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Dynamic relay management protocol for efficient inter-piconet scheduling in Bluetooth scatternet

机译:动态中继管理协议,可在蓝牙分散网中实现有效的微网间调度

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摘要

Bluetooth is a low power, short range and inexpensive wireless technology that has limited resources. Therefore, the performance of a scatternet is highly dependent on the number of relays and their degree. The existence of unnecessary relays may increase scheduling overhead and consume system resources. In another instance, a large number of links that pass through a single relay may also decrease the system performance. Therefore, an optimum number of relays must be obtained for an efficient scatternet performance, while the system works with limited resources. The dynamic relay management (DRM) protocol is proposed to achieve the said objective and the solutions will be based on relay reduction and load balancing strategies. Through the DRM, a master reduces unnecessary relays to an optimum number and subsequently assigns them the special role as backup relays. In the event when a large number of links pass through a single relay, the master activates one of the backup relays to resolve the bottleneck, by which the load is balanced over a number of relays. Using this relay management technique, analytically the DRM protocol has reduced control overhead from O(n~2) to O(1). Empirically, through simulation of the DRM protocol, the backup relay activation has reduced delay and improved throughput (between 40% and 60%). Also, the simulation results have demonstrated an improvement on network lifetime and packet loss. All these results are evidence that the DRM has outperformed the RVM and LORP protocols for the same issue. Hence, the inefficiency of the inter-piconet scheduling in a scatternet of a Bluetooth network can be resolved by implementing the DRM protocol.
机译:蓝牙是一种资源有限的低功耗,短距离且廉价的无线技术。因此,分散网的性能高度依赖于继电器的数量及其程度。不必要的中继的存在可能会增加调度开销并消耗系统资源。在另一个实例中,通过单个中继的大量链接也可能会降低系统性能。因此,在系统使用有限资源的情况下,必须获得最佳数量的继电器以实现有效的分散网性能。提出了动态中继管理(DRM)协议以实现上述目标,解决方案将基于中继减少和负载平衡策略。通过DRM,主服务器将不必要的中继减少到最佳数量,然后为它们分配特殊角色作为备用中继。如果大量链路通过单个中继,则主站将激活一个备用中继以解决瓶颈,由此,负载将在多个中继之间得到平衡。使用这种中继管理技术,从理论上讲,DRM协议已将控制开销从O(n〜2)减少到O(1)。根据经验,通过模拟DRM协议,备用中继的激活减少了延迟并提高了吞吐量(介于40%和60%之间)。此外,仿真结果证明了网络寿命和数据包丢失的改善。所有这些结果都证明在同一问题上DRM的性能优于RVM和LORP协议。因此,可以通过实现DRM协议来解决蓝牙网络的分散网中的微网间调度的低效率。

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