IP Library Granted Patent US 12683679
Granted Patent B2
US 12683679 · App. 17/548,185 · Granted Jul 14, 2026

Low data volume satellite communication system

Inventor: Michael Parr (Solana Beach, CA)
Assignee: ESAT GLOBAL, INC
H04B7/2656H04B7/18513H04L1/1692H04W88/04
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Quick Facts
Patent No.
US 12683679
App. No.
17/548,185
Granted
Jul 14, 2026
Kind
B2
Abstract

Systems are disclosed for a communication system optimized for low data volume communications. In embodiments of the invention, the energy used to transmit an acknowledgement message differs depending on whether the acknowledgement is an ACK or a NACK. The energy used to transmit an ACK is set to be significantly less than the energy used to transmit a NACK. Preferably, the energy used to transmit the acknowledgement message is negligible if the acknowledgement message is an ACK compared to if the acknowledgement message is a NACK. In one embodiment, the energy used to transmit an ACK is set near zero and the energy used to transmit a NACK is set approximately four times the energy of an acknowledgement message if the energy required to transmit a NACK and an ACK were equal.

Claims (36)

1 . A communication system, comprising:

at least one terminal; and

at least one network infrastructure in wireless communication with the at least one terminal;

wherein the at least one terminal is configured to communicate with the at least one network infrastructure by sending a message to the at least one network infrastructure;

wherein upon receiving the message from the at least one terminal, the at least one network infrastructure is configured to determine the success or failure in reception of the message and, in response, send an acknowledgement message to the at least one terminal, the acknowledgement message consisting of either an ACK indicating successful reception of the message or a NACK indicating failure of reception of the message, wherein energy used to transmit the acknowledgement message differs depending on whether the acknowledgement is an ACK or a NACK; and

wherein the energy used to transmit an ACK is set near zero and the energy used to transmit a NACK is set approximately four times the energy of an acknowledgement message in a system where the energy required to transmit a NACK and an ACK are equal.

2 . The communication system of claim 1 , wherein the energy used to transmit an ACK is set to be significantly less than the energy used to transmit a NACK.

3 . The communication system of claim 1 , wherein the energy used to transmit the acknowledgement message is negligible if the acknowledgement message is an ACK compared to if the acknowledgement message is a NACK.

4 . The communication system of claim 3 , wherein the energy to transmit an acknowledgement message is less than 50% if the acknowledgement message is an ACK compared to if the acknowledgement message is a NACK.

5 . The communication system of claim 3 , wherein the energy to transmit an acknowledgement message is less than 1% if the acknowledgement message is an ACK compared to if the acknowledgement message is a NACK.

6 . The communication system of claim 1 , wherein average power to transmit acknowledgement messages is reduced by approximately 96% compared to if the energy required to transmit a NACK and an ACK were equal.

7 . The communication system of claim 1 , wherein the energy used to transmit an ACK and NACK is communicated by network infrastructure to the terminal via broadcast system information.

8 . The communication system of claim 1 , wherein the network infrastructure comprises a central server.

9 . Network infrastructure suitable for use in a communication system having at least one terminal in wireless communication with the network infrastructure, the terminal being configured to send a message to the network infrastructure, the network infrastructure comprising:

a transceiver configured to receive message from the terminal and send messages to the terminal; and

a processor operably connected to the transceiver, the processor configured to control operation of the network infrastructure;

wherein, upon receiving a message from the terminal, the processor is configured to determine the success or failure in reception of the message and, in response, instruct the transceiver to send an acknowledgement message to the terminal, the acknowledgement message consisting of either an ACK indicating successful reception of the message or a NACK indicating failure of reception of the message, wherein energy used to transmit the acknowledgement message differs depending on whether the acknowledgement is an ACK or a NACK; and

wherein the processor sets the energy used to transmit an ACK to be near zero and the processor sets the energy used to transmit a NACK to be approximately four times the energy of an acknowledgement message in a system where the energy required to transmit a NACK and an ACK are equal.

10 . The network infrastructure of claim 9 , wherein the processor sets the energy used to transmit an ACK to be significantly less than the energy used to transmit a NACK.

11 . The network infrastructure of claim 9 , wherein the processor sets the energy used to transmit the acknowledgement message to be negligible if the acknowledgement message is an ACK compared to if the acknowledgement message is a NACK.

12 . The communication system of claim 11 , wherein the energy to transmit an acknowledgement message is less than 50% if the acknowledgement message is an ACK compared to if the acknowledgement message is a NACK.

13 . The communication system of claim 11 , wherein the energy to transmit an acknowledgement message is less than 1% if the acknowledgement message is an ACK compared to if the acknowledgement message is a NACK.

14 . The communication system of claim 9 , wherein average power to transmit acknowledgement messages is reduced by approximately 96% compared to if the energy required to transmit a NACK and an ACK were equal.

15 . The communication system of claim 9 , wherein the transceiver broadcasts system information to the terminal communicating the energy set by the processor to transmit an ACK and NACK.

16 . A method for communication in a communication system having at least one terminal in wireless communication with at least one network infrastructure, the method comprising:

the at least one terminal sending a message to the at least one network infrastructure;

receiving the message at the at least one network infrastructure;

after receiving the message, the at least one network infrastructure determines the success or failure in reception of the message and, in response, sends an acknowledgement message to the at least one terminal, the acknowledgement message consisting of either an ACK indicating successful reception of the message or a NACK indicating failure of reception of the message, wherein energy used to transmit the acknowledgement message differs depending on whether the acknowledgement is an ACK or a NACK; and

wherein the energy used to transmit an ACK is set near zero and the energy used to transmit a NACK is set approximately four times the energy of an acknowledgement message in a system where the energy required to transmit a NACK and an ACK are equal.

17 . The communication system of claim 16 , wherein the energy used to transmit an ACK is set to be significantly less than the energy used to transmit a NACK.

18 . The communication system of claim 16 , wherein the energy used to transmit the acknowledgement message is negligible if the acknowledgement message is an ACK compared to if the acknowledgement message is a NACK.

19 . The communication system of claim 18 , wherein the energy to transmit an acknowledgement message is less than 50% if the acknowledgement message is an ACK compared to if the acknowledgement message is a NACK.

20 . The communication system of claim 18 , wherein the energy to transmit an acknowledgement message is less than 1% if the acknowledgement message is an ACK compared to if the acknowledgement message is a NACK.

21 . The communication system of claim 16 , wherein average power to transmit acknowledgement messages is reduced by approximately 96% compared to if the energy required to transmit a NACK and an ACK were equal.

22 . The communication system of claim 16 , wherein the energy used to transmit an ACK and NACK is communicated by the network infrastructure to the terminal via broadcast system information.

23 . The communication system of claim 16 , wherein the network infrastructure comprises a central server.