DOI QR코드

DOI QR Code

열하중을 받는 패널플러터의 궤환 선형화에 의한 비선형제어

Nonlinear Control by Feedback Linearization for Panel Flutter at Elevated Temperature

  • 발행 : 2006.09.30

초록

압전재료를 사용한 복합재료 패널의 플러터 억제 방법으로서 비선형 모델을 기반으로 하는 비선형 제어기법 중의 하나인 궤환 선형화에 의한 제어방법을 소개하였다. 기존의 패널 플러터 제어기에 대한 대부분의 연구들은 선형모델을 기반으로 설계된 선형2차제어기(LQR: Linear Quadratic Regulator)였음에 비해, 본 연구에서 제안한 비선형제어기는 시스템이 갖고 있는 비선형 특성들을 모두 고려해서 설계하였다. 압전 작동기로서는 PZT를 사용하였다. 가상변위의 원리와 4절점 사각형 요소를 사용하여 이산화된 비선형 운동방정식을 유도하였으며 제어기 설계를 위해 모달 변환을 통해 상태공간에서의 비선형 연계-모달 방정식으로 변환하였다. 본 논문에서 제안한 비선형 제어기에 의한 제어 결과와 선형모델을 기반으로 한 LQR 제어결과를 Newmark 수치적분법을 통해 시간영역에서 비교하였다.

In this study, a nonlinear control by feedback linearization method, one of nonlinear control schemes based on the nonlinear model, is proposed to suppress the flutter of a supersonic composite panel using piezoelectric materials. Most of the previous panel flutter controllers are the LQR(Linear Quadratic Regulator) which is based on the linear model. A nonlinear feedback linearizing controller proposed in this study considers the nonlinear characteristics of the system model. We use the actuator implemented by piezoceramic PZT. Using the principle of virtual displacements and a finite element discretization with the conforming four-node rectangular element, we first derive the discretized dynamic equations of motion, which are transformed into a nonlinear coupled-modal equations of motion of state space form. The effectiveness of the proposed method is also compared with the LQR based on the linear model through numerical simulations in the time domain using the Newmark method.

키워드

참고문헌

  1. Mei, C., Abedl-Motagaly, K. and Chen, K, 'Review of Nonlinear Panel Flutter at Supersonic and Hypersonic Speeds', Applied Mechanics Reviews, Vol. 52, No. 10, 1999, pp. 321-332 https://doi.org/10.1115/1.3098919
  2. Zhou, R. C., Xue, D. Y., and Mei, C., 'A Finite Elemen Time Domain-Modal Formulation for Nonlinear Flutter of Composite Panels', AIAA Journal, Vol.32, No. 10, 1994, pp. 2044-2052 https://doi.org/10.2514/3.12250
  3. Oh, I.K., Han J. H. and Lee I., 2001, 'Thermopiezoeleastic snapping of piezolaminated plates using layerwise nonlinear finite elements', AIAA Journal, Vol 39, pp. 1188-1198 https://doi.org/10.2514/2.1434
  4. 구교남, '구조감쇠를 고려한 등방성 평판 및 복합적층판의 패널 플러터 해석', 한국항공우주학회지, 제 30권, 3호, pp. 115-122, 2002
  5. Scott, K. C., and Weisshaar, T. A., 'Controlling Panel Flutter Using Adaptive Materials', Journal of aircraft, Vol. 31, No.1, 1994, pp. 213-222 https://doi.org/10.2514/3.46476
  6. Zhou, K. C., Lai, Z., Xue, D. Y, Hauang, J.-K., and Mei, C., 'Suppression of Nonlinear Panel Flutter with Piezoelectric actuators Using Finite Element', AIAA Journal, Vol. 33, No.6, 1995, pp. 1098-1105 https://doi.org/10.2514/3.12530
  7. Suleman, R, and Goncalves, MA., 'Optimization issues in applications of piezoelectric actuators in panel flutter controls, Proceedings of SPIE-Intl Soc for Optical Eng, Vol. 3049, 1997, pp. 335-347
  8. Moon, S. H., and Kim, S. J., 'Active and Passive Suppressions of Nonlinear Panel Flutter Using Finite Element Method', AIAA Journal, Vol. 11, No. 11, 2001, pp. 2042-2050
  9. Moon, S. H., and Kim, S. J., 'Suppression of nonlinear composite panel flutter with active,passive hybrid piezoelectric networks using finite element method' Composite Structures, Vol. 59, No.4, 2003, pp 525-533 https://doi.org/10.1016/S0263-8223(02)00234-9
  10. Spong M. W. Spong and M. Vidyasagar, Robot Dynamics and Control, John Wiley & Sons, Inc., 1989.
  11. Chwa, D. and Choi, J.Y., 'New Parametric Affine Modeling and Control for Skid-to-Turn Missiles,' IEEE Trans. on Control Systems Technology, Vol. 9, No.2, pp. 335-347, Mar. 2001 https://doi.org/10.1109/87.911385
  12. Dawson D.M. Dawson, J. Hu, and T. C. Burg, Nonlinear Control of Electric Machinery, Marcel Dekker, 1998
  13. Bathe, K. J., Finite Element Procedures, Prentice Hall International, 1996
  14. Ho. M. T., Chen, R, and Chu, L, C., 'Wind-tunnel testing of panel flutter control using piezoelectric actuation and iterative gain tuning', SPIE Conf. Smart Struct and Matls, 1997, pp. 564-577