EP0891087B1

Method, apparatuses and network to determine an access frequency band

Abstract

This record has no abstract on file.

EP0891087B1, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Expired 10 July 2017, 9.2 years ago.

  1. Priority and filed
  2. Granted
  3. Expired
  4. Today

7 claims: 3 independent, 4 dependent

  1. 1
    A method to determine an access frequency band in a communication access network, said communication access network including a plurality of terminals (T11, T12, T13, ..., T31, ..) and a head-end (HE) which includes a plurality of transceivers (TRX1, TRX2, TRX3, ...) characterised by said head-end (HE) being downstream coupled to each one of said plurality of terminals (T11, T12, T13, ..., T31, ...) via a downstream common link (Lc) and a tree-like distributive network, each one of said plurality of transceivers (TRX1, TRX2, TRX3, ...) providing to a combiner (COMB) included in said head-end (HE) one of a plurality of downstream signals (Sd1, Sd2, Sd3, ...) in one of a plurality of frequency bands associated by means of a predetermined first association to said one of said plurality of transceivers (TRX1, TRX2, TRX3, ...), said plurality of downstream signals (Sd1, Sd2, Sd3, ...) being together combined by said combiner (COMB) into a downstream modulated signal (S-MOD), said downstream modulated signal (S-MOD) being broadcasted from said head-end (HE) to said plurality of terminals (T11, T12, T13, ..., T31, ...), a first one (T12) of said plurality of terminals being upstream coupled to at least one receiving transceiver (TRXrec1, TRXrec2, ... ) being one of said plurality of transceivers (TRX1, TRX2, TRX3, ... ) via a common upstream link and at least one upstream sublink, said access frequency band being one of said plurality of frequency bands (CH1, CH2, CH3, ...) to be used by said first terminal (T12) to filter out of said downstream modulated signal (S-MOD) one of said downstream signals provided by an access transceiver being one of said plurality of transceivers (TRX1, TRX2, TRX3, ...), in order to establish a communication between said access transceiver and said first terminal (T12), wherein said method includes the steps of :a) choosing by said first terminal (T12) out of said plurality of frequency bands (CH1, CH2, CH3, ...) a start frequency band (CHst);and b) determining by said first terminal (T12) with said start frequency band (CHst) and according to a predetermined second association an upstream frequency band (CHu), said upstream frequency band (CHu) being one of a plurality of upstream frequency bands (CHu1, CHu2, CHu3, ...) whereof each one is associated by means of said predetermined second association to one of said plurality of frequency bands (CH1, CH2, CH3, ...);and c) transmitting by said first terminal (T12) within said upstream frequency band (CHu) an access request signal (AR(T12)) to said at least one receiving transceiver (TRXrec1, TRXrec2, ...) ;and d) filtering by said at least one receiving transceiver (TRXrec1, TRXrec2, ... ) out of incoming signals including said access request signal (AR(T12)) within a predetermined one (CHu1) of said plurality of upstream frequency bands (chur1, CHu2, CHu3, ...) according to said predetermined first association and said predetermined second association and thereby providing a filtered signal;and e) in the event that said upstream frequency band (CHu) substantially equals to one (chur1) of said plurality of upstream frequency bands used by a first (TRXrec1) of said at least one receiving transceiver in said step d) whereby said filtered signal substantially equals to said access request signal (AR(T12)) and said first receiving transceiver (TRXrec1) constitutes said access transceiver, confirming to said first terminal (T12) by said head-end (HE) that said start frequency band (CHst) constitutes said access frequency band;f) in the event that after a predetermined time from sending said access request signal (AR(T12)) without receiving of said confirmation of said step e), repeating said steps of said method with another start frequency band (CHst').
  2. 5
    A head-end (HE) for inclusion in a communication access network, and adapted to provide an access frequency band, said head-end (HE) including a plurality of transceivers (TRX1, TRX2, TRX3, ...) and characterised by being downstream coupled to each one of a plurality of terminals (T11, T12, T13, ..., T31, ...) included in said communication access network via a downstream common link (Lc) and a tree-like distributive network, each one of said plurality of transceivers (TRX1, TRX2, TRX3, ...) being adapted to provide to a combiner (COMB) included in said head-end (HE) one of a plurality of downstream signals (Sd1, Sd2, Sd3, ...) within one of a plurality of frequency bands (CH1, CH2, CH3, ...) associated with a predetermined first association to said one of said plurality of transceivers (TRX1, TRX2, TRX3, ...), said combiner (COMB) being adapted to combine said plurality of downstream signals (Sd1, Sd2, Sd3, ...) together into a downstream modulated signal (S-MOD) which is broadcasted from said head-end (HE) to said plurality of terminals (T11, T12, T13, ..., T31, ...), a first one (T12) of said plurality of terminals being upstream coupled to at least one receiving transceiver (TRXrec1, TRXrec2, ...) which is one of said plurality of transceivers (TRX1, TRX2, TRX3, ...) via a common upstream link and at least one upstream sublink, said access frequency band being of said plurality of frequency bands (CH1, CH2, CH3, ...) to be used by said first terminal (T12) to filter out of said downstream modulated signal (S-MOD) one of said downstream signals provided by an access transceiver which is one of said plurality of transceivers (taxi , TRX2, TRX3, ... ) in order to establish a communication between said access transceiver and said first terminal (T12), wherein said head-end (HE) further includes :- at least one filter means (FILT1, ...) whereof each one being included in said at least one receiving transceiver (TRXrec1, ...) to filter out of incoming signals including an access request signal (AR(T12)) within a predetermined one (CHu1) of a plurality of upstream frequency bands (CHu1, CHu2, CHu3, ...) according to said predetermined first association means and a predetermined second association means and to provide thereby a filtered signal, said access request signal (AR(T12)) being transmitted by said first terminal (T12) within an upstream frequency band (CHu) to said at least one receiving transceiver (TRXrec1, TRXrec2, ...), said upstream frequency band (CHu) being one of a plurality of upstream frequency bands (CHu1, CHu2, CHu3, ...) whereof each one is associated by means of said predetermined second association to one of said plurality of frequency bands (CH1, CH2, CH3, ...) and being determined by said first terminal (T12) with a start frequency (CHst) chosen by said first terminal (T12), out of said plurality of frequency bands (CH1, CH2, CH3, ...) and according to said predetermined second association;and - confirmation means (CONF1) : to confirm, in the event that said upstream frequency band (CHu) substantially equals to one (CHu1) of said plurality of upstream frequency bands used by a first (TRXrec1) of said at least one receiving transceiver to filter said incoming signals whereby said filtered signal substantially equals to said access request signal (AR(T12)) and said first receiving transceiver (TRXrec1) constitutes said access transceiver, to said first terminal (T12) by said head-end (HE) that said start frequency band (CHst) constitutes said access frequency band;and to enable said first terminal, in the event that after a predetermined time from sending by said first terminal (T12) said access request signal (AR(T12)) without receiving said confirmation from said head-end (HE) to choose another start frequency band.
  3. 6
    A first terminal (T12) for inclusion in a communication access network and adapted to determine an access frequency band, said first terminal (T12) being a first one of a plurality of terminals (T11, T12, T13, ..., T31, ...) included in said communication access network, said communication access network including a head-end (HE) which includes a plurality of transceiver (TRX1, TRX2, TRX3, ...) characterised in that said head-end is downstream coupled to each one of said plurality of terminals (T11, T12, T13, ..., T31, ...) via a downstream common link (Lc) and a tree-like distributive network, each one of said plurality of transceivers (TRX1, TRX2, TRX3, ...) is adapted to provide one of a plurality of downstream signals (Sd1, Sd2, Sd3, ...) to a combiner (COMB) included in said head-end (HE) within one of a plurality of frequency bands (CH1, CH2, CH3, ...) associated to said one of said plurality of transceivers (TRX1, TRX2, TRX3, ...) by means of a predetermined first association, said combiner (COMB) being adapted to combine said plurality of downstream signals (Sd1, Sd2, Sd3, ...) together into a downstream modulated signal (S-MOD) which is broadcasted from said head-end (HE) to said plurality of terminals (T11, T12, T13, ..., T31, ...), said first terminal (T12) being upstream coupled to at least one receiving transceiver (TRXrec1, TRXrec2, ... ) which is one of said plurality of transceivers (TRX1, TRX2, TRX3, ...) via a common upstream link and at least one upstream sublink, said access frequency band being one of said plurality of frequency bands (CH1, CH2, CH3, ...) to be used by said first terminal (T12) to filter out of said downstream modulated signal (S-MOD) one of said downstream signals provided by an access transceiver which is one of said plurality of transceivers (TRX1, TRX2, TRX3, ...) in order to establish a communication between said access transceiver and said first terminal (T12), wherein said first terminal (T12) further includes :- establishing means (EST) to choose out of said plurality of frequency bands (CH1, CH2, CH3, ...) a start frequency band (CHst);and - determining means (DET) to determine with said start frequency band (CHst) and according to a predetermined second association an upstream frequency band (CHu), said upstream frequency band (CHu) being one of a plurality of upstream frequency bands (CHu1, CHu2, CHu3, ...) whereof each one is associated by means of said predetermined second association to one of said plurality of frequency bands (CH1, CH2, CH3, ...);and - transmitting means (TRANS) : to transmit within said upstream frequency band (CHu) an access request signal (AR(T12)) to said at least one receiving transceiver (TRXrec1, TRXrec2, ...);and to enable thereby said at least one receiving transceiver (TRXrec1, TRXrec2, ... ) to filter out of incoming signals including said access request signal (AR(T12)) within a predetermined one (chur1) of said plurality of upstream frequency bands (CHu1, CHu2, CHu3, ...) according to said predetermined first association and to said predetermined second association and to provide a filtered signal;and to enable thereby said head-end (HE), in the event that said upstream frequency band (CHu) substantially equals to one (CHu) of said plurality of upstream frequency bands used by a first (TRXrec1) of said at least one receiving transceiver to filter said incoming signals whereby said filtered signal substantially equals to said access request signal (AR(T12)) and whereby said first receiving transceiver (TRXrec1) constitutes said access transceiver, to confirm to said fist terminal (T12) that said start frequency band (CHst) constitutes said access frequency band;and - repeating means (REP) to provide to said establishing means (EST), in the event that after a predetermined time from sending said access request signal (AR(T12)) without receiving said confirmation from said head-end (HE), a first control signal in order to enable said establishing means (EST) to choose another start frequency band (CHst').