首页> 外文期刊>IEEE transactions on mobile computing >Scalable and QoS-Aware Dynamic Slot Assignment and Piconet Partitioning to Enhance the Performance of Bluetooth Ad Hoc Networks
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Scalable and QoS-Aware Dynamic Slot Assignment and Piconet Partitioning to Enhance the Performance of Bluetooth Ad Hoc Networks

机译:可扩展且具有QoS意识的动态插槽分配和Piconet分区,以增强蓝牙Ad Hoc网络的性能

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Bluetooth is a radio technology for Wireless Personal Area Networks in the 2.4 GHz ISM frequency band and allows short-range devices to be connected in the form of ad hoc networks. The Bluetooth medium access control protocol is based on a strict master/slave concept wherein any communication between slave devices has to go through the master. While this model is simple, the use of such a nonoptimal packet forwarding scheme incurs much longer delays between any two slave-devices as double the bandwidth is used by the master. In addition, if two or more devices want to communicate as a group, this can only be achieved by either multiple unicast transmissions or a piconet-wide broadcast from the master. To handle these issues efficiently, we propose a novel combination of Dynamic Slot Assignment (DSA) and piconet partitioning. With DSA, the piconet master dynamically assigns slots to slaves so as to allow them to communicate directly with each other without any intervention from the master. Our proposed communication architecture provides for enhanced Quality of Service (QoS), better admission control, and multidevice conversation, which make a multicast-like communication feasible within the piconet. To widen the scope of DSA, we propose a QoS-aware Enhanced DSA (EDSA) version where dynamic piconet partitioning and scatternet support are exploited by grouping devices into piconets as per their connection endpoints, enabling it to be employed over a scatternet. We have performed extensive simulations and observe that these schemes drastically enhance Bluetooth performance in terms of the delay and the throughput, while significantly reducing the network power consumption.
机译:蓝牙是用于2.4 GHz ISM频段的无线个人局域网的一种无线电技术,它允许以ad hoc网络的形式连接短程设备。蓝牙媒体访问控制协议基于严格的主/从概念,其中从设备之间的任何通信都必须通过主设备。尽管此模型很简单,但使用这种非最佳的数据包转发方案会导致任意两个从属设备之间的延迟更长,因为主控设备使用的带宽是原来的两倍。另外,如果两个或更多设备要成组通信,则只能通过多个单播传输或来自主机的微微网范围的广播来实现。为了有效处理这些问题,我们提出了动态插槽分配(DSA)和微微网分区的新颖组合。借助DSA,微微网主机可以为从站动态分配插槽,从而使它们之间可以直接通信,而无需主机干预。我们提出的通信体系结构提供了增强的服务质量(QoS),更好的准入控制和多设备对话,这使在微微网内的类多播通信变得可行。为了扩大DSA的范围,我们提出了一种QoS感知的增强型DSA(EDSA)版本,该版本通过将设备按照其连接端点分组到微微网中来利用动态微微网分区和分散网支持,从而使其能够在分散网上使用。我们已经进行了广泛的仿真,并观察到这些方案在延迟和吞吐量方面极大地提高了蓝牙性能,同时显着降低了网络功耗。

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