Grant-Free Power Allocation for Ultra-Dense IoT: A Mean Field Perspective

2022 20th Mediterranean Communication and Computer Networking Conference (MedComNet)(2022)

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摘要
Grant-free access, in which each Internet-of-Things (IoT) device delivers its packets through a randomly selected resource without spending time on handshaking procedures, is a promising solution for supporting the massive connectivity required for IoT systems. In this paper, we explore grant-free access with multi-packet reception capabilities, with an emphasis on ultra-low-end IoT applications with small data sizes and energy usage constraints. We propose a power allocation scheme that integrates the IoT device’s traffic and energy budget by using stochastic geometry framework and mean-field approximation to model and analyze mutual interference among active IoT devices. We also derive a Markovian model to capture and track the IoT device’s queue length, and derive the successful transmission probability at steady state. Simulation results illustrate the optimal power allocation strategy and show the effectiveness of the proposed approach.
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关键词
grant-free access,Internet-of-Things device,randomly selected resource,handshaking procedures,massive connectivity,IoT systems,multipacket reception capabilities,ultra-low-end IoT applications,energy usage constraints,power allocation scheme,mean-field approximation,active IoT devices,optimal power allocation strategy,grant-free power allocation,ultra-dense IoT,mean field perspective,IoT device traffic,energy budget,stochastic geometry framework,mutual interference,Markovian model,IoT device queue length,successful transmission probability
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