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Adaptive low-power analog/digital converters for wireless sensor networks

机译:用于无线传感器网络的自适应低功耗模拟/数字转换器

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The paper addresses the problem of power consumption of sensor nodes in a wireless network. An integrated low-power analog/digital converter (ADC) is presented that is particularly suited for wireless sensor applications. The converter makes use of information theoretic redundancy in the input signal for reducing the conversion workload and performing data compression on-the-fly during conversion (entropy-coding A/D converter). Thus, energy is saved both in signal conversion and transmission. Experimental results from a prototype chip are presented. The converter is especially suitable for sensor networks that maintain a global data model. This is further illustrated on an exemplary scenario of distributed wave detection. It is shown that sensor signal detection and acquisition in this type of applications can be carried out very efficiently with entropy-coding converters used in the sensor nodes.
机译:本文解决了无线网络中传感器节点的功耗问题。提出了一种集成的低功耗模拟/数字转换器(ADC),其特别适用于无线传感器应用。转换器利用输入信号中的信息理论冗余,以减少转换工作负载并在转换期间在飞行中执行数据压缩(熵编码A / D转换器)。因此,能量在信号转换和传输中保存。提出了原型芯片的实验结果。转换器特别适用于维护全局数据模型的传感器网络。这进一步示出了分布式波检测的示例性场景。结果表明,这种类型的应用中的传感器信号检测和获取可以与传感器节点中使用的熵编码转换器非常有效地执行。

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