针对二进制偏移载波(BOC)调制信号捕获模糊问题,提出了一种基于本地BOC信号分解-合成的算法。首先,将副载波按照本地BOC信号的阶数n进行分解;其次,把分解得到的函数分别与伪随机码相乘,得到2n个BOC信号子函数,再分别与接收BOC信号作互...针对二进制偏移载波(BOC)调制信号捕获模糊问题,提出了一种基于本地BOC信号分解-合成的算法。首先,将副载波按照本地BOC信号的阶数n进行分解;其次,把分解得到的函数分别与伪随机码相乘,得到2n个BOC信号子函数,再分别与接收BOC信号作互相关得到2n个互相关函数;最后,将上一步得到的2n个互相关函数按照分解-合成算法进一步处理。理论分析和仿真结果表明,与OQCC算法相比,在捕获BOC(1,1)和BOC(2,1)信号时,该分解-合成算法的主副峰分离度(ASDMSP)有21.51 d B和3.4 d B的提高。实验结果表明,该分解-合成算法能够有效解决BOC信号捕获模糊问题。展开更多
针对使用传统部分匹配滤波器(PMF)结合快速傅里叶变换(FFT)无法精确捕获时分复用二进制偏移载波(TMBOC)调制信号的问题,提出一种基于全相位频谱校正的捕获方法。首先通过PMF过程对接收信号进行部分相关运算,再使用全相位快速傅里叶变换(...针对使用传统部分匹配滤波器(PMF)结合快速傅里叶变换(FFT)无法精确捕获时分复用二进制偏移载波(TMBOC)调制信号的问题,提出一种基于全相位频谱校正的捕获方法。首先通过PMF过程对接收信号进行部分相关运算,再使用全相位快速傅里叶变换(ap FFT)算法对多普勒效应进行补偿,最后结合全相位频谱校正技术对功率谱进行校正。仿真结果表明,在同一条件下,该算法比PMF-FFT加窗算法检测概率提高了3 d B左右,并有效缩短了捕获时间。该算法可比PMF-FFT加窗算法更精确捕获TMBOC信号。展开更多
Signal structure design is an important part of satellite navigation system research,which directly affects navigation performance.Signal performance parameters are analyzed and performances of BPSK modulated signals ...Signal structure design is an important part of satellite navigation system research,which directly affects navigation performance.Signal performance parameters are analyzed and performances of BPSK modulated signals and BOC modulated signals are compared.Aiming at requirements of high navigation precision and high anti-jamming ability,a new navigation signal structure based on complex carrier modulation is proposed and performances of the signal are researched with different parameters.A synchronization algorithm is put forward according to the signal characteristics,and the synchronization performance is qualitatively analyzed.Next,the applications of the complex carrier modulated signal are discussed,which include anti-jamming,navigation enhancement,power combing and so on.Simulations and analysis show that the proposed navigation signal structure based on complex carrier modulation has good navigation capabilities and anti-jamming abilities,which deserves further study.展开更多
文摘针对二进制偏移载波(BOC)调制信号捕获模糊问题,提出了一种基于本地BOC信号分解-合成的算法。首先,将副载波按照本地BOC信号的阶数n进行分解;其次,把分解得到的函数分别与伪随机码相乘,得到2n个BOC信号子函数,再分别与接收BOC信号作互相关得到2n个互相关函数;最后,将上一步得到的2n个互相关函数按照分解-合成算法进一步处理。理论分析和仿真结果表明,与OQCC算法相比,在捕获BOC(1,1)和BOC(2,1)信号时,该分解-合成算法的主副峰分离度(ASDMSP)有21.51 d B和3.4 d B的提高。实验结果表明,该分解-合成算法能够有效解决BOC信号捕获模糊问题。
文摘针对使用传统部分匹配滤波器(PMF)结合快速傅里叶变换(FFT)无法精确捕获时分复用二进制偏移载波(TMBOC)调制信号的问题,提出一种基于全相位频谱校正的捕获方法。首先通过PMF过程对接收信号进行部分相关运算,再使用全相位快速傅里叶变换(ap FFT)算法对多普勒效应进行补偿,最后结合全相位频谱校正技术对功率谱进行校正。仿真结果表明,在同一条件下,该算法比PMF-FFT加窗算法检测概率提高了3 d B左右,并有效缩短了捕获时间。该算法可比PMF-FFT加窗算法更精确捕获TMBOC信号。
文摘Signal structure design is an important part of satellite navigation system research,which directly affects navigation performance.Signal performance parameters are analyzed and performances of BPSK modulated signals and BOC modulated signals are compared.Aiming at requirements of high navigation precision and high anti-jamming ability,a new navigation signal structure based on complex carrier modulation is proposed and performances of the signal are researched with different parameters.A synchronization algorithm is put forward according to the signal characteristics,and the synchronization performance is qualitatively analyzed.Next,the applications of the complex carrier modulated signal are discussed,which include anti-jamming,navigation enhancement,power combing and so on.Simulations and analysis show that the proposed navigation signal structure based on complex carrier modulation has good navigation capabilities and anti-jamming abilities,which deserves further study.