Bluetooth Low Energy (BLE) is one of the key enablers for low-power and low-cost applications in consumer electronics and the Internet of Things. The latest features such as audio and direction finding will introduce more and more devices that rely on BLE for communication. However, like many other wireless standards, BLE relies on the unlicensed 2.4 GHz frequency band where the spectrum is already very crowded and a channel access without collisions with other devices is difficult to guarantee. For applications with high reliability requirements, it will be beneficial to actively consider channel access from other devices or standards. In this work, we present an approach to estimate the connection parameters of multiple BLE connections outside our control and knowledge by passively listening to the channel. With this, we are able to predict future channel access of these BLE connections that can be used by other wireless networks to avoid collisions. We show the applicability of our algorithm with measurements from which we are able to identify unknown BLE connections, reconstruct their specific connection parameters, and predict their future channel access.
翻译:蓝牙低能(Blue House)是低功率和低成本应用消费者电子产品和物联网的关键推进器之一。最新功能,如音频和定向发现等,将引入更多依赖发频通信的装置。然而,像许多其他无线标准一样,低能依赖无许可证的2.4千兆赫频带,其频谱已经非常拥挤,频道接入而没有与其他装置发生碰撞也难以保证。对于具有高可靠性要求的应用,积极考虑其他装置或标准的频道接入将是有益的。在这项工作中,我们提出了一个方法,通过被动地监听频道,估计我们控制与知识之外的多个发频连接的连接参数。因此,我们能够预测其他无线网络为避免碰撞而使用这些发频连接的未来频道接入。我们展示了我们的算法与测量方法的实用性,我们从中能够识别未知的发频连接,重建它们的具体连接参数,并预测它们未来的频道接入。