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631.
A. Gauchía E. Olmeda M. J. L. Boada B. L. Boada V. Díaz 《International Journal of Automotive Technology》2014,15(3):451-461
Engineering bus design requires testing of bus structures prototypes in order to guarantee a certain level of strength and an appropriate static and dynamic behavior of the bus superstructure when exposed to road loads. However, experimental testing of real bus structures is very expensive as it requires expensive resources and space. If testing is done on a scale bus model the previous required expenses are considerably reduced. Therefore, a novel methodology based on dimensional analysis applied to bus structure prediction to evaluate the bus structure static and dynamic performance is proposed. The static performance is evaluated attending to torsion stiffness and the dynamic in terms of the natural vibration frequencies and rollover threshold. A scale bus has been manufactured and dimensionless parameters have been defined in order to project the results obtained in the scale bus model to a larger model. Validation of the proposed methodology has been carried out under experimental and finite element analysis. 相似文献
632.
I. Youn R. Tchamna S. H. Lee N. Uddin S. K. Lyu M. Tomizuka 《International Journal of Automotive Technology》2014,15(3):399-410
In this study, preview control algorithms for the active and semi-active suspension systems of a full tracked vehicle (FTV) are designed based on a 3-D.O.F model and evaluated. The main issue of this study is to make the ride comfort characteristics of a fast moving tracked vehicle better to keep an operator’s driving capability. Since road wheels almost trace the profiles of the road surface as long as the track doesn’t depart from the ground, the preview information can be obtained by measuring only the absolute position or velocity of the first road wheel. Simulation results show that the performance of the sky-hook suspension system almost follows that of full state feedback suspension system and the on-off semi-active system carries out remarkable performance with the combination of 12 on-off semi-active suspension units. The results simulated with 1st and 2nd weighting sets mean that the suspension system combined with the soft type of inner suspension and hard type of outer suspension can carry out better ride comfort characteristics than that with identical suspensions. The full tracked vehicle (FTV) system is uncontrollable and the system is split into controllable and uncontrollable subspace using singular value decomposition transformation. Frequency response curves to four types of inputs, such as heaving, pitching, rolling, and warping inputs, also demonstrate the merits of preview control in ride comfort. All the frequency characteristic responses confirm the continuous time results. 相似文献
633.
Road boundaries can give useful information for evaluating safe vehicle paths in intelligent vehicles. Much previous research has studied road boundary detection, using different types of sensors such as vision, radar, and lidar. Lidar sensors, in particular, show advantages for road boundary extraction including high resolution and wide field of view. However, none of the previous studies examined the problem of detecting road boundaries when roads could be either structured or unstructured. In this study, we developed a road boundary detection and tracking algorithm using lidar sensing for both structured and unstructured roads. The algorithm extracts road features as line segments in polar coordinates relative to the lidar sensor. The extracted road features are then tracked with respect to a vehicle’s local coordinates using a nearest neighbor filter. The proposed algorithm accurately detected the road boundaries regardless of the road type. 相似文献
634.
Durability prediction for automobile aluminum front subframe using nonlinear models in virtual test simulations 总被引:1,自引:0,他引:1
This research work presents fatigue life evaluation techniques for an automotive vehicle aluminum front subframe using virtual test simulation technology with nonlinear suspension components model. The technology was used for improving the accuracy of the polynomial model used in conventional analysis. The proposed nonlinear suspension components models were developed using direct approach. The effects of the nonlinear elements on the prediction of the fatigue life were also analyzed. Actual aluminum front subframe was tested using half-car road test simulator to verify the accuracy of the models. It was found that the proposed nonlinear models yield more accurate results than conventional polynomial models. The proposed virtual test simulation technology with nonlinear suspension components model can be used to predict fatigue life for vehicle chassis structures more accurately. 相似文献
635.
