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首页> 外文期刊>International journal of vehicle performance >Unmanned autonomous ground hybrid vehicle thermal management system: design and control
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Unmanned autonomous ground hybrid vehicle thermal management system: design and control

机译:无人自主地面混合动力车厂热管理系统:设计与控制

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摘要

Modern autonomous hybrid vehicles are required to have longer range, better fuel economy and operate in diverse climate conditions which challenges cooling system design. This paper examines a heat pipe based thermal management system for the vehicle's powertrain components (electric motors, battery pack, and engine). Mathematical models were developed to describe the components' thermal behavior. Nonlinear controllers were designed to maintain the components' temperatures about their reference values by regulating multiple actuators for minimised temperature fluctuations and energy consumption. Numerical results considered various road grades and ambient conditions to demonstrate the thermal management system robustness. Simulation results show that the component temperatures were successfully maintained about their reference values with a small tracking error using the proposed thermal management system. The findings also show the ability to minimise energy through the integration of heat pipes and smart actuators.
机译:现代自主混合动力车辆需要更长的范围,更好的燃油经济性,并在各种气候条件下运行,挑战冷却系统设计。本文研究了车辆动力总成部件(电动机,电池组和发动机)的热管的热管理系统。开发了数学模型来描述组件的热行为。设计非线性控制器通过调节多个致动器来使组件的温度保持在其参考值上,以便最小化温度波动和能量消耗。数值结果被认为是各种道路等级和环境条件,以证明热管理系统的鲁棒性。仿真结果表明,使用所提出的热管理系统,成功地维持了它们的参考值与小跟踪误差成功地保持了它们的参考值。这些发现还显示了通过集成热管和智能执行器来最小化能量的能力。

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