• 제목/요약/키워드: chaotic

검색결과 904건 처리시간 0.025초

Numerical investigation on multi-degree-freedom nonlinear chaotic vibration isolation

  • Jiang, Guoping;Tao, Weijun
    • Structural Engineering and Mechanics
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    • 제51권4호
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    • pp.643-650
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    • 2014
  • A chaotic vibration isolation system is designed according to the chaotic vibration theory in this paper. The strong nonlinearity is generated by the system. Line spectra in the radiated noise maybe easily detected caused by marine vessels. It is Important to reduce the line spectra by improving the acoustic stealth of marine vessels. A multi-degree-freedom (MDF) nonlinear vibration isolation system (NVIS) system is setup by the experiment and finite element method. The model is established with finite element method. The results show that the behavior of the device gradually varies from period bifurcation into chaotic state and the line spectrum is changed from single spectral structure into broadband spectral structure. It is concluded that chaotic vibration isolation is preferable contrasted on line spectra isolation.

넓은 수평 환형 공간에서의 혼동 열 대류 : Pr=0.1 (Chaotic Thermal Convection in a Wide-Gap Horizontal Annulus : Pr=0.1)

  • 유주식;엄용균
    • 설비공학논문집
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    • 제13권2호
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    • pp.88-95
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    • 2001
  • Transition to chaotic convection is investigated for natural convection of a fluid with Pr=0.1 in a wide-gap horizontal annuls. The unsteady two-dimensional stream-function-vorticity equation is solved with finite difference method. As the Rayleigh number is increased, the steady 'downward flow' bifurcates to a time-periodic flow with a fundamental frequency, and afterwards a period-doubling bifurcation occurs. As the Rayleigh number is increased further, the chaotic flow regime is reached after a sequence of successive Hopf bifurcation to quasi-periodic and chaotic flow regimes. The route to chaos shows the Ruelle-Takens-Newhouse scenario. The flow of chaotic regime displays complex coalescence and separation of eddies in the side and lower region of the annulus.

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Synchronization of Dynamical Happiness Model

  • Bae, Youngchul
    • International Journal of Fuzzy Logic and Intelligent Systems
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    • 제14권2호
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    • pp.91-97
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    • 2014
  • Chaotic dynamics is an active research area in fields such as biology, physics, sociology, psychology, physiology, and engineering. Interest in chaos is also expanding to the social sciences, such as politics, economics, and societal events prediction. Most people pursue happiness, both spiritual and physical in many cases. However, happiness is not easy to define, because people differ in how they perceive it. Happiness can exist in mind and body. Therefore, we need to be happy in both simultaneously to achieve optimal happiness. To do this, we need to synchronize mind and body. In this paper, we propose a chaotic synchronization method in a mathematical model of happiness organized by a second-order ordinary differential equation with external force. This proposed mathematical happiness equation is similar to Duffing's equation, because it is derived from that equation. We introduce synchronization method from our mathematical happiness model by using the derived Duffing equation. To achieve chaotic synchronization between the human mind and body, we apply an idea of mind/body unity originating in Oriental philosophy. Of many chaotic synchronization methods, we use only coupled synchronization, because this method is closest to representing mind/body unity. Typically, coupled synchronization can be applied only to non-autonomous systems, such as a modified Duffing system. We represent the result of synchronization using a differential time series mind/body model.

Stable Intelligent Control of Chaotic Systems via Wavelet Neural Network

  • Choi, Jong-Tae;Choi, Yoon-Ho;Park, Jin-Bae
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2003년도 ICCAS
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    • pp.316-321
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    • 2003
  • This paper presents a design method of the wavelet neural network based controller using direct adaptive control method to deal with a stable intelligent control of chaotic systems. The various uncertainties, such as mechanical parametric variation, external disturbance, and unstructured uncertainty influence the control performance. However, the conventional control methods such as optimal control, adaptive control and robust control may not be feasible when an explicit, faithful mathematical model cannot be constructed. Therefore, an intelligent control system that is an on-line trained WNN controller based on direct adaptive control method with adaptive learning rates is proposed to control chaotic nonlinear systems whose mathematical models are not available. The adaptive learning rates are derived in the sense of discrete-type Lyapunov stability theorem, so that the convergence of the tracking error can be guaranteed in the closed-loop system. In the whole design process, the strict constrained conditions and prior knowledge of the controlled plant are not necessary due to the powerful learning ability of the proposed intelligent control system. The gradient-descent method is used for training a wavelet neural network controller of chaotic systems. Finally, the effectiveness and feasibility of the proposed control method is demonstrated with application to the chaotic systems.

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PLCM을 이용한 카오스 블록 암호화 (Chaotic Block Encryption Using a PLCM)

  • 신재호;이성우
    • 전자공학회논문지CI
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    • 제43권3호
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    • pp.10-19
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    • 2006
  • 본 논문에서는 동력학적 특성이 좋은 PLCM(Piecewise Linear Chaotic Map)을 이용한 128비트의 키와 128비트 평문 블록의 카오스 블록 암호화 기법을 제안한다. 본 논문에서 제안한 기법은 128비트의 키를 PLCM을 이용해서 4개의 32비트 서브키로 이루어진 세션 키 생성하는 키 생성과정과 128비트 평문을 4개로 나눈 32비트 서브 블록들과 4개의 서브키와의 XOR(exclusive-OR)된 값을 PLCM의 초기 값과 반복회수로 사용해서 암호문을 생성하는 암/복호화 과정으로 이루어져 있다. 본 논문에서는 제안한 기법이 실험 결과와 안전성 분석을 통해 여러 가지 통계적 공격에 매우 강하고 Avalanche Effect와 Randomness 특성이 매우 좋음을 보여준다.

