• Title/Summary/Keyword: Mathematical vehicle model

검색결과 273건 처리시간 0.023초

수중운동체용 디절엔진의 속도제어를 위한 견실제어기 설계 (Robust Controller Design for the Speed Control of Underwater Vehicle Diesel Engine)

  • 정찬희;한명철;하인철;양승윤;정희석;김성용
    • 한국정밀공학회지
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    • 제17권1호
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    • pp.68-75
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    • 2000
  • In this paper, the robust controller design is performed for the speed control of the underwater vehicle diesel engine. Nonlinear model equations are acquired through the mathematical modeling using mean torque production model technique. It is very difficult to design the robust controller because those are high nonlinear and not expressed in terms of the matched uncertainty Therefore those are converted into the separable model into the linear nominal system and the nonlinear uncertainty term.

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급경사지 산림작업을 위한 차량의 역학분석에 관한 연구 -차륜형 집재작업 트랙터를 중심으로- (A Study on Ground Vehicle Mechanics for Steep Slope Forest Operations - Rubber-Tired Log Skidding Tractor Operations -)

  • 정주상;정우담
    • 한국산림과학회지
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    • 제84권2호
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    • pp.218-225
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    • 1995
  • 이 논문에서는 임업용 트랙터의 집재작업 분석에 요구되는 역학분석모델을 제시하고 사례분석을 통해 적용성을 검토하였다. 역학분석모델은 크게 견인목의 역학구조해석모델, 차량하중분석모델 및 주행중인 차량의 구동력과 저항력 분석모델의 3부분으로 구성되어 있다. 사례분석에서는 가상적인 집재작업 시나리오를 만들어 역학적으로 중요하거나 혹은 집재생산성에 중요한 인자들에 대한 영향력분석을 통해 모델의 적용성을 검토하였다. 사례분석은 1) 당김줄을 견인목에 묶는 방법이 견인력에 미치는 영향, 2)주행속도 및 견인목 하중이 차륜의 동력요구에 미치는 영향, 3) 2륜구동과 4륜구동 트랙터의 견인작업 수행 성능 비교에 관한 내용을 포함한다.

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운전자 인지반응 연구를 위한 VR 시뮬레이션 시스템 개발 (Development of the VR Simulation System for the Study of Driver's Perceptive Response)

  • 장석;권성진;전지훈;조기용;서명원
    • 한국자동차공학회논문집
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    • 제13권2호
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    • pp.149-156
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    • 2005
  • In this paper, the VR(Virtual Reality) simulation system is developed to analyze driver's perceptive response on the ASV(Advanced Safety Vehicle). The ASV is the vehicle of next generation equipped with various warning systems. For the purpose, the VR simulation system consists of VR database, vehicle dynamic model, graphic/sound system, and driving system. The VR database which generates 3D graphic and sound information is organized for the driving reality. Mathematical models of vehicle dynamic analysis are constructed to represent the dynamic behavior of a vehicle. The driving system and the graphic/sound system provide a driver with the operation of a vehicle and the feedback of a driving situation. Also, the real-time simulation algorithm synchronizes the vehicle dynamic model with the VR database. To check the validity of the developed system, a simple scenario is applied to investigate driver's perceptive response time and vehicle acceleration on an emergency situation. It is confirmed that the proposed system is useful and helpful to design the FVCWS(Forward Vehicle Collision Warning System).

심해용 무인 잠수정의 동역학 계수의 추정에 관한 연구 (Estimation of the Hydrodynamic Coefficients for the Deep-sea UUV "HEMIRE")

  • 백혁;김기훈;전봉환;이판묵;임용곤
    • 한국해양공학회지
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    • 제22권4호
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    • pp.97-105
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    • 2008
  • This paper represents the experimental identification of a finite-dimensional dynamical plant model for the HEMIRE Remotely Operated Vehicle. The experiments were conducted during sea trials in the East Sea in October 2006 and peer testing by the South Sea Research Institute in January 2007. A least-squares method was employed to identify decoupled single degree-of-freedom plant dynamical models for the X, Y, Z and heading degree-of-freedom from experimental data. The performance of the identified plant dynamical model was evaluated by directly comparing simulations of the identified plant model to the experimentally observed motion data from the actual vehicle.

Statistical models from weigh-in-motion data

  • Chan, Tommy H.T.;Miao, T.J.;Ashebo, Demeke B.
    • Structural Engineering and Mechanics
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    • 제20권1호
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    • pp.85-110
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    • 2005
  • This paper aims at formulating various statistical models for the study of a ten year Weigh-in-Motion (WIM) data collected from various WIM stations in Hong Kong. In order to study the bridge live load model it is important to determine the mathematical distributions of different load affecting parameters such as gross vehicle weights, axle weights, axle spacings, average daily number of trucks etc. Each of the above parameters is analyzed by various stochastic processes in order to obtain the mathematical distributions and the Maximum Likelihood Estimation (MLE) method is adopted to calculate the statistical parameters, expected values and standard deviations from the given samples of data. The Kolmogorov-Smirnov (K-S) method of approach is used to check the suitability of the statistical model selected for the particular parameter and the Monte Carlo method is used to simulate the distributions of maximum value stochastic processes of a series of given stochastic processes. Using the statistical analysis approach the maximum value of gross vehicle weight and axle weight in bridge design life has been determined and the distribution functions of these parameters are obtained under both free-flowing traffic and dense traffic status. The maximum value of bending moments and shears for wide range of simple spans are obtained by extrapolation. It has been observed that the obtained maximum values of the gross vehicle weight and axle weight from this study are very close to their legal limitations of Hong Kong which are 42 tonnes for gross weight and 10 tonnes for axle weight.

