The concepts of hybrid-carrier scheme communication system

Lin Mei, X. Sha, Qinyu Zhang, Naitong Zhang
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引用次数: 12

Abstract

How to improve the efficiency of resource allocation and the performance of interference suppression has always been the essential issue and motivity of technology revolution in wireless communications. As to the issues of resource allocation and performance improvement in complex time-frequency fading channels, the proper time-frequency mathematics methods are encouraged to be utilized. Our research team has been interested in the weighted-type fractional Fourier transform (WFRFT) ever since 2007, and then introduced it into communication systems. The WFRFT comprises a co-modulation process of single-carrier (SC) scheme and multi-carrier (MC) scheme, by utilizing which a new hybrid-carrier (HC) scheme is proposed. We believe that the different carrier schemes have different adaptabilities to diverse fading channels, and a cooperative HC scheme will lead to a better performance. Meanwhile, the current communication systems have an alternative of SC or MC, or they could be adopted in down-link and up-link respectively sometimes. In this regard, a HC system is able to, not only provide the compatibility with SC and MC, but also achieve a smooth and seamless transition between the two. So a few of technical or non-technical conflicts caused by the incompatibility of SC and MC can be released. We are now researching on the basic theory, mechanism of convergence, essential techniques and feasibility study of cooperative HC scheme, preparing to share some ideas on system design and techniques selections of future communication systems.
混合载波方案通信系统的概念
如何提高资源配置效率和干扰抑制性能一直是无线通信技术革命的核心问题和动力。对于复杂时频衰落信道的资源分配和性能提高问题,建议采用适当的时频数学方法。自2007年以来,我们的研究小组一直对加权型分数傅里叶变换(WFRFT)感兴趣,然后将其引入通信系统。WFRFT包括单载波(SC)方案和多载波(MC)方案的共调制过程,并利用该过程提出了一种新的混合载波(HC)方案。我们认为,不同的载波方案对不同的衰落信道具有不同的适应能力,合作的HC方案将获得更好的性能。同时,目前的通信系统有SC或MC两种选择,有时也可以分别在下行链路和上行链路上使用。在这方面,HC系统不仅能够提供与SC和MC的兼容性,而且能够实现两者之间的平滑无缝过渡。因此,由于SC和MC不兼容而引起的一些技术或非技术冲突可以得到释放。目前,我们正在对协同HC方案的基本理论、收敛机理、关键技术和可行性进行研究,准备在未来通信系统的系统设计和技术选择上分享一些想法。
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