TY - GEN
T1 - Comparative Performance Evaluation of 5G-TSN Applications in Indoor Factory Environments
AU - Zanbouri, Kouros
AU - Noor-A-Rahim, Md
AU - Pesch, Dirk
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025/1/22
Y1 - 2025/1/22
N2 - While Time-Sensitive Networking (TSN) enhances the determinism, real-time capabilities, and reliability of Eth-ernet, future industrial networks will not only use wired but increasingly wireless communications. Wireless networks enable mobility, have lower costs, and are easier to deploy. However, for many industrial applications, wired connections remain the preferred choice, particularly those requiring strict latency bounds and ultra-reliable data flows, such as for controlling machinery or managing power electronics. The emergence of SG, with its Ultra-Reliable Low-Latency Communication (URLLC) promises to enable high data rates, ultra-low latency, and minimal jitter, presenting a new opportunity for wireless in-dustrial networks. However, as 5G networks include wired links from the base station towards the core network, a combination of 5G with time-sensitive networking is needed to guarantee stringent QoS requirements. In this paper, we evaluate SG-TSN performance for different indoor factory applications and environments through simulations. Our findings demonstrate that 5G- TSN can address latency-sensitive scenarios in indoor factory environments.
AB - While Time-Sensitive Networking (TSN) enhances the determinism, real-time capabilities, and reliability of Eth-ernet, future industrial networks will not only use wired but increasingly wireless communications. Wireless networks enable mobility, have lower costs, and are easier to deploy. However, for many industrial applications, wired connections remain the preferred choice, particularly those requiring strict latency bounds and ultra-reliable data flows, such as for controlling machinery or managing power electronics. The emergence of SG, with its Ultra-Reliable Low-Latency Communication (URLLC) promises to enable high data rates, ultra-low latency, and minimal jitter, presenting a new opportunity for wireless in-dustrial networks. However, as 5G networks include wired links from the base station towards the core network, a combination of 5G with time-sensitive networking is needed to guarantee stringent QoS requirements. In this paper, we evaluate SG-TSN performance for different indoor factory applications and environments through simulations. Our findings demonstrate that 5G- TSN can address latency-sensitive scenarios in indoor factory environments.
KW - 5G
KW - Indoor Factory
KW - Industrial Networks
KW - TSN
KW - Wireless TSN
UR - https://www.scopus.com/pages/publications/105006462557
U2 - 10.1109/WCNC61545.2025.10978126
DO - 10.1109/WCNC61545.2025.10978126
M3 - Conference proceeding
AN - SCOPUS:105006462557
T3 - IEEE Wireless Communications and Networking Conference, WCNC
BT - 2025 IEEE Wireless Communications and Networking Conference (WCNC)
A2 - Ieee, null
T2 - 2025 IEEE Wireless Communications and Networking Conference, WCNC 2025
Y2 - 24 March 2025 through 27 March 2025
ER -