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Design and Performance Evaluation of Queue-and-Rate-Adjustment Dynamic Load Balancing Policies for Distributed Networks

机译:分布式网络队列与速率调整动态负载均衡策略的设计与性能评估

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In this paper, we classify the dynamic distributed load balancing algorithms for heterogenous distributed computer systems into three policies: queue adjustment policy (QAP), rate adjustment policy (RAP), and queue and rate adjustment policy (QRAP). We propose two efficient algorithms, referred to as rate-based load balancing via virtual routing (RLBVR) and queue-based load balancing via virtual routing (QLBVR), which belong to the above RAP and QRAP policies, respectively. We also consider algorithms estimated load information scheduling algorithm (ELISA) and perfect information algorithm, which were introduced in the literature, to implement QAP policy. Our focus is to analyze and understand the behaviors of these algorithms in terms of their load balancing abilities under varying load conditions (light, moderate, or high) and the minimization of the mean response time of jobs. We compare the above classes of algorithms by a number of rigorous simulation experiments to elicit their behaviors under some influencing parameters, such as load on the system and status exchange intervals. We also extend our experimental verification to large scale cluster systems such as a mesh architecture, which is widely used in real-life situations. From these experiments, recommendations are drawn to prescribe the suitability of the algorithms under various situations
机译:在本文中,我们将用于异构分布式计算机系统的动态分布式负载平衡算法分为三个策略:队列调整策略(QAP),速率调整策略(RAP)以及队列和速率调整策略(QRAP)。我们提出了两种有效的算法,分别称为基于虚拟路由的基于速率的负载均衡(RLBVR)和基于虚拟路由的基于队列的负载均衡(QLBVR),分别属于上述RAP和QRAP策略。我们还考虑了文献中介绍的估计负荷信息调度算法(ELISA)和完善信息算法,以实现QAP策略。我们的重点是根据变化的负载条件(轻,中或高)下的负载平衡能力以及最小化作业的平均响应时间来分析和理解这些算法的行为。我们通过大量严格的模拟实验比较了上述算法类别,以得出它们在某些影响参数下的行为,例如系统负载和状态交换间隔。我们还将实验验证扩展到大规模群集系统,例如网格结构,该系统在现实生活中被广泛使用。从这些实验中,提出了建议以规定算法在各种情况下的适用性

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