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Inexact Arithmetic Circuits for Energy Efficient IoT Sensors Data Processing

机译:用于节能IoT传感器数据处理的不精确算术电路

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Developing portable autonomous systems is highly requested for numerous application domains such as Internet of Things (IoT), wearable devices, and biomedical applications. Portable systems usually contain autonomous and networked sensors; each sensor hosts multiple input channels (e.g. tactile) closely coupled to embedded computing unit and power supply. The embedded computing unit should locally extract meaningful information by employing sophisticated methods. This imposes challenges on real time operation and adds a burden regarding power consumption. Approximate or inexact computing represents a promising solution for energy efficient data processing; it tunes the accuracy of computation on the specific application requirements in order to reduce power consumption. In this paper, inexact arithmetic circuits have been employed to improve the energy efficiency for sensors digital data processing. The proposed inexact circuits achieve up to 80% power saving when compared to the exact one, and similar solutions presented in literature with a maximum loss of 1.39 dB in output SNR when applied to FIR filters.
机译:对于诸如物联网(IoT),可穿戴设备和生物医学应用之类的众多应用领域,强烈要求开发便携式自治系统。便携式系统通常包含自主的和联网的传感器。每个传感器都具有与嵌入式计算单元和电源紧密耦合的多个输入通道(例如触觉)。嵌入式计算单元应通过采用复杂的方法在本地提取有意义的信息。这给实时操作带来了挑战,并增加了功耗方面的负担。近似或不精确的计算代表了节能数据处理的有前途的解决方案;它根据特定的应用需求调整计算的准确性,以减少功耗。在本文中,不精确的算术电路已被用来提高传感器数字数据处理的能量效率。与精确电路相比,所提出的不精确电路可节省多达80%的功率,而文献中介绍的类似解决方案应用于FIR滤波器时,输出SNR的最大损失为1.39 dB。

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