舰船混合动力驱动服务质量约束下的燃油优化

S. Lahiri, K. Miu, H. Kwatny, G. Bajpai, A. Beytin, J. Patel
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引用次数: 5

摘要

提出了一种基于不同任务考虑的舰船混合动力推进系统燃料成本优化方法。静态优化问题是在满足负荷需求和满足动态服务质量(QOS)约束的前提下,以最小的燃料成本提交和调度发电源。建立了一个能够表示电力系统连续时间微分代数模型和离散开关事件的仿真平台。针对每个任务需求编制了代承诺列表,并通过仿真确定满足QOS约束的承诺。根据二次型燃料成本曲线经济调度可行的任务,选择单位时间成本最低的任务作为该任务的最优任务。列举了最优承诺相对于非最优承诺的比较成本效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fuel optimization under quality of service constraints for shipboard hybrid electric drive
This paper presents an approach to optimize fuel costs of a hybrid electric ship propulsion system under different mission considerations. The static optimization problem is to commit and dispatch the generation sources such that fuel cost is minimized, while meeting load demands and complying with dynamic Quality of Service (QOS) constraints. A simulation platform capable of representing a continuous time differential algebraic model of the power system and discrete switching events has been developed. A generation commitment list is prepared for each mission requirement and commitments satisfying QOS constraints are determined by simulation. The feasible commitments are economically dispatched based on quadratic fuel cost curves, and the commitment with the lowest cost per unit time is selected as optimal for that mission. Comparative cost benefits of an optimal commitment over a non-optimal commitment are enumerated.
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