Author_Institution :
Dept. of Electron. Eng., Tsinghua Univ., Beijing, China
Abstract :
In global positioning system modernisation, to further enhance the anti-jamming capability of authorised signals, the new designed M-code signal utilises a few revolutionary techniques. While enduing the signal with excellent performance, the techniques make the acquisition methods for conventional pseudo-noise codes, such as C/A-code and P(Y)-code, inapplicable. Furthermore, compared with time-domain correlation, frequency-domain correlation is favourable for saving computation requirements and suppressing interferences. Thus, it is quite desirable to develop frequency-domain-based ones. To this end, a frequency-domain-based acquisition method is developed, and based on the method the acquisition performance of M-code signal is evaluated and the factors associated with the performance are investigated. It is shown that M-code provides flexible tradeoffs between performance and implementation complexity through the sidebands and chips of the signal. Numerical and simulation results demonstrate the results.
Keywords :
Global Positioning System; frequency-domain analysis; interference suppression; pseudonoise codes; signal detection; C/A-code; Global Positioning System; M-code acquisition method; M-code signal acquisition; PY-code; authorised signals; frequency-domain correlation; frequency-domain-based acquisition method; interference suppression; pseudonoise codes; time-domain correlation;