Physical-Layer CTC From LoRa to Wi-Fi With IEEE 802.11ax

Физический уровень CTC от LoRa к Wi‑Fi с использованием IEEE 802.11ax
Demin Gao, Xin Lv, Wenchao Jiang, Ruofeng Liu, Weizheng Wang, Zhaoyang Han, YunHuai Liu, Tian He
2026-01-05

IEEE 802.11axLPWANLoRa-to-Wi-Fi communicationPhysical-layer CTCUniversal Software Radio Peripheral
Wi-Fi is the de facto standard for providing wireless access to the Internet using the 2.4GHz ISM (Industrial Scientific Medical) band. LoRa (Long Range) is specially designed for Low-Power, Wide-Area Networks (LPWANs) and has a broad range of applications in Internet of Things. Tens of billions of mobile devices (e.g., smartphones) are manufactured with limited types of wireless radio, making it challenging to access the data in the heterogeneous IoT devices. To address this challenge, we propose a method that enables LoRa devices to establish connections and engage in communication with Wi-Fi networks. A key observation of this study is that when a LoRa frame collides with an ongoing Wi-Fi transmission, the Wi-Fi receiver captures and retains the LoRa data. By analyzing the decoded Wi-Fi payload, we can retrieve the LoRa data, and this method remains fully compatible with existing commodity Wi-Fi hardware. Moreover, evaluations with Universal Software Radio Peripheral (USRP) and commodity devices demonstrate reliable wireless communication from LoRa to Wi-Fi networks with a high reliability in frame reception and low frame error rates across various indoor and outdoor environments.
1
A physical-layer cross-technology communication method enables LoRa devices to communicate with IEEE 802.11ax Wi-Fi networks.
2
Analyzing the decoded Wi-Fi payload allows recovery of LoRa information using existing commodity Wi-Fi hardware without modifications.
3
USRP and commodity-device evaluations demonstrate reliable LoRa-to-Wi-Fi communication with high frame-reception reliability and low frame-error rates indoors and outdoors.
4
When a LoRa frame collides with an ongoing Wi-Fi transmission, the Wi-Fi receiver captures and retains the LoRa data.

LoRa-to-Wi-Fi wireless communication in which LoRa frames collide with ongoing IEEE 802.11ax/Wi-Fi transmissions

Retrieval of LoRa data by Wi-Fi receivers through decoding collided Wi-Fi payloads, including communication reliability and frame error rates

Publication Details
Publication Date
2026-01-05
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Authors
Demin Gao
Xin Lv
Wenchao Jiang
Ruofeng Liu
Weizheng Wang
Zhaoyang Han
YunHuai Liu
Tian He
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