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Modeling of loosely coupled scatternets with finite buffers

机译:具有有限缓冲区的松散耦合散射网建模

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This article deals with the performance of Bluetooth scatternets in a real-life environment where different queues are implemented with finite buffers. Finite buffer size will introduce packet blocking at different queues along the packet path, which in turn causes changes in effective traffic load as well as retransmissions and ultimately affects end-to-end packet delays. The authors assume that the piconet masters use E-limited intra-piconet polling, while bridge scheduling is performed using the walk-in approach without rendezvous points. They present a detailed simulation model that allows them to obtain accurate measurements of blocking probabilities, end-to-end-packet delays, and overall throughput in the network as functions of network and device parameters. Some practical recommendations about the buffer size that will keep the blocking probability within reasonable limits are also given.
机译:本文讨论了在实际环境中蓝牙分散网的性能,在实际环境中,使用有限的缓冲区实现了不同的队列。有限的缓冲区大小将沿数据包路径的不同队列引入数据包阻塞,进而导致有效流量负载的变化以及重传,并最终影响端到端数据包延迟。作者假设微网主节点使用E限制的微网内轮询,而网桥调度是使用不带集合点的步入式方法执行的。他们提供了详细的仿真模型,使他们能够准确地测量阻塞概率,端到端分组延迟以及网络中总体吞吐量(作为网络和设备参数的函数)。还给出了一些有关缓冲区大小的实用建议,这些建议将使阻塞概率保持在合理的范围内。

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