IP Library Granted Patent US 12700916
Granted Patent B2
US 12700916 · App. 18/206,769 · Granted Aug 4, 2026

Method for uplink/downlink channel bundling for improved spectrum allocation and link budget for performance mobile cellular satellite systems

Inventors: Akin Ozozlu (McLean, VA); Nagi A. Mansour (Arlington, VA)
Assignee: T-Mobile Innovations LLC
H04B7/18513H04B7/195H04L5/14H04W72/1268
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Quick Facts
Patent No.
US 12700916
App. No.
18/206,769
Granted
Aug 4, 2026
Kind
B2
Abstract

According to aspects herein, methods and systems for providing multiple channel bundling for mobile phone satellite cellular systems are provided. More particularly, after a node comprising at least one time division duplex (TDD) layer and a frequency division duplex (FDD) layer determines a user equipment (UE) supports dual bands, the node initiates bundling of downlink communications over the FDD layer and a portion of the TDD layer. Additionally, the node instructs the UE to communicate uplink communications over the FDD layer and not uplink slots of the TDD layer. In this way, link budget is improved because only low band (FDD) is utilized in uplink communications from the UE to the node. Moreover, additional bandwidth is provided in downlink communications from the node to the UE because low band is bundled with the downlink slots of mid band (TDD).

Claims (30)

1 . A method for providing uplink/downlink channel bundling in mobile cellular satellite systems, the method comprising:

determining, at a node comprising at least one time division duplex (TDD) layer and a frequency division duplex (FDD) layer, a user equipment (UE) supports dual bands;

initiating bundling of downlink communications, by the node, over the FDD layer and a portion of the TDD layer, wherein the downlink communications are bundled over the FDD layer and downlink slots of the TDD layer, and wherein additional bandwidth is provided in downlink communications as the FDD layer is bundled with the downlink slots of the TDD layer; and

instructing, by the node, the UE to communicate uplink communications over the FDD layer and not uplink slots of the TDD layer.

2 . The method of claim 1 , further comprising communicating, by the node, downlink communications to the UE over the FDD layer and the portion of the TDD layer.

3 . The method of claim 1 , further comprising receiving, at the node, the uplink communications over the FDD layer and not the TDD layer.

4 . The method of claim 1 , wherein the FDD layer is 600, 700, or 850 MHz.

5 . The method of claim 1 , wherein the FDD layer is 1900 MHZ.

6 . The method of claim 1 , wherein the TDD layer is 2500 MHz.

7 . The method of claim 1 , wherein the node is a low earth orbit mobile cellular satellite system.

8 . One or more computer-readable media having computer-executable instructions embodied thereon that, when executed by at least one computing device, cause the computing device to perform operations for providing uplink/downlink channel bundling in mobile cellular satellite systems, the operations comprising:

communicating to a node indicating a user equipment (UE) supports uplink communications and downlink communications over a time division duplex (TDD) layer and a frequency division duplex (FDD) layer;

receiving the downlink communications, from the node, over the FDD layer and a portion of the TDD layer, wherein the downlink communications are bundled over the FDD layer and downlink slots of the TDD layer, and wherein additional bandwidth is provided in downlink communications as the FDD layer is bundled with the downlink slots of the TDD layer; and

receiving instructions, from the node, to communicate the uplink communications over the FDD layer and not uplink slots of the TDD layer.

9 . The one or more computer-readable media of claim 8 , further comprising communicating, to the node, the uplink communications over the FDD layer and not the TDD layer.

10 . The one or more computer-readable media of claim 8 , further comprising determining the node comprises at least one TDD layer and a FDD layer.

11 . The one or more computer-readable media of claim 8 , wherein the FDD layer is 600, 700, or 850 MHz.

12 . The one or more computer-readable media of claim 8 , wherein the FDD layer is 1900 MHz.

13 . The one or more computer-readable media of claim 8 , the TDD layer is 2500 MHz.

14 . The one or more computer-readable media of claim 8 , wherein the node is a low earth orbit mobile cellular satellite system.

15 . A system for providing uplink/downlink channel bundling in mobile cellular satellite systems, the system comprising:

user equipment (UE); and

a node comprising at least one time division duplex (TDD) layer and a frequency division duplex (FDD) layer and configured to wirelessly communicate with the UE, wherein the node is configured to:

determine, a user equipment (UE) supports uplink communications and downlink communications over the TDD layer and the FDD layer;

initiate bundling of the downlink communications over the FDD layer and a portion of the TDD layer, wherein the downlink communications are bundled over the FDD layer and downlink slots of the TDD layer, and wherein additional bandwidth is provided in downlink communications as the FDD layer is bundled with the downlink slots of the TDD layer; and

instruct the UE to communicate uplink communications over the FDD layer and not uplink slots of the TDD layer.

16 . The system of claim 15 , wherein the node is further configured to communicate the downlink communications to the UE over the FDD layer and the portion of the TDD layer.

17 . The method of claim 15 , wherein the node is further configured to receive the uplink communications over the FDD layer and not the TDD layer.

18 . The system of claim 15 , wherein the FDD layer is 600, 700, or 850 MHz or 1900 MHz and the TDD layer is 2500 MHz.

19 . The system of claim 15 , wherein the node is a low earth orbit mobile cellular satellite system.