Efficient FPGA implementation of a variable digital filter based spectrum sensing scheme for cognitive IoT systems

Abhishek Ambede, A. P. Vinod, Shanker Shreejith
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引用次数: 2

Abstract

Wireless communication in Internet of Things (IoT) systems involves several devices communicating in the limited available frequency spectrum using different wireless communication standards. To achieve efficient spectrum usage in the IoT systems, it is desired to have the ability of dynamic spectrum allocation. Cognitive radios (CR) enable efficient spectrum utilization by performing spectrum sensing to gain the knowledge of current spectrum occupancy and dynamically reconfiguring the communication parameters, making them highly suitable for IoT systems. In this paper, we present the efficient hardware implementation of a spectrum sensing scheme for CR based IoT applications that require large bandwidth. We show that the proposed implementation on field programmable gate arrays (FPGAs) can achieve over 1.56x improvement in performance, while consuming 77% less generic resources and at a fractionally higher power consumption.
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基于可变数字滤波器的认知物联网系统频谱感知方案的高效FPGA实现
物联网(IoT)系统中的无线通信涉及使用不同无线通信标准在有限可用频谱中进行通信的多个设备。为了在物联网系统中实现频谱的高效利用,需要具备频谱的动态分配能力。认知无线电(CR)通过执行频谱感知来获取当前频谱占用的知识并动态重新配置通信参数,从而实现高效的频谱利用,使其非常适合物联网系统。在本文中,我们提出了一个频谱传感方案的高效硬件实现,用于需要大带宽的基于CR的物联网应用。我们表明,在现场可编程门阵列(fpga)上提出的实现可以实现超过1.56倍的性能改进,同时消耗77%的通用资源和略高的功耗。
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