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Outage Analysis of Backscatter-Based Ambient IoT Device Classes with Energy Buffering

Signal Processing 2026-07-18 v1

Abstract

This paper presents an analytical framework for evaluating the outage probability of ambient Internet of Things (A-IoT) device classes communicating directly with a base station. Device 1 is a passive backscatter device with minimal storage, while Device 2 is equipped with a supercapacitor that enables energy buffering and optional amplification. The proposed framework jointly accounts for carrier-detection sensitivity, energy harvesting constraints, supercapacitor energy dynamics, and an energy-aware amplification policy, while the energy evolution of buffered devices is modeled using a discrete-time Markov chain (DTMC). The results highlight the interplay between energy availability and communication reliability. Device 2 achieves superior performance in energy-rich regimes due to buffering and amplification gains, whereas Device 1 becomes more robust in energy-constrained regimes, particularly at larger distances or under high payload requirements. These findings highlight that the optimal device choice depends critically on the operating regime and application demands.

Keywords

Cite

@article{arxiv.2607.16919,
  title  = {Outage Analysis of Backscatter-Based Ambient IoT Device Classes with Energy Buffering},
  author = {Azzam Al-nahari and Riku Jäntti and Yi Zhou and Deepak Mishra and Masoud Kaveh and Abhishek Mondal},
  journal= {arXiv preprint arXiv:2607.16919},
  year   = {2026}
}

Comments

Accepted for presentation at IEEE PIMRC 2026