A wheel tracking test was modelled to gain better understanding of the deflection and stress-strain distribution in an overlaid cracked pavements with and without membrane interlayer (SAMI). For this purpose, commercial finite element software Abaqus 6.7-1 was used. Two different models were considered, one incorporating stress absorbing membrane interlayers (SAMIs) and the other without SAMI. In the study, full bond condition was assumed for the boundaries between the layers, and a linear elastic model was used for the analysis. The results show that introduction of SAMI caused greater deflection of the pavement. It is found that although with SAMIs, low stiffness is required, a very low stiffness may yield undesirable results. The results show that the introduction of SAMIs results in high strain concentration around the crack region, whilst the strain in the overlay is smaller than the values predicted in the models without SAMIs. 相似文献
636.
Václav?PlevkaEmail authorView authors OrcID profile Pieter?Segaert Chris?M.?J.?Tampère Mia?Hubert 《Transportation》2016,43(6):979-996
This study investigates travel behavior determinants based on a multiday travel survey conducted in the region of Ghent, Belgium. Due to the limited data reliability of the data sample and the influence of outliers exerted on classical principal component analysis, robust principal component analysis (ROBPCA) is employed in order to reveal the explanatory variables responsible for most of the variability. Interpretation of the results is eased by utilizing ROSPCA. The application of ROSPCA reveals six distinct principal components where each is determined by a few variables. Among others, our results suggest a key role of variable categories such as journey purpose-related impedance and journey inherent constraints. Surprisingly, the variables associated with journey timing turn out to be less important. Finally, our findings reveal the critical role of outliers in travel behavior analysis. This suggests that a systematic understanding of how outliers contribute to observed mobility behavior patterns, as derived from travel surveys, is needed. In this regard, the proposed methods serve for processing raw data typically used in activity-based modelling. 相似文献
637.
This paper presents a detailed exploratory analysis of joint activity participation characteristics using the American Time
Use Survey (ATUS). As a very large nationwide survey that explicitly elicited information on both household and non-household
companions for each activity episode, the ATUS is ideally suited for this analysis. Several intuitive and interesting results
are obtained. Joint episodes are found to be of longer durations, significantly likely to take place at the residence of other
people, and often confined to certain time periods of the weekday. In addition, important differences in these characteristics
are also observed based on activity purpose, companion type, and the day of the week. These findings are intended to provide
the basis for the justification of detailed collection of joint activity–travel participation information in household activity–travel
surveys, and also as a stimulant for further empirical analysis and modeling of joint activity participation behavior.
相似文献
Chandra R. BhatEmail: |
638.
639.
In this work a two-stroke scooter engine was modified to work with semi-direct injection of gasoline at a pressure of 8 bar
from an injector in the cylinder barrel pointed toward the cylinder head. The influence of injection timing, injection pressure,
spark plug location and air-fuel ratio, on performance, emissions and combustion characteristics has been investigated. In
addition, a comparison has been made with manifold injection of gasoline on the same engine at a given speed and various outputs.
A significant reduction in HC emissions and fuel consumption with no adverse effects on NOx emissions and combustion stability
was observed. A small drop in power and increase in CO emission were observed disadvantages of the new injection system. Injection
timing was found to be the most important factor and a balance between reduction in shortcircuited fuel by late injection,
and time for mixture preparation by advancing the injection, was found to be essential. 相似文献
640.
Reliability-based sensitivity analysis of vehicle components with non-normal distribution parameters
Techniques from the perturbation method, fourth moment method, reliability-based design theory, and sensitivity analysis approach
are employed to present a practical and efficient method for testing the reliability sensitivity of vehicle components with
non-normal distribution parameters. With the condition that the first four moments of original random variables are known,
the reliability sensitivity theory and cases are researched using the presented numerical method. The variation regularities
of reliability sensitivity are obtained and the effects of design parameters on reliability of the vehicle components are
studied. The sophisticated formulation provided in this paper is easily amenable to computational procedures. The respective
program can be used to obtain the reliability sensitivity of vehicle components with non-normal distribution parameters accurately
and quickly. The results obtained are perfect and the solutions compared very well with those from Monte Carlo simulation.
The method presents a theoretic basis for the reliability design of the vehicle components. 相似文献