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Joint optimization of service request routing and instance placement in the microservice system

机译:联合优化微服务系统中的服务请求路由和实例放置

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Microservice architecture is a promising architectural style. It decomposes monolithic software into a set of loosely coupled containerized microservices and associates them into multiple microservice chains to serve service requests. The new architecture creates flexibility for service provisioning but also introduces increased energy consumption and low service performance. Efficient resource allocation is critical. Unfortunately, existing solutions are designed at a coarse level for virtual machine (VM)-based clouds and not optimized for such chain-oriented service provisioning. In this paper, we study the resource allocation optimization problem for service request routing and microservice instance placement, so as to jointly reduce both resource usage and chains end-to-end response time for saving energy and guaranteeing Quality of Service (QoS). We design detailed workload models for microservices and chains and formulate the optimization problem as a bi-criteria optimization problem. To address it, a three-stage scheme is proposed to search and optimize the trade-off decisions, route service requests into instances and deploy instances to servers in a balanced manner. Through numerical evaluations, we show that while assuring the same QoS, our scheme performs significantly better than and faster than benchmarking algorithms on reducing energy consumption and balancing load.
机译:微服务架构是一种很有前途的架构风格。它将单片软件分解为一组松耦合的容器化微服务,并将它们关联到多个微服务链以服务服务请求。新架构为服务供应提供了灵活性,但同时也增加了能耗并降低了服务性能。有效的资源分配至关重要。不幸的是,现有的解决方案是为基于虚拟机(VM)的云而设计的,而没有针对此类面向链的服务供应进行优化。在本文中,我们研究了服务请求路由和微服务实例放置的资源分配优化问题,以共同减少资源使用和链端到端响应时间,从而节省能源并保证服务质量(QoS)。我们为微服务和链设计了详细的工作量模型,并将优化问题表述为双准则优化问题。为了解决这个问题,提出了一个三阶段方案来搜索和优化权衡决策,将服务请求路由到实例中,并以平衡的方式将实例部署到服务器。通过数值评估,我们表明,在确保相同QoS的同时,我们的方案在降低能耗和平衡负载方面的性能明显优于和优于基准测试算法。

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