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Adaptive window lift control with pinch force based on object rigidity and window position

机译:基于物体刚度和车窗位置的带捏力的自适应车窗升降控制

摘要

A power window system employs a computer based control (12) that receives signals from a window position sensor (20). As the window (16) moves, the position sensor produces periodic signals as an output. The computer cyclically looks for a change in the frequency of the signals as an indication that the window is obstructed and decelerating. Based on the instantaneous deceleration, the computer recalls a stored value for motor force. The recalled forces are accumulated in synchronism with the position sensor output during the deceleration, manifesting the force applied to the obstruction as the window presses on it. The window is reversed when the accumulated force exceeds a stored value. The uppermost window position is a stored value for the position sensor output obtained when the window is closed for the first time. Each time the window is closed thereafter, an offset is added to that value, the sum defining the point at which the window engages the window seal. The offset is the change in the position sensor output signal as the window is slowed by the seal until the motor stops when a stored value of force is applied to the seal.
机译:电动车窗系统采用基于计算机的控件(12),该控件从车窗位置传感器(20)接收信号。随着窗口(16)的移动,位置传感器产生周期性的信号作为输出。计算机周期性地寻找信号频率的变化,以指示窗口被挡住并减速。基于瞬时减速度,计算机会调用存储的电动势值。在减速过程中,召回的力与位置传感器输出同步积累,显示出当窗户压在障碍物上时施加在障碍物上的力。当累积力超过存储值时,窗口将反转。最上面的窗口位置是在第一次关闭窗口时获得的位置传感器输出的存储值。此后每次关闭窗户时,都会向该值添加一个偏移量,该总和定义了窗户与窗户密封条的接合点。偏移量是位置传感器输出信号的变化,这是因为密封件使窗口减慢了速度,直到在将存储的力值施加到密封件时电动机停止为止。

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