Systems and methods for self-organized fleets of autonomous vehicles for optimal and adaptive transport and offload of massive amounts of data
Communication network architectures, systems and methods for supporting a network of mobile nodes. As a non-limiting example, various aspects of this disclosure provide autonomous vehicle network architectures, systems, and methods for supporting a dynamically configurable network of autonomous vehicles comprising a complex array of both static and moving communication nodes.
1. A method for data communication by a group of vehicles, comprising:
determining by the group of vehicles which vehicle in the group of vehicles is a data owner;
prioritizing data based on one or more of:
operation mode of a vehicle in the group of vehicles;
type of data; and
size of data;
communicating by the data owner to a cloud server at least a portion of the data from another vehicle of the group of vehicles; and
the data owner receiving first data from an entity that is not part of the group of vehicles to communicate the first data to the cloud server, wherein non-data owner vehicles in the group of vehicles do not receive the first data from the entity that is not part of the group of vehicles.
2. The method according to claim 1 , comprising communicating, by each vehicle in the group of vehicles to other vehicles in the group of vehicles, relevant data in determining the data owner.
3. The method according to claim 2 , wherein the relevant data comprises one or more of: average speed, direction of travel, proximity to an access point, estimated time of connection to present access point, quality of communication with the present access point, and urgency in communicating the data to the cloud server.
4. The method according to claim 1 , comprising, when the vehicle is not directly connected to the cloud server, communicating by the vehicle with the cloud server via at least one other vehicle in the group of vehicles.
5. The method according to claim 1 , comprising determining by the group of vehicles one or both of policies and thresholds to determine one or more of: when and how each type of data should be sent to the cloud server, kept locally, shared, or dropped.
6. The method according to claim 1 , wherein the data owner is determined to be each vehicle of the group of vehicles in turn for a period of time.
7. The method according to claim 1 , wherein at least one vehicle in the group of vehicles communicates information regarding access points to another vehicle that is not part of the group of vehicles.
8. A group of vehicles, comprising:
a processing module, for each vehicle in the group of vehicles, configured to:
determine, with a respective processing module for the each vehicle in the group of vehicles, that a first vehicle of the group of vehicles is a data owner;
determine, with a respective processing module for the each vehicle in the group of vehicles, priority of data based on one or more of:
operation mode of a vehicle;
type of data; and
size of data; and
communicate via the data owner a portion of the data to a cloud server,
wherein at least one vehicle in the group of vehicles communicates information regarding access points to another vehicle that is not part of the group of vehicles.
9. The group of vehicles according to claim 8 , wherein each vehicle of the group of vehicles communicates via the respective processing module to other vehicles in the group of vehicles relevant data in determining the data owner.
10. The group of vehicles according to claim 9 , wherein the relevant data comprises one or more of: average speed, direction of travel, proximity to an access point, estimated time of connection to present access point, quality of communication with the present access point, and urgency in communicating the data to the cloud server.
11. The group of vehicles according to claim 8 , wherein, when a vehicle in the group of vehicles is not directly connected to the cloud server, the vehicle communicates with the cloud server via at least one other vehicle in the group of vehicles.
12. The group of vehicles according to claim 8 , wherein:
the data owner receives first data from an entity that is not part of the group of vehicles to communicate the first data to the cloud server; and
non-data owner vehicles in the group of vehicles do not receive the first data from the entity that is not part of the group of vehicles.
13. The group of vehicles according to claim 8 , wherein the data owner is determined to be each vehicle of the group of vehicles in turn for a period of time.
14. The group of vehicles according to claim 8 , wherein the processing module of the data owner is configured to:
receive second data from the cloud server, and
transmit the second data to at least one other vehicle in the group of vehicles.
15. A method for data communication by a first vehicle, comprising:
updating an access point map by sensing access points during a travel of the first vehicle;
receiving, by the first vehicle, from a cloud server information for updating the access point map for various routes that the first vehicle can take;
transmitting, by the first vehicle, to the cloud server sensed access point information;
communicating by the first vehicle to a second vehicle when the first vehicle nears the second vehicle, at least a portion of the access point map for a direction of travel of the second vehicle; and
receiving by the first vehicle, when the first vehicle nears the second vehicle, at least a portion of the access point map for a direction of travel of the first vehicle from the second vehicle.
16. The method according to claim 15 , comprising the first vehicle using the access point map to select a next portion of the first vehicle's route.
17. The method according to claim 15 , wherein the first vehicle uses the access point map to optimize communication of data to the cloud server.
18. A method for data communication by a group of vehicles, comprising:
determining by the group of vehicles which vehicle in the group of vehicles is a data owner;
prioritizing data based on one or more of:
operation mode of a vehicle in the group of vehicles;
type of data; and
size of data;
communicating by the data owner to a cloud server at least a portion of the data from another vehicle of the group of vehicles; and
determining by the group of vehicles one or both of policies and thresholds to determine one or more of: when and how each type of data should be sent to the cloud server, kept locally, shared, or dropped.
19. A method for data communication by a group of vehicles, comprising:
determining by the group of vehicles which vehicle in the group of vehicles is a data owner;
prioritizing data based on one or more of:
operation mode of a vehicle in the group of vehicles;
type of data; and
size of data; and
communicating by the data owner to a cloud server at least a portion of the data from another vehicle of the group of vehicles,
wherein at least one vehicle in the group of vehicles communicates information regarding access points to another vehicle that is not part of the group of vehicles.
20. A group of vehicles, comprising:
a processing module, for each vehicle in the group of vehicles, configured to:
determine, with a respective processing module for the each vehicle in the group of vehicles, that a first vehicle of the group of vehicles is a data owner;
determine, with a respective processing module for the each vehicle in the group of vehicles, priority of data based on one or more of:
operation mode of a vehicle;
type of data; and
size of data; and
communicate via the data owner a portion of the data to a cloud server,
wherein:
the data owner receives first data from an entity that is not part of the group of vehicles to communicate the first data to the cloud server; and
non-data owner vehicles in the group of vehicles do not receive the first data from the entity that is not part of the group of vehicles.