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Adaptive Audio Synchronization Scheme Based on Feedback Loop with Local Clock in Wireless Audio Sensor Networks

机译:无线音频传感器网络中基于本地时钟反馈环的自适应音频同步方案

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Wireless Audio Sensor Networks (WASNs) can provide event detection, object tracking and emergency response through cooperative audio sensor nodes. Effective collaboration of audio sensors requires precise synchronization among audio streams. Some researches have been done on the timestamp mechanism based on time synchronization ignoring propagation delay and many other researches have focused on the synchronization of simple gunshot or scream. However, for the synchronization of intermittent and fluctuating audio stream, there still exists many challenges. In this paper, we propose an effective audio synchronization scheme which can synchronize the intermittent audio streams adaptively while maintain low energy cost. On one hand, we obtain audio synchronization without global clock which save energy tremendously. On the other hand, by introducing a feedback loop mechanism, we can keep a high audio synchronization fidelity even when the audio source moves around and the sound strength varies with time. Furthermore, we discuss the extension for flexibility and scalability of this scheme when there exist several sound sources simultaneously or the audio source moves among clusters. Through experiments on a WASNs platform and simulations, we show that the proposed scheme is desirable to guarantee the accuracy of audio synchronization in practical environment with low energy cost.
机译:无线音频传感器网络(WASN)可以通过协作音频传感器节点提供事件检测,对象跟踪和紧急响应。音频传感器的有效协作需要音频流之间的精确同步。已经在基于时间同步的时间戳机制上进行了一些研究,而忽略了传播延迟,而其他许多研究则集中在简单的枪声或尖叫声的同步上。然而,对于间歇和波动的音频流的同步,仍然存在许多挑战。在本文中,我们提出了一种有效的音频同步方案,该方案可以自适应地同步间歇音频流,同时保持较低的能源成本。一方面,我们获得了没有全局时钟的音频同步,从而极大地节省了能源。另一方面,通过引入反馈环路机制,即使音频源四处移动且声音强度随时间变化,我们也可以保持较高的音频同步保真度。此外,我们讨论了当同时存在多个声源或音频源在群集之间移动时,该方案的灵活性和可伸缩性的扩展。通过在WASNs平台上进行的实验和仿真,我们表明所提出的方案对于在低能耗的实际环境中保证音频同步的精度是可取的。

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