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Design of a 2.4 GHz radio transceiver for high-speed wireless data networks.

机译:用于高速无线数据网络的2.4 GHz无线电收发器的设计。

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摘要

The number of applications and services of wireless systems is growing, increasing the performance requirements of the existing transceivers. Although more and more functions of the traditionally analog architectures are now implemented in the digital domain, the main transceiver components are still analog. A wideband transceiver design is proposed and its ability to achieve transmission bit rates of up to 100 MBPS is investigated. The proposed architecture employs PSK or QAM modulation schemes with the addition of a continuous-wave pilot tone that is used for coherent signal demodulation. A single-IF architecture is implemented, with the addition of necessary circuitry to generate the pilot tone at the transmitter and perform coherent demodulation at the receiver. A spectral gap is created at the center of the transmitted signal and the pilot tone is added by taking advantage of the modulating mixer input bias. At the receiver side a SAW filter isolates the pilot, which is then used to perform the demodulation process.; A prototype is designed and a wireless test-bed is implemented operating in the 2.4 GHz ISM band with an intermediate frequency (IF) bandwidth of 30 MHz and a maximum transmitted power of 20 dBm. Its performance is investigated with bit error rate (BER) measurements employing BPSK and QPSK signals and transmission rates up to 10 MBPS. The measured minimum power that is required at the receiver input to achieve a BER of 10−6 is −77 dBm for BPSK signals and −70 dBm for QPSK signals. The effect of various propagating environments is studied with indoor and outdoor BER measurements and using directive and broadbeam antennas. Simple models employing geometrical optics theory are used to model the propagation losses and verify the measured data.; The phase noise of the recovered pilot tone signal is identified as the limiting factor in the transceiver performance. The dependence of the probability of error of the demodulation process to the phase noise is investigated for BPSK, QPSK and 16QAM signals and the limitations and requirements to achieve a transmission rate of 100 MBPS are explored.
机译:无线系统的应用和服务的数量正在增长,从而增加了现有收发器的性能要求。尽管现在在数字域中实现了传统模拟架构的越来越多的功能,但是主要的收发器组件仍然是模拟的。提出了一种宽带收发器设计,并研究了其实现高达100 MBPS的传输比特率的能力。所提出的架构采用PSK或QAM调制方案,并添加了用于相干信号解调的连续波导频音。实现了单中频架构,并添加了必要的电路以在发送器处生成导频​​音并在接收器处执行相干解调。在发射信号的中心产生频谱间隙,并利用调制混频器输入偏置来添加导频音。在接收机端,一个SAW滤波器隔离了导频,然后将其用于执行解调过程。设计了一个原型,并实现了一个无线测试台,该无线测试台工作在2.4 GHz ISM频段,中频(IF)带宽为30 MHz,最大发射功率为20 dBm。通过使用BPSK和QPSK信号以及高达10 MBPS的传输速率的误码率(BER)测量来研究其性能。对于BPSK信号,在接收机输入端达到BER为10 -6 所需的最小功率测量值为-77 dBm,对于QPSK信号,则为-70 dBm。通过室内和室外BER测量以及使用定向和宽波束天线研究了各种传播环境的影响。使用几何光学理论的简单模型对传播损耗建模并验证测量数据。恢复的导频音信号的相位噪声被确定为收发器性能的限制因素。对于BPSK,QPSK和16QAM信号,研究了解调过程的误差概率对相位噪声的依赖性,并探讨了实现100 MBPS传输速率的局限性和要求。

著录项

  • 作者

    Georgiadis, Apostolos.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 229 p.
  • 总页数 229
  • 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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