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A Low-Power CMOS Wireless Acoustic Sensing Platform for Remote Surveillance Applications

机译:用于远程监控应用的低功耗CMOS无线声学传感平台

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摘要

A low-power wireless acoustic sensing platform for remote surveillance applications based on a 180 nm CMOS technology is proposed in this paper. The audio signal, which is acquired by a microphone, is first amplified and filtered. Then, the analog signal is converted to a digital signal by a 10-bit analog-to-digital converter (ADC). A digital automatic gain control module is integrated to obtain an optimal input of the ADC. The digital signal is modulated and transmitted at the 433 MHz ISM band after being repacked and encoded. To save power for portable applications, the chip switches to standby mode when no audio is detected. The wireless sensing platform occupies a chip area of 1.76 mm 2 . The supply voltage is 2.5 V for the power amplifier and 1.8 V for other circuits. The measured maximum output power is 5.7 dBm and the transmission distance is over 500 m for real application scenarios. The chip consumes 25.1 mW power in normal work mode and 0.058 mW in standby mode. Compared to existing wireless acoustic sensors, the proposed wireless acoustic sensing platform can achieve features such as compactness, power efficiency, and reliability.
机译:本文提出了一种基于180nm CMOS技术的远程监控应用的低功耗无线声学传感平台。首先放大并过滤由麦克风获取的音频信号。然后,通过10位模数转换器(ADC)将模拟信号转换为数字信号。集成了数字自动增益控制模块以获得ADC的最佳输入。在重新包装和编码之后,在433MHz ISM频带上调制和发送数字信号。为了节省便携式应用的电源,芯片在没有检测到音频时切换到待机模式。无线传感平台占据1.76mm 2的芯片面积。电源电压为2.5V,对于其他电路,功率放大器和1.8 V.实际应用方案,测量的最大输出功率为5.7 dBm,传输距离超过500米。该芯片在正常工作模式下消耗25.1 MW功率和待机模式下的0.058 MW。与现有的无线声传感器相比,所提出的无线声学传感平台可以实现紧凑性,功率效率和可靠性等功能。

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