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Robustness and Regularization of Personal Audio Systems

机译:个人音频系统的稳健性和规范化

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摘要

As well as being able to reproduce sound in one region of space, it would be useful to reduce the level of reproduced sound in other spatial regions, with a “personal audio” system. For mobile devices this is motivated by issues of privacy for the user and the need to reduce annoyance for other people nearby. Such personal audio systems can be realized with arrays of loudspeakers that become superdirectional at low frequencies, when the array dimensions are small compared with the acoustic wavelength. The design of the array then becomes a compromise between performance and array effort, defined as the sum of mean squared driving signals. Various methods of formulating this tradeoff as a regularization problem have been suggested and the connection between these formulations is discussed. Large array efforts are due to strongly self-cancelling multipole arrays. A concern is then the robustness of such an array to variations in the acoustic environment and driver sensitivity and position. The design of an array that is robust to these uncertainties then leads to a generalization of regularization.
机译:除了能够在一个空间区域中再现声音之外,使用“个人音频”系统来降低在其他空间区域中再现声音的水平也是有用的。对于移动设备,这是由用户的隐私问题以及减少对附近其他人的烦恼的需求所推动的。当阵列的尺寸与声波波长相比较小时,这种个人音频系统可以用扬声器阵列实现,扬声器阵列在低频时会超指向。然后,阵列的设计成为性能和阵列工作量之间的折衷,定义为均方驱动信号的总和。已经提出了各种将这种折衷公式化为正则化问题的方法,并讨论了这些公式之间的联系。大型阵列的努力归因于强大的自消除多极阵列。那么,需要考虑的是这种阵列对声学环境以及驾驶员灵敏度和位置的变化的鲁棒性。然后,对这些不确定性具有鲁棒性的阵列设计会导致正规化的泛化。

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