EP0847148A2

Paging channel control method and apparatus

Abstract

In a messaging system, message traffic is transmitted on one or more traffic channels (T1, T2 ) and the allocation of groups (S1, S2 ) of receivers to the traffic channels (T1, T2 ) is controlled by information transmitted on a bulletin board channel (BB). A predetermined number of frames before a change in the traffic channel allocation, a countdown value is transmitted in the relevant traffic channel (T1 ) and the countdown value is decremented in each subsequent frame. Before the countdown value reaches zero, the groups of receivers (S1, S2) retune to the bulletin board channel, receive their new channel allocations and retune to the traffic channel indicated for their group. The frame timings of the different traffic channels (T1, T2 ) are staggered to reduce the peak power required to transmit message bursts in these channels.

EP0847148A2, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Projected expiry passed 2 December 2017, 8.8 years ago.

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

33 claims: 22 independent, 11 dependent

  1. 1
    A method of controlling the transmission of a plurality of frequency channels (T1 to T4), each of which has a frame format of substantially the same constant frame period (FL), with each frame (TF) comprising a transmission burst of variable duration, the method being characterised by:controlling the timing of transmission of the frames (TF) of each of said frequency channels (T1 to T4) such that the start of the transmission burst (MB) of one of said channels is delayed relative to the start of the transmission burst (MB) of another one of said channels.
  2. 3
    A method of controlling the transmission of a plurality of frequency channels (T 1 to T4), each of which has a frame format of substantially the same constant frame period (FL), comprising controlling the timing of transmission of said frequency channels such that the start timing of the frames of each of said channels differs from that of the other ones of said channels, the method being characterised by controlling the transmission of a control channel including a plurality of sets of channel (BB) control data (AT) each relating to a corresponding one of said plurality of channels (T1 to T4) such that said sets are transmitted sequentially and the order of starting of said frames (TF) of said frequency channels (T1 to T4) substantially corresponds to the order of transmission of said sets of said channel control data (AT).
  3. 4
    A method as claimed in any preceding claim, wherein said plurality of frequency channels (T1 to T4) are each message traffic channels carrying one or more messages (MB) for selective message receivers (14).
  4. 5
    Apparatus for controlling the transmission of a plurality of frequency channels (T1 to T4), each of which has a frame format of substantially the same constant frame period (FL), with each frame (TF) comprising a transmission burst (MB) of variable length, the apparatus being characterised by:means (26) for controlling the timing of transmission of the frames (TF) of each of said frequency channels (T1 to T4) such that the start of the transmission burst (MB) of one of said channels is delayed relative to the start of the transmission burst (MB) of another one of said channels.
  5. 7
    Apparatus for controlling the transmission of a plurality of frequency channels (T1 to T4), each of which has a frame format of substantially the same constant frame period (FL), comprising:means (26) for controlling the timing of transmission of said frequency channels such that the start timing of the frames of each of said channels differs from that of the other ones of said channels, the apparatus being characterised by means (26) for controlling the transmission of a control channel (BB) including a plurality of sets of channel control data (AT) each relating to a corresponding one of said plurality of frequency channels (T1 to T4) such that said sets are transmitted sequentially and the order of starting of said frames (TF) of said frequency channels (T1 to T4) substantially corresponds to the order of transmission of said sets of said channel control data (AT).
  6. 8
    Apparatus as claimed in any one of claims 5 to 7, wherein said plurality of frequency channels are each message traffic channels (T1 to T4) carrying one or more messages (MB) for selective message receivers (14).
  7. 9
    A method of controlling the channel allocation of a receiver, comprising:controlling the transmission of a control channel (BB) indicating the current channel allocation of the receiver;whereby the current channel allocation is modified from a first traffic channel (T1) to a second traffic channel (T2);the method being characterised by controlling the transmission of the first traffic channel (T1) allocated to the receiver (14) such that a channel change indication is transmitted to the receiver (14) and the receiver (14) is caused to receive said control channel so as to receive said channel allocation indication of said modified allocation to the second traffic channel (T2).
