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Reducing Latency in Virtual Machines: Enabling Tactile Internet for Human-Machine Co-Working

机译:减少虚拟机中的延迟:为人机合作支持触觉互联网

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Software-defined networking (SDN) and network function virtualization (NFV) processed in multi-access edge computing (MEC) cloud systems have been proposed as critical paradigms for achieving the low latency requirements of the tactile Internet. While virtual network functions (VNFs) allow greater flexibility compared to hardware-based solutions, the VNF abstraction also introduces additional packet processing delays. In this paper, we investigate the practical feasibility of NFV with respect to the tactile Internet latency requirements. We develop, implement, and evaluate Chain-based Low latency VNF ImplemeNtation (CALVIN), a low-latency management framework for distributed Service Function Chains (SFCs). CALVIN classifies VNFs into elementary, basic, and advanced VNFs; moreover, CALVIN implements elementary and basic VNFs in the kernel space, while the advanced VNFs are implemented in the user space. Throughout, CALVIN employs a distributed mapping with one VNF per Virtual Machine (VM) in a MEC system. Furthermore, CALVIN avoids the metadata structure processing and batch processing of packets in the conventional Linux networking stack so as to achieve short per-packet latencies. Our rigorous measurements on off-the-shelf conventional networking and computing hardware demonstrate that CALVIN achieves round-trip times from a MEC ingress point via two elementary forwarding VNFs (one in kernel space and one in user space) and a MEC server to a MEC egress point on the order of 0.32 ms. Our measurements also indicate that MEC network coding and encryption are feasible for small 256 byte packets with an MEC latency budget of 0.35 ms; whereas, large 1400 byte packets can complete the network coding, but not the encryption within the 0.35 ms.
机译:已经提出了在多接入边缘计算(MEC)云系统中处理的软件定义的网络(SDN)和网络功能虚拟化(NFV)作为实现触觉互联网的低延迟要求的关键范例。虽然与基于硬件的解决方案相比,虚拟网络功能(VNFS)允许更大的灵活性,但VNF抽象还引入了额外的数据包处理延迟。在本文中,我们研究了NFV对触觉互联网延迟要求的实际可行性。我们开发,实施和评估基于链的低延迟VNF实现(Calvin),是分布式服务功能链(SFC)的低延迟管理框架。 Calvin将VNFS分类为基本,基本和高级VNFS;此外,Calvin在内核空间中实现了基本和基本VNF,而高级VNF在用户空间中实现。整个,Calvin在MEC系统中使用每个虚拟机(VM)的一个VNF的分布式映射。此外,Calvin避免了传统的Linux网络堆栈中数据包的元数据结构处理和批处理,以实现短每包延迟。我们对现成的传统网络和计算硬件的严格测量表明,Calvin通过两个基本转发VNF(一个内核空间中的MEC入口点(一个中的内核空间)和MEC服务器到MEC实现了往返时间出口点0.32毫秒。我们的测量还表明MEC网络编码和加密对于具有0.35毫秒的MEC延迟预算的小型256字节数据包是可行的;虽然,大型1400字节数据包可以完成网络编码,但不是0.35毫秒内的加密。

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