首页> 外文期刊>International Journal of Automotive Technology >EVALUATION OF IDLE STABILITY THROUGH IN-SITU TORQUE MEASUREMENT IN AUTOMATIC TRANSMISSION VEHICLES
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EVALUATION OF IDLE STABILITY THROUGH IN-SITU TORQUE MEASUREMENT IN AUTOMATIC TRANSMISSION VEHICLES

机译:通过自动变速器车辆扭矩测量的怠速稳定性评估

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摘要

Idle stability directly affects a vehicle's NVH (Noise, Vibration and Harshness) and is closely related to driver satisfaction. The present study proposes a method of measuring an engine's idle roughness, which is useful in quantifying the idle stability. Engine brake torque was measured directly using a torque sensor, which can be installed without modification of the engine's mounting structure. In addition, angular acceleration was measured at the same position as the torque measurement, to compare dynamic characteristics of the angular acceleration with the torque variation. Both torque and angular acceleration oscillate between positive and negative values. In this study, torque data were divided into several regions, and each region starts from the point where the torque data changes its sign from negative to positive. The root mean square values of both torque and angular acceleration were calculated for each region. This calculation showed a very good correlation between the torques and the angular accelerations. The idle stability was evaluated with the standard deviation of the measured torque, and the cycle-to-cycle variation is a more dominant factor in the idle stability than is the cylinder-to-cylinder variation. Because it is easier to measure the angular acceleration than to measure the torque, the variations of angular accelerations are usually compared between engines. However, the present study showed that the moment of inertia of an engine and the angular acceleration should be considered together when comparing the idle stability between engines.
机译:怠速稳定性直接影响车辆的NVH(噪音,振动和苛刻性),并与驾驶员的满意度密切相关。本研究提出了一种测量发动机空转粗糙度的方法,该方法可用于量化空转稳定性。发动机制动扭矩直接使用扭矩传感器测量,该扭矩传感器可以在不改变发动机安装结构的情况下安装。另外,在与扭矩测量相同的位置处测量了角加速度,以将角加速度的动态特性与扭矩变化进行比较。扭矩和角加速度都在正值和负值之间振荡。在这项研究中,扭矩数据被分为几个区域,每个区域都从扭矩数据的符号从负变为正的点开始。计算每个区域的扭矩和角加速度的均方根值。该计算表明扭矩和角加速度之间具有非常好的相关性。用测得扭矩的标准偏差评估怠速稳定性,并且循环间的变化是空转稳定性比气缸间变化更为主要的因素。因为测量角加速度比测量扭矩更容易,所以通常在发动机之间比较角加速度的变化。但是,本研究表明,在比较发动机之间的怠速稳定性时,应将发动机的惯性矩和角加速度一起考虑。

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