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Smart Microphone for howling prevention: A context-aware audio device

机译:防止啸叫的智能麦克风:上下文感知的音频设备

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Advancements in sensing and embedded computation are enabling the development of new context-oriented product designs. Computational devices that are aware of their context can respond appropriately given less direct user input, helping users focus on what they are doing rather than how they are doing it. Following a brief introduction, we review some prior context-aware devices with applications in audio. Then, we introduce the Smart Microphone, which reduces its gain if it detects that it is placed too closely to a loudspeaker in an acoustic feedback loop. The gain reduction stabilizes the feedback loop, preventing unpleasant acoustic howling and squealing sounds from occurring. The Smart Microphone employs an ultrasonic sensing technique to estimate the distance between the microphone and the loudspeaker. The microphone and loudspeaker transducers themselves can be inaudi-bly employed in the ultrasonic band to perform the sensing, without interrupting any audible program material. Measurements performed in a real room validate the ultrasonic sensing technique.
机译:传感和嵌入式计算的进步使开发新的面向上下文的产品设计成为可能。在用户输入较少的情况下,了解其上下文的计算设备可以做出适当的响应,从而帮助用户专注于自己在做什么,而不是在做什么。在简要介绍之后,我们将回顾一些先前的上下文感知设备以及音频应用程序。然后,我们介绍了智能麦克风,如果它检测到它在声学反馈环路中与扬声器的距离太近,则会降低其增益。增益降低可稳定反馈环路,防止产生令人不快的啸叫声和啸叫声。智能麦克风采用超声波感应技术来估计麦克风和扬声器之间的距离。麦克风和扬声器换能器本身可以在超声波频带中被不听觉地用来执行感测,而不会中断任何可听见的节目资料。在真实房间中执行的测量验证了超声传感技术。

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