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Simultaneous observation of hybrid states for cyber-physical systems: a case study of electric vehicle powertrain

机译:网络物理系统混合状态的同时观察:电动汽车动力总成的案例研究

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摘要

As a typical cyber-physical system (CPS), electrified vehicle becomes a hot research topic due to its high efficiency and low emissions. In order to develop advanced electric powertrains, accurate estimations of the unmeasurable hybrid states, including discrete backlash nonlinearity and continuous half-shaft torque, are of great importance. In this paper, a novel estimation algorithm for simultaneously identifying the backlash position and half-shaft torque of an electric powertrain is proposed using a hybrid system approach. System models, including the electric powertrain and vehicle dynamics models, are established considering the drivetrain backlash and flexibility, and also calibrated and validated using vehicle road testing data. Based on the developed system models, the powertrain behavior is represented using hybrid automata according to the piecewise affine property of the backlash dynamics. A hybrid-state observer, which is comprised of a discrete-state observer and a continuous-state observer, is designed for the simultaneous estimation of the backlash position and half-shaft torque. In order to guarantee the stability and reachability, the convergence property of the proposed observer is investigated. The proposed observer are validated under highly dynamical transitions of vehicle states. The validation results demonstrates the feasibility and effectiveness of the proposed hybrid-state observer.
机译:电动汽车作为一种典型的网络物理系统(CPS),由于其高效率和低排放而成为研究的热点。为了开发先进的电力传动系统,对不可测量的混合状态(包括离散的反冲非线性和连续的半轴扭矩)进行准确的估算非常重要。在本文中,提出了一种使用混合系统方法同时识别电动传动系统的反冲位置和半轴扭矩的新颖估计算法。建立系统模型,包括电力传动系统和车辆动力学模型,其中要考虑到传动系统的间隙和灵活性,并使用车辆道路测试数据进行校准和验证。基于开发的系统模型,根据反冲动力学的分段仿射特性,使用混合自动机来表示动力总成行为。由离散状态观测器和连续状态观测器组成的混合状态观测器设计用于同时估算反冲位置和半轴扭矩。为了保证稳定性和可达性,研究了提出的观测器的收敛特性。建议的观察者在车辆状态的高度动态过渡下得到验证。验证结果证明了提出的混合状态观测器的可行性和有效性。

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