• 제목/요약/키워드: spring-mass systems

검색결과 142건 처리시간 0.029초

Simulation of Deformable Objects using GLSL 4.3

  • Sung, Nak-Jun;Hong, Min;Lee, Seung-Hyun;Choi, Yoo-Joo
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제11권8호
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    • pp.4120-4132
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    • 2017
  • In this research, we implement a deformable object simulation system using OpenGL's shader language, GLSL4.3. Deformable object simulation is implemented by using volumetric mass-spring system suitable for real-time simulation among the methods of deformable object simulation. The compute shader in GLSL 4.3 which helps to access the GPU resources, is used to parallelize the operations of existing deformable object simulation systems. The proposed system is implemented using a compute shader for parallel processing and it includes a bounding box-based collision detection solution. In general, the collision detection is one of severe computing bottlenecks in simulation of multiple deformable objects. In order to validate an efficiency of the system, we performed the experiments using the 3D volumetric objects. We compared the performance of multiple deformable object simulations between CPU and GPU to analyze the effectiveness of parallel processing using GLSL. Moreover, we measured the computation time of bounding box-based collision detection to show that collision detection can be processed in real-time. The experiments using 3D volumetric models with 10K faces showed the GPU-based parallel simulation improves performance by 98% over the CPU-based simulation, and the overall steps including collision detection and rendering could be processed in real-time frame rate of 218.11 FPS.

Temperature effect on seismic behavior of transmission tower-line system equipped with SMA-TMD

  • Tian, Li;Liu, Juncai;Qiu, Canxing;Rong, Kunjie
    • Smart Structures and Systems
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    • 제24권1호
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    • pp.1-14
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    • 2019
  • Transmission tower-line system is one of most critical lifeline systems to cities. However, it is found that the transmission tower-line system is prone to be damaged by earthquakes in past decades. To mitigate seismic demands, this study introduces a tuned-mass damper (TMD) using superelastic shape memory alloy (SMA) spring for the system. In addition, considering the dynamic characteristics of both tower-line system and SMA are affected by temperature change. Particular attention is paid on the effect of temperature variation on seismic behavior. In doing so, the SMA-TMD is installed into the system, and its properties are optimized through parametric analyses. The considered temperature range is from -40 to $40^{\circ}C$. The seismic control effect of using SMA-TMD is investigated under the considered temperatures. Interested seismic performance indices include peak displacement and peak acceleration at the tower top and the height-wise deformation. Parametric analyses on seismic intensity and frequency ratio were carried out as well. This study indicates that the nonlinear behavior of SMA-TMD is critical to the control effect, and proper tuning before application is advisable. Seismic demand mitigation is always achieved in this wide temperature range, and the control effect is increased at high temperatures.

Assumed Mode Method에 의한 부가물(附加物)을 갖는 임의(任意) 사각형(四角形) 평판(平板)의 진동해석(振動解析) (Vibration Analysis of Quadrangular Plate having Attachments by the Assumed Mode Method)

  • 한성용;허영철
    • 대한조선학회논문집
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    • 제32권3호
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    • pp.116-125
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    • 1995
  • 선체(船體) 해양구조물(海洋構造物)과 같은 대형(大型) 구조물(構造物)은 대부분 판(板) 구조물(構造物)로 이루어져 있으며, 이에 각종(各種) 기기류(機器類), cable류(類). Pillar, 탄성지지(彈性支待)된 장비(裝備) 등과 같이 집중질량(集中質量), 분포질량(分布質量), 지지(支持)스프링 , 질량(質量)-스프링 계(系) 등이 부가(附加)되는 경우가 많다. 이러한 판(板) 구조물(構造物)의 진동해석(振動解析) 방법(方法)으로 매우 단순(單純)한 경우를 제외하고는 엄밀해(嚴密解)를 얻기 어렵기 때문에 Rayleigh-Ritz방법(方法), assumed mode method와 같은 해석적(解析的) 방법(方法)이 주로 적용(適用)되고 있다. 국부(局部) 팬널의 형상(形狀)은 직사각형(直四角形) 뿐만 아니라 사다리꼴, 삼각형(三角形) 등 매우 다양(多樣)한데 상기(上記) 해석적(解析的) 방법(方法)을 적용한 연구(硏究)는 대부분 직사각형(直四角形)인 경우에 대하여 이루어졌다. 따라서 본(本) 연구(硏究)에서는 임의(任意) 사각형(四角形) 형상(形狀) 평판(平板)에 집중질량(集中質量), Pillar와 같은 지지(支持)스프링, 질량(質量)-스프링 계(系) 등이 부가(附加)된 전체계(全體系)의 진동해석(振動解析)을 효율적(效率的)으로 수행(遂行)하는 방법으로서 임의(任意) 사각형(四角形) 형상(形狀)을 효과적(效果的)으로 취급하기 위해 특성좌표계(特性座標系)를 활용하고 assumed mode method을 적용하는 정식화(定式化)를 제시하였다. 질량(質量)-스프링 계(系)가 부가(附加)된 사다리꼴 평판(平板)을 대상(對象)으로 일련의 수치(數値) 계산(計算)을 수행(遂行)하고 유한요소법(有限要素法)에 의한 결과(結果)와 비교(比較) 검토(檢討)하므로써 본(本) 연구(硏究)에서 제시한 방법(方法)의 타당성(妥當性)을 입증하였다.

