EP0907264A2

A method of detecting a flag in a mobile radio system

Abstract

A method for detecting a flag in connection with random access in a time divided mobile radio system, for instance, an FDMA/TDMA system, which includes digital traffic channels and control channels which are organized so that four traffic channels (TC) and two control channels (CC) are included in a TDMA-frame. A base station (BS) transmits continuously flags (B/I, R/N, R/F) in the time slots (1, 4) of the control channels. According to the invention, different numbers of binary values are assigned to the different states of one flag. A state (B) in a flag (B/I) which is particularly senstitive to errors in the transmission is given a greater number of binary values than the other state (I), whereby a secure detection of the flag is achieved.

EP0907264A2, drawing sheet 1
Sheet 1 of 6

Term

Term ended

Projected expiry passed 12 October 2013, 13 years ago.

  1. Priority and filed
  2. Published
  3. Projected expiry
  4. Today

4 claims: 3 independent, 1 dependent

  1. 1
    A method of detecting a flag in conjunction with random access in a time divided (TDMA) mobile radio system, in which control channels and traffic channels are formed by time slots within a frame and which comprises at least one primary station (BS) and a number of secondary stations (MS1, MS2, MS3), each of which intends to transmit access messages in the form of short message words (W1, W2, ...) each during a time slot allocated by the primary station (BS) by continuously transmitting said flag (B/I) which indicates whether a time slot during which a secondary station shall transmit a message word to the primary station (BS) is idle (I) or busy (B), so that one (MS1) of the secondary stations is able to transmit in response to the state transmitted by the primary station, a first (W1) of said message words in the time slot indicated by the flag as idle (I), and can also transmit a second word (W2), a third word (W3), and so on, in those time slots that are indicated as busy (B) by said flag, characterized in that when detecting the flag in the secondary station (MS1), a first number of binary values (000, ... 011) is assigned to one state (B) of a flag (B/I) and a second number of binary values (100, ... 111) is assigned to another state (I) of said flag, wherein the first number of binary values is greater than the second number of binary values when the one state (B) shall be given priority over the other state (I).
  2. 2
    A method according to Claim 1, characterized in that said priority is given in conjunction with detecting the flag (B/I) of the first message (arrow 1A, Figure 5) from said primary station (BS) to a given secondary station (MS1) which after having sent one message word (W1) intends to send a further message word (W2).
  3. 3
    A method of detecting a flag in conjunction with random access in a time divided (TDMA) mobile radio system, in which control channels and traffic channels are formed by time slots within a frame and which includes at least one primary station (BS) and a number of secondary stations (MS1, MS2, MS3), each of which intends to send access messages in the form of short message words (W1, W2, ...), each within a time slot that is allocated by the primary station (BS) by said station continuously transmitting said flag (R/N), which denotes whether a message word (W1) transmitted in a given time slot from a secondary station has been received (R) or has not been received (N) by the primary station (BS), so that the secondary station can continue or terminate transmission of message words, characterized in that upon detection of the flag in the secondary station (MS1), there is allocated a first number of binary values (000, ... 011) to one state (R) of the flag (R/N) and a second number of binary values (000, ... 111) is allocated to another state (N) of the flag, wherein the first number of binary values is equal to the second number of binary values.
  4. 4
    A method of detecting a flag in conjunction with random access in a time divided (TDMA) mobile radio system, in which control channels and traffic channels are formed by time slots within a frame, and which includes at least one primary station (BS) and a number of secondary stations (MS1, MS2, MS3) of which each intends to transmit access messages in the form of short message words (W1, W2, ...), each within a time slot which is allocated by the primary station (BS) by said primary station continuously transmitting said flag (R/F) which denotes whether a time slot during which a secondary station shall transmit a message word to the primary station (BS) has earlier been reserved (R) or is free (F), so that one (MS3) of the secondary stations in response to the state transmitted from the primary station can send said message word in the time slot that the primary station has previously given as reserved (R), characterized in that upon detection of the flag in the secondary station (MS1), there is allocated a first number of binary values (000, ... 011) to one state (R) of the flag (R/F) and a second number of binary values (100, ... 111) is allocated to another state (F) of the flag, wherein the first number of binary values is greater than the second number of binary values when one state (R) of the flag shall be given priority over the second state (F) of said flag.