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722.
A.G. Thompson P.M. Chaplin 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》1996,25(3):185-202
For a simple vehicle active suspension system complete optimality and zero steady state body displacements may be achieved if the axle and body accelerations, and other easily measured quantities, are included in the performance index. Apart from not requiring an observer, this also allows the optimal feedback gains to be determined for an arbitrary body spring rate. In a theoretical example, model parameters matching those of an experimental test rig are employed. The results of computer simulations, with and without an electrohydraulic servovalve and actuator, are compared to demonstrate the effects of inner loop gain on force control. Aspects of the system behaviour including lockup are commented upon. 相似文献
723.
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725.
介绍了青藏铁路隧道、桥梁桩基成孔、路基机械设备配置的原则、配套方案以及机械化施工在“地球第三极”显示出的巨大威力。 相似文献
726.
A.G. Thompson C.E.M. Pearce 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》1998,30(1):17-35
An optimal preview type active suspension with feedback control based on easily measured relative displacements, velocities and accelerations is proposed. Measurements relative to the road, except by the preview sensor, are not required and the front and rear spring rates are quite arbitrary. Also, state estimators or observers are unnecessary and as a practical alternative the body accelerometers may be replaced by load cells. The effects of preview on the performance, for a theoretical step type road input and an analogous random road input, are described. The definition of the optimum preview function, and its consequent effects on performance, receives attention and an example is given. 相似文献
727.
G. F. Hayhoe 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》1979,8(1):49-72
A model of driver behavior is described which is based on a current theory of neurophysiological processes occurring in the cerebellum. The model learns to control the vehicle through experience, provides discontinuous ramp steer inputs to the vehicle, accepts discontinuous input data, and is applicable to all control situations.
The model is implemented on a simple simulation model of a car and learning is accomplished by the use of an explicit driver model which drives the vehicle along a specified trajectory. 相似文献
The model is implemented on a simple simulation model of a car and learning is accomplished by the use of an explicit driver model which drives the vehicle along a specified trajectory. 相似文献
728.
An Active Suspension with Optimal Linear State Feedback 总被引:6,自引:0,他引:6
A. G. Thompson 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》1976,5(4):187-203
In this paper modern optimal control theory is applied to the design of an active suspension system for a motor vehicle. The road profile is assumed to be continuous and random with a power spectral density (P.S.D.) which varies inversely with the square of the frequency. The quadratic integral type performance index employed is a weighted sum of the integral squares of body acceleration, dynamic tyre deflection and relative body-to-axle displacement. A solution is obtained for the infinite time case which is both computationally and physically realizable as an active suspension in which the only continuous measurements required are the body absolute velocity and the body displacement relative to the road. The performance is compared with that of a conventional type passive suspension and found to be significantly better in practically all respects. 相似文献
729.
Strathman James G. Kimpel Thomas J. Dueker Kenneth J. Gerhart Richard L. Callas Steve 《Transportation》2002,29(3):321-345
In this paper, archived Automatic Vehicle Location and Automatic Passenger Counter data are used to evaluate actual bus running time variation in relation to scheduled service for Tri-Met, the transit provider for the Portland, Oregon metropolitan area. Given observed variation in running times, scheduled recovery times are found to be generally (though not universally) excessive. This results in an under-investment of resources in revenue service relative to non-revenue service. Analysis of trip level data reveals that bus operators are an important source of running time variation after controlling for such factors as route design, time of day and direction of service, and passenger activity. 相似文献
730.