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A Framework for Performance Analysis of Various Load Balancing Techniques in a Software-Defined Networking Environment

机译:软件定义的网络环境中各种负载平衡技术的性能分析框架

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Load balancer is an essential part of a computer network. Its primary purpose is to distribute incoming traffic across multiple target servers. There are numerous load balancing techniques and each of them excels on specific network topology and server capability. However, due to vendor dependency, implementing a quintessential load balancer requires additional hardware cost and knowledge in vendor-specific configurations. Using software-defined networking (SDN) approach, testing of various load balancing techniques becomes easier and cheaper than traditional hardware-based approach. Despite the promising advantages of SDN, the novel approach is still unstable. Hence, in this experiment, performances of five different load balancing techniques-namely, random, round-robin (RR), weighted round-robin (WRR), least-connections (LC), and weighted least-connections (WLC)-were tested. The experiment was done on a single-switch topology. Mininet and POX controller were used to setup the network environment. The load balancers were also tested in two types of network conditions: with and without TCP SYN floods. After several iPerf tests, results in both network conditions indicated that RR and LC load balancers were both more than twice as fast as the one without load balancing implementation and moderately faster than random load balancer. LC and WLC were slightly faster than RR and WRR without SYN floods while RR and WRR were slightly faster with SYN floods. Future works, like testing the framework on other types of network topologies or low-level load balancing techniques, could strengthen the substantiation of stability of using SDN approach.
机译:Load Balancer是计算机网络的重要组成部分。其主要目的是在多个目标服务器上分发传入流量。有许多负载平衡技术,每个负载均衡技术都擅长特定的网络拓扑和服务器功能。但是,由于供应商依赖性,实现典型负载平衡器需要额外的硬件成本和特定于供应商配置的知识。使用软件定义的网络(SDN)方法,各种负载平衡技术的测试比传统的基于硬件的方法更容易和便宜。尽管SDN有前途的优势,但新颖的方法仍然不稳定。因此,在该实验中,五种不同负载平衡技术的性能 - 即,随机,圆形罗宾(RR),加权循环(WRR),最小连接(LC)和加权最小连接(WLC) - 我们--were测试。实验是在单开关拓扑上完成的。 MinInet和Pox控制器用于设置网络环境。负载均衡器也在两种类型的网络条件下进行测试:有没有TCP SYN洪水。在几次IPerf测试之后,导致网络条件的结果表明,RR和LC负载均衡器均比没有负载平衡实现的速度两倍多,并且比随机负载平衡器更快。 LC和WLC略微比RR和WRR略微更快,没有SYN洪水,而RR和WRR随着SYN洪水稍微快慢地稍微快速。未来的作品,如测试其他类型的网络拓扑或低级负载平衡技术的框架,可以加强使用SDN方法的稳定性的证实。

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