EP0809377A2

Signal acquisition in a satellite telephone system

Abstract

In a telecommunications system, where the receiver must find a signal arranged in a regular pattern in frame periods (10) and further in slots (11) from among several possible frequencies, there is applied a two-step synchronisation procedure. In the first step (20), the receiver records a sample sequence (30) having the length of two frame periods and a sampling ratio of 1/1, and calculates on the basis of this an estimate sequence (32), where each estimate is a sliding average of N successive samples, and N is the number of symbols contained by one slot. The largest estimates (35, 36, 37, 38) correspond to those bursts of the detected signal that have the highest power; on the basis of them, there is calculated a coarse frame synchronisation at the accuracy of 30 symbols. In the second step (24), in each recorded frame there is detected a given reference sequence (14; 43) by looking for a sequence of successive samples that best correlates with the known form (43) of the reference sequence. If the location of the found reference sequences is equal, in both frames, with sufficient accuracy, the signal is found.

EP0809377A2, drawing sheet 1
Sheet 1 of 6

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Term ended

Projected expiry passed 20 May 2017, 9.3 years ago.

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14 claims: 4 independent, 10 dependent

  1. 1
    A method for acquiring a signal in a receiver, the signal being contained in a given channel and comprising - a control burst (13) repeated at regular intervals within a given frame period (10), which burst contains a reference sequence (14) with a predetermined form, and - a frequency data part (15) having a lower power level than the control burst, characterised in that it comprises steps where - there is received radiation at a certain frequency, - in the received radiation, there is detected (20) a first power peak (35) and a second power peak (38), - if the mutual difference in time of said first and second power peaks is within the range [F-P1, F+P1], where F corresponds to said frame period and P1 is a certain first error, there is made a preliminary decision (21) that the signal is found, - there is defined (24), on the basis of the location in time of said first and second power peaks, a given frame synchronisation point in time, - on the basis of said frame synchronisation point, in the received radiation there is detected a first and second part corresponding to said reference sequence (43), - there is detected, by the method of cross correlation with the known form of said reference sequence, the location in time of the best correlation corresponding to said first part, in relation to said frame synchronisation point, and the location in time of the best correlation corresponding to said second part, in relation to said frame synchronisation point, and - if the location in time of the best correlation corresponding to said first part differs from the location in time of the best correlation corresponding to said second part in relation to said frame synchronisation point no more than for the length of a given second error, there is made a final decision (25) that the signal is found.
  2. 4
    A method according to any of the previous claims, characterised in that in order to detect said first and second power peaks, the received radiation is searched for at least four power peaks (35, 36, 37, 38), and it is required that among these, no two power peaks are closer to each other in time than a given first marginal value (P1).
  3. 13
    A method according to any of the claims 10 - 12, characterised in that in accordance to uncertainty in the location in time of said frame synchronisation point, there is set another given marginal value (P2), and in order to read said frequency sample sequences - the nominated beginning and end of the frequency data part in the recorded sample sequence are defined by calculating from said frame synchronisation point, - the reading of each frequency sample sequence is started at a point of the recorded sample sequence which equals to the nominal beginning of said frequency data part added by said second marginal value, and - the reading of each frequency sample sequence is stopped at a point in the recorded sample sequence which equals to the nominal end of said frequency data part as subtracted by said second marginal value.
  4. 14
    A method for acquiring a signal in a receiver, which signal is contained in a given channel and includes a control burst repeated at regular intervals with the length of a given frame period, the control burst containing a reference sequence with a predetermined form, as well as a frequency data part with a lower power value than the control burst, characterised in that the method comprises the following steps, where - there is received radiation at a given frequency, - in the received radiation, there is detected a power peak describing the highest received power, - on the basis of the location in time of said power peak, there is defined a frame synchronisation point in time, - on the basis of correlation in content, in said received radiation there is detected the part corresponding to said reference sequence, and - if the location in time of said part corresponding to said reference sequence, defined on the basis of correlation in content, in relation to said frame synchronisation point, differs from the nominal location in time calculated for the reference sequence with respect to said frame synchronisation point no more than for the length of a given another error, it is concluded that the signal is found. Table 1 S/N, dB Missed detection percentage / % P1=50 False detection percentage / % P2=50 False detection percentage / % P2=30 -4 20,1 2,3 20 -2 2 0,56 1,7 0 0 0,1 0,25 2 0 0 0 4 0 0 0 Table 2 FFT number AWGN channel Ricean channel 1 S/N > 4 dB S/N > 6 dB 2 0 dB ≤ S/N ≤ 4 dB 1,5 dB ≤ S/N ≤ 6 dB 3 S/N < 0 dB SN < 1,5 dB