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191.
192.
In this part of the paper, three dimensional computational capabilities, that includes significant details, are developed for the nonlinear dynamic analysis of large scale spatial tracked vehicles. Three dimensional nonlinear contact force models that describe the interaction between the track links and the vehicle components such as the rollers, sprockets, and idlers as well as the interaction between the track links and the ground are developed and used to define the generalized contact forces associated with the vehicle generalized coordinates. Tangential friction and contact forces are developed in order to maintain the stability of the track motion and avoid the slippage of the track or its rotation as a rigid body. Body and surface coordinate systems are introduced in order to define the spatial contact conditions. The nonlinear equations of motion of the tracked vehicle are solved using the velocity transformation procedure developed in the first part of this paper. This procedure is used in order to obtain a minimum set of differential equations, and avoid the use of the iterative Newton-Raphson algorithm. A computer simulation of a tracked vehicle that consists of one hundred and six bodies and has one hundred and sixteen degrees of freedom is presented in order to demonstrate the use of the formulations presented in this study.  相似文献   
193.
In this paper, the nonlinear dynamic equations of motion of the three dimensional multibody tracked vehicle systems are developed, taking into consideration the degrees of freedom of the track chains. To avoid the solution of a system of differential and algebraic equations, the recursive kinematic equations of the vehicle are expressed in terms of the independent joint coordinates. In order to take advantage of sparse matrix algorithms, the independent differential equations of the three dimensional tracked vehicles are obtained using the velocity transformation method. The Newton-Euler equations of the vehicle components are defined and used to obtain a sparse matrix structure for the system dynamic equations which are represented in terms of a set of redundant coordinates and the joint forces. The acceleration solution obtained by solving this system of equations is used to define the independent joint accelerations. The use of the recursive equations eliminates the need of using the iterative Newton-Raphson algorithm currently used in the augmented multibody formulations. The numerical difficulties that result from the use of such augmented formulations in the dynamic simulations of complex tracked vehicles are demonstrated. In this investigation, the tracked vehicle system is assumed to consist of three kinematically decoupled subsystems. The first subsystem consists of the chassis, the rollers, the sprockets, and the idlers, while the second and third subsystems consist of the tracks which are modeled as closed kinematic chains that consist of rigid links connected by revolute joints. The singular configurations of the closed kinematic chains of the tracks are also avoided by using a penalty function approach that defines the constraint forces at selected secondary joints of the tracks. The kinematic relationships of the rollers, idlers, and sprockets are expressed in terms of the coordinates of the chassis and the independent joint degrees of freedom, while the kinematic equations of the track links of a track chain are expressed in terms of the coordinates of a selected base link on the chain as well as the independent joint degrees of freedom. Singularities of the transformations of the base bodies are avoided by using Euler parameters. The nonlinear three dimensional contact forces that describe the interaction between the vehicle components as well as the results of the numerical simulations are presented in the second part of this paper.  相似文献   
194.
An Optimal Self-Tuning Controller for an Active Suspension   总被引:27,自引:0,他引:27  
An optimal self-tuning control algorithm is presented for vehicle suspension design. The controller, incorporating a weighting controller, state observer and parameter estimator, is designed according to linear optimal control (LQG) theory. Based on the updated estimates of vehicle parameters and states, and the adapted weighting parameters, the LQG controller provides the optimal set of gains over different operating conditions. The feasibility and effectiveness of the proposed self-tuning system was investigated and proved by simulation studies.  相似文献   
195.
在讨论了含水率对路用土质量的影响因素后,通过对不同种类测试器的分析,确定了较为适用的微波传感器,并给出了微波传感器的输出电压与集料含水率之间的关系式,进而对测试准确度进行计算。  相似文献   
196.
For off-road vehicles, minimizing the absorbed power is the main objective of suspension control. The primary cause of increase in the absorbed power in off-road vehicles driven at high speeds on harsh courses is the exhaustion of the suspension travel. Fuzzy-logic approach to active and semi-active off-road vehicle suspension control, with the goal of improving the speed of the vehicle over rough terrains are developed. The ride metric used for quantifying improvements is the absorbed power of the sprung mass. Particular attention is paid to the proper modeling of the suspension using both the full kinematic constraints and the more convenient two degree of freedom linear model of the quarter vehicle suspension. The nonlinearities due to the kinematic constraints on motion are accounted for by modifying the stiffness and damping coefficients of the suspension spring and dashpot in the linear model. The control laws are developed using the less complex model and demonstrated in the fully constrained environment. Nonlinearities of the suspension, including tire stiffness/damping and bumpstops are included at all stages of controller development.  相似文献   
197.
千岛湖大桥V形墩刚构施工技术   总被引:2,自引:0,他引:2  
李富仓  王鹤 《桥梁建设》2005,(Z1):76-78
千岛湖大桥主桥为(70+7×105+70+40) m连续刚构,其中1~8号墩为V形墩,介绍V形墩刚构的施工方法、临时水平预应力技术措施及不利工况的计算.  相似文献   
198.
在目前先进的视频检测技术、车牌号码识别技术、无线通信网络技术、GPS授时技术、计算机技术等高新技术的基础上,对设计出适用于广东省现行高速公路实际的机动车行驶速度检测系统加以阐述,并对该系统与其他应用系统相结合,投入交通监控的应用情况加以介绍。  相似文献   
199.
介绍了国外军用轻型全地形车的发展现状,分析了轻型全地形车的性能特点和关键技术,对其发展趋势作出了预测。  相似文献   
200.
采用计算机辅助分析的方法设计了乙醇还原剂添加装置,并使用这套装置在发动机台架上进行了稀燃NOx选择催化还原(SCR)催化剂的性能评价试验。试验结果表明,在30000h^-1空速、排温为350~420℃范围的条件下,该催化剂的NOx转化率维持在90%以上,而在低温和高温下的转化率较低;随着乙醇添加量的增加,催化剂NOx转化率提高,但同时会增加THC排放;当空速超过40000h^-1后,催化剂性能有所下降。  相似文献   
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