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Joint channel mitigation and side information estimation for GFDM systems in indoor environments

机译:室内环境GFDM系统的联合通道缓解和侧信息估计

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摘要

Generalized frequency division multiplexing (GFDM) is the foremost contender for physical layer of 5G communication. The flexible nature of GFDM allows multiple symbols in time domain to superimpose, thereby creating high peak to average power ratio (PAPR). The idea of selective mapping (SLM) is to use a sequence of phase rotation vectors for generating alternatives using original GFDM signal. Among them, signal with lowest PAPR is selected for transmission. This procedure requires mandatory side information (SI) estimation or transmission which in turn decreases data reliability or efficiency. To address these issues, authors present a modified approach of pilot-assisted GFDM SLM system without need of SI transmission and to enable joint PAPR reduction and data recovery. In the proposed approach, we utilize a common modulating phase to modulate all subcarriers in a subsymbol assuming that each subsymbol consists of at least two pilots. This creates an inherent SI cancellation mechanism using the pilots which are employed for channel estimation. For practical validation of proposed concepts, we used software-defined radio (SDR) experimental setup employing universal software radio peripheral USRP) 2953R as hardware and Labview as software. Experimental results show a significant reduction in out-of-band spectral leakage without disturbing the estimated channel response.
机译:广义频分复用(GFDM)是用于5G通信的物理层的最重要的竞争者。 GFDM的灵活性允许在时域中的多个符号叠加,从而产生高峰到平均功率比(PAPR)。选择性映射(SLM)的想法是使用一系列相位旋转矢量,用于使用原始GFDM信号产生替代方案。其中,选择具有最低PAPR的信号进行传输。该过程需要强制侧信息(SI)估计或传输,这反过来会降低数据可靠性或效率。为了解决这些问题,作者提出了一种用于试验辅助GFDM SLM系统的修改方法,而无需SI传输,并能够实现联合PAPR和数据恢复。在所提出的方法中,我们利用共同调制阶段来调制Subsymbol中的所有子载波,假设每个Submbol至少由两个导频组成。这使用用于信道估计的导频来创建固有的SI取消机制。为了实际验证所提出的概念,我们使用了使用通用软件无线电外设USRP的软件定义的无线电(SDR)实验设置为硬件和LabVIEW作为软件。实验结果显示出带外光谱泄漏的显着降低,而不会扰乱估计的频道响应。

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