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A method for power flow calculation and optimal dispatch of gas-thermal-electricity multi energy system considering unit commitment

机译:一种考虑单位承诺的燃热电多能源系统潮流计算与优化调度方法

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摘要

The optimal scheduling of integrated energy system considering unit commitment is a mixed integer nonlinear programming (MINLP) problem with 0-1 binary variables, and the efficient solution of MINLP has always been a research hotspot. In this paper, a power flow calculation method of gas thermal power multi energy coupling system is proposed. Considering the output of coal-fired, gas-fired and new energy units, a simplified unit commitment calculation model is established, which can greatly reduce the number of binary variables and constraints. At the same time, an optimal scheduling model with minimum economic cost and minimum carbon emission is established. For the nonlinear and non convex problem of air pressure equations, the incremental piecewise linearization method based on the idea of feasible region segmentation is used to transform it into MILP model, and the effective optimal solution is obtained. Finally, an example is given to verify the effectiveness and accuracy of the proposed algorithm.
机译:考虑单位承诺的综合能源系统最优调度是一个0-1二元变量的混合整数非线性规划(MINLP)问题,MINLP的高效求解一直是研究热点。该文提出了一种燃气热电多能量耦合系统的潮流计算方法。考虑燃煤、燃气和新能源机组的产量,建立了简化的机组承诺计算模型,可大大减少二元变量和约束的数量。同时,建立了经济成本最小、碳排放最小的最优调度模型。针对气压方程的非线性、非凸问题,采用基于可行区域分割思想的增量分段线性化方法将其转化为MILP模型,得到有效的最优解。最后,通过算例验证了所提算法的有效性和准确性。

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