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An Evolutionary Time-frequency Approach to Multi-carrier Wireless Communications

机译:一种进化的时频多载波无线通信方法

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This paper provides a time-frequency approach to modeling and estimating the communication channel, and to symbol transmission in multi-carrier wireless systems. The method is based on the evolutionary spectral theory of signals and systems. Multi-carrier systems, such as orthogonal frequency division multiplexing (OFMD) and multi-carrier spread spectrum (MCSS), are very efficient in fast fading channels. However, the basic pulse used in the modulation causes dispersion in time-frequency, complicating inter-symbol and inter-channel interferences. Our time-frequency approach deals separately with the channel modeling and estimation, and with the symbol transmission. Using the properties of the response of the channel to a linear chirp signal it is shown that the typical linear time-variant channel model, needed to characterize multi-path and Doppler, is simplified into a linear time-invariant model of minimal order. Time and Doppler shifts are represented by equivalent time-shifts, and are estimated in a blind fashion from the evolutionary kernel of the received signal. Thus, the linear chirp signal is used as a pilot sequence to characterize the channel. A coherent receiver uses such information to detect the sent symbols. A multi-user OFDM system is obtained using a linear chirp as the modulating signal for basic pulses shifted in time, and by choosing the instantaneous frequency of the linear chirp to be of unity slope for an optimal time-frequency lattice. This optimal lattice increases the transmission rate, diminishes the inter-symbol and inter-channel interference, and provides a new way of looking at OFDM. This approach is extended to MCSS. To illustrate the concepts, simulations, with different signal to noise ratios, are performed. The results are encouraging and worth of further investigation.
机译:本文提供了一种时频方法来建模和估计通信信道,以及在多载波无线系统中进行符号传输。该方法基于信号和系统的进化谱理论。诸如正交频分复用(OFMD)和多载波扩频(MCSS)之类的多载波系统在快速衰落信道中非常有效。然而,在调制中使用的基本脉冲导致时间-频率上的分散,使符号间和信道间干扰变得复杂。我们的时频方法分别处理信道建模和估计以及符号传输。利用信道对线性线性调频信号的响应特性,表明将表征多径和多普勒所需的典型线性时变信道模型简化为最小阶线性时不变模型。时间和多普勒频移由等效时移表示,并根据接收信号的演化核以盲目方式估算。因此,线性线性调频信号被用作导频序列以表征信道。相干接收机使用这种信息来检测发送的符号。使用线性线性调频脉冲作为随时间推移的基本脉冲的调制信号,并通过选择线性线性调频脉冲的瞬时频率使其具有最佳时频格的单位斜率,可以得到一种多用户OFDM系统。该最佳晶格提高了传输速率,减少了符号间和通道间干扰,并提供了一种新的观察OFDM的方式。这种方法扩展到了MCSS。为了说明这些概念,执行了具有不同信噪比的仿真。结果令人鼓舞,值得进一步研究。

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