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A Novel Multi-carrier Order Division Multi-access Communication System Based on TDCS with Fractional Fourier Transform Scheme

机译:分数阶傅里叶变换的基于TDCS的新型多载波分频多址通信系统

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摘要

In this paper, we propose a novel fractional Fourier transform (FrFT) based multicarrier order division multi-access communication system, in which each user is uniquely identified by an FrFT order. Transform domain communication system (TDCS) with FrFT scheme is also proposed to synthesize the wide-band baseband waveforms in all FrFT domains with different users' FrFT orders, which enhances the interference avoidance capability of this system under most of interference. Therefore, multiple independent data streams can be transmitted by using FrFT-OFDM in the same time and different FrFT domains. However, chirp bases, as the new kind of carriers with different modulated rates, are merely mutually approximately orthogonal. There is a problem of energy leakage between multiple chirp carriers, which possibly causes the multiple chirp carriers inter-shielding to influence the FrFT-OFDM demodulation performance. An efficient allocation algorithm of multiple chirp carriers by presetting the carrier parameters is proposed to solve this problem. Based on MC-CDMA, a variable bit rate system structure is proposed for TDCS with FrFT scheme under different channel environments. In order to simplify the process of modulation and demodulation of TDCS with FrFT scheme, a whole new cyclic shift key modulation mode in FrFT domain is also proposed. Both theories and simulations confirm strictly the validity of the proposed system.
机译:在本文中,我们提出了一种新颖的基于分数阶傅里叶变换(FrFT)的多载波阶数划分多址通信系统,其中,每个用户都由FrFT阶唯一地标识。还提出了采用FrFT方案的变换域通信系统(TDCS)来合成具有不同用户FrFT阶数的所有FrFT域中的宽带基带波形,从而增强了该系统在大多数干扰下的抗干扰能力。因此,可以通过在同一时间和不同的FrFT域中使用FrFT-OFDM来传输多个独立的数据流。然而,线性调频基作为具有不同调制速率的新型载波,仅相互近似正交。多个线性调频载波之间存在能量泄漏的问题,这可能导致多个线性调频载波相互屏蔽,从而影响FrFT-OFDM解调性能。为解决这一问题,提出了一种通过预置载波参数来有效分配多个线性调频载波的算法。基于MC-CDMA,提出了在不同信道环境下采用FrFT方案的TDCS可变比特率系统结构。为了简化FrFT方案对TDCS的调制解调过程,提出了一种全新的FrFT域循环移位密钥调制方式。理论和仿真都严格证实了所提出系统的有效性。

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