Blind Goal-Oriented Massive Access for Future Wireless Networks

05/14/2022
by   Sajad Daei, et al.
0

Emerging communication networks are envisioned to support massive wireless connectivity of heterogeneous devices with sporadic traffic and diverse requirements in terms of latency, reliability, and bandwidth. Providing multiple access to an increasing number of uncoordinated users and sharing the limited resources become essential in this context. In this work, we revisit the random access (RA) problem and exploit the continuous angular group sparsity feature of wireless channels to propose a novel RA strategy that provides low latency, high reliability, and massive access with limited bandwidth resources in an all-in-one package. To this end, we first design a reconstruction-free goal-oriented optimization problem, which only preserves the angular information required to identify the active devices. To solve this, we propose an alternating direction method of multipliers (ADMM) and derive closed-form expressions for each ADMM step. Then, we design a clustering algorithm that assigns the users in specific groups from which we can identify active stationary devices by their angles. For mobile devices, we propose an alternating minimization algorithm to recover their data and their channel gains simultaneously, which allows us to identify active mobile users. Simulation results show significant performance gains in terms of active user detection and false alarm probabilities as compared to state-of-the-art RA schemes, even with limited number of preambles. Moreover, unlike prior work, the performance of the proposed blind goal-oriented massive access does not depend on the number of devices.

READ FULL TEXT
research
10/28/2019

Massive Access for Future Wireless Communication Systems

Multiple access technology plays an important role in wireless communica...
research
11/09/2020

Dynamic Power Control for Time-Critical Networking with Heterogeneous Traffic

Future wireless networks will be characterized by heterogeneous traffic ...
research
08/21/2021

Active User Detection and Channel Estimation for Spatial-based Random Access in Crowded Massive MIMO Systems via Blind Super-resolution

This work presents a novel framework for random access in crowded scenar...
research
02/21/2019

Hard Latency-Constraints for High-Throughput Random Access: SICQTA

Enabling closed control loops via wireless communication has attracted a...
research
03/17/2021

Massive Uncoordinated Access With Random User Activity

We extend the seminal work by Polyanskiy (2017) on massive uncoordinated...
research
12/25/2020

LSTM-Aided Hybrid Random Access Scheme for 6G Heterogeneous MTC Networks

An LSTM-aided hybrid random access scheme (LSTMH-RA) is proposed to supp...

Please sign up or login with your details

Forgot password? Click here to reset