ACC 차량의 동특성 해석을 위한 VR 시뮬레이션 시스템 개발 (Development of the VR Simulation System for the Dynamic Characteristics of the Adaptive Cruise Controlled Vehicle)

  • 권성진;장석;윤경한;서명원
    • 한국자동차공학회논문집
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    • 제12권4호
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    • pp.163-172
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    • 2004
  • Nowadays, to analyze the dynamic characteristics of the automotive driving system, the computer simulation linked up with VR(Virtual Reality) technology is treated as the useful method with the improvement of computing ability. In this paper, the VR simulation system has been developed to investigate the driving characteristics of the ASV(Advanced Safety Vehicle) equipped with an ACC(Adaptive Cruise Control) system. For the purpose, VR environment which generates 3D graphic and sound information of the vehicle, the road, the facilities, and the terrain has been organized for the driving reality. Mathematical models of vehicle dynamic analysis including the ACC model have been constructed for computer simulation. The ACC modulates the throttle and brake functions to regulate the vehicle speed so that vehicles could keep proper spacing. Also, the real-time simulation algorithm synchronizes vehicle dynamic simulation with the graphic rendering. With the developed VR simulation system, simple scenarios are applied to analyze the dynamic characteristics. It is shown that the VR simulation system could be useful to evaluate the adaptive cruise controlled vehicle on various driving conditions.

수정 유전자 알고리듬을 이용한 중복방문, 다중차고 차량경로문제 (A Vehicle Routing Problem with Double-Trip and Multiple Depots by using Modified Genetic Algorithm)

  • 전건욱;심재영
    • 산업공학
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    • 제17권spc호
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    • pp.28-36
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    • 2004
  • The main purpose of this study is to find out the optimal solution of the vehicle routing problem considering heterogeneous vehicle(s), double-trips, and multi depots. This study suggests a mathematical programming model with new numerical formula which considers the amount of delivery and sub-tour elimination and gives optimal solution by using OPL-STUDIO(ILOG). This study also suggests modified genetic algorithm which considers the improvement of the creation method for initial solution, application of demanding point, individual and last learning method in order to find excellent solution, survival probability of infeasible solution for allowance, and floating mutation rate for escaping from local solution. The suggested modified genetic algorithm is compared with optimal solution of the existing problems. We found the better solution rather than the existing genetic algorithm. The suggested modified genetic algorithm is tested by Eilon and Fisher data(Eilon 22, Eilon 23, Eilon 30, Eilon 33, and Fisher 10), respectively.

2단계 수송네트워크 상에서의 장기적 비용 최적화 (A Cost Optimization Problem on a 2 Level Transportation Network)

  • 정재헌
    • 한국경영과학회지
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    • 제30권3호
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    • pp.1-15
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    • 2005
  • In our model, a fleet of vehicles start from docking point to collect loads at the terminals assigned to the point Then the docking points are connected to the hub by primary vehicle routes starting at the hub. This vehicle visit all the docking points to collect the loads which have been collected by the secondary vehicles. Our goal Is to minimize the long-run cost of setting up the docking Points and vehicle operation cost by deciding the location of the docking points and the routes optimally. We propose an heuristic algorithm to solve this and tested it though various experiments.

차량 주행안정성 제어시스템의 자동안전 로직 (Failsafe Logic for a vehicle Stability Control System)

  • 민경찬;이건복;이경수
    • 대한기계학회논문집A
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    • 제28권11호
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    • pp.1685-1691
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    • 2004
  • This paper describes the fault detection and failsafe logic to be used in an Electronic Stability Program(ESP). The aim of this paper is to prevent of erroneous controls in the ESP. Developed this paper introduces the fault detection logic and evaluation of residual signals. The failsafe logic consists of four redundant sub-models, which can be used for detecting the faults in various sensors (yaw rate, lateral acceleration, steering wheel angle). We present two mathematical residual generation methods : one is a method using the average value and the other is a method using the minimum value of the each residual. We verified a failsafe logic developed using vehicle test results also we compare vehicle model based simulation results with test vehicle results.

차량변속기의 진동특성에 대한 연구 (An Investigation on Vibration Characteristics of Vehicle Transmission)

  • 배명호;이형우;박노길
    • 소음진동
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    • 제10권1호
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    • pp.107-116
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    • 2000
  • The gear whine noise caused by tooth profile, elastic deformation, machining error, wear is directly correlated with the transmission error of mating gear. It is very important to build up the synthesized countermeasure by the modeling of the excitation forces and analyzing the vibratory characteristics. The mathematical models on the elements of vehicle transmission which is composed of helical gears, bearings, shafts and cases are developed. The elements are assembled by the substructure synthesis method. The cases of transmission are modeled by ANSYS. The system model of vehicle transmission is also verified by the experiments.

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