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A Queueing Theory Based Approach to QoS-Driven Adaptation for Service Discovery over MANETs

机译:基于排队论的QoS驱动的MANET服务发现自适应方法

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摘要

Volatility and uncertainty characterizing mobile ad hoc networks (MANETs) demand that an efficient mechanism to discover currently available services in a MANET should be provided. Consequently, many service discovery systems over MANETs have been developed. However, most of them lack theoretical modeling and analysis, as well as the leveraging of the theoretical model for optimizing system design and improving quality of service (QoS). Aiming at our service discovery system SCN4M, this paper develops an M/M+/1 model for service discovery on MANET nodes. This model is first applied to predict system behaviors such as system throughput. Then, the model is applied to find the value of a control variable. If the calculated value is set at runtime, the system will provide the optimal QoS. Furthermore, the model is used for optimizing a system's adaptive mechanism so that the system can achieve the optimal QoS no matter what kind of environmental change occurs. Experiments are also conducted to verify the model and its applications. Our approach indicates that the queueing theory model can be seamlessly combined into system design to improve system performance.
机译:表征移动自组织网络(MANET)的易变性和不确定性要求应提供一种有效的机制来发现MANET中的当前可用服务。因此,已经开发了许多通过MANET的服务发现系统。但是,它们中的大多数缺乏理论建模和分析,也缺乏理论模型用于优化系统设计和提高服务质量(QoS)的杠杆作用。针对我们的服务发现系统SCN4M,本文开发了一种M / M + / 1模型用于MANET节点上的服务发现。该模型首先用于预测系统行为,例如系统吞吐量。然后,将模型应用于查找控制变量的值。如果在运行时设置了计算值,则系统将提供最佳QoS。此外,该模型用于优化系统的自适应机制,以便无论发生哪种环境变化,系统都能获得最佳的QoS。还进行了实验以验证模型及其应用。我们的方法表明,可以将排队理论模型无缝地集成到系统设计中,以提高系统性能。

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