭代过程,其中使用次梯度方法更新拉格朗日乘数。该解决方案算法使用希腊的电力和天然气系统进行评估,该系统采用了13个燃气单元和53个燃气网络节点。测试结果表明这两个系统之间具有很强的相互依赖性,并证明了所提出算法在协调它们方面的效率。

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