基于集成电池-电动汽车模型的节能转矩控制

R. Ristiana, A. S. Rohman, A. Purwadi, C. Machbub
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引用次数: 7

摘要

本文验证了电动汽车-电池集成模型在转矩控制应用中的优势。在电动汽车-电池集成模型中,明确地将电池动力学纳入模型。本文采用了著名的线性二次积分(LQI)设计,实现了零跟踪误差的最优控制器。然而,能源消耗是通过几个能源消耗公式来观察的。LQI的性能指标被设置为包括输入状态乘法,即代表一种通常形式的能量公式。采用电动汽车-电池集成模型的线性化模型进行控制器设计。将线性LQI控制应用于非线性集成电动汽车电池模型,进行了仿真。仿真结果表明,在LQI的性能指标中包含输入状态乘法的转矩电机控制比不包含输入状态乘法的LQI设计更节能。这可能会导致集成电动汽车电池模型的潜在使用,以便在控制电动汽车时有效地使用电池。
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Energy efficient torque control using integrated battery-electric vehicle model
This paper validates the advantage of using an integrated electric vehicle-battery model in torque control application. In the integrated electric vehicle-battery model, battery dynamics is explicitly included in the model. A well-known linear quadratic integral (LQI) design is adopted here to have an optimal controller with zero tracking error. The energy consumption is, however, observed through several energy consumption formulations. The performance index of the LQI is set to include input-state multiplication, i.e. representing one usual form of energy formulation. The controller designs are performed using linearized model of the integrated electric vehicle-battery model. By applying the linear LQI control to the non-linear integrated electric vehicle battery model, simulations are then taken. The simulation result shows that torque motor control with the inclusion of input-state multiplication in the LQI's performance index present a more energy efficient control in comparison to LQI design without such inclusion in its performance index. This may lead to a potential use of integrated electric vehicle battery model to have an efficient battery usage in controlling an electric vehicle.
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