카오틱 맵을 이용한 위상 최적화 알고리즘의 수렴속도 향상 (Improvement of Topology Algorithm's Convergence Rate Using Chaotic Map)

  • 김용호;김기철;이재환;장효재;한석영
    • 한국생산제조학회지
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    • 제23권3호
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    • pp.279-283
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    • 2014
  • Recently, a topology algorithm based on the artificial bee colony algorithm (ABCA) has been proposed for static and dynamic topology optimization. From the results, the convergence rate of the algorithm was determined to be slightly slow. Therefore, we propose a new search method to improve the convergence rate of the algorithm using a chaotic map. We investigate the effect of the chaotic map on the convergence rate of the algorithm in static and dynamic topology optimization. The chaotic map has been applied to three cases, namely, employ bee search, onlooker bee search, and both employ bee as well as onlooker bee search steps. It is verified that the case in which the logistic function of the chaotic map is applied to both employ bee as well as onlooker bee search steps shows the best dynamic topology optimization, improved by 5.89% compared to ABCA. Therefore, it is expected that the proposed algorithm can effectively be applied to dynamic topology optimization to improve the convergence rate.

혼돈맵을 사용한 난수성 2진 순서발생기의 설계 (Design of Random Binary Sequence Generator using the Chaotic Map)

  • 박광현;백승재
    • 한국콘텐츠학회논문지
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    • 제8권7호
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    • pp.53-57
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    • 2008
  • 본 논문에서는 1차원 혼돈맵들 중의 하나인 톱니맵을 16비트의 유한정밀도로 이산화시켜 설계하였고, 이 이산화된 톱니맵을 사용한 혼돈 2진 순서 발생기의 회로도도 제시하였다. 설계된 혼돈맵의 실제 구현은 이산화된 진리표로부터 얻어진 출력변수의 간략화된 부울함수에 따른 입력선과 출력선들의 정확한 연결에 의해 실현하였다. 최대길이를 발생시키는 선형궤환이동레지스터(mLFSR)에 의해 발생되는 난수성 2진 출력 순서들을 이산화된 톱니맵의 입력순서로 사용함으로써 결과적으로 최소 16배 더 긴 주기를 갖는 혼돈 2진 순서들을 발생시켰다.

배리어가 포함된 카오스 마이크로 믹서의 개발 (Development of a Barrier Embedded Chaotic Micromixer)

  • 김동성;이석우;권태헌;이승섭
    • 대한기계학회논문집A
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    • 제28권1호
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    • pp.63-69
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    • 2004
  • It is of great interest to enhance mixing performance in a microchannel in which the flow is usually characterized as a low Reynolds number (Re) so that good mixing is quite difficult to be achieved in this laminar flow regime. In this regard, we present a new chaotic passive micromixer, named Barrier Embedded Micromixer (BEM), of which the mixing mechanism is based on chaotic flows. In BEM, chaotic flow is induced by periodic perturbation of the velocity field due to periodically inserted barriers along the channel wall while a helical type of flow is obtained by slanted grooves on the bottom surface of the channel in the pressure driven flow. To experimentally compare the mixing performance, a T-microchannel and a microchannel with only slanted grooves were also fabricated. All microchannels were made of PDMS (Polydimethylsiloxane) from SU-8 masters that were fabricated by conventional photolithography. Mixing performance was experimentally characterized with respect to an average mixing intensity by means of color change of phenolphthalein as pH indicator. It was found that mixing efficiency decreases as Re increases for all three micromixers. Experimental results obviously indicate that BEM has better mixing performance than the other two. Chaotic mixing mechanism, suggested in this study, can be easily applied to integrated microfluidic systems , such as Micro-Total-Analysis-System, Lab-on-a-chip and so on.

전압제어형 카오스회로의 집적회로 설계 및 구현 (Integrated Circuit Design and Implementation of the Voltage Controlled Chaotic Circuit)

  • 송한정;곽계달
    • 전자공학회논문지C
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    • 제35C권12호
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    • pp.77-84
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    • 1998
  • 0.8㎛ single poly CMOS 공정을 이용하여 집적화 된 전압제어형 카오스 발생회로를 설계, 제작하였다. 제작된 카오스 집적회로는 비선형함수 발생회로와 op-amp, 2상 클럭발생회로, 2개의 샘플&홀드 회로 등으로 이루어진다. 측정결과 ±2.5V 전원, 20kHz의 클럭 인가시 입력제어전압에 따라 주기상태, 준주기 상태, 카오스 상태 등 다양한 형태의 분기현상 및 시계열 파형을 관측할 수 있었다. 또한 이 회로의 직렬, 병렬 연결에 의한 2차원 카오스 패턴도 관측하였다.

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비압축성 유동장내 2차원 익형의 혼돈거동 (Chaotic Behavior of 2-Dimensional Airfoil in Incompressible Flow)

  • 정성원;이동기;이상환
    • 대한기계학회논문집
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    • 제19권2호
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    • pp.495-508
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    • 1995
  • The self-excited vibrations of airfoil is related to the classical flutter problems, and it has been studied as a system with linear stiffness and small damping. However, since the actual aircraft wing and the many mechanical elements of airfoil type have various design variables and parameters, some of these could have strong nonlinearities, and the nonlinearities could be unexpectedly strong as the parameters vary. This abrupt chaotic behavior undergoes ordered routes, and the behaviors after these routes are uncontrollable and unexpectable since it is extremely sensitive to initial conditions. In order to study the chaotic behavior of the system, three parameters are considered, i.e., free-stream velocity, elastic distance and zero-lift angle. If the chaotic parameter region can be identified from the mathematically modeled nonlinear differential equation system, the designs which avoid chaotic regions could be suggested. In this study, by using recently developed dynamically system methods, and chaotic regions on the parameter plane will be found and the safe design variables will be suggested.