Sisyphus: Redefining Low Power for LoRa Receiver
Han Wang, Yihang Song, Qianhe Meng, Zetao Gao, Chong Zhang, Li Lu
摘要
Legacy LoRa receiver adopts a superheterodyne architecture with a runtime power consumption of up to 100mW, resulting in its low-power promise can only be delivered in low duty-cycle mode. This paper presents Sisyphus as an ultra-low-power LoRa receiver, ensuring around-the-clock LoRa availability while extending battery life significantly. To achieve this, we propose a novel receiver design for passive coherent demodulation of LoRa. In this design, we creatively couple LoRa's down-conversion with de-chirping (dc 2 ), leveraging the processing gain brought by chirp spread spectrum (CSS) modulation to boost communication range without the need for additional power supply. Moreover, we exploit the cyclical time-frequency feature intrinsic to LoRa for demodulation, and a low-power analog-digital signal processing circuit with negligible power is devised to replace the existing power-intensive sampling and costly digital computation. We prototype Sisyphus for proof-of-concept, and comprehensive experimental results demonstrate that Sisyphus can achieve significant power savings compared to legacy LoRa receiver while retaining the anti-interference ability of legacy LoRa. We envision that the design of Sisyphus can unlock the potential for broader applications of LoRa.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了最后一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
它引用的顶会 Paper19
- LMAC: efficient carrier-sense multiple access for LoRaAmalinda Gamage, Jansen Christian Liando, Chaojie Gu, Rui Tan 等MobiCom 2020 · 被引用 123 次
- Long-range ambient LoRa backscatter with parallel decodingJinyan Jiang, Zhenqiang Xu, Fan Dang, Jiliang WangMobiCom 2021 · 被引用 97 次
- Saiyan: Design and Implementation of a Low-power Demodulator for LoRa Backscatter SystemsXiuzhen Guo, Longfei Shangguan, Yuan He, Nan Jing 等NSDI 2022 · 被引用 93 次
- Sensor-free Soil Moisture Sensing Using LoRa SignalsZhaoxin Chang, Fusang Zhang, Jie Xiong, Junqi Ma 等UbiComp 2022 · 被引用 76 次
- PCube: scaling LoRa concurrent transmissions with reception diversitiesXianjin Xia, Ningning Hou, Yuanqing Zheng, Tao GuMobiCom 2021 · 被引用 63 次
相关 Paper
- μMote: Enabling Passive Chirp De-spreading and μW-level Long-Range Downlink for Backscatter DevicesYihang Song, Li Lu, Jiliang Wang, Chong Zhang 等NSDI 2023 · 被引用 24 次
- LoRaTrimmer: Optimal Energy Condensation with Chirp Trimming for LoRa Weak Signal DecodingJialuo Du, Yunhao Liu, Yidong Ren, Li Liu 等MobiCom 2024 · 被引用 10 次
- LiteNap: Downclocking LoRa ReceptionXianjin Xia, Yuanqing Zheng, Tao GuINFOCOM 2020 · 被引用 21 次
- OptSamp: Optimizing the Sampling Rate for LoRa Energy Efficiency EnhancementShuai Tong, Qian Chen, Jiliang WangMobiCom 2025 · 被引用 1 次
- Making LoRa Sensing Coexist with CommunicationBinbin Xie, Minhao Cui, Deepak Ganesan, Jie XiongMobiCom 2025 · 被引用 3 次
