The radio range of backscatter systems continues growing as new wireless communication primitives are continuously invented. Nevertheless, both the bit error rate and the packet loss rate of backscatter signals increase rapidly with the radio range, thereby necessitating the cooperation between the access point and the backscatter tags through a feedback loop. Unfortunately, the low-power nature of backscatter tags limits their ability to demodulate feedback signals from a remote access point and scales down to such circumstances. This paper presents Saiyan, an ultra-low-power demodulator for long-range LoRa backscatter systems. With Saiyan, a backscatter tag can demodulate feedback signals from a remote access point with moderate power consumption and then perform an immediate packet retransmission in the presence of packet loss. Moreover, Saiyan enables rate adaption and channel hopping-two PHY-layer operations that are important to channel efficiency yet unavailable on long-range backscatter systems. We prototype Saiyan on a two-layer PCB board and evaluate its performance in different environments. Results show that Saiyan achieves 5 gain on the demodulation range, compared with state-of-the-art systems. Our ASIC simulation shows that the power consumption of Saiyan is around 93.2 uW. Code and hardware schematics can be found at: https://github.com/ZangJac/Saiyan.
翻译:随着新的无线通信原始系统的不断发明,反向散射系统的无线电范围继续扩大。然而,随着无线电范围的不断发明,小错误率和后向散射信号的包丢失率随着无线电范围的迅速增加而迅速增加,从而需要接入点和后向散射标记通过反馈环圈进行合作。不幸的是,后向散射标签的低功率性质限制了它们从远程接入点降压反馈信号的能力,而从远程接入点降压信号的能力,并缩至此类情况。本文展示了长距离的反向散射系统超低功率的赛亚安式二流式推进器,并评价了它在不同环境中的性能。与赛亚安的后向导标记可以从一个拥有中度电力消耗的远程接入点降压反馈信号,然后在出现包损失时立即进行分流传输。此外,赛亚安能够调整费率和频道两层PHy-Hy-级操作对于远程后向散射系统传输效率十分重要。我们在双层的多氯联苯板上制作了赛亚扬式多氯联苯板,并评估了它在不同环境中的表现。结果显示,赛亚扬在演示级SISSIC2号的节流系统取得了5的节流和SIS。比。比。在SIC-SAL2号系统上显示。