• 제목/요약/키워드: Construction Vehicle Model

검색결과 209건 처리시간 0.024초

건설 차량 실시간 그래픽 주행 시뮬레이터 (A Real-Time Graphic Driving Simulator of the Construction Vehicle)

  • 손권;최경현;유창훈
    • 한국정밀공학회지
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    • 제16권7호
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    • pp.109-118
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    • 1999
  • A graphic software is one of the most important components of the vehicle simulator. To increase a visual reality of the simulator, the graphic software should require several technologies such as three-dimensional graphics, graphic modeling of the vehicle and the environment, drivers biomechanical models, and real-time data processing. This study presents a real time graphic driving simulator of a construction vehicle. The graphic simulator contains the three models of the construction vehicle, the human, and the environment, and employes a neural network approach to decrease an on-line dynamic computation. An excavator model is represented using an object-oriented paradigm and contains the detailed information about a real-size vehicle. The human model is introduced for objective visual evaluations of the developed excavator model. Since the environment model plays an important role in a real-time simulator, a block-based approach is implemented and a text format is utilized for easier construction of environment. The simulation results are illustrated in order to demonstrate the applicability of developed models and the neural network approach.

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차량 전자 제동 시스템을 위한 실시간 시뮬레이터 개발 (Development of Real-time Simulator for Vehicle Electric Brake System)

  • 천세영;최성웅;양순용
    • 드라이브 ㆍ 컨트롤
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    • 제16권1호
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    • pp.22-28
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    • 2019
  • This paper develops ABS braking real - time simulator to develop vehicle braking system by simulation. Recently, real-time simulation is widely used in the development of vehicles to decrease development time. In the field of electronic braking, real-time simulation is actively underway. In order to simulate electronic braking model in real time, a vehicle model, a hydraulic model, and a control S/W model are required. These models must be calculated in one platform. Therefore, in this paper, a vehicle model composed of CarSim and a hydraulic model composed of SimulationX using S/W in actual ABS controller was developed as a Simulink model base and linked with Matlab real time model. Using this real-time model, design effects of the electronic braking controller were simulated according to road surface condition to verify its operability.

전자식 차체 자세제어 장치 실시간 시뮬레이션을 위한 유압 모델 개발 (Development of Hydraulic Simulation Model for ESP Real Time Simulation)

  • 천세영;최성웅;양순용
    • 드라이브 ㆍ 컨트롤
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    • 제16권2호
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    • pp.36-42
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    • 2019
  • The ESP (Electronic Stability Program) is an active control system that controls the posture of the vehicle by sensing the unstable state of the vehicle during braking, driving, or turning. The system works if the vehicle becomes unstable and it is very dangerous to develop it in the actual vehicle. For this reason, many studies have been carried out on the method of developing with simulation such as SIL / EIL. Some advanced companies have already applied it to the product development process. In this study, ESP hydraulic system and braking device model were constructed using SimulationX to build ESP SIL / EIL model. The hydraulic system model was constructed using the actual design parameters and the performance of the hydraulic model was verified by comparing with the actual vehicle test.

ADAMS/Rail의 철도차량 표준모델을 이용한 철도선로의 설계 (The optimal design of rail track using a standard vehicle model of ADAMS/Rail)

  • 조연호;곽재호
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 춘계학술대회 논문집
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    • pp.201-207
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    • 2007
  • At an early design stage of rail track, dynamic analyses using a standard vehicle model of ADAMS/Rail are employed. In the real field, it is very difficult to find an optimal solution on the designing of rail track considering future operating vehicles because the construction of rail track should be done in the advance of vehicle selection and operation. Using a standard vehicle model of ADAMS/Rail, however the better selection among designed rail tracks is possible by comparing the dynamic analysis.

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포병화력 생존성지원을 위한 진지구축경로문제 연구 (Study on Vehicle Routing Problem of Artillery Position Construction for Survivability Support)

  • 문정현;이상헌
    • 대한산업공학회지
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    • 제37권3호
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    • pp.171-179
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    • 2011
  • In this paper, we deal with the vehicle routing problem that could establish operational plan of military engineer for survivability support of artillery position construction. We propose VRPTW(vehicle routing problem with time-window) model of special form that considered service level to reflect the characteristics of military operations rather than the logic of economic efficiencies in the objective function. Furthermore we suggest modified particle swarm optimization algorithm for service based vehicle routing problem solution that can be possible to search in complicated and uncertain area and control relation softly between global and local search.

축소모형을 이용한 철도차량 충돌 해석 기법 연구 (Crash Analysis of Railway Vehicle Structure Using Scale Model)

  • 김범진;허승진
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2002년도 추계학술대회 논문집(I)
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    • pp.54-59
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    • 2002
  • In general, the aluminum extrusions are used to the light construction of the high speed rail vehicle structures. However, the research works ok the crashworthy design of the high speed rail vehicle structures are not published sufficiently because the crash test of high speed rail vehicle structures costs high and is complicated. So, a method that can predict crash characteristics of a large size structure like a high speed tail vehicle should be suggested. In this study, the scale model studies are performed to predict the impact energy absorption characteristics of full scale model. In the first place, we verified the theory of scale law using FE-simulation from the crashworthiness point of view. Secondly, we performed the crush test using scale model, made of aluminum sub structure. As a result, we could predict the crash characteristics using scale model by 10∼20% error.

