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981.
C. Sánchez-Rebollo J.R. Jiménez-Octavio 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2015,53(3):392-401
This paper presents a detailed overview of CANDY, a catenary–pantograph dynamic interaction software. Authors describe the main key points of the formulation, focusing on its time-integration scheme, the pantograph and contact models as well as the solution of the initial equilibrium problem. Nonetheless one of the most important features of CANDY is its moving finite element mesh, which enables accurate results without excessive computational cost. The validation of the model against the European Standard EN 50318 and some conclusions and comments about the results of the benchmark are also included. 相似文献
982.
B. Suh Y. H. Chang S. B. Han Y. J. Chung 《International Journal of Automotive Technology》2012,13(5):701-711
The plug-in hybrid electric bus (HEB) is designed to overcome the vulnerable driving range and performance limitations of a purely electric vehicle (EV) and have an improved fuel economy and lower exhaust emissions than those of a conventional bus and convention HEBs. The control strategy of the plug-in parallel HEB??s complicated connected propulsion system is one of the most significant factors for achieving a higher fuel economy and lower exhaust emissions than those of the HEV. The proposed powertrain control strategy has flexibility in adapting to the battery??s state of charge (SOC), exhaust emissions, classified driving patterns, driving conditions, and engine temperature. Simulation is required to model hybrid powertrain systems and test and develop powertrain control strategies for the plug-in parallel HEB. This paper describes the simulation analysis tools, powertrain components?? models and modifications, simulation procedure, and simulation results. 相似文献
983.
In the globalization era, lean initiatives and environmental management systems are increasingly implemented in the automotive industry. The aim of this report is to investigate and perform structural analysis of Lean Six Sigma (LSS) and Organizational Performance (OP). Data were obtained from 252 top management leaders in the Malaysian automotive industry. This report presents the results of the Exploratory Factor Analyses (EFA), Confirmatory Factor Analysis (CFA), and reliability analysis, which are empirically verified and validated. A set of assessment measurements of LSS and OP is expected to be suitable for their characteristics and improve their competitiveness. Thus, the main objective of the analysis was to provide additional insight into the relationship between LSS and OP by examining the effects of ISO 14001 certification as a moderator. The results indicate that ISO 14001 certification does not significantly moderate the relationship between LSS and OP in the Malaysian automotive industry. However, the OP values for ISO 14001 certified companies are higher than those without ISO 14001 certification. 相似文献
984.
S. H. Jeong J. E. Lee S. U. Choi J. N. Oh K. H. Lee 《International Journal of Automotive Technology》2012,13(7):1133-1140
Recently, the advanced driver assistance system (ADAS), which helps mitigate car accidents, has been developed using environmental detection sensors, such as long and short range radar, lidar, wide dynamic range cameras, ultrasonic sensors and laser scanners. Among these detection sensors, radars can quickly provide drivers with reliable information about the velocity, distance and direction of a target obstacle, as well as information about the vehicle in changing weather conditions. In the adaptive cruise control system (ACCS), three radar sensors are usually needed because two short range radars are used to detect objects in the adjacent lane and one long range radar is used to detect objects in-path. In this paper, low-cost radar based on a single sensor, which can detect objects in both the adjacent lane and in-path, is proposed for use in the ACCS. Before designing the proposed radar, we analyzed the world-wide radar technology and market trends for ACCS. Based on this analysis, we designed a novel radar sensor for the ACCS using radar components, such as an antenna, transceiver module, transceiver control module and signal processing algorithm. Finally, target detection experiments were conducted. In the experimental results, the proposed single radar can successfully complete the detection required for the ACCS. In the conclusion, the perspective and issues in the future development of the ACCS radar are described. 相似文献
985.
S. Kim K. Park H. J. Song Y. K. Hwang S. J. Moon H. S. Ahn M. Tomizuka 《International Journal of Automotive Technology》2012,13(1):87-95
Developed in this research is a control logic for the ARC (Active Roll Control) system that uses rotary-type hydraulic stabilizer
actuators at the front and rear axles. The hydraulic components of the system were modeled in detail using AMESim, and a driving
logic for the hydraulic circuit was constructed based upon the model. The performance of the driving logic was evaluated on
a test bench, and it demonstrated good pressure tracking capability. The control logic was then designed with the target of
reducing the roll motion of the vehicle during cornering. The control logic consists of two parts: a feedforward controller
that generates anti-roll moments in response to the centrifugal force, and a feedback controller that generates anti-roll
moments in order to make the roll angle to follow its target value. The developed ARC logic was evaluated on a test vehicle
under various driving conditions including a slowly accelerated circular motion and a sinusoidal steering. Through the test,
the ARC system demonstrated successful reduction of the roll motion under all conditions, and any discomfort due to the control
delay was not observed even at a fast steering maneuver. 相似文献
986.
