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An integrated approach to scatternet traffic management in Bluetooth ad hoc networks

机译:蓝牙ad hoc网络中分散网络流量管理的集成方法

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Bluetooth is an important and increasingly popular wireless communication standard, and in recent years a large number of Bluetooth products have been introduced commercially. Its chief advantages are small and low power consumption, which make the technology an attractive choice when setting up short-range wireless ad hoc networks. A typical Bluetooth network, known as a piconet, consists of one master and seven slaves. When several Bluetooth networks interconnect through a number of bridge nodes, they form a scatternet. However, no routing protocol has yet been defined for Bluetooth scatternets. Meanwhile, because of its small size and low cost, Bluetooth is widely "pervasive", in the sense that even low cost electrical appliances are expected to become Bluetooth enabled. If so, scatternets consisting of several piconets will exist even in a home environment. Thus, there is a pressing need to develop an efficient ad hoc routing algorithm to make effective communication possible between distant devices. This study proposes an integrated ad hoc routing and time-slot scheduling (IARTSS) scheme to address the problem of ad hoc routing in Bluetooth networks. Our proposed scheme contains four main mechanisms to address the different facets of the problem, namely Compensation-Based Time-Slot Assignment (CTSA), Traffic Differentiation Queueing (TDQ), Adaptive Master-Slave Switching (AMSS), and an Enhanced AODV algorithm for ad hoc routing. CTSA judiciously allocates time-slots to slaves based on elapsed time, utilization, and queue lengths, helping the bridge nodes to catch up with the lagging of services in piconets. TDQ differentiates traffic into self-originated and forwarded messages, and serves them in a dynamically adjusted adaptive ratio. AMSS calculates the time for a bridge node to stay in a piconet in a more effective way, based on utilization fraction and queue lengths. Enhanced AODV for ad hoc Routing is implemented as a routing protocol for Bluetooth scatternet. We have built a comprehensive Bluetooth simulator and performed extensive simulations to evaluate the proposed IARTSS. We find that our proposed scheme can perform well under a wide variety of practical circumstances, and provides efficient and high performance intra- piconet and inter-piconet communications.
机译:蓝牙是重要的并且日益流行的无线通信标准,并且近年来,大量的蓝牙产品已经商业引入。它的主要优点是体积小,功耗低,这使得该技术成为建立短距离无线ad hoc网络时有吸引力的选择。一个典型的蓝牙网络,称为微微网,由一个主机和七个从机组成。当多个蓝牙网络通过多个桥接节点互连时,它们形成一个分散网络。但是,尚未为蓝牙分散网定义路由协议。同时,由于其体积小和成本低,蓝牙被广泛地“普及”,从某种意义上说,甚至低成本的电器也有望成为支持蓝牙的设备。如果这样,即使在家庭环境中,也将存在由多个微微网组成的散射网。因此,迫切需要开发一种有效的自组织路由算法,以使远距离设备之间的有效通信成为可能。这项研究提出了一种集成的自组织路由和时隙调度(IARTSS)方案,以解决蓝牙网络中的自组织路由问题。我们提出的方案包含四个主要机制来解决该问题的各个方面,即基于补偿的时隙分配(CTSA),业务量区分排队(TDQ),自适应主从交换(AMSS)和用于以下目的的增强型AODV算法临时路由。 CTSA根据经过的时间,利用率和队列长度明智地将时隙分配给从属设备,从而帮助网桥节点赶上微微网中服务的滞后。 TDQ将流量分为自发消息和转发消息,并以动态调整的自适应比率为它们提供服务。 AMSS根据利用率和队列长度,以更有效的方式计算桥接节点停留在微微网中的时间。用于ad hoc路由的增强型AODV被实现为蓝牙分散网的路由协议。我们建立了一个全面的蓝牙模拟器,并进行了广泛的仿真,以评估建议的IARTSS。我们发现,我们提出的方案可以在各种实际情况下很好地执行,并提供有效和高性能的内部微网和微网间通信。

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