PolarTracker: Attitude-aware Channel Access for Floating Low Power Wide Area Networks
Yuting Wang, Xiaolong Zheng, Liang Liu, Huadong Ma
摘要
Low Power Wide Area Networks (LPWAN) such as Long Range (LoRa) show great potential in emerging aquatic IoT applications. However, our deployment experience shows that the floating LPWAN suffer significant performance degradation, compared to the static terrestrial deployments. Our measurement results reveal the reason behind this is due to the polarization and directivity of the antenna. The dynamic attitude of a floating node incurs varying signal strength losses, which is ignored by the attitude-oblivious link model adopted in most of the existing methods. When accessing the channel at a misaligned attitude, packet errors can happen. In this paper, we propose an attitude-aware link model that explicitly quantifies the impact of node attitude on link quality. Based on the new model, we propose PolarTracker, a novel channel access method for floating LPWAN. PolarTracker tracks the node attitude alignment state and schedules the transmissions into the aligned periods with better link quality. We implement a prototype of PolarTracker on commercial LoRa platforms and extensively evaluate its performance in various real-world environments. The experimental results show that PolarTracker can efficiently improve the packet reception ratio by 48.8%, compared with ALOHA in LoRaWAN.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper9
- LMAC: efficient carrier-sense multiple access for LoRaAmalinda Gamage, Jansen Christian Liando, Chaojie Gu, Rui Tan 等MobiCom 2020 · 被引用 123 次
- Enabling Concurrency for Non-orthogonal LoRa ChannelsFu Yu, Xiaolong Zheng, Liang Liu, Huadong MaMobiCom 2023 · 被引用 28 次
- Demeter: Reliable Cross-soil LPWAN with Low-cost Signal Polarization AlignmentYidong Ren, Wei Sun, Jialuo Du, Huaili Zeng 等MobiCom 2024 · 被引用 27 次
- LoRadar: An Efficient LoRa Channel Occupancy Acquirer based on Cross-channel ScanningFu Yu, Xiaolong Zheng, Liang Liu, Huadong MaINFOCOM 2022 · 被引用 26 次
- PolarScheduler: Dynamic Transmission Control for Floating LoRa NetworksRuinan Li, Xiaolong Zheng, Yuting Wang, Liang Liu 等INFOCOM 2022 · 被引用 20 次
它引用的顶会 Paper5
- LMAC: efficient carrier-sense multiple access for LoRaAmalinda Gamage, Jansen Christian Liando, Chaojie Gu, Rui Tan 等MobiCom 2020 · 被引用 123 次
- CoLoRa: Enabling Multi-Packet Reception in LoRaShuai Tong, Zhenqiang Xu, Jiliang WangINFOCOM 2020 · 被引用 113 次
- LiteNap: Downclocking LoRa ReceptionXianjin Xia, Yuanqing Zheng, Tao GuINFOCOM 2020 · 被引用 21 次
- TinyLink 2.0: integrating device, cloud, and client development for IoT applicationsGaoyang Guan, Borui Li, Yi Gao, Yuxuan Zhang 等MobiCom 2020 · 被引用 17 次
- Bound-based Network Tomography for Inferring Interesting Link MetricsHuikang Li, Yi Gao, Wei Dong, Chun ChenINFOCOM 2020 · 被引用 7 次
相关 Paper
- Combating link dynamics for reliable lora connection in urban settingsShuai Tong, Zilin Shen, Yunhao Liu, Jiliang WangMobiCom 2021 · 被引用 59 次
- DeepLoRa: Learning Accurate Path Loss Model for Long Distance Links in LPWANLi Liu, Yuguang Yao, Zhichao Cao, Mi ZhangINFOCOM 2021 · 被引用 67 次
- MC-LoRa: Multi-node Concurrent Localization for LoRaWAN Indoors and OutdoorsHan Hao, Wei Xi, Andreas Kuster, Amalinda Gamage 等UbiComp 2025 · 被引用 4 次
- Modeling Communication Reliability in LoRa Networks with Device-level AccuracyVerónica Toro-Betancur, Gopika Premsankar, Mariusz Slabicki, Mario Di FrancescoINFOCOM 2021 · 被引用 28 次
- DyLoRa: Towards Energy Efficient Dynamic LoRa Transmission ControlYinghui Li, Jing Yang, Jiliang WangINFOCOM 2020 · 被引用 93 次
