• 제목/요약/키워드: special vehicle

검색결과 321건 처리시간 0.027초

역설계 기반의 군용 특수 트럭용 중간변속기 개발에 관한 연구 (A Research on Development of Transfer Case for Military Special Trucks based the Reverse Engineering)

  • 김원재;문태상;이일랑;이재우;나경운
    • 한국군사과학기술학회지
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    • 제22권6호
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    • pp.754-762
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    • 2019
  • The transfer case for special truck are usually produced by only a few specialized companies. The special technical data are not unveiled. In order to complete the development successfully, it is necessary to carry out the compatibility tests such as the running test on the vehicle, which is the test condition of the military vehicle. In this research, transfer case the core-component of the '230 mm K-MLRS' has been developed with the reverse engineering and the prototype is developed through structural analysis. The transfer case developed through this research is currently used in the '230 mm K-MLRS'. The development process In this research are useful in the development of similar products.

전차륜 독립휠 구동 및 조향 제어 기반 특수목적용 6WD/6WS 차량의 주행제어 알고리즘 연구 (A Study on Maneuvering Control Algorithm Based on All-wheel Independent Driving and Steering Control for Special Purpose 6WD/6WS Vehicles)

  • 이대옥;여승태
    • 한국군사과학기술학회지
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    • 제16권3호
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    • pp.240-249
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    • 2013
  • This paper discusses the maneuvering control algorithm based on all-wheel independent driving and steering control techniques for special purpose 6WD/WS vehicles. The maneuvering control algorithms considering superior dynamic characteristics of high power in-wheel motors and independent steering system are designed to perform driving, steering, vehicle stability, and fault tolerant control. The maneuvering controller applies sliding and optimal control theories considering optimal torque distribution and friction circle related to the vertical tire force. The fault tolerant control algorithm is applied to obtain the similar maneuverability to that of the non-faulty vehicle. The simulations using the Matlab/Simulink dynamics model and experiments using HIL simulator mounting the real controllers with the designed control algorithms prove the improved performances in terms of vehicle stability and maneuverability.

Development of DC Controller for Battery Control for Elevator Car

  • Lee, Sang-Hyun;Kim, Sangbum
    • International Journal of Internet, Broadcasting and Communication
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    • 제13권2호
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    • pp.103-111
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    • 2021
  • Among transport vehicles, Special Vehicles (SVs) are seriously exposed to energy and environmental problems. In particular, elevator cars used when moving objects in high-rise buildings increase the engine's rotational speed (radian per second: RPM). At this time, when the vehicle accelerates rapidly while idling, energy consumption increases explosively along with the engine speed, and a lot of soot is generated. The purpose of this paper is to develop a bi-directional DC-DC converter for control of vehicle power and secondary battery used in an elevated ladder vehicle (EC) used in the moving industry. As a result of this paper, the performance test of the converter was conducted. The charging/discharging state of the converter was simulated using DC power supply and DC electronic load, and a performance experiment was conducted to measure the input/output power of the converter through a power meter. Through this experimental result, it was confirmed that the efficiency was more than 92% in Buck mode and Boost mode at maximum 1.2kW output.

루프 마크를 이용한 특수차량 인식 (Recognition of Special Vehicles Using Roof Marks)

  • 김석영;이재성
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2016년도 추계학술대회
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    • pp.293-296
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    • 2016
  • 복잡한 도심의 도로 상황에서 긴급 상황 발생 시 이동하는 특수목적 차량(경찰, 소방, 구급 등)에 대한 신속한 양보가 필요하다. 이러한 긴급 차량의 이동 상황을 도로 인프라가 인지해 교통 신호 제어기 및 일반 차량들에 WAVE나 TPEG 등 무선 네트워크를 통해 먼 곳까지 메시지를 전달한다면 일반 차량들이 길을 양보하기 위한 사전 준비 작업이 가능해져 특수목적 차량들이 훨씬 더 신속하게 이동할 수 있게 된다. 본 논문에서는 마크 인식 알고리즘을 통해 특수차량의 지붕에 설치한 루프 마크를 활용하여 마크의 투영 변환 및 정보 디코딩으로 마크를 검출하고 내부의 정보를 획득한다. 실험 결과 마크의 크기가 $88cm{\times}88cm$ 이상일 때 50Km/h의 속도에서 100% 인식이 되고 마크 내부의 디지털 데이터도 93.3% 인식 가능함을 확인하였다.

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첨단 차량 안전관리장치 운영을 통한 물류 안전관리시스템 구현 (Realization of Logistics Safety Management System By Operating Advanced Vehicle Safety Management Device)

  • 문회권;강경식
    • 대한안전경영과학회지
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    • 제20권2호
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    • pp.1-8
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    • 2018
  • This study aims to provide a real-time information to the driver by effectively operating the advanced safety device attached to the freight vehicle, thereby minimizing insecure behavior of the driver such as speeding, rapid acceleration, sudden braking, And improve driving habits to prevent accidents and save energy. Advanced safety equipment is a device that warns the driver that the vehicle leaves the driving lane regardless of the intention of the driver and reduces the risk of traffic accidents by mitigating or avoiding collision by detecting a frontal collision during driving.The main contents of this report are as follows: In case of installing a warning device on a lane departing vehicle (excluding a light vehicle) and a lorry or special vehicle with a total weight exceeding 3.5 tonnes, the driver must continue to operate unless the driver releases the function.In addition, when the automatic emergency braking system is installed, the structure should be such that the braking device is operated automatically after warning the driver when the risk of collision with the running or stopped vehicle in the same direction is detected in front of the driving lane.

