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Implementation of Energy Detection Method for Spectrum Sensing in Cognitive Radio Based Embedded Wireless Sensor Network Node

机译:基于认知无线电的嵌入式无线传感器网络节点能量检测方法的实现

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Spectrum scarcity is one of the biggest challenges that the current wireless sensor network is facing. With the exciting progress of wireless sensor network (WSN) within 5 to 10 years, the world will be full of low power wireless sensor devices. Due to the independent design and development, together with the unexpected dynamics during deployment of co-existing networks and devices, the limited frequency spectrum will be extremely crowded. To address this challenge, cognitive radio has emerged as the key technology, which enables opportunistic access to the spectrum. In this paper one of the spectrum sensing method Energy detection is implemented in MATLAB to determine the availability of vacant spectrum of licensed band. The straight forward method for detecting unknown signals is energy detection. When primary user is assumed to be unknown to the secondary receiver's detector, it will become an energy detector, also referred to as radiometers. The energy of a received wave form can be measured by squaring the output of band pass filter with a bandwidth W, and then integrating the received power over a time interval T. The output of the integrator is compared with a predefined threshold to determine presence or absence of primary user.
机译:频谱稀缺是当前无线传感器网络面临的最大挑战之一。随着5到10年内无线传感器网络(WSN)的激动人心的进步,世界将充满低功耗无线传感器设备。由于独立的设计和开发,以及部署共存网络和设备期间的意外动态,有限的频谱将非常拥挤。为了应对这一挑战,认知无线电已成为关键技术,它使人们能够机会主义地获取频谱。在本文中,一种频谱检测方法能量检测是在MATLAB中实现的,以确定许可频段的空闲频谱的可用性。检测未知信号的直接方法是能量检测。当假定主要用户对次要接收器的检测器未知时,它将成为能量检测器,也称为辐射计。可以通过将带通滤波器的输出平方为带宽W,然后在一个时间间隔T上对接收到的功率进行积分来测量接收到的波形的能量。将积分器的输出与预定义的阈值进行比较,以确定存在或不存在。缺少主要用户。

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