为Edge重新构建Kubernetes

A. Jeffery, H. Howard, R. Mortier
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引用次数: 31

摘要

近年来,Kubernetes已经成为容器编排的主要选择。Kubernetes主要针对云环境,但新的用例需要高性能、可用和可扩展的边缘编排。Kubernetes将所有集群状态存储在etcd中,这是一个强一致的键值存储。我们发现,在更大的etcd集群规模下,提供更高的可用性,写请求延迟会显著增加,吞吐量也会相应降低。再加上大约30%的Kubernetes请求正在被写入,这直接影响了Kubernetes的请求延迟和可用性,降低了它对边缘的适用性。我们重新审视强一致性的要求,并提出一种最终一致的方法。这样可以实现更高的性能、可用性和可扩展性,同时仍然支持Kubernetes的广泛需求。这样做的目的是使Kubernetes更适合性能关键型、动态扩展的边缘解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rearchitecting Kubernetes for the Edge
Recent years have seen Kubernetes emerge as a primary choice for container orchestration. Kubernetes largely targets the cloud environment but new use cases require performant, available and scalable orchestration at the edge. Kubernetes stores all cluster state in etcd, a strongly consistent key-value store. We find that at larger etcd cluster sizes, offering higher availability, write request latency significantly increases and throughput decreases similarly. Coupled with approximately 30% of Kubernetes requests being writes, this directly impacts the request latency and availability of Kubernetes, reducing its suitability for the edge. We revisit the requirement of strong consistency and propose an eventually consistent approach instead. This enables higher performance, availability and scalability whilst still supporting the broad needs of Kubernetes. This aims to make Kubernetes much more suitable for performance-critical, dynamically-scaled edge solutions.
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