Method and system for data transmission
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.
1. A consolidated communications system, comprising:
at least one sending node have a processor, and memory, and a plurality of communications interfaces;
another node having a processor, and memory, and a plurality of communications interfaces;
at least one receiving node having a processor and memory, and a plurality of communications interfaces,
wherein the at least one sending node through the plurality of communication interfaces is configured to simultaneously send a data packet across at least two communication protocols to another node,
wherein the another node 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 communication protocols before data packet received second in time from the at least two communication protocols is received,
wherein the at least one receiving node is 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 communication protocols.
2. The consolidated communication system of claim 1 , the at least one sending node is configured to resend the data packet on a different communication interface from the at least two communication protocols upon receipt of a retransmit indicator.
3. The consolidated communication system of claim 1 , further comprising a second another node having a processor, and memory, and a plurality of communications interfaces, wherein the at least one sending node is configured to resend the data packet to the second another node separate from the another node in order to transmit the data packet through a different routing path.
4. The consolidated communication system of claim 1 , wherein the at least one sending node is configured to bond two data packets when data packets are simultaneously sent across the at least two communication protocols to another node.
5. The consolidated communication system of claim 4 , wherein the bonding is created by using pre and/or post routing marks sent with the data packets to the another node.
6. The consolidated communication system of claim 1 , wherein the at least one sending node is configured to synchronize the sending of two data packets when data packets are simultaneously sent across the at least two communication protocols to another node.
7. The consolidated communication system of claim 6 , wherein the at least one sending node and the at least one receiving node are configured to provide handshaking signals such that a transmission of the two data packets simultaneously sent across the at least two communication protocols are synchronized and/or verified for transmission losses.
8. The system of claim 3 , wherein the sending node is configured to: resend the data packet to the second another node separate from the another node using pre and post routing marks allowing the data packet to traverse the system to a final destination node.