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Performance Analysis of a Six-Port Receiver in a WCDMA Communication System including a Multipath Fading Channel

机译:包含多径衰落信道的WCDMA通信系统中六端口接收器的性能分析

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Third generation communication systems require receivers with wide bandwidth of operation to support high transmission rates and are also reconfigurable to support various communication standards with different frequency bands. An ideal software defined radio (SDR) will be the absolute answer to this requirement but it is not achievable with the current level of technology. This paper proposes the use of a six-port receiver (SPR) front-end (FE) in a WCDMA communication system. A WCDMA end-to-end physical layer MATLAB demo which includes a multipath channel distortion block is used to determine the viability of the six-port based receiver. The WCDMA signal after passing through a multipath channel is received using a constructed SPR FE. The baseband signal is then calibrated and corrected in MATLAB. The six-port receiver performance is measured in terms of bit error rate (BER). The signal-to-noise ratio (SNR) of the transmittedIQdata is varied and the BER profile of the communication system is plotted. The effect of the multipath fading on the receiver performance and the accuracy of the calibration algorithm are obtained by comparing two different measured BER curves for different calibration techniques to the simulated BER curve of an ideal receiver.
机译:第三代通信系统要求接收机具有宽的工作带宽以支持高传输速率,并且还需要重新配置以支持具有不同频带的各种通信标准。理想的软件定义无线电(SDR)将是对这一要求的绝对解决方案,但是用当前的技术水平是无法实现的。本文提出了在WCDMA通信系统中使用六端口接收机(SPR)前端(FE)的建议。 WCDMA端到端物理层MATLAB演示(包括多径信道失真模块)用于确定基于六端口的接收机的可行性。使用构造的SPR FE接收经过多径信道的WCDMA信号。然后在MATLAB中对基带信号进行校准和校正。六端口接收机性能是根据误码率(BER)来衡量的。改变传输的IQ数据的信噪比(SNR),并绘制通信系统的BER分布图。通过将用于不同校准技术的两个不同的测量BER曲线与理想接收机的模拟BER曲线进行比较,可以获得多径衰落对接收机性能和校准算法精度的影响。

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