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Mitigating packet loss in connectionless Bluetooth Low Energy

机译:降低无连接蓝牙低功耗中的数据包丢失

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In this paper, we investigate various methods to combat packet loss in a residential communication system based on the Bluetooth Low Energy (BLE) standard, focusing on BLE's connectionless mode (undirected advertising) in which no retransmissions are possible. We start by introducing two orthogonally polarised antennas at the receiver, thus improving the probability of successful reception. This is followed by enabling error correction using redundancy introduced by the Cyclic Redundancy Check (CRC) code of BLE. The CRC error correction is based on a novel approach of applying iterative decoding algorithms. We then consider a BLE system deployed in a residential environment and utilise the presence of multiple receivers that are necessary to provide coverage. These three techniques come at no cost for the transmitter, thus preserving its energy efficiency. The final technique deals with error control coding in the application layer, in which some redundancy is added at the transmitter before data is sent to the physical layer. By combining all four methods, a distributed error correction algorithm is developed. Using real BLE packets collected in a typical 2-storey house, it is shown that the designed system can correct 80% of all corrupted packets.
机译:在本文中,我们研究了多种基于蓝牙低功耗(BLE)标准的住宅通信系统中解决丢包问题的方法,重点是BLE的无连接模式(无向广告),在这种模式下无法进行重传。我们从在接收器处引入两个正交极化天线开始,从而提高成功接收的可能性。接下来,使用BLE的循环冗余校验(CRC)代码引入的冗余启用纠错功能。 CRC纠错基于一种应用迭代解码算法的新颖方法。然后,我们考虑在住宅环境中部署的BLE系统,并利用提供覆盖所需的多个接收器的存在。这三种技术对发射机来说是免费的,因此可以保持其能效。最终技术涉及应用层中的错误控制编码,其中在将数据发送到物理层之前,在发送器上添加了一些冗余。通过结合所有四种方法,开发了一种分布式纠错算法。使用典型的2层房屋中收集的真实BLE数据包,可以证明设计的系统可以纠正所有损坏的数据包的80%。

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