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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >The effects of mechanical response on the dynamics and string stability of a platoon of adaptive cruise control vehicles
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The effects of mechanical response on the dynamics and string stability of a platoon of adaptive cruise control vehicles

机译:机械响应对自适应巡航控制车辆排动力学和弦稳定性的影响

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摘要

The dynamics of a platoon of adaptive cruise control vehicles is analyzed for a general mechanical response of the vehicle. Effects of acceleration-feedback control that were not previously studied are found. For small acceleration-feedback gain, which produces marginally string-stable behavior, the reduction of a disturbance (with increasing car number n) is found to be faster than for the maximum allowable gain. The asymptotic magnitude of a disturbance is shown to fall off as erf(ct.√n) when n→∞. For gain approaching the lower limit of stability, oscillations in acceleration associated with a secondary maximum in the transfer function (as a function of frequency) can occur. A frequency-dependent gain that reduces the secondary maximum, but does not affect the transfer function near zero frequency, is proposed. Performance is thereby improved by elimination of the undesirable oscillations while the rapid disturbance reduction is retained.
机译:针对车辆的一般机械响应,分析了自适应巡航控制车辆排的动力学。发现了以前未研究的加速度反馈控制的效果。对于较小的加速度反馈增益(产生略微的弦稳定行为),发现扰动的减小(随着轿厢数量n的增加)比最大允许增益要快。当n→∞时,扰动的渐近大小显示为erf(ct.√n)。为了使增益接近稳定性的下限,可能会发生与传递函数中的次要最大值(作为频率的函数)相关联的加速度振荡。提出了一种频率相关的增益,该增益可减小次级最大值,但不会影响零频率附近的传递函数。因此,通过消除不希望的振荡而改善了性能,同时保持了快速的干扰减小。

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