Satellite signal acquisition method and device
A satellite signal acquisition and satellite signal technology, applied in satellite radio beacon positioning systems, measurement devices, instruments, etc., can solve the problems of reduced acquisition sensitivity, low-intensity signals, and inability to acquire, and achieves increased coherent integration time, improved  Sensitivity, the effect of increasing the gain effect
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Embodiment 1
[0052] Such as figure 1 As shown, it is a flow chart of the satellite signal acquisition method provided by the embodiment of the present invention, and the method includes:
[0053] S110, perform down-sampling processing on the first-type signal pseudo-codes of N periods in the received transmission signal, and obtain the second-type signal pseudo-code with the same number of chips as the local pseudo-code; wherein, one first The Pseudo-codes of the first-class signal uniquely correspond to L pseudo-codes of the second-type signal, and L is the number of chips of the local Pseudo-code.
[0054] Specifically, the transmission signal includes N periods of pseudo-codes of the first type of signal, where N is a natural number. Assuming N=3, then the pseudo code of the first type signal of 3 cycles can be "000", "010" or "110", etc., "1" and "0" respectively represent the waveform of the transmission signal with opposite phase, define "1" is forward, "0" is reverse.
[0055] Fu...
Embodiment 2
[0107] Such as figure 2 As mentioned above, it is a schematic structural diagram of a satellite signal acquisition device provided by an embodiment of the present invention, which is used to perform the above-mentioned figure 1 The method shown, which includes:
[0108] The down-sampling module 210 is used to perform down-sampling processing on the first-type signal pseudo-codes of N periods in the received transmission signal, so as to obtain the second-type signal pseudo-codes with the same number of chips as the local pseudo-codes; Wherein, a pseudo-code of a first-type signal uniquely corresponds to L pseudo-codes of a second-type signal, and L is the chip number of a local pseudo-code;
[0109] Segmentation module 220, for dividing the second type signal pseudo-code and local pseudo-code in each period into P segmented signal pseudo-codes on average;
[0110] The first accumulated value generating module 230 is used to perform coherent accumulation in the segment where...
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