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A novel architecture and coexistence method to provide global access to/from Bluetooth WPANs by IEEE 802.11 WLANs

机译:一种新的架构和共存方法,通过IEEE 802.11 WLAN提供全球访问/来自蓝牙WPANS

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Bluetooth is a radio technology for Wireless Personal Area Networking (WPAN) operating in the 2.4GHz ISM frequency band. So far, there has been little research on how Bluetooth-enabled devices can effectively and efficiently have uninterrupted access to wide area networks (WAN) such as the Internet. We introduce a novel Bluetooth architecture (BlueStar) whereby selected Bluetooth devices, called Bluetooth Wireless Gateways (BWGs), are also IEEE 802.11 enabled so that these BWGs could serve as egress/ingress points to/from the IEEE 802.11 wireless network. We propose mitigating interference between Bluetooth and IEEE 802.11, by employing a hybrid approach of adaptive frequency hopping (AFH) and Bluetooth carrier sense (BCS) of the channels. AFH labels channels as "bad" or "good", and Bluetooth devices only access those channels in the "good" state, whereas BCS is used to avoid collision by sensing the channel prior to any transmission. By combining AFH and BCS, we drastically minimize the effect of the worst-case interference scenario wherein both a Bluetooth and an IEEE 802.11 interface are co-located in a single device. BlueStar enables Bluetooth devices, belonging to either a piconet or a scatternet, to access the WAN through the BWG without the need for any fixed Bluetooth access points, while utilizing widely deployed base of IEEE 802.11 networks. Moreover, we define the protocol stock employed by BlueStar as well as indicate how BWGs efficiently manage their capacity allocation through different systems. We also mathematically derive an upper bound on the number BWGs needed in a scatternet so that uninterrupted access to all Bluetooth devices could be provided.
机译:蓝牙是在2.4GHz ISM频带中运行的无线个人区域网络(WPAN)的无线电技术。到目前为止,对支持蓝牙的设备如何有效且有效地具有不间断地访问对诸如因特网的广域网(WAN)的不间断访问。我们介绍了一种新颖的蓝牙架构(蓝牙)(BlueStar),所以选择的蓝牙设备,称为蓝牙无线网关(BWG),也是IEEE 802.11启用,使得这些BWG可以用作来自IEEE 802.11无线网络的出口/入口点。我们通过采用通道的自适应频率跳跃(AFH)和蓝牙载波索引(BCS)的混合方法来提出蓝牙和IEEE 802.11之间的干扰。 AFH标签频道为“坏”或“良好”,蓝牙设备仅在“良好”状态下访问这些通道,而BCS用于通过在任何传输之前传感信道来避免冲突。通过组合AFH和BCS,我们大大减少了最坏情况干扰场景的效果,其中蓝牙和IEEE 802.11接口共同位于单个设备中。 BlueStar使蓝牙设备能够通过BWG访问WAN,无需任何固定的蓝牙接入点,同时利用IEEE 802.11网络的广泛部署基础。此外,我们定义了Bluestar采用的协议股,以及指示BWGS如何通过不同系统有效地管理其容量分配。我们还在数学上得出了散射网所需的数字BWG上的上限,以便提供对所有蓝牙设备的不间断访问。

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