EP1535479B1

Phase shifted time slice transmission to improve handover

Abstract

The present invention provides methods and apparatus for a wireless system broadcasting a plurality of data packets to at least one wireless terminal. The wireless system comprises a plurality of base stations that interfaces to a backbone network in order to receive the plurality of data packets from a service source. Data packets are sent to a wireless terminal by a first base station transmitting a first channel burst and by a second base station transmitting a second channel burst, in which corresponding time offsets of the channel bursts, as characterized by amounts phase shifts, are different. Consequently, when the wireless terminal executes a handover from the first base station to the second base station, a probability that some of the data packets are lost, as result of practical network considerations, is reduced.

EP1535479B1, drawing sheet 1
Sheet 1 of 16

Term

Term ended

Expired 4 September 2023, 3.1 years ago.

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

25 claims: 9 independent, 16 dependent

  1. 1
    A method comprising:determining a first amount of phase shift that is associated with a current first channel burst that comprises a first group of data packets, wherein the first amount of phase shift is associated with a first base station (103) and wherein the first amount of phase shift is different from a second amount of phase shift that is associated with a second base station (105);receiving the current first channel burst at a time in accordance with the first amount of phase shift;determining the second amount of phase shift that is associated with the second base station;and characterised by receiving instructions from the first base station to switch reception from the first base station to the second base station, switching reception from the first base station to the second base station in response to said instructions;and in response to switching reception, receiving a second channel burst from the second base station at a time in accordance with the second amount of phase shift, wherein the second channel burst comprises a second group of data packets.
  2. 6
    The method of claims 4 or 5, wherein the first signal characteristic and the second signal characteristic correspond to a signal attribute selected from a group consisting of a received signal strength indicator value, a bit error rate, and a packet error rate.
  3. 7
    The method of claims 4, 5 or 6, wherein the determining of the second amount of phase shift comprises receiving information about the second amount of phase shift in an initial cell (401).
  4. 8
    The method of any one of claims 4 to 7, further comprising:if numbering of the second group of data packets is not consecutive, rearranging, at a wireless terminal (115), data packets of the second group of data packets so that the numbering is consecutive;and if duplicate data packets are received within the second group of data packets, discarding one of the duplicate data packets.
  5. 9
    The method of any preceding claim, further comprising:determining a third amount of phase shift that is associated with a third channel burst that comprises a third group of data packets, wherein the third amount of phase shift is associated with the first base station;and receiving the third channel burst at a time in accordance with the third amount of phase shift.
  6. 10
    A method comprising:mapping a first group of data packets to a current first channel burst;determining a first amount of phase shift that is associated with a first base station (103) and that corresponds to the current first channel burst, wherein the first amount of phase shift is different from a second amount of phase shift that is associated with a second base station (105);transmitting the current first channel burst at a time that corresponds to the first amount of phase shift;receiving, a first signal characteristic that is indicative of a first signal that is transmitted by the first base station and that is measured by a wireless terminal (115) and a second signal characteristic that is indicative of a second signal that is transmitted by the second base station and that is measured by the wireless terminal;and characterised by determining whether the wireless terminal should be served by the second base station in accordance with the first and second signal characteristics;and sending an instruction to the wireless terminal to switch base stations in response to determining that the wireless terminal should be served by the second base station.
  7. 13
    The method of any one of claims 10 to 12, further comprising including information about the second amount of phase shift in the current first channel burst, wherein the second amount of phase shift corresponds to a second group of data packets that is transmitted by the second base station.
  8. 14
    The method of any one of claims 10 to 13, further comprising:mapping a third group of data packets to a third channel burst that is associated with the first base station;determining a third amount of phase shift that corresponds to the third channel burst;and transmitting the third channel burst at a time that corresponds to the third amount of phase shift.
  9. 22
    A wireless terminal (115) comprising:a storage buffer (1407);a timing module (1409);a radio module (1405) configured to communicate with a wireless system over a radio channel, the wireless system comprising a first base station (103) and a second base station (105) and the wireless terminal being configured to receive a plurality of data packets from the wireless system;a processor (1401) configured to receive an indication from the timing module that a current first channel burst is being transmitted, wherein the current first channel burst contains a first group of data packets, and to store the first group of data packets into the storage buffer, the processor being configured to perform the method claimed in any one of claims 1 to 9.
  10. 23
    A base station (103; 105) comprising:a timing module (1309);a storage buffer (1307);a radio module (1305) configured to communicate with a wireless terminal over a radio channel, the base station being operable in a wireless system for broadcasting a first group of data packets to the wireless terminal;a network interfacing module (1303) configured to receive the first group of data packets;a processor (1301) configured to store the first group of packets in the storage buffer, receive an indication from the timing module that a current first channel burst should be transmitted, retrieve the first group of data packets from the storage buffer, map the first group of data packets to the current first channel burst, wherein the first group of data packets is associated with a first data service;determine a first amount of phase shift that corresponds to the current first channel burst, wherein the first amount of phase shift is different from a second amount of phase shift that is associated with a second base station;transmit, through the radio module, the current first channel burst that corresponds to the first amount of phase shift;receive a first signal characteristic that is indicative of a first signal that is transmitted by the radio module and that is measured by the wireless terminal and a second signal characteristic that is indicative of a second signal that is transmitted by the second base station and that is measured by the wireless terminal;determine whether the wireless terminal should be served by the second base station in accordance with the first and second signal characteristics;and cause an instruction to be sent to the wireless terminal to switch base stations in response to determining that the wireless terminal should be served by the second base station.