6WS/6WD 차량의 독립조향 및 구동 제어알고리즘에 관한 연구 (A Study on Independent Steering & Driving Control Algorithm for 6WS/6WD Vehicle)

  • 김창준;한창수
    • 제어로봇시스템학회논문지
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    • 제17권4호
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    • pp.313-320
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    • 2011
  • Multi-axle driving vehicles that are used in special environments require high driving performance, steering performance, and stability. Among these vehicles, 6WS/6WD vehicles with middle wheels have structural safety by distributing the load and reducing the pitch angle during rapid acceleration and braking. 6WS/6WD vehicles are favored for military use in off road operations because of their high maneuverability and mobility on extreme terrains and obstacles. 6WD vehicles that using in-wheel motor can generate the independent wheel torque without other mechanical parts. Conventional vehicles, however, cannot generate an opposite driving force at each side wheel. Using an independent steering and driving system, six-wheel vehicles can show better performance than conventional vehicles. Using of independent steering and driving system, the 6 wheel vehicle can improve a performance better than conventional vehicle. This vehicle enhances the maneuverability under low speed and the stability at high speed. This paper describes an independent 6WS/6WD vehicle, consists of three parts; Vehicle Model, Control Algorithm for 6WS/6WD and Simulation. First, vehicle model is application of TruckSim software for 6WS and 6WD. Second, control algorithm describes the optimum tire force distribution method in view of energy saving. Last is simulation and verification.

Multi-objective optimization of double wishbone suspension of a kinestatic vehicle model for handling and stability improvement

  • Bagheri, Mohammad Reza;Mosayebi, Masoud;Mahdian, Asghar;Keshavarzi, Ahmad
    • Structural Engineering and Mechanics
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    • 제68권5호
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    • pp.633-638
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    • 2018
  • One of the important problems in the vehicle design is vehicle handling and stability. Effective parameters which should be considered in the vehicle handling and stability are roll angle, camber angle and scrub radius. In this paper, a planar vehicle model is considered that two right and left suspensions are double wishbone suspension system. For a better analysis of the suspension geometry, a kinestatic model of vehicle is considered which instantaneous kinematic and statics relations are analyzed simultaneously. In this model, suspension geometry is considered completely. In order to optimum design of double wishbones suspension system, a multi-objective genetic algorithm is applied. Three important parameters of suspension including roll angle, camber angle and scrub radius are taken into account as objective functions. Coordinates of suspension hard points are design variables of optimization which optimum values of them, corresponding to each optimum point, are obtained in the optimization process. Pareto solutions for three objective functions are derived. There are important optimum points in these Pareto solutions which each point represents an optimum status in the model. In other words, corresponding to any optimal point, a specific geometric position is determined for the suspension hard points. Each of the obtained points in the Pareto optimization can be selected for a special design purpose by designer to create an optimum condition in the vehicle handling and stability.

무인자동차의 경로점 주행 시 장애물 회피를 위한 경로생성 알고리즘 (A Path Generation Algorithm for Obstacle Avoidance in Waypoint Navigation of Unmanned Ground Vehicle)

  • 임준혁;유승환;지규인;이달호
    • 제어로봇시스템학회논문지
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    • 제17권8호
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    • pp.843-850
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    • 2011
  • In this paper, an effective path generation algorithm for obstacle avoidance producing small amount of steering action as possible is proposed. The proposed path generation algorithm can reduce unnecessary steering because of the small lateral changes in generated waypoints when UGV (Unmanned Ground Vehicle) encounters obstacles during its waypoint navigation. To verify this, the proposed algorithm and $A^*$ algorithm are analyzed through the simulation. The proposed algorithm shows good performance in terms of lateral changes in the generated waypoint, steering changes of the vehicle while driving and execution speed of the algorithm. Especially, due to the fast execution speed of the algorithm, the obstacles that encounter suddenly in front of the vehicle within short range can be avoided. This algorithm consider the waypoint navigation only. Therefore, in certain situations, the algorithm may generate the wrong path. In this case, a general path generation algorithm like $A^*$ is used instead. However, these special cases happen very rare during the vehicle waypoint navigation, so the proposed algorithm can be applied to most of the waypoint navigation for the unmanned ground vehicle.

유한요소해석을 통한 특수차량용 선회베어링의 구조 안전성 평가 (Structural Stability Evaluation for Special Vehicle Slewing Bearing using Finite Element Analysis)

  • 서현수;이호준;안태수
    • 한국산학기술학회논문지
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    • 제22권1호
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    • pp.511-519
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    • 2021
  • 저고도 비행으로 접근하는 적 비행 체계를 신속한 대응 사격으로 제압하는 대공화기용 특수 차량에 차체와 포탑의 회전동력 전달에 선회 베어링이 적용되고 있다. 특수 차량의 전투 임무 수행 과정에서 포탑 하중과 사격 시 발생되는 충격 하중 등이 복합적으로 작용할 때 구조적 안정성이 확보되어야 성공적인 기능 발휘가 가능하다. 선회 베어링의 구성품 중 링기어, 롤러 및 와이어 레이스의 형상과 소재 특성을 고려하여 차량의 포탑 구동과 사격에 의해 작용하는 복합 하중에 대한 구성품의 안정성을 평가하고자 하였다. 안정성 평가를 위한 연구 방법으로는 공학 이론을 바탕으로 구성품의 강도 특성을 수치적 계산을 통해 살펴보고, 다음으로 상용 해석 프로그램인 ANSYS를 이용하여 구성 부품들에 대한 유한 요소 해석을 수행하였다. 이론적 해석과 유한 요소 해석 결과의 상호 비교 결과 매우 유사함을 확인할 수 있었다. 해석 중심으로 수행된 선회 베어링에 대한 구조 안정성 평가 결과로 보아 국산화 개발초기 예비 설계 단계에서 결정한 선회 베어링의 설계 강도가 충분함을 확인하였다.