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Indoor Silent Object Localization using Ambient Acoustic Noise Fingerprinting

机译:室内静音对象本地化使用环境声学噪声指纹识别

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Indoor localization has been a popular research subject in recent years. Usually, object localization using sound involves devices on the objects, acquiring data from stationary sound sources, or by localizing the objects with external sensors when the object generates sounds. Indoor localization systems using microphones have traditionally also used systems with several microphones, setting the limitations on cost efficiency and required space for the systems. In this paper, the goal is to investigate whether it is possible for a stationary system to localize a silent object in a room, with only one microphone and ambient noise as information carrier. A subtraction method has been combined with a fingerprint technique, to define and distinguish the noise absorption characteristic of the silent object in the frequency domain for different object positions. The absorption characteristics of several positions of the object is taken as comparison references, serving as fingerprints of known positions for an object. With the experiment result, the tentative idea has been verified as feasible, and noise signal based lateral localization of silent objects can be achieved.
机译:近年来,室内本地化一直是一个受欢迎的研究主题。通常,使用声音的对象本地化涉及对象上的设备,从静止声源获取数据,或者当对象生成声音时,通过将对象定位在外部传感器上。使用麦克风的室内定位系统传统上也使用具有若干麦克风的系统,为系统的成本效率和所需空间设定限制。在本文中,目标是研究是否可以将静止系统本地化在房间中的静音对象,只有一个麦克风和环境噪声作为信息载体。减法方法已与指纹技术组合,以定义和区分频域中的静音对象的噪声吸收特性以进行不同的对象位置。将几个位置的吸收特性作为比较参考,用作物体的已知位置的指纹。通过实验结果,暂定的思想已经被验证为可行的可行性,并且可以实现基于静音物体的横向定位的噪声信号。

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