提出了一种基于顺序统计量特征的二进制相移键控/正交相移键控(BPSK/QPSK)信号调制识别算法。对观测信号进行平方并做离散傅里叶变换运算,将变换结果取模后去除最大值得到修正频谱,并取修正频谱的最大值作为识别特征量,利用恒虚警准则...提出了一种基于顺序统计量特征的二进制相移键控/正交相移键控(BPSK/QPSK)信号调制识别算法。对观测信号进行平方并做离散傅里叶变换运算,将变换结果取模后去除最大值得到修正频谱,并取修正频谱的最大值作为识别特征量,利用恒虚警准则确定判决门限,将识别特征量与门限比较来完成对BPSK和QPSK两种调制信号的识别。计算机仿真表明,当信噪比适度时,所提算法可对BPSK及QPSK两类信号进行有效识别。当信噪比大于1 d B时,算法的平均识别正确率达到90%以上。展开更多
提出基于商业零中频芯片MAX2837的BPSK/QPSK解调器设计,详细分析了零中频芯片MAX2837的特性、AGC环路、载波同步及位同步环路的设计。工程实测结果表明:该系统在误比特率为10-5时,解调损耗约2.5 d B,完成系统设计要求;该系统集成度高、...提出基于商业零中频芯片MAX2837的BPSK/QPSK解调器设计,详细分析了零中频芯片MAX2837的特性、AGC环路、载波同步及位同步环路的设计。工程实测结果表明:该系统在误比特率为10-5时,解调损耗约2.5 d B,完成系统设计要求;该系统集成度高、体积小、重量轻、成本低。展开更多
The problem of optimal periodic pulse jamming design for a quadrature phase shift keying(QPSK)communication system is investigated.First a closed-form bit-error-rate(BER)of QPSK system under the jamming of pulse s...The problem of optimal periodic pulse jamming design for a quadrature phase shift keying(QPSK)communication system is investigated.First a closed-form bit-error-rate(BER)of QPSK system under the jamming of pulse signal is derived.Then the asymptotic performance of the derived BER is analyzed as the signal-to-noise ratio(SNR)grows to infinity.In order to maximize the BER of the QPSK system,the optimal parameters of periodic pulse jamming signal,including the duty cycle and signal-tojamming power ratio(SJR),are found out.Numerical results are presented to verify our analytical results and the optimality of our design.展开更多
文摘提出了一种基于顺序统计量特征的二进制相移键控/正交相移键控(BPSK/QPSK)信号调制识别算法。对观测信号进行平方并做离散傅里叶变换运算,将变换结果取模后去除最大值得到修正频谱,并取修正频谱的最大值作为识别特征量,利用恒虚警准则确定判决门限,将识别特征量与门限比较来完成对BPSK和QPSK两种调制信号的识别。计算机仿真表明,当信噪比适度时,所提算法可对BPSK及QPSK两类信号进行有效识别。当信噪比大于1 d B时,算法的平均识别正确率达到90%以上。
基金Supported by the National Natural Science Foundation of China(61271258)
文摘The problem of optimal periodic pulse jamming design for a quadrature phase shift keying(QPSK)communication system is investigated.First a closed-form bit-error-rate(BER)of QPSK system under the jamming of pulse signal is derived.Then the asymptotic performance of the derived BER is analyzed as the signal-to-noise ratio(SNR)grows to infinity.In order to maximize the BER of the QPSK system,the optimal parameters of periodic pulse jamming signal,including the duty cycle and signal-tojamming power ratio(SJR),are found out.Numerical results are presented to verify our analytical results and the optimality of our design.