TY - JOUR
T1 - Fast finite-time consensus protocol for high-order nonlinear multi-agent systems based on event-triggered communication scheme
AU - Zhao, Junsheng
AU - Zhao, Haina
AU - Song, Ying
AU - Sun, Zong Yao
AU - Yu, Dengxiu
N1 - Publisher Copyright:
© 2025 Elsevier Inc.
PY - 2026/1/1
Y1 - 2026/1/1
N2 - This paper proposes an adaptive fast finite-time tracking consensus protocol for high-order nonlinear multi-agent systems. To overcome the limitation of finite-time stability, where the convergence speed slows down when the initial state is far from the origin, the fast finite-time stability theory is incorporated into the multi-agent systems to ensure rapid convergence of the tracking error. Furthermore, the power integrator technique is integrated into the backstepping framework to address the inherent singularity issues in high-order systems. Meanwhile, neural networks are used as online approximators to model unknown nonlinear functions, with the tanh(⋅) function adopted to mitigate the impact of approximation errors effectively. The developed dynamic event-triggered controller can reduce the frequency of control updates, effectively saving communication resources. Finally, two simulation examples demonstrate the effectiveness of the proposed strategy.
AB - This paper proposes an adaptive fast finite-time tracking consensus protocol for high-order nonlinear multi-agent systems. To overcome the limitation of finite-time stability, where the convergence speed slows down when the initial state is far from the origin, the fast finite-time stability theory is incorporated into the multi-agent systems to ensure rapid convergence of the tracking error. Furthermore, the power integrator technique is integrated into the backstepping framework to address the inherent singularity issues in high-order systems. Meanwhile, neural networks are used as online approximators to model unknown nonlinear functions, with the tanh(⋅) function adopted to mitigate the impact of approximation errors effectively. The developed dynamic event-triggered controller can reduce the frequency of control updates, effectively saving communication resources. Finally, two simulation examples demonstrate the effectiveness of the proposed strategy.
KW - Event-triggered mechanism
KW - Fast finite-time control
KW - High-order nonlinear multi-agent systems
KW - Integral-type Lyapunov functions
KW - Tracking consensus protocol
UR - https://www.scopus.com/pages/publications/105010945264
U2 - 10.1016/j.amc.2025.129631
DO - 10.1016/j.amc.2025.129631
M3 - 文章
AN - SCOPUS:105010945264
SN - 0096-3003
VL - 508
JO - Applied Mathematics and Computation
JF - Applied Mathematics and Computation
M1 - 129631
ER -