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Measured performance of 4-QAM with 2-branch selection diversity in frequency-selective fading using only one receiver

机译:4-QAM的测量性能,仅使用一个接收器使用2分支选择分集

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The authors present the measured performance of a 500 kb/s 4-QAM (quadrature amplitude modulation) radio link with two-branch selection diversity using only one receiver subjected to hardware-simulated slow frequency-selective Rayleigh fading. The single coherent receiver input is switched between two uncorrelated Rayleigh-fading signals and the one with higher power is selected. The experimental radio link uses time-division multiplexing with a coherent receiver. Since the down-link transmitter is always on the received signal measurements and selection can be performed just before the reception of the user's data burst. The measured performance compares favorably with computer simulation. The effect of delay between measurement/selection and the actual data burst demodulation is also presented. It is found from both experiment and computer simulation that selection diversity is effective in reducing the bit-error-rate floor caused by frequency-selective fading. As a result, a higher data rate can be supported by a multipath fading channel without using adaptive equalization. Thus, a low-complexity hardware design incorporating selection diversity is feasible for a portable radio communication system.
机译:作者介绍了使用经过硬件模拟慢频选择性瑞利衰落的一个接收器的两个分支选择分集的500kb / s 4-qam(正交幅度调制)无线电链路的测量性能。单个相干接收器输入在两个不相关的瑞利衰落信号之间切换,选择具有更高功率的冰色衰减信号。实验无线电链路使用与相干接收器的时分复用。由于下行链路发射器始终在接收的信号测量值上,并且可以在接收用户的数据突发之前执行选择。测量性能有利地与计算机仿真相比。还提出了测量/选择之间的延迟和实际数据突发解调的影响。从实验和计算机仿真中发现,选择分集有效地减少由频率选择性衰落引起的误码率楼层。结果,多径衰落信道可以通过不使用自适应均衡来支持更高的数据速率。因此,包括选择分集的低复杂性硬件设计对于便携式无线电通信系统是可行的。

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