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Active Noise Hybrid Time-Varying Control for Motorcycle Helmets

机译:摩托车头盔主动噪声混合时变控制

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Recent noise at work regulations in the EU (2003) have been established to prevent noise induced hearing loss (NIHL). This imposes better performance results to traditional feedback active noise control (ANC) in motorcycle helmets, which suffer from well known limitations. Here two new ideas are applied to this problem. First, an hybrid (feedforward/feedback) linear time invariant (LTI) controller is designed for a motorcycle helmet ANC, which improves the resulting attenuation. This is achieved by adding an extra pair of microphones which measure the external noise that is then used as the feedforward input signal. In addition and to increase even more the resulting performance, the air velocity is measured in real-time and used as the parameter which schedules a linear parameter varying (LPV) feedback (FB) controller. This is combined with the previous feedforward (FF) controller, resulting in a time-varying hybrid controller. Both hybrid, LTI and LPV controllers are designed using linear matrix inequality (LMI)-based optimization. Two experiments have been carried out to measure the relation between external noise spectra and velocity: a wind tunnel test and a freeway ride experience. The resulting controllers are tested in a simulation which uses actual data obtained from the freeway experiment. The resulting attenuations in this motivating study seem promising for future controller tests to be performed in real-time, with the adequate hardware.
机译:欧盟(2003年)制定了最新的工作噪音法规,以防止噪音引起的听力损失(NIHL)。这会给摩托车头盔的传统反馈主动噪声控制(ANC)带来更好的性能结果,而传统的反馈主动噪声控制(ANC)受到众所周知的限制。这里有两个新的想法适用于这个问题。首先,为摩托车头盔ANC设计了混合(前馈/反馈)线性时不变(LTI)控制器,该控制器可改善所产生的衰减。这可以通过添加额外的一对麦克风来实现,该麦克风可以测量外部噪声,然后将其用作前馈输入信号。另外,为了进一步提高最终的性能,可以实时测量风速并将其用作调度线性参数变化(LPV)反馈(FB)控制器的参数。它与先前的前馈(FF)控制器结合使用,从而产生了时变混合控制器。混合,LTI和LPV控制器均使用基于线性矩阵不等式(LMI)的优化设计。已经进行了两个实验来测量外部噪声谱和速度之间的关系:风洞测试和高速公路行驶体验。在模拟中测试所得的控制器,该模拟使用从高速公路实验获得的实际数据。这项动机研究产生的衰减似乎很有希望,未来的控制器测试将在适当的硬件下实时进行。

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