不同流量负载下干扰对蓝牙散射网吞吐量性能的影响

K. Morsi, Gao Qiang, Xiong Huagang
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引用次数: 1

摘要

多个蓝牙微网可能在物理环境中共存,支持许多无线应用。一个独立运行的蓝牙微微网将不可避免地遇到并置微微网的相互干扰,从而导致单个微微网和整体散射网性能下降。考虑到蓝牙皮网中的跳频机制不是一个完全随机的过程,本文对干扰皮网数量增加时的吞吐量性能进行了研究和评价。为了表现不同数据包大小、对称/非对称传输、同步/非同步数据包以及不同流量负载对不同数据包大小的非等碰撞概率的影响,在不同的皮网间时间偏移情况下进行了几种不同的模拟。结果证明,根据干扰的类型、大小和数量,某些数据包大小可以实现更高的吞吐量。在存在干扰的情况下,可以通过改变微网中的数据包大小来提高吞吐量。还验证了可以达到最佳流量负载,以实现每个微网数量的最大吞吐量。
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Interference impact on throughput performance of Bluetooth scatternets under different traffic loads
Multiple Bluetooth piconets are likely to co-exist in a physical environment, supporting many wireless applications. An independently operating Bluetooth piconet will inevitably encounter mutual interference from collocated piconets, which results in individual piconet and overall scatternet performance degradation. In this paper, the throughput performance of Bluetooth piconet is studied and evaluated as the number of interfering piconets is increased considering that the frequency hopping mechanism in Bluetooth piconets is not a totally random process. Several different simulations were performed with varying inter-piconet time offset in order to represent the effects of different packet sizes, symmetric / asymmetric transmission, synchronized / unsynchronized data packets, and different traffic loads with non equal probabilities of collision for different packet sizes. Results proved that certain packets sizes can achieve higher throughput depending on type, size, and number of interferers. Throughput improvement may be achieved in the presence of interference by changing the packet size in the piconet. It was also verified that an optimum traffic load could be reached to achieve maximum throughput for each number of piconets.
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