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Performance analysis and effect of multiuser interference for Ultra-Wideband communications.

机译:超宽带通信的性能分析和多用户干扰的影响。

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摘要

Ultra-Wideband (UWB) is an upcoming technology for short-range high data rate applications like Wireless Personal Area Networks or medium/long-range low data rate applications like sensor networks. UWB has many captivating characteristics such as very short duration pulses (order of nanoseconds), multipath channel, large instantaneous bandwidth and time hopping pulse trains resulting in coexistence with the existing narrow band users. The Ultra Wideband communication systems employ the technique of Impulse radio of transmitting short duration pulses which result in extremely wide bandwidth and many performance benefits. Since UWB systems operate in dense multipath environments, RAKE receiver is the optimum choice for the receiver. Considering the evolving nature and the wide applications of this technology, it is important to analyze the system performance for different scenarios including the multi-user environment.;My thesis mainly targets the analysis of the bit error rate (BER) performance of the time hopping pulse position modulation (TH-PPM) UWB system with the use of Ideal Rake Receiver and the performance degradation when the Selective and Partial Rake receivers are employed. I have also analyzed the effect of changing the repletion code length on the performance. The performance analysis is carried out for varying the modulation index M by employing 4-PPM instead of Binary PPM and simulation results show that 4-PPM offers a worse performance to the binary PPM case. Furthermore, I have evaluated the performance in the presence of Multi-user Interference using the Standard Gaussian Approximation. Finally, the performance of employing M-ary PPM in the multi-user scenario is also evaluated. The simulations are performed under the assumption of perfect channel knowledge. The IEEE UWB indoor channel model is used for Non Line of Sight (NLOS) Case C which is for 4 to 10 m distance between the transmitter and the receiver.
机译:超宽带(UWB)是一项针对短距离高数据速率应用(如无线个人局域网)或中/远程低数据速率应用(如传感器网络)的新兴技术。 UWB具有许多引人入胜的特性,例如非常短的持续时间脉冲(纳秒级),多径信道,大的瞬时带宽和跳时脉冲序列,可与现有的窄带用户共存。超宽带通信系统采用脉冲无线电技术来发送短时脉冲,从而产生极宽的带宽并带来许多性能优势。由于UWB系统在密集的多径环境中运行,因此RAKE接收器是该接收器的最佳选择。考虑到该技术的不断发展的性质和广泛的应用,分析包括多用户环境在内的不同情况下的系统性能非常重要。本文主要针对时跳的误码率(BER)性能进行分析。使用理想瑞克接收机的脉冲位置调制(TH-PPM)UWB系统,当使用选择性瑞克和部分瑞克接收机时,性能会下降。我还分析了更改补充码长度对性能的影响。通过采用4-PPM代替Binary PPM进行性能分析以改变调制指数M,仿真结果表明4-PPM在二进制PPM情况下性能较差。此外,我使用标准高斯近似法评估了在存在多用户干扰的情况下的性能。最后,还评估了在多用户方案中使用Mary PPM的性能。在完美的渠道知识的假设下进行仿真。 IEEE UWB室内信道模型用于非视线(NLOS)情况C,在发射器和接收器之间的距离为4至10 m。

著录项

  • 作者

    Athavale, Mukta.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2008
  • 页码 65 p.
  • 总页数 65
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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