Proceedings of the Korean Society for Noise and Vibration Engineering Conference (한국소음진동공학회:학술대회논문집)
- 2003.11a
- /
- Pages.660-664
- /
- 2003
- /
- 1598-2548(pISSN)
Design of an Active Damping Layer Using Topology Optimization
위상 최적화를 이용한 능동 감쇠층의 설계
Abstract
The optimal thickness distribution of an active damping layer is sought so that it satisfies a certain constraint on the dynamic performance of a system minimizing control efforts. To obtain a topologically optimized configuration, which includes size and shape optimization, thickness of the active damping layer is interpolated using linear functions. With the control energy as the objective function to be minimized, the state error energy is introduced as the dynamic performance criterion for the system and used lot a constraint. The optimal control gains are evaluated from LQR simultaneously as the optimization of the layer position proceeds. From numerical simulation, the topologically optimized distribution of the active damping layer shows the same dynamic performance and cost as the Idly covered counterpart, which is optimized only in terms of control gains, with less amount of the layer.
Keywords
- Active Damping Layer;
- Topology Optimization;
- Linear Quadratic Regulator;
- Lyapunov Equation;
- State Error Energy;
- Control Energy