考虑负荷不确定性的多能互补分布式能源系统优化设计

Huan Ma, Pengfei Zhang, Zhongyang Chen, Ying Fan, Na Wang, H. Ren
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引用次数: 1

摘要

随着分布式冷热电联产系统的大规模普及,出现了灵活性差、能源来源单一等问题,对其未来的发展造成了很大的阻碍。为了克服这些问题,提出了多能源互补分布式能源系统,以提高可再生能源的灵活性和比例。对于这样一个复杂的系统,如何高效、环保地整合和运行各种设备是至关重要的。因此,合理的系统设计和优化是必要的。本文基于随机规划理论,研究了考虑不确定负荷的多能互补分布式能源系统的最优设备配置问题。通过蒙特卡罗模拟,模拟了所有可能的载荷工况,将随机优化转化为确定性优化。结果表明,考虑不确定负荷时,系统配置受到明显影响,多能互补分布式能源系统的整体优势下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Design of Multi-energy Complementary Distributed Energy System Considering Load Uncertainty
With the large-scale penetration of distributed combined cooling, heating and power system, many problems like the poor flexibility and single energy source occur, which poses a big obstacle to its future development. To overcome these issues, the multi-energy complementary distributed energy system is proposed for improving the flexibility and increasing the ratio of renewable energy resources. For such a complex system, how to integrate and operate various equipment in an efficient and environmentally friendly way is of vital importance. Thus, rational system design and optimization is necessary. In this study, on the basis of stochastic programming theory, the optimal equipment configuration of the multi-energy complementary distributed energy system considering uncertain loads is studied. All possible load conditions are simulated by Monte Carlo simulation, then the stochastic optimization is transformed into the deterministic optimization. The results show that when considering the uncertain load, the system configuration is affected obviously and the overall advantage of the multi-energy complementary distributed energy system is declined.
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