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首页> 外文期刊>Journal of signal processing systems for signal, image, and video technology >Reducing Energy of Baseband Processor for IoT Terminals with Long Range Wireless Communications
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Reducing Energy of Baseband Processor for IoT Terminals with Long Range Wireless Communications

机译:通过远程无线通信降低物联网终端的基带处理器能耗

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摘要

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 energy consumption, we introduce application specific instructions that minimize register accesses and include address generation units for streamlined memory access. Next, we derive energy-optimal operation settings for different channel conditions. We find that if target signal detection probability is greater than 0.9 and false alarm probability is less than 0.1, then for both good and bad channel conditions, our baseband processor has the lowest energy when the frame detection algorithm uses the longest correlation window and the highest detection threshold value.
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。为了优化低能耗,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。接下来,我们推导针对不同通道条件的能量最佳操作设置。我们发现,如果目标信号检测概率大于0.9且误报概率小于0.1,那么对于好信道和坏信道条件,当帧检测算法使用最长的相关窗口和最高的相关窗口时,我们的基带处理器的能量最低。检测阈值。

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