Quantum Learning Based Nonrandom Superimposed Coding for Secure Wireless Access in 5G URLLC

01/24/2021
by   Dongyang Xu, et al.
0

Secure wireless access in ultra-reliable low-latency communications (URLLC), which is a critical aspect of 5G security, has become increasingly important due to its potential support of grant-free configuration. In grant-free URLLC, precise allocation of different pilot resources to different users that share the same time-frequency resource is essential for the next generation NodeB (gNB) to exactly identify those users under access collision and to maintain precise channel estimation required for reliable data transmission. However, this process easily suffers from attacks on pilots. We in this paper propose a quantum learning based nonrandom superimposed coding method to encode and decode pilots on multidimensional resources, such that the uncertainty of attacks can be learned quickly and eliminated precisely. Particularly, multiuser pilots for uplink access are encoded as distinguishable subcarrier activation patterns (SAPs) and gNB decodes pilots of interest from observed SAPs, a superposition of SAPs from access users, by joint design of attack mode detection and user activity detection though a quantum learning network (QLN). We found that the uncertainty lies in the identification process of codeword digits from the attacker, which can be always modelled as a black-box model, resolved by a quantum learning algorithm and quantum circuit. Novel analytical closed-form expressions of failure probability are derived to characterize the reliability of this URLLC system with short packet transmission. Simulations how that our method can bring ultra-high reliability and low latency despite attacks on pilots.

READ FULL TEXT

page 4

page 7

page 8

page 9

page 10

page 13

page 14

page 15

research
09/04/2019

Fundamental Tradeoffs in Uplink Grant-Free Multiple Access with Protected CSI

In the envisioned 5G, uplink grant-free multiple access will become the ...
research
04/11/2019

Uplink Grant-Free Random Access Solutions for URLLC services in 5G New Radio

The newly introduced ultra-reliable low latency communication service cl...
research
02/26/2021

Adaptive Transmission Parameters Selection Algorithm for URLLC Traffic in Uplink

Ultra-Reliable Low-Latency Communications (URLLC) is a novel feature of ...
research
03/07/2023

Trade Reliability for Security: Leakage-Failure Probability Minimization for Machine-Type Communications in URLLC

How to provide information security while fulfilling ultra reliability a...
research
01/16/2018

Reed-Muller Sequences for 5G Grant-free Massive Access

We propose to use second order Reed-Muller (RM) sequence for user identi...
research
07/31/2019

Wireless Networked Control Systems with Coding-Free Data Transmission for Industrial IoT

Wireless networked control systems for the Industrial Internet of Things...
research
07/09/2020

How URLLC can Benefit from NOMA-based Retransmissions

Among the new types of connectivity unleashed by the emerging 5G wireles...

Please sign up or login with your details

Forgot password? Click here to reset