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Design and Implementation of a Tree-Based Blind Modulation Classification Algorithm for Multiple-Antenna Systems

机译:基于树的多天线系统盲调制分类算法的设计与实现

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摘要

This paper presents the design and testbed implementation of a tree-based algorithm, which classifies many of the linearly modulated signals, such as binary phase-shift keying (PSK), quadrature PSK (QPSK), offset QPSK, pi/4-QPSK, 8-PSK, minimum shift keying, and 16-quadrature amplitude modulation. The proposed modulation classification algorithm is applicable to spatially multiplexed multiple antenna systems over frequency-selective fading channels. It works in the presence of timing, phase, and frequency offsets, without having prior knowledge of the channel state information. Classification is performed by utilizing the combined properties of the correlation functions, cyclic cumulant (CC), and cumulant. The correlation function of the received baseband signal exhibits peaks at a particular set of time lag, which represents distinctive features for the modulation formats. The CC uses the position of nonzero cycle frequency of the received baseband signals to classify modulation formats, while the cumulant employs threshold values. To authenticate the proposed algorithm, implementation and measurement are performed in an indoor propagation environment by using a National Instrument testbed setup. The performance of the proposed algorithm is compared with existing methods via Monte Carlo simulations.
机译:本文介绍了一种基于树的算法的设计和测试平台实现,该算法对许多线性调制信号进行了分类,例如二进制相移键控(PSK),正交PSK(QPSK),偏移量QPSK,pi / 4-QPSK, 8-PSK,最小频移键控和16正交幅度调制。提出的调制分类算法适用于频率选择性衰落信道上的空间复用多天线系统。它在存在时序,相位和频率偏移的情况下工作,而无需事先了解信道状态信息。通过利用相关函数,循环累积量(CC)和累积量的组合属性执行分类。接收到的基带信号的相关函数在特定的时间滞后集合处出现峰值,这代表了调制格式的独特特征。 CC使用接收到的基带信号的非零周期频率的位置来分类调制格式,而累积量则使用阈值。为了对提出的算法进行认证,可使用National Instrument测试平台在室内传播环境中进行实施和测量。通过蒙特卡洛模拟将所提出算法的性能与现有方法进行比较。

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