基于多层容错机制的云计算负载均衡策略

Bo Chen, Xihuang Zhang
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引用次数: 1

摘要

混合动态负载均衡算法应用于云计算时,会出现站点信息交换频繁导致处理效率低、算法缺乏容错机制等问题。为此,本文提出了一种基于多层容错机制的负载均衡算法。该算法综合了集中式算法和分布式算法的优点。通过组织邻居站点,将站点信息交换控制在一定范围内。当站点调度任务时,它将自身及其邻居的负载信息附加到作业转移请求中。该方法解决了由于频繁广播负载信息而导致的网络业务和服务器效率低的问题。该算法实现了云计算中的负载均衡和最小的响应时间。该方法引入了容错机制,增强了云系统的可扩展性。实验结果表明,基于多层容错机制的云计算负载均衡策略在任务分配时间和响应时间上优于传统算法20%以上。此外,该算法在稳定性上也优于传统算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Load balancing strategy of cloud computing based on multi-layer and fault-tolerant mechanism
When hybrid dynamic load balancing algorithm is applied to cloud computing, some problems will occur, such as that frequent exchange of sites information leads to low processing efficiency and algorithm is lack of fault-tolerant mechanism. Hence this paper proposed a load balancing algorithm based on multi-layer and fault- tolerant mechanism. The algorithm mixed the advantages of centralized and distributed methods. By organizing neighbor sites, the sites information exchange was controlled within a range of neighbor sites. When site scheduled tasks, it appended the load information of itself and its neighbors to the job transfer request. The method resolved network business and low efficiency of servers which was caused by broadcasting load information frequently. The algorithm achieved load balancing in cloud computing and minimum response time. The method introduced fault-tolerant mechanism to enhance the scalability of cloud system. The experimental results show that the load balancing strategy of cloud computing based on multi-layer and fault-tolerant mechanism is superior to traditional algorithms more than 20% in task distribution time and response time. Besides, it surpasses the traditional one in the stability of the algorithm.
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