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A Self-Sustaining Micro-Watt Programmable Smart Audio Sensor for Always-On Sensing

机译:一种自持式微功耗可编程智能音频传感器,始终保持感应状态

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Self-sustainable always-on sensors are crucial for the Internet of Things and its emerging applications. However, achieving perpetual work with active sensors poses many challenges, especially in ultra-low power design and micro-power energy harvesting that can supply the sensors. This paper presents a self-sustaining programmable smart microphone, combining energy harvesting and a micro-power event-driven sensor. The proposed solution can achieve programmable pattern recognition with up to 128 simultaneous time-frequency features exploiting mixed-signal low power design. Experimental results show that the designed event-driven circuit consumes only 26.89 μW in always-on mode, during the time-frequency feature-extraction, while the whole system consumes only 63 μW during pattern recognition including the power for a commercial MEMS microphone and the energy harvesting subsystem. We demonstrate that the sensor can operate perpetually powered with a small form factor flexible photovoltaic panel in indoor lighting conditions. Finally, the smart sensors achieved an accuracy of 100% in the detection of two different audio streams.
机译:自持式永远在线传感器对于物联网及其新兴应用至关重要。然而,利用有源传感器实现永久性工作提出了许多挑战,尤其是在可以为传感器供电的超低功耗设计和微功耗能量采集中。本文提出了一种自我维持的可编程智能麦克风,将能量收集和微功率事件驱动传感器结合在一起。提出的解决方案可以利用混合信号低功耗设计实现多达128个同时时频特征的可编程模式识别。实验结果表明,在时频特征提取过程中,设计的事件驱动电路在始终开启模式下的功耗仅为26.89μW,而模式识别期间整个系统的功耗仅为63μW,其中包括商用MEMS麦克风和能量收集子系统。我们证明了该传感器可以在室内照明条件下使用小型柔性光伏面板永久供电。最终,智能传感器在检测两种不同的音频流时达到了100%的精度。

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