IP Library Granted Patent US 12,131,037
Granted Patent B2
US 12,131,037 · App. 16/990,040 · Granted Oct 29, 2024

Method and system for data transmission

Inventors: Joshua Mendiola (San Jose, CA); Jonathan Adam (Austin, TX); Darren Furtado (Redondo Beach, CA)
G06F3/0631G06F3/0608G06F3/0659G06F3/067G06F12/0246G06F16/24568H04L1/189H04L45/24H04L67/1097H04N7/18H04N7/181H04W28/04H04W76/14H04W76/16H04L2001/0097H04W84/18H04W88/06
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Quick Facts
Patent No.
US 12,131,037
App. No.
16/990,040
Granted
Oct 29, 2024
Kind
B2
Abstract

An exemplary communication method and system is disclosed. The system may be configured to create a mesh network of nodes for routing and/or rerouting data communications depending on the integrity of or demands on the system to improve efficiency and transmission confidence. The system may be configured to redundantly, simultaneously send data transmissions on different transmission interfaces using different transmission protocols.

Claims (32)

1. A consolidated communications system, comprising:

a sending node having a first processor, a first memory, and a first plurality of communications interfaces; and

a receiving node having a second processor, a second memory, and a second plurality of communications interfaces;

wherein the sending node through the first memory comprises non-transitory machine readable instructions that when executed by the first processor is configured to: simultaneously send through the first plurality of communication interfaces a data packet across at least two communication protocols to the receiving node,

wherein receiving node through the second memory comprises non-transitory machine readable instructions that when executed by the second processor is configured to: determine whether the data packet received first in time from the at least two communication protocols is complete within an acceptable tolerance and retransmit the data packet received first in time over at least two other communication protocols before the data packet received second in time from the at least two communication protocols is received,

wherein the receiving node through the second memory and the non-transitory machine readable instructions that when executed by the second processor is further configured to determine whether the data packet received first in time from the at least two communication protocols is not complete based on being outside the acceptable tolerance and wait for the data packet received second in time from the at least two communication protocols and determine whether the data packet received second in time from the at least two communication protocols is complete and retransmit the data packet received second in time over at least two other communication protocols.

2. The consolidated communications system of claim 1 , further comprising:

a second receiving node;

wherein the receiving node through the second memory and the non-transitory machine readable instructions that when executed by the second processor is further configured to determine whether the data packet received second in time from the at least two communication protocols is not complete based on being outside the acceptable tolerance and send a retransmit request to the sending node,

wherein the sending node through the first memory and the non-transitory machine readable instructions that when executed by the first processor is further configured to: simultaneously resend through the first plurality of communication interfaces the data packet across at least two other communication protocols to the receiving node, wherein the at least two communication protocols are different from the at least two other communication protocols.

3. The consolidated communications system of claim 1 , further comprising:

a second receiving node;

wherein the receiving node through the second memory and the non-transitory machine readable instructions that when executed by the second processor is further configured to determine whether the data packet received second in time from the at least two communication protocols is not complete based on being outside the acceptable tolerance and send a retransmit request to the sending node,

wherein the sending node through the first memory and the non-transitory machine readable instructions that when executed by the first processor is further configured to: simultaneously resend through the first plurality of communication interfaces the data packet across at least two communication protocols to the second receiving node.

4. The consolidated communications system of claim 3 , further comprising:

a second receiving node; and

wherein the sending node through the first memory and the non-transitory machine readable instructions that when executed by the first processor is further configured to: simultaneously send through the first plurality of communication interfaces the data packet across at least two communication protocols to the second receiving node.

5. The consolidated communications system of claim 1 , wherein the sending node through the first memory and the non-transitory machine readable instructions that when executed by the first processor is further configured to: bond two data packs when data packets are simultaneously sent across the at least two communication protocols to the receiving node.

6. The consolidated communications system of claim 5 , wherein the bonding is created by using pre and/or post routing marks sent with the data packets to the another node.

7. The consolidated communications system of claim 1 , wherein the sending node through the first memory and the non-transitory machine readable instructions that when executed by the first processor is further configured to: synchronize the sending of two data packets when data packets are simultaneously sent across the at least two communication protocols to the receiving node.

8. The consolidated communications system of claim 7 , wherein the sending node and the receiving node are configured to provide handshaking signals such that a transmission of simultaneously sent data pack across the at least two communication protocols are synchronized and/or verified for transmission losses.

9. The consolidated communications system of claim 1 , further comprising:

a second receiving node;

a final destination node; and

wherein the sending node through the first memory and the non-transitory machine readable instructions that when executed by the first processor is further configured resend the data packet to the second receiving node using pre and post routing marks allowing the data packet to traverse the system to a final designation node.

10. The consolidated communications system of claim 1 , wherein the non-transitory machine readable instructions of the sending node includes a software based routine system that when processed by the first processor runs locally via a virtual machine on the sending node.

11. The consolidated communications system of claim 10 , wherein the non-transitory machine readable instructions of the sending node includes routing tables and instructions to configure the sending node to transmit data using routing marks received from one or more of the plurality of communication interfaces.

12. The consolidated communications system of claim 1 , wherein the non-transitory machine readable instructions of the sending node is configured when executed by the first processor to select the at least two communication protocols from the first plurality of communication interfaces determined based on a distance from the sending node to the receiving node.

13. The consolidated communications system of claim 1 , wherein the non-transitory machine readable instructions of the sending node is configured to select the at least two communication protocols from the first plurality of communication interfaces used to send the data packet to the receiving node based on any combination of a distance from the sending node to the receiving node, a speed of transmission of each of the plurality of communication interfaces, available bandwidth of each of the plurality of communication interfaces, or a security of each of the plurality of communication interfaces.

14. The consolidated communications system of claim 13 , wherein the non-transitory machine readable instructions of the sending node is configured to create routing tables for each networking standard of each of the plurality of communication interfaces.

15. The consolidated communications system of claim 13 , wherein the non-transitory machine readable instructions of the sending node is configured to use pre- and post-routing marks in a header of the data packet to determine a final node to receive the data packet.

16. The consolidated communications system of claim 15 , wherein the non-transitory machine readable instructions of the receiving node is configured to use the pre- and post-routing marks on the data packet to determine that the data packet is intended for the receiving node and not send the data packet onto another node.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2023
From: ADAM, JONATHAN; MENDIOLA, JOSHUA; FURTADO, DARREN
To: PRACTECHAL SOLUTIONS, INC.
Reel/Frame 062853/0616 →
Continuity (6)
Division 16777737 · Jan 30, 2020
Provisional Application 62798947 · Jan 30, 2019
Provisional Application 62798931 · Jan 30, 2019
Provisional Application 62798940 · Jan 30, 2019
Provisional Application 62798964 · Jan 30, 2019
Related Publication 20200371701A1 · Nov 26, 2020