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Full duplex communication by means of backscattering modulation.

机译:通过反向散射调制进行全双工通信。

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摘要

The demand of high speed data is increasing day by day and hence wireless communication is getting popular. Nowadays we are using data through wireless communication for different aspect such as voice data, internet using, IP television and video conference. Due to high volume of downstream data the network is becoming more asymmetric. To accommodate this high volume of data researchers are working on different aspect. One of the key strategies is to make the wireless communication full duplex which till now is working as half duplex. Theoretically, making a wireless communication full duplex will double the channel capacity and hence it will open a new horizon of wireless communication system. In order to make the communication system full duplex we face a strong problem of self interference which basically contaminates the whole data signal. So we work to and an efficient way to get rid of the self interference and implement a successful full duplex system. In this thesis, we propose a design for full-duplex wireless communication system, based on backscatter modulation (BM) that is able to efficiently accommodate high downlink traffic. We consider two nodes that wish to exchange data over wireless additive white Gaussian noise with Rayleigh fading channel. Within this framework the end user receives self-interference free signal. The specific objectives of our research are to investigate a model of full-duplex wireless communication system by means of reflected power based on backscatter modulation (BM) where electromagnetic waves are modulated, amplified and reflected by the same antenna that receives them. Also to analyze the performance for using modulation impedance for guarantying sufficient power for the demodulator while exhibiting maximal difference in the backscattered field. In order to do so we design a framework to find out the optimized value of the modulation load for different scheme.
机译:高速数据的需求日益增加,因此无线通信变得越来越流行。如今,我们正在通过无线通信将数据用于不同方面,例如语音数据,使用Internet,IP电视和视频会议。由于大量的下游数据,网络变得越来越不对称。为了容纳大量数据,研究人员正在不同方面进行研究。关键策略之一是使无线通信成为全双工,而该双工到目前为止一直是半双工。从理论上讲,使无线通信成为全双工将使信道容量增加一倍,因此将为无线通信系统开辟新的视野。为了使通信系统全双工,我们面临着一个强大的自干扰问题,该问题基本上会污染整个数据信号。因此,我们努力以一种有效的方式摆脱自干扰,并实现成功的全双工系统。在本文中,我们提出了一种基于背向散射调制(BM)的全双工无线通信系统设计,该系统能够有效地容纳高下行链路流量。我们考虑两个希望通过瑞利衰落信道通过无线加性高斯白噪声交换数据的节点。在此框架内,最终用户会收到无干扰的信号。我们研究的具体目标是研究基于反向散射调制(BM)的反射功率的全双工无线通信系统模型,在该模型中,电磁波被接收它们的同一天线调制,放大和反射。还分析了使用调制阻抗来确保解调器有足够的功率,同时在反向散射场中表现出最大差异的性能。为此,我们设计了一个框架,以找出针对不同方案的调制负载的最佳值。

著录项

  • 作者

    Islam, Shajid.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Electrical engineering.
  • 学位 M.S.E.C.E.
  • 年度 2015
  • 页码 59 p.
  • 总页数 59
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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