64-QAM多载波闭环旋转调制性能改进

Budi Prasetya, A. Kurniawan, Iskandar, Arfianto Fahmi
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引用次数: 0

摘要

为了提高64-QAM多载波通信系统的性能,我们提出了一种新的方法——闭环旋转调制。闭环过程需要反馈信道信息以复杂量的形式,其中包含了信道的增益和延迟信息。基于无失真传输的目的,在发射机侧得到了多载波系统闭环旋转调制方法中的方程。仿真结果表明,采用闭环旋转调制后,多载波解调器的输出信号与传输信号完全一致。在产生误差曲线的概率上,只要受AWGN信道干扰,采用闭环旋转调制就能与系统性能相吻合。为了使算法能够最优地工作,反馈的更新速度必须快于信道波动的变化,并且信道反馈能够完美地工作。仿真结果还表明,信道信息反馈虽然不完善,但仍能产生良好的性能,信道反馈越准确,误差概率越高。该方案的另一个优点是在多载波系统的传输过程中不使用保护间隔,从而使数据的效率最大化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Improvement on 64-QAM Multicarrier with Closed-Loop Rotate Modulation
To improve performance in the 64-QAM multicarrier communication system, we propose a new method, closed-loop rotate modulation. The closed-loop process requires feedback channel information in the form of complex quantities that contain information on the gain and delay of the channel. Based on the purpose of distortionless transmission, we can get the equation in the closed-loop rotate modulation method on the multi-carrier system at the transmitter side. From the simulation results, with the application of closed-loop rotate modulation, the output signal of the multicarrier demodulator is exactly the same as the transmission signal. On the probability of error curve generated, the application of closed-loop rotate modulation can coincide with the system performance if only disturbed by the AWGN channel. Terms so that the algorithm can work optimally, the speed of updating feedback must be faster than changes in channel fluctuations and channel feedback works perfectly. The simulation results also show that although channel information feedback is not perfect, but still can produce a good performance, the more accurate channel feedback will result in a better probability of error. Another advantage of the scheme that we propose is that the transmission process of a multi-carrier system does not use guard intervals, so the efficiency of the data is maximized.
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