  8. 12
    A method as claimed in any one claims 9 to 11, wherein said first traffic channel (T1) has a repeating frame structure, the channel change indications each being transmitted in a respective frame (TF) and indicating the number of frames (TF) remaining before the current channel allocation will be modified.
  9. 13
    A method as claimed in any one of claims 9 to 12, whereby the receiver (14) is caused to receive said second traffic channel (T2) after receiving said control channel (BB) with a timing determined by said channel change indication.
  10. 14
    Apparatus for controlling the channel allocation of a receiver (14), comprising:means (26) for controlling the transmission of a control channel (BB) indicating the current channel allocation of the receiver (14), whereby the current channel allocation is modified from a first traffic channel (T1) to a second traffic channel (T2);and means (26) for controlling the transmission of the first traffic channel (T1) allocated to the receiver (14) such that a channel change indication is transmitted to the receiver and the receiver (14) is caused to receive said control channel (BB) so as to receive said channel allocation indication of said modified allocation to the second traffic channel (T2).
  11. 18
    A method as claimed in any one of claims 1 to 4 or 9 to 13, wherein said steps of controlling transmission of said channels (T1, T2) comprises transmitting signals to a relay station (12) such that the relay station (12) transmits said channels (T1, T2) with said corresponding timing relationships.
  12. 19
    A method as claimed in any one of claims 1 to 4 or 9 to 13, wherein said steps of controlling transmission of said channels (T1, T2) include transmitting said channels.
  13. 20
    Apparatus as claimed in any one of claims 5 to 7 or 14 to 17, wherein said means (26) for controlling transmission of said channels includes means for transmitting signals (8) to a relay station (12) such that the relay station transmits said channels (T1 to T4) with said corresponding timing relationships.
  14. 21
    Apparatus as claimed in any one of claims 5 to 7 or 14 to 17 including means (8) for transmitting said channels (T1 to T4).
  15. 22
    A satellite earth station (8) including apparatus as claimed in any one of claims 5 to 7, 14 to 17 or 20.
  16. 23
    A terrestrial base station including apparatus as claimed in any one of claims 5 to 7, 14 to 17 or 21.
  17. 24
    A method of changing channel reception in a receiver (14), comprising:receiving a first traffic channel (T1);the method being characterised by: detecting in said first traffic channel (T1) a channel change indication;receiving a control channel (BB) in response to said channel change indication;detecting a channel indication relating to the receiver (14) in said control channel (BB);and receiving a second traffic channel (T2) designated by said channel indication.
  18. 27
    A method as claimed in any one of claims 24 to 26, wherein the control (BB) channel includes a plurality of channel indications and a plurality of receiver indications, and the receiver (14) receives the second traffic channel (T2) indicated by one of the channel indications corresponding to one of the receiver indications which corresponds to said receiver (14).
  19. 28
    A receiver (14), comprising:means (36) for controlling the receiver to receive a first traffic channel (T1);means (36) for detecting in said first traffic channel (T1) a channel change indication;means (36) for controlling the receiver to receive a control channel (BB) in response to said channel change indication;means (36) for detecting a channel indication relating to the receiver (14) in said control channel (BB);and means (36) for controlling the receiver (14) to receive a second traffic channel (T2) designated by said channel indication.
  20. 31
    A receiver as claimed in any one of claims 28 to 30, wherein the control channel (BB) includes a plurality of channel indications and a plurality of receiver indications, and the means (36) for controlling the receiver to receive the second traffic channel is arranged so that the receiver (14) receives the second traffic channel (T2) indicated by one of the channel indications corresponding to one of the receiver indications corresponding to said receiver (14).
  21. 32
    A receiver as claimed in any one of claims 28 to 31, arranged to receive only one channel (T1;BB;T2) at any one time.
  22. 33
    A message terminal including a receiver (14) as claimed in any one of claims 28 to 32.
Independent claims22