B2LoRa: Boosting LoRa Transmission for Satellite-IoT Systems with Blind Coherent Combining
Yimin Zhao, Weibo Wang, Xiong Wang, Linghe Kong, Jiadi Yu, Yifei Zhu, Shiyuan Li, Chong He, Guihai Chen
Abstract
With the rapid growth of Low Earth Orbit (LEO) satellite networks, satellite-IoT systems using the LoRa technique have been increasingly deployed to provide widespread Internet services to low-power and low-cost ground devices. However, the long transmission distance and adverse environments from IoT satellites to ground devices pose a huge challenge to link reliability, as evidenced by the measurement results based on our real-world setup. In this paper, we propose a blind coherent combining design named B 2 LoRa to boost LoRa transmission performance. The intuition behind B 2 LoRa is to leverage the repeated broadcasting mechanism inherent in satellite-IoT systems to achieve coherent combining under the low-power and low-cost constraints, where each re-transmission at different times is regarded as the same packet transmitted from different antenna elements within an antenna array. Then, the problem is translated into aligning these packets at a fine granularity despite the time, frequency, and phase offsets between packets in the case of frequent packet loss. To overcome this challenge, we present three designs -joint packet sniffing, frequency shift alignment, and phase drift mitigation to deal with ultra-low SNRs and Doppler shifts featured in satellite-IoT systems, respectively. Finally, experiment results based on our real-world deployments demonstrate the high efficiency of B 2 LoRa.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 3f0aac63-66c8-4819-b4f5-e63a9c46290dBuilds on15
- Orbital Edge Computing: Nanosatellite Constellations as a New Class of Computer SystemBradley Denby, Brandon LuciaASPLOS 2020 · 272 citations
- L2D2: low latency distributed downlink for LEO satellitesDeepak Vasisht, Jayanth Shenoy, Ranveer ChandraSIGCOMM 2021 · 146 citations
- Concurrent interference cancellation: decoding multi-packet collisions in LoRaMuhammad Osama Shahid, Millan Philipose, Krishna Chintalapudi, Suman Banerjee et al.SIGCOMM 2021 · 93 citations
- Pyramid: Real-Time LoRa Collision Decoding with Peak TrackingZhenqiang Xu, Pengjin Xie, Jiliang WangINFOCOM 2021 · 86 citations
- PCube: scaling LoRa concurrent transmissions with reception diversitiesXianjin Xia, Ningning Hou, Yuanqing Zheng, Tao GuMobiCom 2021 · 63 citations
Related papers
- Long-range ambient LoRa backscatter with parallel decodingJinyan Jiang, Zhenqiang Xu, Fan Dang, Jiliang WangMobiCom 2021 · 97 citations
- Don't Miss Weak Packets: Boosting LoRa Reception with Antenna DiversitiesNingning Hou, Xianjin Xia, Yuanqing ZhengINFOCOM 2022 · 19 citations
- XCopy: Boosting Weak Links for Reliable LoRa CommunicationXianjin Xia, Qianwu Chen, Ningning Hou, Yuanqing Zheng et al.MobiCom 2023 · 44 citations
- De-spreading over the air: long-range CTC for diverse receivers with LoRaShuai Tong, Yangliang He, Yunhao Liu, Jiliang WangMobiCom 2022 · 32 citations
- SateRIoT: High-performance Ground-Space Networking for Rural IoTYidong Ren, Amalinda Gamage, Li Liu, Mo Li et al.MobiCom 2024 · 23 citations
