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Nonlinear analysis of the phase noise in the OFDM communication system

机译:OFDM通信系统中相位噪声的非线性分析

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For the detailed analysis of OFDM system, we present a novel approach of the nonlinear approximation including the second order term of phase noise. Phase noise of PLL (phase locked-loop) frequency synthesizer is analyzed when the commercial components of the PLL are considered for the practical analysis. It is shown that BER results by analytical approach closely match with simulation results of the OFDM communication system using QPSK and 16QAM modulation. DF (degradation factor) that is the ratio of SNR without phase noise ((S/N)/sub without{/spl Phi/}/) to SNR with phase noise ((S/N)/sub with{/spl Phi/}/) is used for the performance measure. When the phase noise variances controlled by the PLL closed- loop bandwidth are 0.005, 0.008, and 0.012 respectively, it can be shown that there are about 0.6 dB, 1.0 dB and 1.7 dB power penalties in QPSK scheme and about 1.9 dB, 3.2 dB, and 6.7 dB in 16QAM scheme to meet BER=10/sup -4/ in AWGN channel than OFDM communication system without phase noise. Furthermore, BER performance of QPSK-OFDM communication system is considerably degraded when phase noise variance is bigger than 0.03. Difference between the results of this work and the previous work is shown more obvious if the phase noise variance exceeds 0.02.
机译:对于OFDM系统的详细分析,我们提出了一种新的非线性近似方法,其中包括相位噪声的二阶项。当考虑将PLL的商业组件用于实际分析时,分析PLL(锁相环)频率合成器的相位噪声。结果表明,通过解析方法得出的BER结果与使用QPSK和16QAM调制的OFDM通信系统的仿真结果非常吻合。 DF(降级因子),即不带相位噪声的SNR((S / N)/不带{/ spl Phi /} /的SNR与带有相噪声((S / N)/ sub带有{/ spl Phi / } /)用于绩效评估。当由PLL闭环带宽控制的相位噪声方差分别为0.005、0.008和0.012时,可以证明QPSK方案中的功率损耗约为0.6 dB,1.0 dB和1.7 dB,而1.9 dB,3.2 dB约为与没有相位噪声的OFDM通信系统相比,16QAM方案中的6.7 dB满足AWGN信道中的BER = 10 / sup -4 /。此外,当相位噪声方差大于0.03时,QPSK-OFDM通信系统的BER性能会大大降低。如果相位噪声方差超过0.02,则该工作的结果与先前的工作之间的差异会更加明显。

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