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Quantization-Mitigation-Based Trajectory Control for Euler-Lagrange Systems with Unknown Actuator Dynamics

delete2020-07-17
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OA
AI
Y
Yi Lyu
Q
Qiyu Yang *
P
Patrik Kolaric
DOI:10.3390/s20143974delete
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Abstract

Abstract

En 中文
In this paper, we investigate a trajectory control problem for Euler-Lagrange systems with unknown quantization on the actuator channel. To address such a challenge, we proposed a quantization-mitigation-based trajectory control method, wherein adaptive control is employed to handle the time-varying input coefficients. We allow the quantized signal to pass through unknown actuator dynamics, which results in the coupled actuator dynamics for Euler-Lagrange systems. It is seen that our method is capable of driving the states of networked Euler-Lagrange systems to the desired ones via Lyapunov's direct method. In addition, the effectiveness and advantage of our method are validated with a comparison to the existing controller.
Keywords:
networked network
Euler-Lagrange systems
quantization mitigation
trajectory control
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Journal

Sensors cover
Sensors
IF:
3.5
Papers:
7.1W
Citations:
20.9W

Organization

G
guangdong university of technology
Scholars:
2.9W
Papers: 2.0W
Citations: 36