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Simulation Analysis of Nonlinear Characteristics in Complex System

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Book cover Proceedings of 2019 Chinese Intelligent Systems Conference (CISC 2019)

Part of the book series: Lecture Notes in Electrical Engineering ((LNEE,volume 593))

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Abstract

In order to investigate the nonlinear systems, we introduce different nonlinear characteristics into a given linear unit feedback system and utilize MATLAB/Simulink toolbox to simulate the output response of the step signal of the system. Simulation results show that the introduction of nonlinear links affects the stability of the control system. The dead zone nonlinear link decreases the equivalent gain of the system under the action of large signal, and the system loses the closed-loop control under the action of deep saturation. Saturation nonlinear link can make the system tend to be stable, but it reduces the amplification factor and the steady-state accuracy. Saturation nonlinear link can make the system tend to be stable, but it reduces the amplification factor and the steady-state accuracy. These nonlinear characteristics can also be used in the analyzing of the nonlinear characteristics in the multidisciplinary coupled software system or other complex systems.

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References

  1. Franklin GF, Powell JD, Emami-Naeini A (2007) Feedback control of dynamic systems. Posts & Telecom Press, Beijing

    MATH  Google Scholar 

  2. Dorf RC (2015) Modern control system. Posts & Telecom Press, Beijing

    Google Scholar 

  3. Yang G (2008) Research of nonlinear control and controlling strategies. J Huainan Normal Univ 10(05):37–38, 145

    Google Scholar 

  4. Costa MH (2017) Theoretical transient analysis of a hearing aid feedback canceller with a saturation type nonlinearity in the direct path. Comput Biol Med 8(91):243–259

    Article  Google Scholar 

  5. Wang N (2014) Research on saturated nonlinear system control. South China University of Technology

    Google Scholar 

  6. Xie Y, Lin D, Bian X (2016) Uncertain chaotic system control with dead zone input. J Chongqing Univ Technol (Nat Sci) 30(04):120–126

    Google Scholar 

  7. Chen H, Yan S, Zhi Y, Yu F (2017) Simulation and dynamic response analysis of gear nonlinear system. J Mech Transm 41(08):19–22

    Google Scholar 

  8. Fei M, Lin H, Xing W, Li Y (2017) Simulation study on stability of linear control system based on MATLAB. Sci Technol Inf 15(30):34–36

    Google Scholar 

  9. Wang Z, Lin W (2017) MATLAB/Simulink and control system simulation. Publishing House of Electronics Industry

    Google Scholar 

  10. Guangjie X (1987) Application of law criterion in nonlinear system analysis. Autom Refin Chem Ind 13(03):17–20

    Google Scholar 

  11. Cheng J, Xie J, Wei W (2016) Calculation and simulation of multi-parameter nonlinear mechanical power system. Modern Manuf Eng 53(01):20–26

    Google Scholar 

  12. Yan J, Liu C, Zhang Y (2011) Design and application of nonlinear vibration system analysis software. Mech Electr Inf 10(9):104–105

    Google Scholar 

  13. Hu X, He X, Tao J (2008) Cognitive simulation: a new approach to modeling complex systems? Sci Technol Guide 36(12):46–54

    Google Scholar 

  14. Anderson JD (2012) Computational fluid dynamics. China Machine Press, Beijing

    Google Scholar 

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Correspondence to Long Qi .

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Zhou, J., Lu, F., Xiao, S., Qi, L., Pang, Y. (2020). Simulation Analysis of Nonlinear Characteristics in Complex System. In: Jia, Y., Du, J., Zhang, W. (eds) Proceedings of 2019 Chinese Intelligent Systems Conference. CISC 2019. Lecture Notes in Electrical Engineering, vol 593. Springer, Singapore. https://doi.org/10.1007/978-981-32-9686-2_39

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