J. Choi S. S. Kim S. S. Rhim J. H. Choi 《International Journal of Automotive Technology》2012,13(2):255-261
This study uses an elastohydrodynamic lubrication model coupled with multi-flexible-body dynamics (MFBD) to analyze dynamic
bearing lubrication characteristics, such as pressure distribution and oil film thickness. To solve the coupled fluid-structure
interaction system, this study uses an MFBD solver and an elastohydrodynamics module. The elastohydrodynamics module passes
its force and torque data to the MFBD solver, which can solve general dynamic systems that include rigid and flexible bodies,
joints, forces, and contact elements. The MFBD solver analyzes the positions, velocities, and accelerations of the multi-flexible-body
system while incorporating the pressure distribution results of the elastohydrodynamics module. The MFBD solver then passes
the position and velocity information back to the elastohydrodynamics solver, which reanalyzes the force, torque, and pressure
distribution. This iteration is continued throughout the analysis time period. Other functions, such as mesh grid control
and oil hole and groove effects, are also implemented. Numerical examples for bearing lubrication systems are demonstrated. 相似文献
987.
S.?Lee Y.?Cho M.?Song H.?Kim J.?Park D.?BaikEmail author 《International Journal of Automotive Technology》2012,13(3):355-363
Particulate matter in diesel engine exhaust, particularly nano-particles, can cause serious human health problems including
diseases such as lung cancer. Because diesel nano-particle issues are of global concern, regulations on particulate matter
emissions specify that not only the weight of particulate matter emitted but also the concentration of nanoparticles must
be controlled. This study aimed to determine the effects on nano-particle and PM emissions from a diesel engine when applying
a urea-SCR system for NOx reduction. We found that PM weight increases by approximately 90% when urea is injected in ND-13 mode over the emission without
urea injection. Additionally, PM weight increases as the NH3/NOx mole ratio is increased at 250 °C. In SEM scans of the collected PM, spherical particles were observed during urea injection,
with sizes of approximately 200 nm to 1 μm. This study was designed to determine the conditions under which nano-particles
and PM are formed in a urea-SCR system and to relate these conditions to particle size and shape via a quantitative analysis
in ND-13 mode. 相似文献
988.
G. D’Errico T. Lucchini S. Merola C. Tornatore 《International Journal of Automotive Technology》2012,13(3):389-399
A combination of experimental and numerical methodologies is proposed for the investigation of knocking in spark ignition engines to aid in better understanding the physical and chemical processes that occur and to exploit the capabilities of a developed computational tool. The latter consists of a thermo-fluid dynamics model, which is part of an advanced 1-D fluid dynamics code for the simulation of the entire engine, and a complex chemistry model, which can be embedded into the thermo-fluid dynamics model using the same integration algorithm for the conservation equations and the reacting species. Their mutual interaction in the energy balance will be considered. The experimental activity was carried out in the combustion chamber of an optically accessible, single-cylinder P.F.I. engine equipped with a commercial head. The experimental data consisted of optical measurements correlated to the combustion and auto-ignition processes within the cylinder. The optical measurements were based on 2-D digital imaging, UV visible natural emission spectroscopy and the chemiluminescence of radical species (OH and HCO). The engine parameters, the pressure signals of the related data and optical acquisition are compared on an individual cycle basis in the simulation by running the engine at a constant speed and varying the spark advance from normal combustion to heavy knock conditions. 相似文献
989.
Effect of residual stress on impact damage in a dissimilar laminated plate at a biaxial bending mode
S. Y. Oh 《International Journal of Automotive Technology》2008,9(3):347-352
Systematic investigations have been performed on the mechanisms that lead to impact damage in a dissimilar laminated plate
with a thermal residual stress at a biaxial bending mode. Glass/polymer laminated plates are often used as blast-proof safety
screens, and bullet-proof windows, and in windshields in the automotive and the aerospace and aeronautical fields. Their many
advantages, the development of new materials, and the need for high-performance, low-weight structures ensure that laminated
plate construction will continue to be in demand. In this work, the impact damage in glass/Al alloy laminated circular plates
cured at RT and 80°C was investigated using an instrumented long bar impact tester at a biaxial bending mode. A circular plate
was cured at different curing temperatures to form a thermally induced residual stress at the bonding interface. To improve
the damage tolerance of laminated circular plates, various geometric (thickness ratio of the inner to outer layer) and material
parameters are considered by determining their effects of maximizing impact absorbed energy. The measured impact force profiles
and the impulse of the force explained the impact damage behaviors induced in the laminated circular plates. We show that
a compressive residual stress could reduce the initiation of radial cracks and the impact damaged area of the laminated plate
in the outer layer. Greater an inner layer thickness results in smaller a damaged area. A design guideline for effective dissimilar
laminated plate construction is proposed. 相似文献
990.
C. Oh Y. S. Kang Y. Youn A. Konosu 《International Journal of Automotive Technology》2008,9(2):191-196
Pedestrian-related accidents are considered to be the most serious of traffic accidents due to the associated high fatality
rates. In Korea, pedestrian fatalities accounted for approximately 40% of all traffic-related fatalities in 2004. Significant
efforts have been made to develop effective countermeasures for pedestrian-vehicle collisions. A basis for devising such countermeasures
is to understand the characteristics of pedestrian-vehicle collisions. This study develops a pedestrian fatality model capable
of predicting the probability of fatality in pedestrian-vehicle collisions. Binary logistic regression and a probabilistic
neural network (PNN) are employed to estimate the probability of pedestrian fatality. Pedestrian age, vehicle type and collision
speed are used as independent variables of the fatality model. The models developed herein are valuable tools that can be
used to direct safety policies and technologies associated with pedestrian safety. 相似文献