EP2255451B1

Random phase multiple access communication interface system and method

Abstract

This record has no abstract on file.

EP2255451B1, drawing sheet 1
Sheet 1 of 16

Term

2.5 yearsleft in the term

Expires 11 March 2029.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

15 claims: 3 independent, 12 dependent

  1. 1
    A method for communicating through a multiple access communication interface, the method comprising:transmitting from an access point broadcast frame to a first tag, wherein the broadcast frame is spread with a broadcast channel PN code;receiving at the access point a first signal from a first tag, wherein the first signal is spread using a predetermined pseudo-noise (PN) code, wherein the first signal is transmitted from the first tag at a first time based upon a first random slot access and a first random chip offset, wherein the first signal includes first payload data, wherein the first signal is received during a time slot, wherein the first signal is spread using a first spreading factor based upon a measured strength at the first tag of the broadcast frame;receiving at the access point a second signal from a second tag, wherein the second signal is spread using the predetermined PN code, wherein the second signal is transmitted from the second tag at a second time based upon a second random slot access and a second random chip offset, wherein the second signal includes second payload data, wherein the second signal is received during the time slot, and wherein at least a portion of the second signal is received while at least a portion of the first signal is received;identifying the first payload data from the first signal;and identifying the second payload data from the second signal.
  2. 6
    A system for communicating through a multiple access communication interface, the system comprising:a first tag having: a first receiver configured to receive a broadcast frame transmitted from an access point;and a first transmitter configured to transmit first payload data in a first signal, wherein the first signal is transmitted at a first time based upon a first random slot access and a first random chip offset, wherein the first signal is spread using a predetermined pseudo-noise (PN) code wherein the first signal is received during a time slot, wherein the first signal is spread using a first spreading factor based upon a measured strength at the first tag of the broadcast frame;a second tag having a second transmitter configured to transmit second payload data in a second signal, wherein the second signal is transmitted at a second time based upon a second random chip offset and a second random timing offset, and wherein the second signal is spread using the predetermined PN code, wherein the second signal is received at the access point during the time slot, and wherein at least a portion of the second signal is received while at least a portion of the first signal is received;and the access point being in communication with the first tag and with the second tag, wherein the access point comprises;a receiver configured to receive the first signal and the second signal;and a transmitter configured to transmit the broadcast frame to the first tag, wherein the broadcast frame is spread with a broadcast channel PN code.
  3. 11
    An access point for use in a multiple access communication system, the access point comprising:a processor;a transmitter configured to transmit a broadcast frame to a first tag, wherein the broadcast frame is spread with a broadcast channel PN code;a receiver in communication with the processor and configured to: receive a first signal from the first tag, wherein the first signal includes first payload data, wherein the first signal is transmitted at a first time based upon a first random slot access and a first random chip offset, wherein the first signal is spread using a predetermined pseudo-noise (PN) code, wherein the first signal is received during a time slot, wherein the first signal is spread using a first spreading factor based upon a measured strength at the first tag of the broadcast frame;and receive a second signal from a second tag, wherein the second signal includes second payload data, wherein the second signal is transmitted at a second time based upon a second random slot access and a second random chip offset, wherein the second signal is spread using the predetermined PN code, wherein the second signal is received during the time slot, and wherein at least a portion of the second signal is received while at least a portion of the first signal is received.