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首页> 外文期刊>Internet of Things Journal, IEEE >Understanding the Performance of Bluetooth Mesh: Reliability, Delay, and Scalability Analysis
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Understanding the Performance of Bluetooth Mesh: Reliability, Delay, and Scalability Analysis

机译:了解蓝牙网格的性能:可靠性,延迟和可扩展性分析

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摘要

This article evaluates the quality-of-service performance and scalability of the recently released Bluetooth mesh protocol and provides general guidelines on its use and configuration. Through extensive simulations, we analyze the impact of the configuration of all the different protocol's parameters on the end-to-end reliability, delay, and scalability. In particular, we focus on the structure of the packet broadcast process, which takes place in time intervals known as Advertising Events and Scanning Events. Results indicate a high degree of interdependence among all the different timing parameters involved in both the scanning and the advertising processes and show that the correct operation of the protocol greatly depends on the compatibility between their configurations. We also demonstrate that introducing randomization in these timing parameters, as well as varying the duration of the Advertising Events, reduces the drawbacks of the flooding propagation mechanism implemented by the protocol. Using data collected from a real office environment, we also study the behavior of the protocol in the presence of WLAN interference. It is shown that Bluetooth mesh is vulnerable to external interference, even when implementing the standardized limitation of using only 3 out of the 40 Bluetooth low-energy frequency channels. We observe that the achievable average delay is relatively low, of around 250 ms for over 10 hops under the worst simulated network conditions. However, results prove that scalability is especially challenging for Bluetooth mesh since it is prone to broadcast storm, hindering the communication reliability for denser deployments.
机译:本文评估最近发布的蓝牙网格协议的服务质量性能和可扩展性,并提供了一般指南的使用和配置。通过广泛的仿真,我们分析了所有不同协议参数的配置对端到端可靠性,延迟和可扩展性的影响。特别是,我们专注于分组广播过程的结构,该过程以被称为广告事件和扫描事件的时间间隔进行。结果表明扫描和广告过程中涉及的所有不同时序参数之间的高度相互依赖,并且表明协议的正确操作大大取决于它们的配置之间的兼容性。我们还证明,在这些定时参数中引入随机化,以及改变广告事件的持续时间,减少了协议实现的泛洪传播机制的缺点。使用从真正的办公环境中收集的数据,我们还在存在WLAN干扰的情况下研究协议的行为。结果表明,即使在实现40蓝牙低能频率通道中仅使用3的标准化限制,蓝牙网格也容易受到外部干扰。我们观察到,在最差的模拟网络条件下,可实现的平均延迟相对较低,大约10次跳跃约为250毫秒。然而,结果证明可扩展性对于蓝牙网格尤其具有挑战性,因为它易于广播风暴,阻碍了密度部署的通信可靠性。

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