论文标题
有效的强大派遣热量和电力系统
Efficient Robust Dispatch of Combined Heat and Power Systems
论文作者
论文摘要
加热和电力系统的组合有助于各个能源部门之间的有效相互作用,以提供更高的可再生能源可容纳。但是,由于存在与可再生能源和多能负载相关的实质性不确定性,因此难以保证操作策略的可行性。本文提出了一种基于干扰不变集的扩展的组合热量和功率系统的新型有效的鲁棒调度模型。该方法具有较高的计算效率,并具有可调节的保守性水平,提供了灵活而健壮的策略。特别是,提出的强大调度方法通过解决名义不确定的调度问题来获得运营策略,该问题的复杂性与确定性问题相同。考虑到时间变化的不确定性集,将标称调度模型赋予适当的约束,从而增强了对不确定性的鲁棒性。为此,基于双重规范开发了一种新颖的直接约束算法,以在没有线性编程迭代的情况下有效地计算多个周期的拧紧约束。此外,预算不确定性集与约束紧缩结合在一起,以灵活地调整强大解决方案的保守性水平。在计算效率,决策鲁棒性和成本最佳性方面,在测试系统的仿真研究中证明了所提出的鲁棒方法的有效性。
Combined heat and power systems facilitate efficient interactions between individual energy sectors for higher renewable energy accommodation. However, the feasibility of operational strategies is difficult to guarantee due to the presence of substantial uncertainties pertinent to renewable energy and multi-energy loads. This paper proposes a novel efficient robust dispatch model of combined heat and power systems based on extensions of disturbance invariant sets. The approach has high computational efficiency and provides flexible and robust strategies with an adjustable level of conservativeness. In particular, the proposed robust dispatch method obtains operational strategies by solving a nominal uncertainty-free dispatch problem, whose complexity is identical to a deterministic problem. The robustness against uncertainties is enhanced by endowing the nominal dispatch model with properly tightened constraints considering time-variant uncertainty sets. Towards this end, a novel direct constraint tightening algorithm is developed based on the dual norm to calculate multi-period tightened constraints efficiently without linear programming iterations. Furthermore, the budget uncertainty set is newly combined with constraint tightening to flexibly adjust the conservativeness level of robust solutions. The effectiveness of the proposed robust method is demonstrated in simulation studies of a test system in terms of computational efficiency, decision robustness and cost optimality.