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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Fuzzy Logic Approach to Vehicle Stability Control of Oversteer
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Fuzzy Logic Approach to Vehicle Stability Control of Oversteer

机译:转向过度车辆稳定性控制的模糊逻辑方法

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Traditional Electronic Stability Control (ESC) for automobiles is usually accomplished through the use of estimated vehicle dynamics from simplified models that rely on parameters such as cornering stiffness that can change with the vehicle state and time. This paper proposes a different method for electronic stability control of oversteer by predicting the degree of instability in a vehicle. The algorithm is solely based on measurable response characteristics including lateral acceleration, yaw rate, speed, and driver steering input. These signals are appropriately conditioned and evaluated with fuzzy logic to determine the degree of instability present. When the "degree of instability" passes a certain threshold, the appropriate control action is applied to the vehicle in the form of differential yaw braking. Using only the measured response of the vehicle alleviates the problem of degraded performance when vehicle parameters change.
机译:用于汽车的传统电子稳定性控制(ESC)通常是通过使用简化模型中估算的车辆动力学来实现的,简化模型依赖于诸如转弯刚度等参数,这些参数会随车辆状态和时间而变化。通过预测车辆的不稳定性程度,本文提出了一种用于过度转向的电子稳定性控制的不同方法。该算法仅基于可测量的响应特性,包括横向加速度,横摆率,速度和驾驶员转向输入。这些信号经过适当调节,并用模糊逻辑进行评估,以确定存在的不稳定程度。当“不稳定程度”超过某个阈值时,将以差速横摆制动的形式将适当的控制动作应用于车辆。当车辆参数改变时,仅使用所测量的车辆响应缓解了性能下降的问题。

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