Delay analysis on load balancing NDN, case study: Palapa ring

Andre Febrian Kasmar, S. Haryadi
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引用次数: 5

Abstract

Named Data Network is a new proposal for telecommunication technology architecture in the future. This simulation study was conducted on the Palapa Ring ring with each scenario describing the effectiveness of load balancer on the topology. Research is focused on load balancer application in reducing and suppressing the delay of Named Data Networking (NDN), it is expected that the delay that occurs during simulation will be minimized by applying load balancer application on NDN network with Palapa Ring topology. The NDN simulation run by using the Palapa Ring topology is tested by applying load balancer in order to suppress the delay that occurs on the ring. The conclusion of the use of load balancer on NDN in Palapa Ring topology with scenario C (composition 4 producer and 1 consumer) in Western Package simulation can reduce delay 56% compared to delay in scenario A (composition 2 producer and 1 consumer), reduce delay by 67% in Central Package simulation, and by 67% in Eastern Package simulation. The simulation test in scenario B (composition 3 producer and 1 consumer) resulted in smaller delay than scenario A, but larger than delay in scenario C. In addition, it was found that the lowest delay occurs when the greatest bandwidth value and the distance between nodes geographically the closest one, the Palapa Ring's Western Package simulation (Sumatra, Java, and parts of Kalimantan).
负载均衡NDN的延迟分析,案例研究:Palapa ring
命名数据网络是未来电信技术体系结构的新构想。该仿真研究是在Palapa Ring环上进行的,每个场景都描述了负载平衡器在拓扑上的有效性。在命名数据网络(NDN)中应用负载均衡器来降低和抑制时延是研究的重点,期望通过在具有Palapa Ring拓扑结构的NDN网络上应用负载均衡器来最小化仿真过程中产生的时延。使用Palapa环拓扑运行的NDN仿真通过应用负载平衡器来测试,以抑制环上发生的延迟。在Palapa Ring拓扑中使用NDN负载均衡器的结论是,在西部包模拟中,与场景C(组成4个生产者和1个消费者)的延迟相比,场景A(组成2个生产者和1个消费者)的延迟可以减少56%,在中央包模拟中减少67%,在东部包模拟中减少67%。场景B(组成3个生产者和1个消费者)的模拟测试导致的延迟比场景A小,但比场景c的延迟大。此外,发现最小的延迟发生在带宽值最大和地理上最近的节点之间的距离,Palapa环的西部包模拟(苏门答腊,Java和加里曼丹的部分地区)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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