考虑瞬态螺旋桨载荷和环境扰动的混合动力船舶推进综合载荷分割方案

IF 1.7 4区 计算机科学 Q3 AUTOMATION & CONTROL SYSTEMS Journal of Dynamic Systems Measurement and Control-Transactions of the Asme Pub Date : 2021-03-01 DOI:10.1115/1.4048588
Nikolaos Planakis, G. Papalambrou, N. Kyrtatos
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引用次数: 4

摘要

本文研究了一种用于瞬态和波动螺旋桨负载共享的集成预测负载分配管理系统的设计和实验实现。基于从混合动力装置收集的实验数据和柴油机行为和蓄电池充电的第一性原理,对动力系统进行了面向控制的建模。建立了推进装置和环境扰动模型来模拟实际的海上负载应用。针对柴电混合动力船舶推进装置的最优暂态功率分配问题,提出了一种非线性模型预测控制方案。NMPC方案直接控制柴油机和电动机/发电机的扭矩输出,确保满足系统过载的某些约束,避免柴油机的快速加速和负载波动影响发动机性能。为了实现无偏移模型预测控制(MPC)控制,设计了一个观测器,为NMPC提供螺旋桨律参数进行载荷估计。对控制系统进行了实时运行试验。结果表明,该控制器能够有效抑制负载扰动,并在电厂限制范围内保持动力系统的理想转速和电池的理想荷电状态(SOC),实现了平稳的功率转换,缓解了柴油机的功率波动。
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Integrated Load-Split Scheme for Hybrid Ship Propulsion Considering Transient Propeller Load and Environmental Disturbance
This work addresses the design and experimental implementation in real-time of an integrated predictive load-split management system for the transient and fluctuating propeller load sharing. Control-oriented modeling of the power system was performed based on experimental data gathered from the hybrid plant and on first principles for the diesel engine behavior and battery charging. Propulsion plant and environmental disturbance models are developed to simulate realistic marine load application. A nonlinear model predictive control (NMPC) scheme is proposed for the optimal transient power-split problem of a hybrid diesel-electric marine propulsion plant. The NMPC scheme directly controls the torque output of the diesel engine and the electric motor/generator ensuring that certain constraints concerning the system overloading are met, avoiding fast accelerations and load fluctuations of the diesel engine that affect engine performance. To achieve offset-free model predictive control (MPC) control, an observer is developed to provide the propeller law parameter to the NMPC for load estimation. The control system was experimentally tested in real-time operation. Results showed that controller rejected load disturbances and maintained the desired rotational speed of the powertrain as well as the desirable state of charge (SOC) in battery within the power plant limits, achieving smooth power transitions and mitigation of power fluctuations of the diesel engine.
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来源期刊
CiteScore
3.90
自引率
11.80%
发文量
79
审稿时长
24.0 months
期刊介绍: The Journal of Dynamic Systems, Measurement, and Control publishes theoretical and applied original papers in the traditional areas implied by its name, as well as papers in interdisciplinary areas. Theoretical papers should present new theoretical developments and knowledge for controls of dynamical systems together with clear engineering motivation for the new theory. New theory or results that are only of mathematical interest without a clear engineering motivation or have a cursory relevance only are discouraged. "Application" is understood to include modeling, simulation of realistic systems, and corroboration of theory with emphasis on demonstrated practicality.
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