Research on daily scheduling optimization of integrated energy system considering equipment nonlinearity

Chunlei Zhou, Haolan Yang, Dou Li, Chenchen Yang, Miao Pan, Huashuai Wei, Junli Zhang
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Abstract

The integrated energy system has obvious economic, energy-saving and environmental protection characteristics, and is one of the important ways to achieve the carbon peak and carbon neutral strategy. The operation mode of the integrated energy system is very flexible, and the system can obtain better operation performance through scheduling optimization. To fully improve the system performance, this paper proposes a two-stage integrated energy system intraday scheduling optimization method considering equipment nonlinearity. First, to minimize the operation cost and consider the linear characteristic constraints of equipment, a linear programming model for the optimal scheduling of the intraday economy is established. Then, based on the linear optimization results and considering the nonlinear characteristics of equipment, a nonlinear optimal scheduling model is established, and the nonlinear optimization method is used to further improve the optimization accuracy of the load setting values of each equipment. Simulation results show that, compared with linear scheduling optimization, the deviation between the scheduling results and the actual operation of the system is reduced after considering nonlinear optimization, thus improving the economy, energy conservation, and environmental protection of the system.
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考虑设备非线性的综合能源系统日调度优化研究
综合能源系统具有明显的经济性、节能性和环保性,是实现碳峰值和碳中和战略的重要途径之一。综合能源系统的运行方式非常灵活,通过调度优化可以使系统获得更好的运行性能。为了充分提高系统性能,提出了一种考虑设备非线性的两阶段综合能源系统日内调度优化方法。首先,考虑设备的线性特性约束,以最小化运行成本为目标,建立日内经济最优调度的线性规划模型;然后,在线性优化结果的基础上,考虑设备的非线性特性,建立了非线性优化调度模型,并利用非线性优化方法进一步提高了各设备负荷整定值的优化精度。仿真结果表明,与线性调度优化相比,考虑非线性优化后的调度结果与系统实际运行的偏差减小,从而提高了系统的经济性、节能性和环保性。
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