18287109. SECURE MULTICLOUD CONNECTIVITY FOR CLOUD-NATIVE APPLICATIONS simplified abstract (Telefonaktiebolaget LM Ericsson (PUBL))
SECURE MULTICLOUD CONNECTIVITY FOR CLOUD-NATIVE APPLICATIONS
Organization Name
Telefonaktiebolaget LM Ericsson (PUBL)
Inventor(s)
SECURE MULTICLOUD CONNECTIVITY FOR CLOUD-NATIVE APPLICATIONS - A simplified explanation of the abstract
This abstract first appeared for US patent application 18287109 titled 'SECURE MULTICLOUD CONNECTIVITY FOR CLOUD-NATIVE APPLICATIONS
Simplified Explanation
A first edge node can facilitate communication between application containers on different edge nodes using sidecar containers and a master orchestrator.
Key Features and Innovation
- Communication between application containers on different edge nodes
- Use of sidecar containers to facilitate traffic between applications
- Master orchestrator orchestrates the communication process
Potential Applications
This technology can be applied in edge computing environments where communication between distributed application containers is required.
Problems Solved
- Facilitates communication between application containers on different edge nodes
- Streamlines the process of connecting and exchanging data between applications
- Enhances the efficiency of edge computing environments
Benefits
- Improved communication and data exchange between distributed applications
- Enhanced performance and efficiency in edge computing environments
- Simplified management of communication processes between edge nodes
Commercial Applications
- Edge computing networks
- IoT systems
- Cloud computing environments
Prior Art
Readers can explore prior art related to edge computing, container orchestration, and communication protocols in distributed systems.
Frequently Updated Research
Stay updated on the latest advancements in edge computing, containerization technologies, and distributed systems communication protocols.
Questions about Edge Node Communication
How does this technology improve communication between application containers on different edge nodes?
This technology enables seamless communication by using sidecar containers and a master orchestrator to facilitate traffic between applications.
What are the potential applications of this technology beyond edge computing environments?
This technology can also be applied in IoT systems, cloud computing environments, and other distributed computing scenarios.
Original Abstract Submitted
A first edge node can communicate an address candidate for either a first sidecar container of the first edge node or a second sidecar container of a second edge node with a master orchestrator. The first edge node can then communicate traffic between a first application container of the first edge node and a second application container of the second edge node via a connection between the first sidecar container and the second sidecar container using the address candidate.