A Predictive Interference Management Algorithm for URLLC in Beyond 5G Networks
September 21, 2020 Β· Declared Dead Β· π IEEE Communications Letters
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Authors
Nurul Huda Mahmood, Onel Alcaraz Lopez, Hirley Alves, Matti Latva-aho
arXiv ID
2009.09953
Category
cs.IT: Information Theory
Cross-listed
cs.NI
Citations
41
Venue
IEEE Communications Letters
Last Checked
6 months ago
Abstract
Interference mitigation is a major design challenge in wireless systems,especially in the context of ultra-reliable low-latency communication (URLLC) services. Conventional average-based interference management schemes are not suitable for URLLC as they do not accurately capture the tail information of the interference distribution. This letter proposes a novel interference prediction algorithm that considers the entire interference distribution instead of only the mean. The key idea is to model the interference variation as a discrete state space discrete-time Markov chain. The state transition probability matrix is then used to estimate the state evolution in time, and allocate radio resources accordingly. The proposed scheme is found to meet the target reliability requirements in a low-latency single-shot transmission system considering realistic system assumptions, while requiring only ~25% more resources than the optimum case with perfect interference knowledge.
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