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A robust coexistence scheme for IEEE 802.15.4 wireless personal area networks

机译:IEEE 802.15.4无线个人区域网络的强大共存方案

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The Industrial, Scientific and Medical (ISM) band is shared among multiple wireless networks such as Bluetooth, wireless local area networks and 802.15.4 low rate wireless personal area networks (LR-WPAN). There are some centralized protocols that may work in this coexistent medium. Since management of these methods is done centrally with the help of configuration messages, their performance is strictly tied to the reliable transmission of these data. Clearly, this required level of reliability is in doubt when these methods are implemented in a heterogeneous environment. In this paper we explore how the performance of these standards is affected when they confront with interference. For this reason, WPAN beacon-enabled mode is selected as a representative of the category of synchronization-based methods, and its performance in a co-located WLANWPAN medium is evaluated. Then, a rapid-response and robust interference coexistence scheme is proposed to mitigate the effect of interfering systems on WPAN's performance. Simulation results show that the proposed method can be efficiently used to recover an affected WPAN quickly, regardless of the amount of WLAN interference.
机译:工业,科学和医疗(ISM)乐队在多种无线网络中共享,如蓝牙,无线局域网和802.15.4低价无线个人区域网络(LR-WPAN)。有一些可以在此共存介质中工作的集中协议。由于这些方法的管理是在集中在配置消息的帮助下完成的,因此它们的性能被严格依赖于这些数据的可靠传输。显然,当这些方法在异构环境中实施时,这种所需的可靠性是疑问。在本文中,我们探讨这些标准的表现如何在与干扰面对时受到影响。因此,选择了WPAN信标模式作为基于同步的方法类别的代表,并评估其在共同定位的WLANWPAN介质中的性能。然后,提出了一种快速响应和强大的干扰共存方案来减轻干扰系统对WPAN性能的影响。仿真结果表明,无论WLAN干扰的量如何,所提出的方法都可以有效地恢复受影响的WPP。

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