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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Identification of SM-OFDM and AL-OFDM Signals Based on Their Second-Order Cyclostationarity
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Identification of SM-OFDM and AL-OFDM Signals Based on Their Second-Order Cyclostationarity

机译:基于二阶循环平稳性的SM-OFDM和AL-OFDM信号识别

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摘要

Automatic signal identification (ASI) has important applications to both commercial and military communications, such as software-defined radio, cognitive radio, spectrum surveillance and monitoring, and electronic warfare. While ASI has been intensively studied for single-input single-output systems, only a few investigations have been recently presented for multiple-input multiple-output (MIMO) systems. This paper introduces a novel algorithm for the identification of spatial multiplexing (SM) and Alamouti (AL)-coded orthogonal frequency-division multiplexing (OFDM) signals, which relies on second-order signal cyclostationarity. Analytical expressions for the second-order cyclic statistics of the SM-OFDM and AL-OFDM signals are derived and further exploited for algorithm development. The proposed algorithm provides a good identification performance with low sensitivity to impairments in the received signal, such as phase noise, timing offset, and channel conditions.
机译:自动信号识别(ASI)在商业和军事通信中都有重要的应用,例如软件定义的无线电,认知无线电,频谱监视和监控以及电子战。虽然已经针对单输入单输出系统对ASI进行了深入研究,但最近对多输入多输出(MIMO)系统仅进行了一些研究。本文介绍了一种基于二阶信号循环平稳性的新算法,用于识别空间多路复用(SM)和Alamouti(AL)编码的正交频分多路复用(OFDM)信号。推导了SM-OFDM和AL-OFDM信号的二阶循环统计量的解析表达式,并进一步用于算法开发。所提出的算法提供了良好的识别性能,并且对接收信号的损害(例如相位噪声,时序偏移和信道条件)具有较低的敏感性。

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