Recent years have witnessed the proliferation of Low-power Wide Area Networks (LPWANs) in the unlicensed band for various Internet-of-Things (IoT) applications. Due to the ultra-low transmission power and long transmission duration, LPWAN devices inevitably suffer from high power Cross Technology Interference (CTI), such as interference from Wi-Fi, coexisting in the same spectrum. To alleviate this issue, this paper introduces the Partial Symbol Recovery (PSR) scheme for improving the CTI resilience of LPWAN. We verify our idea on LoRa, a widely adopted LPWAN technique, as a proof of concept. At the PHY layer, although CTI has much higher power, its duration is relatively shorter compared with LoRa symbols, leaving part of a LoRa symbol uncorrupted. Moreover, due to its high redundancy, LoRa chips within a symbol are highly correlated. This opens the possibility of detecting a LoRa symbol with only part of the chips. By examining the unique frequency patterns in LoRa symbols with time-frequency analysis, our design effectively detects the clean LoRa chips that are free of CTI. This enables PSR to only rely on clean LoRa chips for successfully recovering from communication failures. We evaluate our PSR design with real-world testbeds, including SX1280 LoRa chips and USRP B210, under Wi-Fi interference in various scenarios. Extensive experiments demonstrate that our design offers reliable packet recovery performance, successfully boosting the LoRa packet reception ratio from 45.2% to 82.2% with a performance gain of 1.8 times.
翻译:近些年来,低功率广域网(LPWANs)在各种互联网传输应用的无证频带中激增,用于各种互联网传输(IoT)应用。由于超低传输功率和长传输时间,LPWAN装置不可避免地会受到高功率跨技术干涉(CTI),例如来自Wi-Fi的干扰,在同一频谱中共存。为缓解这一问题,本文件介绍了提高LPWAN CTI复原力的“部分性能恢复(PSR)”计划。我们核查了我们在LoRa上的想法,这是广泛采用的一种LPWAN技术,作为概念的证明。在PHY层,虽然CTI的功率要高得多,但与LoRa符号相比,其持续时间相对短一些。此外,由于它的高度冗余性,LoRa 芯片在同一个频谱中存在高度关联。这开启了探测LoRa符号(PSR)符号仅含有部分芯片的“UPSR”的可能性。通过时间频率分析,我们的设计有效地探测了LORA的可靠频率模式,我们的设计只能从CRA的清晰的芯片片片片片片片片片片片段,从CRBROdereabrodereal 中,我们通过SD Rest 的缩的缩的运行的运行的运行的运行来进行测试。