EP0940926A2

Spectrum spreading communication system using single spreading code

Abstract

A spectrum spreading communication system including a radio base station includes a receiving section, a correlation detecting section, a rake synthesizing section and a control section. The receiving section receives a radio signal to produce a digital burst signal. Transmission data of the radio signal respectively include different pilot patterns and data, are subjected to spectrum spreading using a single spreading code, and are transmitted on a same frequency band. The correlation detecting section performs a tracking operation to the burst signal for each of paths to produce a tracking resultant data. The paths are specified based on a path data. The correlation detecting section also detects a component of the burst signal correlated with the spreading code for each path based on the tracking resultant data. The rake synthesizing section performs rake synthesis to the components from the correlation detecting section for each of the pilot patterns. The control section determines path candidates from the burst signal to output the path data corresponding to the path candidates to the correlation detecting section, and controls the rake synthesizing section to perform the rake synthesis to the components from the correlation detecting section for each of the pilot patterns.

EP0940926A2, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Projected expiry passed 22 February 2019, 7.6 years ago.

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

16 claims: 2 independent, 14 dependent

  1. 1
    A spectrum spreading communication system including a radio base station comprising:a receiving section (310, 320) for receiving a radio signal to produce a digital burst signal, wherein transmission data of the radio signal respectively include different pilot patterns and data, are subjected to spectrum spreading using a single spreading code, and are transmitted on a same frequency band;a correlation detecting section (440, 450) for performing a tracking operation to said burst signal for each of paths to produce a tracking resultant data, said paths being specified based on a path data, and detecting a component of said burst signal correlated with said spreading code for each path based on said tracking resultant data;a rake synthesizing section (460) for performing rake synthesis to said components from said correlation detecting section for each of said pilot patterns;and a control section (420, 430, 421, 480) for determining path candidates from said burst signal to output said path data corresponding to said path candidates to said correlation detecting section, and for controlling said rake synthesizing section to perform said rake synthesis to said components from said correlation detecting section for each of said pilot patterns.
  2. 7
    A spectrum spreading communication system according to any one of claims 1 to 6, wherein said correlation detecting section includes:a plurality of tracking sections, each of which performs a tracking operation to said burst signal for a corresponding one of said paths to produce a portion of said tracking resultant data;and a plurality of correlating sections which are provided for said plurality of tracking sections, and each of which detects a component of said burst signal correlated with said spreading code for each path based on said tracking resultant data.
  3. 8
    A spectrum spreading communication system according to any one of claims 1 to 7, wherein a spreading code decoding section includes said correlation detecting section, said rake synthesizing section, said control section and said data decoding section, and wherein said spectrum spreading communication system further comprises a plurality of said spreading code decoding sections respectively provided for a plurality of said spreading codes.
  4. 9
    In a spectrum spreading communication system including a radio base station and a plurality of mobile stations, a method of communicating from said plurality of mobile stations to said radio base station, comprising the steps of:transmitting transmission data from said plurality of mobile stations as radio signals on a same frequency band, wherein said transmission data respectively include different pilot patterns and data, the different pilot patterns are allocated to said plurality of mobile stations, and said transmission data are subjected to spectrum spreading by said plurality of mobile stations using a single spreading code, respectively;receiving said radio signals to produce a digital burst signal;determining path candidates from said burst signal to generate said path data corresponding to said path candidates;performing a tracking operation to said burst signal for each of paths to produce a tracking resultant data, said paths being specified based on a path data;detecting a component of said burst signal correlated with said spreading code for each path based on said tracking resultant data;and performing rake synthesis to said components from said correlation detecting section for each of said pilot patterns to produce rake synthesis signals for communication.
  5. 16
    A method according to any one of claims 9 to 15, further comprising the step of performing said step of determining path candidates, said step of performing a tracking operation, said step of performing rake synthesis, and said step of decoding the rake synthesis signals for each of a plurality of said spreading codes.