S-MAC: Achieving High Scalability via Adaptive Scheduling in LPWAN
Zhuqing Xu, Junzhou Luo, Zhimeng Yin, Tian He, Fang Dong
Abstract
Low Power Wide Area Networks (LPWAN) are an emerging well-adopted platform to connect the Internet-of-Things. With the growing demands for LPWAN in IoT, the number of supported end-devices cannot meet the IoT deployment requirements. The core problem is the transmission collisions when large-scale end-devices transmit concurrently. The previous research mainly includes transmission scheduling strategies, collision detection and avoidance mechanism. The use of these existing approaches to address the above limitations in LPWAN may introduce excessive communication overhead, end-devices cost, power consumption, or hardware complexity. In this paper, we present S-MAC, an adaptive MAC-layer scheduler for LPWAN. The key innovation of S-MAC is to take advantage of the periodic transmission characteristics of LPWAN applications and also the collision behaviour features of LoRa PHY-layer to enhance the scalability. Technically, S-MAC is capable of adaptively perceiving clock drift of end-devices, adaptively identifying the join and exit of end-devices, and adaptively performing the scheduling strategy dynamically. Meanwhile, it is compatible with native LoRaWAN, and adaptable to existing Class A, B and C devices. Extensive implementations and evaluations on commodity devices show that S-MAC increases the number of connected end-devices by 4.06× and improves network throughput by 4.01× with PRR requirement of > 95%.
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Cited by top-tier papers3
- PCube: scaling LoRa concurrent transmissions with reception diversitiesXianjin Xia, Ningning Hou, Yuanqing Zheng, Tao GuMobiCom 2021 · 63 citations
- One Shot for All: Quick and Accurate Data Aggregation for LPWANsNingning Hou, Xianjin Xia, Yifeng Wang, Yuanqing ZhengINFOCOM 2023 · 14 citations
- CoRa: A Collision-Resistant LoRa Symbol Detector of Low ComplexityJosé Álamos, Thomas C. Schmidt, Matthias WählischINFOCOM 2025 · 3 citations
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