Transmission of telegrams by a network distributor in an automation network
A method for generating a network topology for multiple wireless intelligent devices of a single distributed local network is disclosed. The method includes determining an optimal network topology for the multiple wireless intelligent devices of the single distributed local network. The method further includes generating a plurality of commands to be transmitted to one or more of multiple wireless intelligent devices of the determined optimal network topology. Further, the method includes instructing the plurality of commands to connect the one or more of multiple wireless intelligent devices to generate the determined optimal network topology.
1. A method for generating a network topology for multiple wireless intelligent devices of a single distributed local network, said method comprising:
determining, by a processing device, an optimal network topology for the multiple wireless intelligent devices of the single distributed local network;
generating, by the processing device, a plurality of commands to be transmitted to one or more of multiple wireless intelligent devices of the determined optimal network topology; and
instructing, by the processing device, the plurality of commands to connect the one or more of multiple wireless intelligent devices to generate the determined optimal network topology, wherein each of physical connections and virtual connections of the network topology are used to transmit information amongst the one or more of multiple wireless intelligent devices, and
optimizing, by the processing device, the determined optimal network topology when a sum of each of total data density, sum of edges with maximum density, and value of maximum load connection is greater than a pre-determined maximum of a sum of each of total data density, sum of edges with maximum density, and value of maximum load connection.
2. The method as claimed in claim 1 , further comprising:
selecting, by the processing device, a control node of the one or more of multiple wireless intelligent devices, wherein a remote distributed application is executed at the control node.
3. The method as claimed in claim 2 , wherein the control node comprises one or more instructions for deployment of the optimal network topology.
4. The method as claimed in claim 3 , wherein the instructions comprises at least one of:
setting a pre-determined number of child network nodes,
setting a pre-determined level of data transmission from the one or more of multiple wireless intelligent devices,
setting a pre-determined size of data to be transmitted from the one or more of multiple wireless intelligent devices,
setting a pre-determined amount of changes in controlled and measured parameters,
setting a pre-determined measurement hysteresis, and
setting a pre-determined throughput of a wireless communication channel.
5. The method as claimed in claim 1 , wherein the plurality of commands is instructed to reconfigure the optimized network topology.
6. The method as claimed in claim 1 , wherein number of the virtual connections are minimized to reduce data density between the one or more of multiple wireless intelligent devices and to improve performance of the network topology.
7. The method as claimed in claim 1 , wherein density of the network topology is calculated by determining a sum of weight assigned to each of the physical connections of the network topology.
8. A non-transitory storage device encoded with a computer program, the computer program comprising instructions that when executed by a computer system causes the computer system to:
determine an optimal network topology for the multiple wireless intelligent devices of the single distributed local network;
generate a plurality of commands to be transmitted to one or more of multiple wireless intelligent devices of the determined optimal network topology;
instruct the plurality of commands to connect the one or more of multiple wireless intelligent devices to generate the determined optimal network topology, wherein each of physical connections and virtual connections of the network topology are used to transmit information amongst the one or more network nodes and
optimize the determined optimal network topology when a sum of each of total data density, sum of edges with maximum density, and value of maximum load connection is greater than a pre-determined maximum of a sum of each of total data density, sum of edges with maximum density, and value of maximum load connection.
9. A system for generating a network topology for multiple wireless intelligent devices of a single distributed local network, said system comprising:
a processing device comprising a processor communicably linked to a memory, the memory storing instructions executable by the processor, the processing device to:
determine an optimal network topology for the multiple wireless intelligent devices of the single distributed local network;
generate a plurality of commands to be transmitted to one or more of multiple wireless intelligent devices of the determined optimal network topology;
instruct the plurality of commands to connect the one or more of multiple wireless intelligent devices to generate the determined optimal network topology, wherein each of physical connections and virtual connections of the network topology are used to transmit information amongst the one or more network nodes; and
optimize the determined optimal network topology when a sum of each of total data density, sum of edges with maximum density, and value of maximum load connection is greater than a pre-determined maximum of a sum of each of total data density, sum of edges with maximum density, and value of maximum load connection.
10. The system as claimed in claim 9 , wherein the processing device is further:
selects a control node of the one or more of multiple wireless intelligent devices, wherein a remote distributed application is executed at the control node.
11. The system as claimed in claim 10 , wherein the control node comprises one or more instructions for deployment of the optimal network topology.
12. The system as claimed in claim 11 , wherein the instructions comprises at least one of:
setting a pre-determined number of child network nodes,
setting a pre-determined level of data transmission from the one or more of multiple wireless intelligent devices,
setting a pre-determined size of data to be transmitted from one or more of multiple wireless intelligent devices,
setting a pre-determined amount of changes in controlled and measured parameters,
setting a pre-determined measurement hysteresis, and
setting a pre-determined throughput of a wireless communication channel.
13. The system as claimed in claim 9 , wherein the plurality of commands is instructed to reconfigure the optimized network topology.
14. The system as claimed in claim 9 , wherein number of the virtual connections are minimized to reduce data density between the one or more of multiple wireless intelligent devices and to improve performance of the network topology.
15. The system as claimed in claim 9 , wherein density of the network topology is calculated by determining a sum of weight assigned to each of the physical connections of the network topology.