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Mrs. Z: Improving ZigBee throughput via multi-rate transmission

机译:Z夫人:通过多速率传输提高ZigBee吞吐量

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ZigBee is a widely used wireless technology in low-power and short-range scenarios such as Internet of Things (IoT), sensor networks, and industrial wireless networks. However, the standard ZigBee supports only one data rate, 250Kbps, which thoroughly limits ZigBee's efficiency in dynamic wireless channels. In this paper, we propose Mrs.Z, a novel physical layer design to enable multi-rate selection in ZigBee. The key idea is to change the single spectrum spreading length to multiple ones. Correspondingly, to gracefully adapt to the channel variations, we propose a BER-based rate selection scheme, dividing bit errors into two categories: errors caused by the exceeding despreading threshold, which can be discovered in the physical layer, and caused by incorrect despreading, which is not visible until cyclic redundancy check (CRC) in the media access control (MAC) layer. Then, the receiver selects the rate based on the underlying negative impacts incurred by them and feedbacks to the transceiver. We implement Mrs.Z on USRPs and evaluate its performance in different scenarios. Results demonstrate that Mrs.Z achieves an improvement of 20% and 80% compared to the classic SoftRate and the standard ZigBee.
机译:ZigBee是一种广泛使用的无线技术,低功耗和短距离场景,如物联网(物联网),传感器网络和工业无线网络。然而,标准ZigBee仅支持一个数据速率,250kbps,这彻底限制了ZigBee在动态无线信道中的效率。在本文中,我们提出了一种新颖的物理层设计,可以在ZigBee中实现多速率选择。关键的想法是将单频谱扩散长度更改为多个。相应地,为了优雅地适应频道变体,我们提出基于BER的速率选择方案,将比特错误分为两类:由超过解扩阈值引起的错误,它可以在物理层中发现,并且由不正确的解扩,这在媒体访问控制(MAC)层中的循环冗余校验(CRC)之前不可见。然后,接收器基于它们产生的底层的负面影响和对收发器的反馈选择速率。我们在USRPS上实施MRS.Z并评估其在不同方案中的性能。结果表明,与经典的精度和标准ZigBee相比,MRS.Z达到了20 \%和80 \%。

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