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Low power baseband processor for IoT terminals with long range wireless communications

机译:适用于具有远程无线通信的IoT终端的低功耗基带处理器

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In this paper, we propose a new baseband architecture for Internet of Things (IoT) terminals that support long range communications such as those based on Orthogonal Frequency-Division Multiple Access (OFDMA) and spread spectrum technologies. We analyze the workload profiles of both systems and find that the frame detection unit has by far the highest computational load. Based on this analysis, we propose a simple architecture that uses only a scalar datapath. To optimize for low power consumption, we introduce application specific instructions that minimize register accesses and include address generation units for streamlined memory access. Preliminary synthesis results in 65nm node show that this architecture has an area of 0.204 μm2 and average energy consumption of 2.41 nJ/cycle when operated at 3MHz with supply voltage of 1.08 V.
机译:在本文中,我们为物联网(IoT)终端提出了一种新的基带体系结构,该体系结构支持诸如基于正交频分多址(OFDMA)和扩频技术的远程通信。我们分析了这两个系统的工作量概况,发现帧检测单元具有迄今为止最高的计算负荷。基于此分析,我们提出了一种仅使用标量数据路径的简单体系结构。为了优化低功耗,我们引入了特定于应用程序的指令,这些指令可最大程度地减少寄存器访问,并包括用于简化存储器访问的地址生成单元。在65nm节点上的初步合成结果表明,当在3MHz的工作电压和1.08 V的电压下工作时,该架构的面积为0.204μm2,平均能耗为2.41 nJ /周。

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