HybOff:改进雾环境负载平衡的混合卸载方法

Hamza Sulimani, Rahaf Sulimani, Fahimeh Ramezani, Mohsen Naderpour, Huan Huo, Tony Jan, Mukesh Prasad
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引用次数: 0

摘要

在雾计算等效率至关重要的分布式系统中,负载平衡至关重要。在分布式环境中,采用不同方法进行卸载是平衡负载的关键。在异构网络中,静态卸载(SoA)存在不足,因此需要动态卸载来减少时间敏感任务的延迟。然而,流行的动态卸载(PoA)解决方案往往会带来隐性成本,影响敏感应用,包括决策时间、网络拥塞和距离卸载。本文介绍了混合卸载(HybOff)算法,该算法利用聚类理论解决了静态和动态方法中的问题,大大提高了雾网络中的负载平衡和资源利用率。其目标是创建一种不复杂的低成本卸载方法,通过消除隐藏成本的后果来提高物联网应用性能,而与网络规模无关。使用 iFogSim 仿真工具的实验结果表明,HybOff 能显著减少卸载信息、距离和决策卸载后果。它将负载平衡提高了 97%,超过了 SoA(64%)和 PoA(88%)。此外,它平均提高了 50%的系统利用率,系统性能分别是 SoA 和 PoA 的 1.6 倍和 1.4 倍。总之,本文试图在雾环境负载平衡研究中引入一种新的卸载方法。
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HybOff: a Hybrid Offloading approach to improve load balancing in fog environments
Load balancing is crucial in distributed systems like fog computing, where efficiency is paramount. Offloading with different approaches is the key to balancing the load in distributed environments. Static offloading (SoA) falls short in heterogeneous networks, necessitating dynamic offloading to reduce latency in time-sensitive tasks. However, prevalent dynamic offloading (PoA) solutions often come with hidden costs that impact sensitive applications, including decision time, networks congested and distance offloading. This paper introduces the Hybrid Offloading (HybOff) algorithm, which substantially enhances load balancing and resource utilization in fog networks, addressing issues in both static and dynamic approaches while leveraging clustering theory. Its goal is to create an uncomplicated low-cost offloading approach that enhances IoT application performance by eliminating the consequences of hidden costs regardless of network size. Experimental results using the iFogSim simulation tool show that HybOff significantly reduces offloading messages, distance, and decision-offloading consequences. It improves load balancing by 97%, surpassing SoA (64%) and PoA (88%). Additionally, it increases system utilization by an average of 50% and enhances system performance 1.6 times and 1.4 times more than SoA and PoA, respectively. In summary, this paper tries to introduce a new offloading approach in load balancing research in fog environments.
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