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27 posts tagged with "edge computing platform"

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· 4 min read
Yin Ding

KubeEdge is an open source system extending native containerized application orchestration and device management to hosts at the Edge. It is built upon Kubernetes and provides core infrastructure support for networking, application deployment and metadata synchronization between cloud and edge. It also supports MQTT and allows developers to author custom logic and enable resource constrained device communication at the Edge.

Today we announce the v1.2 release of KubeEdge.

On February 9th, the KubeEdge community is proud to announce the availability of KubeEdge 1.2. This release includes a major upgrade on reliability, which includes more reliable message delivery from cloud to edge, component Config API, edge nodes auto-registration, Kubernetes v1.17.1 support, and 30+ fixes.

· One min read

We are very pleased to share that we received a very good response from community for KubeEdge contribution competition that started on 23rd April 2019. Participants were given challenge to either fix issues, raise issues, add code towards feature development, requirement identification, promote KubeEdge by writing blogs or create a sample application using KubeEdge. During this period 156 commits and 66 issues were added in the repository. We thank all the community members for making this event a grand success. We believe that community will continue contributions to KubeEdge with same enthusiasm in the future as well. Each and every contribution is of great worth and to honor top contributors KubeEdge team have selected below members as winners of this competition.

· 3 min read

KubeEdge is a CNCF Sandbox project that extends K8s from Cloud to Edge. We would like to invite you to join us in furthering this project and making it useable for everyone. To make this contribution effort more fun, we're proposing a contribution competition. See below for details. May the best contributor win!

· 4 min read

Why SPIFFE for edge computing?

Edge computing framework capabilities should be able to cloud-native design patterns and practices such as container orchestration, microservices, serverless computation which has led to increasing heterogeneous deployment environments. Conventional practices for securing heterogeneous deployments add complexity overhead to enforcing policies, prevention and detection of threats. Due to the increase in complexity, there is more scope of error in manageability and also, constraints the scalability of the applications across multiple production environments. In such cases, a common identity framework for workloads becomes necessary to avoid the pit-falls of conventional security policies (such as managing network policies that are based on rules for traffic between particular ip addresses) which affect implementation of distributed patterns.

This enables to build a security model which is application-oriented rather than infrastructure-oriented.