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混沌测量的MATLAB仿真研究 被引量:5

Simulation of Chaotic Measurement With MATLAB
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摘要 将混沌系统用于测量,是测量研究及非线性科学应用研究的一个突破,此方法具有极高的灵敏度和分辨率。但此理论是否有不足之处?为了研究此问题,采用了MATLAB软件对混沌测量进行仿真,并深入地探讨仿真结果,指出此理论存在着,有些电容值无法测量和测量范围小的缺点,表明此理论有待丰富和完善。 With chaotic system being used for measurement, the study of measurement and nonlinear applied science is a break through. It has extremely high sensitivity and resolvirig power. Has the principle any shortcoming.9 MATLAB is used to simulate chaotic measurement, and investigate the result of this measurement, in order to reveal its disadvantage that some capacitance can't be measured and the extent of measurement is short. It shows that the principle should be developed.
作者 许碧荣
出处 《传感技术学报》 CAS CSCD 北大核心 2006年第4期1181-1183,1186,共4页 Chinese Journal of Sensors and Actuators
基金 福建教育厅资助项目 南平师专校青年教师资助项目
关键词 混沌 测量 MATLAB 仿真 chaos, measurement MATLAB simulation
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  • 1黄文高,童勤业.测量技术中的混沌方法[J].浙江大学学报(工学版),2001,35(5):546-549. 被引量:2
  • 2[3]Ott E.Controlling chaos[J].Physical RevLett,1990,64(11):1196-1199.
  • 3[4]Freeman W J.Tutorial on Neurobiology, from Single Nourons to Brain Chaos[J]. Int J of Bifurcation and Chaos,1992,2(3):451-482.
  • 4Khan A A, Gupta R S. A linear thermistor-based temperature-to-frequency converter using a delay network [J]. IEEE Trans, 1985, 34(1).
  • 5Johnson C D, Richeh H A. Highly accurate resistance deviation to frequency converter with programmable sensitivity and resolution [J]. IEEE Trans., 1986, 35 (2).
  • 6E. Ott, C. Grebogi and J. A. Yorke, Controlling Chaos, Phys. Rev. Lett 64, ( 1990 ) 1196.
  • 7L. M. Pecora and T. L. Carroll, Synchronization in chaos system, Phys. Rev. Lett. 64(1990) 821.
  • 8L. O. Chua, Chua' scircuit 10 years later. Int. J. of Circuit Theroy and Application. 1994,2: 279.
  • 9A. Crisanti, et al. Stochastic resonance in deterministic chaotic systems,J. Phys. A27( 1994)597.
  • 10郑伟谋,实用符号动力学,1994年,11页

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