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Tracking control of variable stiffness hysteretic-systems using linear-parameter-varying gain-scheduled controller

  • Pasala, D.T.R.;Nagarajaiah, S.;Grigoriadis, K.M.
    • Smart Structures and Systems
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    • 제9권4호
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    • pp.373-392
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    • 2012
  • Tracking control of systems with variable stiffness hysteresis using a gain-scheduled (GS) controller is developed in this paper. Variable stiffness hysteretic system is represented as quasi linear parameter dependent system with known bounds on parameters. Assuming that the parameters can be measured or estimated in real-time, a GS controller that ensures the performance and the stability of the closed-loop system over the entire range of parameter variation is designed. The proposed method is implemented on a spring-mass system which consists of a semi-active independently variable stiffness (SAIVS) device that exhibits hysteresis and precisely controllable stiffness change in real-time. The SAIVS system with variable stiffness hysteresis is represented as quasi linear parameter varying (LPV) system with two parameters: linear time-varying stiffness (parameter with slow variation rate) and stiffness of the friction-hysteresis (parameter with high variation rate). The proposed LPV-GS controller can accommodate both slow and fast varying parameter, which was not possible with the controllers proposed in the prior studies. Effectiveness of the proposed controller is demonstrated by comparing the results with a fixed robust $\mathcal{H}_{\infty}$ controller that assumes the parameter variation as an uncertainty. Superior performance of the LPV-GS over the robust $\mathcal{H}_{\infty}$ controller is demonstrated for varying stiffness hysteresis of SAIVS device and for different ranges of tracking displacements. The LPV-GS controller is capable of adapting to any parameter changes whereas the $\mathcal{H}_{\infty}$ controller is effective only when the system parameters are in the vicinity of the nominal plant parameters for which the controller is designed. The robust $\mathcal{H}_{\infty}$ controller becomes unstable under large parameter variations but the LPV-GS will ensure stability and guarantee the desired closed-loop performance.

Receptance 방법에 의한 부가물을 갖는 Mindlin판유추 구조제의 진동해석 (Vibration Analysis of Mindlin-Plate Structures having Attachments by the Receptance Method)

  • 한성용;정중현
    • 대한조선학회논문집
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    • 제32권3호
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    • pp.98-106
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    • 1995
  • 대형구조물의 국부구조계에는 후판, 선체이중저와 같은 복판팬널 또는 FRP판과 같은 복합적층판에 집중질량, 질량-스프링계 또는 지지스프링 등으로 간주되는 부가제가 추가된 복합제의 진동해석을 수행하여야 되는 경우가 않다. 본 연구에서는 팬널의 receptance와 부가계의 receptance를 합성하여 복합제의 고유진동특성 및 강제진동응답을 효과적으로 얻을 수 있는 receptance 방법의 적용을 제시한다. 상기 팬널들은 전단변형 및 회전관성효과가 매우 크고 대부분 직교이방성 강성을 갖기 때문에 직교이방성 Mindlin판유추 구조계로 간주하였으며, Mindlin판유추 구조계의 receptance를 구하기 위해 assumed mode-Lagrange 운동방정식 원용에 의해 구하는 방법을 정식화하였다. 이때 진동파형은 Timoshenko 보함수 또는 이의 성질을 갖는 다항식을 사용하였다. 등방성후판 및 실선 이중저의 1/8축적 모델을 대상으로 일련의 수치계산을 수행하여 본연구에서 제시한 방법의 타당성을 보였다.

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Receptance 방법에 의한 골조구조계의 진동해석 (Vibration Analysis of Frame Structural Systems by the Receptance Method)

  • 한성용;김극천
    • 대한조선학회논문집
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    • 제28권2호
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    • pp.174-186
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    • 1991
  • 해상 및 육상구조물에는 다수의 보 및 봉요소들로 구성된 골조구조계 또는 이에 감쇠가 있는 스프링·질량계로 유추될 수 있는 부가물이 부가된 복합적구조계가 있다. 이와 같은 계의 진동해석을 효율적으로 수행하기 위해 receptance방법을 근간으로 하는 해석적 방법을 제시했다. 자유진동특성 및 집중기진력에 대한 응답을 계산하기 위해 균일단면 Timoshenko보 및 봉의 receptance를 유도하고 이들을 각종 부가물들의 receptance와 함께 합성하는 방법을 제시했다. 이때 복합계의 감쇠특성도 각 구성요소 감쇠특성의 합성에 의해 산정된다. 또한 지지부에 변위기진이 작용하는 경우에 대한 동적응답계산을 수행할수 있도록 균일단면 Timoshenko보 및 봉의 Support Displacement Transfer Ratio를 유도하고 이를 다른 구성요소들의 receptance와 합성하는 방법도 제시했다. 이와같은 방법은 특히 부분적 설계변수변경에 따른 동특성치 재산정예 있어서 매우 편리하다.

