Communication device for a 5G communication between a mobile terminal and a core network via a satellite
A 5G communication system between at least one mobile terminal and a core network, the communication system includes at least one satellite, an access network comprising a plurality of base stations and a gateway disposed between the satellite and one of the base stations, the satellite and the gateway being able to exchange service frames comprising uplink service frames and downlink service frames, the uplink service frames having to be temporally aligned with the downlink service frames around a time reference point.
1 . A communication system for a 5G communication between at least one mobile terminal (UE) and a core network comprising a plurality of base stations (gNB), said communication system comprising:
at least one satellite (SAT) comprising a payload (CU), at least one base station of the plurality of base stations (gNB) and a gateway (Gate) disposed between said satellite (SAT) and said base station (gNB), said satellite (SAT) and said gateway (Gate) being able to exchange feeder link frames (gNB UL, gNB DL), said mobile terminal (UE) and said satellite (SAT) being able to exchange service frames (UE UL, UE DL), said service frames (UE UL, UE DL) comprising uplink service frames (UE UL) and downlink service frames (UE DL), said uplink service frames (UE UL) having to be temporally aligned with said downlink service frames (UE DL) around a time reference point (RP);
a radio unit suitable for managing the exchanges of service frames (UE UL, UE DL) between the satellite (SAT) and the mobile terminal (UE); and
a compensation device suitable for compensating the time differences in the exchange of the feeder link frames (gNB UL, gNB DL) in order to temporally align the uplink service frames (UE UL) and the downlink service frames (UE DL) around the time reference point (RP), wherein the compensation device comprises a buffer module disposed in the payload (CU) of the satellite (SAT), said buffer module being able to process the feeder link frames (gNB UL, gNB DL), wherein the compensation device comprises a pre-compensation module in the gateway, and wherein the buffer module is able to temporally resynchronize the feeder link frames (gNB UL, gNB DL) with respect to a reference clock (R T (sat)) of the satellite (SAT), the pre-compensation module being able to process a first bufferization to compensate most of a delay on the feeder link, the satellite (SAT) then only being responsible for the fine synchronization of the service frames (UE UL, UE DL) with the time reference point (RP) before transmission on a service link to the user.
2 . The communication system according to claim 1 , wherein the payload (CU) of the satellite (SAT) is partially regenerative.
3 . The communication system according to claim 1 , wherein the payload (CU) of the satellite (SAT) comprises the radio unit.
4 . The communication system according to claim 1 , wherein the time reference point (R P ) is disposed in the satellite (SAT).
5 . The communication system according to claim 1 , wherein the radio unit comprises an RF module associated with a L1-low module.
6 . A communication method for a 5G communication between at least one mobile terminal (UE) and a core network formed by at least one base station of a plurality of base stations via a satellite (SAT) comprising a payload (CU), said communication method comprising:
exchanges (E 1 ) of feeder link frames (gNB UL, gNB DL), between said satellite (SAT) and a gateway (Gate), said gateway (Gate) being disposed between said satellite (SAT) and the base station (gNB) of the plurality of base stations;
exchanges (E 2 ) of service frames (UE UL, UE DL) between said satellite (SAT) and the mobile terminal (UE), said service frames (UE UL, UE DL) comprising uplink service frames (UE UL) and downlink service frames (UE DL), said uplink service frames (UE UL) having to be temporally aligned with said downlink service frames (UE DL) around a time reference point (RP), said service frames (UE UL, UE DL) being managed by a radio unit;
a compensation step (E 3 ) suitable for compensating time differences in the exchange of the feeder link frames (gNB UL, gNB DL) in order to temporally align the uplink service frames (UE UL) and the downlink service frames (UE DL) around the time reference point (R P ) and in that the compensation step (E 3 ) comprises two substeps performed respectively in the payload of the satellite (CU) and in the gateway (Gate), said compensation step (E 3 ) being implemented by a compensation device comprising a buffer module disposed in the payload (CU) of the satellite (SAT), said buffer module being able to process the feeder link frames (gNB UL, gNB DL), the compensation device comprising a pre-compensation module in the gateway and in which the buffer module is able to temporally resynchronize the feeder link frames (gNB UL, gNB DL) with respect to a reference clock (R T (sat)) of the satellite (SAT), the pre-compensation module being able to process a first bufferization to compensate most of a delay on the feeder link, the satellite (SAT) then only being responsible for the fine synchronization of the service frames (UE UL, UE DL) with the time reference point (R P ) before transmission on a service link to the user.