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A Novel Sample Based Quadrature Phase Shift Keying Demodulator

机译:一种基于样本的新型正交相移键控解调器

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摘要

This paper presents a new practical QPSK receiver that uses digitized samples of incoming QPSK analog signal to determine the phase of the QPSK symbol. The proposed technique is more robust to phase noise and consumes up to 89.6% less power for signal detection in demodulation operation. On the contrary, the conventional QPSK demodulation process where it uses coherent detection technique requires the exact incoming signal frequency; thus, any variation in the frequency of the local oscillator or incoming signal will cause phase noise. A software simulation of the proposed design was successfully carried out using MATLAB Simulink software platform. In the conventional system, at least 10 dB signal to noise ratio (SNR) is required to achieve the bit error rate (BER) of 10−6, whereas, in the proposed technique, the same BER value can be achieved with only 5 dB SNR. Since some of the power consuming elements such as voltage control oscillator (VCO), mixer, and low pass filter (LPF) are no longer needed, the proposed QPSK demodulator will consume almost 68.8% to 99.6% less operational power compared to conventional QPSK demodulator.
机译:本文提出了一种新型的实用QPSK接收机,该接收机使用输入的QPSK模拟信号的数字化样本来确定QPSK符号的相位。所提出的技术对相位噪声更鲁棒,并且在解调操作中用于信号检测的功耗降低了多达89.6%。相反,使用相干检测技术的常规QPSK解调过程需要精确的输入信号频率。因此,本地振荡器或输入信号的频率变化都会引起相位噪声。使用MATLAB Simulink软件平台成功进行了所建议设计的软件仿真。在常规系统中,至少需要10 dB的信噪比(SNR)才能实现10 -6 的误码率(BER),而在所提出的技术中,相同的BER值仅需5dB的SNR即可实现。由于不再需要诸如电压控制振荡器(VCO),混频器和低通滤波器(LPF)之类的一些功耗元件,因此与传统的QPSK解调器相比,拟议的QPSK解调器将消耗约68.8%至99.6%的工作功率。

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