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Force holding control of a finger using piezoelectric actuators

  • Jiang, Z.W.;Chonan, S.;Koseki, M;Chung, T.J.
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1993년도 한국자동제어학술회의논문집(국제학술편); Seoul National University, Seoul; 20-22 Oct. 1993
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    • pp.202-207
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    • 1993
  • A theoretical and experimental study is presented for the force holding control of a miniature robotic ringer which is driven by a pair of piezoelectric unimorph cells. In the theoretical analysis, one finger is modeled as a flexible cantilever with a tactile force sensor at the tip and the mate of the finger is a solid beam supposed with sufficient stiffness. Further, the force sensor is modeled by a one-degree-of-freedom, mass-spring system and the output of sensor is then described by the sensor stiffness multiplied by the relative displacement. The problem investigated in this paper is that two typical holding tasks of the human finger are picked up and applied to the robotic finger. One is the work holding a stationary object with a prescribed, time-varying force and the other one is to keep the contacted force constant even if the object is in motion. The simple PID feedback control scheme is used to control the minute gripping force of order 0.01 Newton. It is shown both experimentally and theoretically that the artificial finger with the piezoelectric actuator works well in the minute force holding of the tiny object.

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Analytical Discussion on Stochastic Hydrodynamic Modeling of Support Structure of HAWAII WTG Offshore Wind Turbine

  • Abaiee, M.M.;Ahmadi, A.;Ketabdari, M.J.
    • Journal of Advanced Research in Ocean Engineering
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    • 제1권1호
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    • pp.55-62
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    • 2015
  • Floating structure such as tension leg platform, semi-submersible and spar are widely used in field of oil exploration and renewable energy system. All of these structures have the base cylinder support structure which have effective rule in overall dynamic of response. So the accurate and reliable modeling is needed for optimum design and understanding the physical background of these systems. The aim of this article is an analytical discussion on stochastic modeling of floating cylinder based support structure but an applicable one. Due to this a mathematical mass-damper-spring system of a floating cylinder of HAWAII WTG offshore wind as an applicable and innovative system is adopted to model a coupled degrees using random vibration in analytical way. A fully develop spectrum is adopted to solve the stochastic spectrum analytically by a proper approximation. Some acceptable assumption is adopted. The simplified but analytical and innovative hydrodynamic analysis of this study not only will help researcher to concentrate more physically on hydrodynamic analysis of floating structures but also can be useful for any quick, simplified and closed form analysis of a complicated problem in offshore engineering.

유한요소법과 운동방정식의 결합에 의한 운동체의 특성 해석 (Analysis of Moving Body Characteristics by Coupling Finite Element Method and Motion Equation)

  • 김영선;이준호;이기식;이복용
    • 한국자기학회지
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    • 제6권5호
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    • pp.281-286
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    • 1996
  • 전기 기계의 운동 특성을 정확히 해석하기 위해서는 해석모델의 전자장방정식과 운동방정식이 함께 고려되어야 한다. 본 논문에서는 자장내에서 두 개의 스프링에 의해 진동 운동을 하는 도체를 해석함에 있어 순차적인 결합방법을 채책하였다. 한 시점에서 속도가 주어지면 전자장해석 및 유도전류 계산은 유한요소법을 이용하였고, 그때마다 전자력을 게산하였다. 또한 전자장방정식이 풀린다음 4차 runge-kutta 미분방정식 해법을 이용하여 운동방정식과 결합하였다. 위의 과정을 순차적으로 계속 반복함으로써 시간에 대한 위치, 속도, 유도전류 및 전자력을 알아내어 운동체의 운동특성을 알아보았다. 계산된 결과는 에너지보존 법칙에 적용하여 제안한 순차적인 결합방법의 유용성을 검증하였다.

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자주포 로드암 동하중의 상당 정하중으로의 변환 및 형상최적설계 (Transformation of a Dynamic Load into an Equivalent Static Load and Shape Optimization of the Road Arm in Self-Propelled Howitzer)

  • 최우석;강신천;신민재;박경진
    • 대한기계학회논문집A
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    • 제20권12호
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    • pp.3767-3781
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    • 1996
  • Generally, dynamic loads are applied to real structures. Since the analysis with the dynamic load is extremely difficult, static loads are utilized by proper conversions of the dynamic loads. The dynamic loads are usually converted ot static loads by safety foactors of experiences. However, it may increase weight and decrease reliability. In this study, a method is proposed for the conversion process. An equivalent static load is calculated ot generate a same maximum displacement. The method is verified through numerical tests on a spring-mass systems of one and multi degrees-of freedom. It has been found that the duration time of the loads and the natural frequencies of the structures are critical in the conversion process. A road arem is a self-propelled howizer is selected for the application of the proposed method. The shape of the road arm is optimized under the converted static loads.