Nova Patents
EP0701320A2

Detector for digitally modulated signal

Abstract

The present invention refers to a received signal detector for detecting and demodulating a digital modulated signal wherein a signal detection in a short time can be implemented independently of the signal frame length. The wide-band filter is a filter having a pass frequency band set to the frequency range of received signals to be demodulated. The A/D convertor, first power detector and first averaging circuit measure the average power of a signal having passed through the wide-band filter. The threshold setting circuit sets a threshold from the averaged power. The narrow-band filter filters an output signal of the frequency convertor in a narrower frequency band than the pass frequency band of the wide-band filter. The comparator circuit compares said threshold and the average power of a signal taken out from the second averaging circuit and passing through the narrow-band filter and judges whether the received signal is taken out from said wide-band filter.

EP0701320A2, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Projected expiry passed 11 September 2015, 11 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

8 claims: 1 independent, 7 dependent

  1. 1
    A received signal detector comprising:a wide-band filter for filtering a received signal modulated by a digital modulation in a frequency band to be demodulated;first averaged power measuring means for measuring an averaged power of said received signal having passed through said wide-band filter;a threshold setting circuit for setting a threshold in accordance with the output signal measured by said first average power measuring means;a frequency convertor for converting a frequency of said received signal having passed through said wide-band filter to a narrower frequency band than the passing frequency band of said wide-band filter by using a frequency conversion signal;a narrow-band filter for filtering an output signal of said frequency convertor;second averaged power measuring means for measuring the averaged power of a signal having passed through said narrow-band filter;and    a comparator circuit for comparing said threshold and the output measurement averaged power and judging whether said received signal is present or absent.
  2. 2
    A received signal detector as claimed in Claim 1, further comprising:a carrier frequency estimator for sampling received signals taken out from said wide-band filter in accordance with an output signal of said comparator circuit and estimating the frequency of the carrier;voltage control frequency generation means for generating said frequency conversion signal to variably control the frequency in accordance with a control signal of said carrier frequency estimator;and    a demodulator for demodulating a signal having passed through said narrow-band filter in accordance with an output control signal of said carrier frequency estimator.
  3. 3
    A received signal detector as claimed in Claim 1, further comprising:a frequency sweep control circuit for controlling an output sweep signal of said voltage control frequency generation means as said frequency conversion signal for a carrier acquisition in accordance with an output of said comparator circuit.
  4. 4
    A received signal detector as claimed in Claim 1, further comprising:bit synchronization means for controlling a clock phase control information from a signal demodulated by said demodulator for demodulating a signal having passed through said narrow-band filter depending on whether a received signal is present or absent in accordance with an output of said comparator circuit;loop-band switching means for switching the loop band of said demodulator between the narrow band and the wide band;and    AFC control means for controlling a AFC control operation or AFC control stop operation of a reference carrier.
  5. 5
    A received signal detector as claimed in Claim 1 wherein said received signal is a signal received in a satellite communications.
  6. 6
    A received signal detector as claimed in Claim 1 wherein said threshold voltage is obtained from said threshold setting circuit that an output voltage of said first average power measurement means may come between an output voltage of said second average power measurement means at the time of received signal input and an output voltage at the time of no received signal input.
  7. 7
    A received signal detector as claimed in Claim 1 wherein said wide-band filter, said first average power measurement means, said threshold setting circuit, said frequency convertor, said narrow-band filter, said second average power measurement means and said comparator circuit are all operated in digital signal processing.
  8. 8
    A received signal detector as claimed in Claim 1 wherein said wide-band filter and said narrow-band filter are an anti-aliasing filter and a Nyquist filter, respectively.