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The Effects of Symbol Rate Offset on the BER Performance of 16QAM Signals

机译:符号速率偏移对16QAM信号的BER性能的影响

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In non-cooperative communication we need to estimate of symbol rate blindly. Hence, it is necessary to correct symbol rate offset properly and estimate its effects on the receiving performance. In the paper, the symbol timing recovery loop using an acquisition-aiding technique (that is, adaptively adjusting loop bandwidth) can capture symbol rate offset of 1% with the help of the lock detector for 16QAM signals. We analyze and simulate the effects for symbol rate offset of ±0.5% and ±1% on bit error rate (BER) performance over an additive white Gaussian noise (AWGN). The results show that under the same BER the real-time demodulation loss is less than 0.5dB compared to the theoretical value. In addition, an out-of-lock detector is proposed. Together with the lock detector, the out-of-lock detector can ensure the symbol timing recovery loop provide good steady performance and relatively fast convergence rate by adaptively adjusting loop bandwidth.
机译:在非合作沟通中,我们需要盲目地估计符号率。因此,有必要正确纠正符号速率并估计其对接收性能的影响。在本文中,使用获取 - aidide技术(即,自适应地调节环带宽)的符号定时恢复循环可以通过锁定检测器的帮助捕获1%的符号速率偏移,用于16QAM信号。我们通过添加白色高斯噪声(AWGN)分析并模拟符号速率偏移±0.5%和±1%的效果±0.5%和±1%。结果表明,与理论值相比,实时解调损耗小于0.5dB。此外,提出了一种锁定锁定检测器。与锁定检测器一起,锁定检测器可以确保符号定时恢复环路通过自适应调节环带宽来提供良好的稳定性和相对快速的收敛速度。

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