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Time-frequency pattern wake-up detector for low-power always-on sensing of acoustic events

机译:时频图案唤醒检测器,用于低功耗始终接通声学事件

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In acoustic event detection scenarios, average power consumed for continuous monitoring can be lowered by an low-power always-on sensor interface, waking-up power-hungry signal sampling and processing circuitry only upon detection of the specific audio-pattern. We research on power consumption of such wake-up sensing (WUS) interface consisting of a multichannel programmable analog filtering bank, signal detectors, and a digital wake-up pattern detector circuit. Focusing on the pattern detector, this paper investigates a design performing wake-up upon matching a sequence of its multi-channel inputs against a digitally preset template of time-frequency states. We compare two hardware implementations of a proposed design: one exploiting a dedicated programmable sequential logic chip, and the other on a low-power 16-bit microcontroller (MCU). In most cases, experimental results generally demonstrate lower energy expenditure obtained by the MCU. Only 330 nW is required for always-on listening, and 1.27-1.71 μJ is spent for analysis of a 3-channel sequence consisting of 4 successive states, each lasting for 200-500 ms. Depending on the application scenario, proposed WUS interface enables for extension of sensor node's battery-lifetime up to 7.4 times, compared to continuous sampling and processing.
机译:在声学事件检测方案中,仅在检测到特定音频图案时,可以通过低功耗始终开的电源始终降低用于连续监控的平均功率。我们研究了这种唤醒感应(WUS)接口的功耗,包括多通道可编程模拟滤波库,信号检测器和数字唤醒模式检测器电路。专注于图案检测器,本文研究了在与数位的时频状态模板匹配其多通道输入序列时执行唤醒的设计。我们比较两个建议设计的硬件实现:一个利用专用可编程顺序逻辑芯片,另一个在低功率16位微控制器(MCU)上。在大多数情况下,实验结果通常证明了MCU获得的较低能量消耗。始终需要330 NW聆听,并花费1.27-1.71μJ用于分析由4个连续状态组成的3通道序列,每个持续为200-500毫秒。与连续采样和处理相比,取决于应用方案,提出的WUS接口可实现传感器节点的电池寿命最高可达7.4倍。

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