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Optimisation of stability of vehicle with ABS braking system

机译:采用ABS制动系统优化车辆的稳定性

摘要

The invention concerns an anti-locking braking-force control circuit for vehicles in which each axle is fitted with at least one wheel-rpm sensor (1, 2, 3, 4) on both sides of the vehicle and in which only one brake-control valve (9) is fitted for control of at least one of the axles, the brake-control valve controlling the brake pressure so that it is the same in all the wheels on this axle. The rpm signals from the sensors (5, 7 and 6, 8) on the left-hand side and right-hand side, respectively, of the vehicle are summed separately in registers (14, 15) and the difference between the register counts compared with a predefined value in a comparator (17). This makes it possible to determine whether the wheels on the left-hand and right-hand side of the vehicle are experiencing significantly different surface adherence. If such a mu -split condition is detected, then the brake pressure to the axle with only one valve is increased rapidly in accordance with a linear function until the slower wheel locks up completely. The brake pressure is subsequently increased gradually in accordance with a second, more slowly increasing, function until a predetermined maximum pressure is reached. During this mu -split condition, anti-locking control is carried out solely as a function of wheel-rpm signals from that wheel which, at the beginning of the mu -split condition, was experiencing better surface adherence.
机译:本发明涉及一种用于车辆的防抱死制动力控制电路,其中每个车轴在车辆的两侧均装有至少一个车轮转速传感器(1、2、3、4),并且其中只有一个制动-调节阀(9)安装用于控制至少一个轴,制动控制阀控制制动压力,以使该轴上所有车轮的压力均相同。分别从车辆左侧和右侧的传感器(5、7和6、8)发出的rpm信号分别在寄存器(14、15)中求和,并比较寄存器计数之间的差在比较器(17)中具有预定值。这使得可以确定车辆左手侧和右手侧的车轮是否正在经历明显不同的表面附着力。如果检测到这种μ分离的情况,则仅通过一个气门施加到车轴的制动压力就会根据线性函数迅速增加,直到慢速车轮完全锁定。随后,制动压力根据第二个更缓慢地增加的功能逐渐增加,直到达到预定的最大压力。在这种mu分离状态下,仅根据来自车轮的车轮转速信号执行防抱死控制,该信号在mu分离状态开始时具有更好的表面附着力。

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