In Electronic Warfare, and more specifically in the domain of passive localization, accurate time synchronization between platforms is decisive, especially on systems relying on TDOA (time difference of arrival) and...In Electronic Warfare, and more specifically in the domain of passive localization, accurate time synchronization between platforms is decisive, especially on systems relying on TDOA (time difference of arrival) and FDOA (frequency difference of arrival). This paper investigates this issue by presenting an analysis in terms of final localization performance of an experimental passive localization system based on off-the-shelf components. This system is detailed, as well as the methodology used to carry out the acquisition of real data. This experiment has been realized with two different kinds of clock. The results are analyzed by calculating the Allan deviation and time deviation. The choice of these metrics is explained and their properties are discussed in the scope of an airborne bi-platform passive localization context. Conclusions are drawn regarding the overall localization performance of the system.展开更多
首先对三类不同卫星导航系统时间基准偏差监测途径进行简要介绍,并首次把高精度PPS(pulse per second)测量这种方法成功应用到GPS-GLONASS时差监测中。针对PPS测量方案作了较为详尽的论述和说明,包括硬件配置、数据采集和后处理等内容,...首先对三类不同卫星导航系统时间基准偏差监测途径进行简要介绍,并首次把高精度PPS(pulse per second)测量这种方法成功应用到GPS-GLONASS时差监测中。针对PPS测量方案作了较为详尽的论述和说明,包括硬件配置、数据采集和后处理等内容,在试验中利用两台GPS和GLONASS双模接收机分别输出1PPS的GPS和GLONASS秒脉冲信号,使用斯坦福大学的SR620精密时间间隔计数器进行PPS精密测量,从而得到GPS和GLONASS的系统时间偏差测量值,并通过带有汉宁窗的FIR滤波器得到GPS和GLONASS的系统时间偏差估计结果,其平均值为317.1ns,标准差为5.01ns。展开更多
文摘In Electronic Warfare, and more specifically in the domain of passive localization, accurate time synchronization between platforms is decisive, especially on systems relying on TDOA (time difference of arrival) and FDOA (frequency difference of arrival). This paper investigates this issue by presenting an analysis in terms of final localization performance of an experimental passive localization system based on off-the-shelf components. This system is detailed, as well as the methodology used to carry out the acquisition of real data. This experiment has been realized with two different kinds of clock. The results are analyzed by calculating the Allan deviation and time deviation. The choice of these metrics is explained and their properties are discussed in the scope of an airborne bi-platform passive localization context. Conclusions are drawn regarding the overall localization performance of the system.
文摘首先对三类不同卫星导航系统时间基准偏差监测途径进行简要介绍,并首次把高精度PPS(pulse per second)测量这种方法成功应用到GPS-GLONASS时差监测中。针对PPS测量方案作了较为详尽的论述和说明,包括硬件配置、数据采集和后处理等内容,在试验中利用两台GPS和GLONASS双模接收机分别输出1PPS的GPS和GLONASS秒脉冲信号,使用斯坦福大学的SR620精密时间间隔计数器进行PPS精密测量,从而得到GPS和GLONASS的系统时间偏差测量值,并通过带有汉宁窗的FIR滤波器得到GPS和GLONASS的系统时间偏差估计结果,其平均值为317.1ns,标准差为5.01ns。