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타이어 접지폭을 고려한 3차원 차량모델에 의한 동적 차륜하중에 관한 연구 (A Study on the Dynamic Wheel Loads of 3-D Vehicle Model Considering Tire Enveloping)

  • 정태주
    • 한국강구조학회 논문집
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    • 제14권1호
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    • pp.95-104
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    • 2002
  • 본 연구에서는 타이어의 접지폭을 고려한 새로운 3차원 차량모델을 개발하여 차량의 동적하중에 대하여 연구하였다. 3차원 차량모델에는 타이어의 접지폭과 텐덤 스프링 차륜축의 피칭을 고려하여 대형차량인 2축 차량과 3축 차량을 각각 7-자유도와 8-자유도로 모델링 하였다. 차량의 운동방정식은 Lagrange 방정식을 사용하여 유도하였으며 IMSL에 내장되어 있는 5차 Runge-Kutter 방법을 사용하여 해를 계산하였다. 본 3차원 차량모델을 이용하여 수치해석한 결과와 Whittemore 등이 실시한 실험값을 비교 검토하여 그 타당성을 입증하였다. 수치해석으로 구한 결과는 실험값과 매우 잘 일치하였다. 차량의 동적 해석에서는 2축 차량인 8톤 덤프트럭과 3축 차량인 15톤 덤프트럭이 스탭 범프를 통과할 때와 여러 가지 종류의 도로를 1.0 km 주행하는 동안 발생하는 타이어력의 최대 충격계수를 구하였다.

현가계의 교체가 가능한 모듈형 실험차량의 개발 (A Development of the Modular Experimental Vehicle with Variable Suspension Systems)

  • 배상우;강주석;윤중락;이재형;이장무;탁태오
    • 한국자동차공학회논문집
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    • 제5권5호
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    • pp.132-139
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    • 1997
  • It is difficult for most of passenger cars to attach various types of suspensions. The modular experimental vehicle, which is designed to exchange suspension systems, has been developed to evaluate the effect of design changes of a suspension upon ride and handling characteristics of a vehicle. In order to enable the assemblage between modules, the experimental vehicle design is based on a space frame construction through finite element analysis. Moreover, module frames and brackets are designed using three-dimensional solid modeler to check the interference between each part of a vehicle. Steady-state and transient road tests were performed. Multibody dynamic model and simplified linear vehicle model are made to compare with the tests. The results of simulations and tests show the performance and validity of this experimental vehicle.

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Performance Evaluation of Smart Intersections for Emergency Response Time based on Integration of Geospatial and Incident Data

  • Oh, Heung Jin;Ashuri, Baabak
    • 국제학술발표논문집
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    • The 9th International Conference on Construction Engineering and Project Management
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    • pp.945-951
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    • 2022
  • The major objective of this research is to evaluate performance of improved intersections for response time to emergency vehicle preemption. Smart technologies have been introduced to civil infrastructure systems for resilient communities. The technologies need to evaluate their effectiveness and feasibility to confirm their introduction. This research focuses on the performance of emergency vehicle preemption, represented by response time, when smart intersections are introduced in a community. The response time is determined by not only intersections but also a number of factors such as traffic, distance, road conditions, and incident types. However, the evaluation of emergency response has often ignored factors related to emergency vehicle routes. In this respect, this research synthetically analyzes geospatial and incident data using each route of emergency vehicle and conducts before-and-after evaluations. The changes in performance are analyzed by the impact of smart intersections on response time through Bayesian regression models. The result provides measures of the project's performance. This study will contribute to the body of knowledge on modeling the impacts of technology application and integrating heterogeneous data sets. It will provide a way to confirm and prove the effectiveness of introducing smart technologies to our communities.

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Hydraulic System Design and Vehicle Dynamic Modeling for the Development of a Tire Roller

  • Kim, Sang-Gyum;Kim, Jung-Ha;Lee, Woon-Sung
    • International Journal of Control, Automation, and Systems
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    • 제1권4호
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    • pp.484-494
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    • 2003
  • In this paper, we describe a hydraulic system design and vehicle dynamic modeling for development of tire roller traction, an essential aspect in the system analysis of tire rollers. Generally, tire rollers are one of the most useful types of machines employed in road construction, technically applied to many construction fields. We also conceptualize a new hydraulic and driving system as well as define the motion equations for dynamic and hydraulic analysis. First, we design the hydraulic circuit of the steering control and driving machine system, which can be employed to advance the performance of the lateral control, creating a prototype of construction equipment. Second, we formulate the hydraulic steering system model and hydraulic driving system model through tire roller system development technology. Finally, we validate the acquired performance results in actual tire roller equipment using the data acquisition system. These results may perhaps facilitate the establishment of priorities and design strategies for incremental introduction of tire roller technology into the vehicle and construction field.