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Joint signal parameter estimation of frequency-hopping communications

机译:跳频通信的联合信号参数估计

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摘要

In the problem of the parameter estimation of frequency-hopping (FH) signals, most of existing works can only provide the unauthorised detection of the FH signals or estimate the part of parameters of FH signals, therefore cannot provide sufficient information to demodulate signals for message deciphering applications in a non-cooperative communications. This study proposes a new method based on reassigned smoothed pseudo Wigner-Ville distribution (SPWVD) and maximum-likelihood estimation for joint signal parameter estimation of FH communications with M-ary frequency-shift-keyed (MFSK) orthogonal modulation. With the good time frequency concentration and restraining cross-term ability of reassigned SPWVD, this algorithm can efficiently estimate the parameters of FH signals which include hopping frequencies, hopping rate, hopping sequence and modulation type without making any assumption about the alphabet of hopping frequencies or the synchronisation. The algorithm has improved estimation accuracy, reduced estimation root-mean-squared error and obtained better performance than that of the approach based on conventional time-frequency distribution. The simulation results are presented to evaluate the performances of the proposed algorithm. The root-mean-squared error of hopping frequency estimation is ;-2 dB. The percentage of correct modulation recognition goes to 90% when SNR >;3 dB.
机译:在跳频(FH)信号的参数估计问题中,大多数现有工作只能提供未经授权的跳频信号检测或估计跳频信号的部分参数,因此无法提供足够的信息来解调用于消息的信号解密非合作通信中的应用程序。这项研究提出了一种基于重新分配的平滑伪Wigner-Ville分布(SPWVD)和最大似然估计的新方法,用于采用M元频移键控(MFSK)正交调制的FH通信的联合信号参数估计。该算法具有良好的时间频率集中性和重新分配的SPWVD的交叉项能力,该算法可以有效估计FH信号的参数,包括跳频,跳频,跳频序列和调制类型,而无需对跳频的字母或频率进行任何假设。同步。与基于常规时频分布的方法相比,该算法具有更高的估计精度,减少了估计均方根误差,并获得了更好的性能。仿真结果表明了该算法的性能。跳跃频率估计的均方根误差为; -2 dB。当SNR>; 3 dB时,正确的调制识别百分比将达到90%。

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  • 来源
    《Communications, IET》 |2012年第4期|p.381-389|共9页
  • 作者

    Chen T.-C.;

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