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1.
滚装船冷却水系统的优化设计与热力性能研究   总被引:1,自引:0,他引:1  
本文以12300t滚装船为母体,运用非线性规划理论对独立式和混合式两套冷却水系统进行了优化计算和分析,并对其冷却水系统的冷却效果和经济性进行了评估.同时还对其多主机双套冷却水系统进行了热力性能研究,对其在系统额定热负荷下和变负荷下的热力特性进行了分析计算,通过计算定量地揭示出其冷却系统的节能潜力.上述分析和研究为今后用以指导冷却系统的运行管理,以及为系统节能降耗提供了科学而准确的依据.  相似文献   
2.
介绍了应用船舶交通管理系统(VTS)、船舶自动识别系统(AIS)、全球定位系统(GPS)、地理信息系统(GIS)、通信技术等新技术,将港口作业调度、轮驳调度、引航调度管理整合起来,实创港口业务调度管理的“三调度合一”,进行统一的调度和管理从而提高了工效。  相似文献   
3.
为了提高智能汽车的主动安全性,提出3种不同的自动紧急转向避撞跟踪控制方法。首先建立汽车避撞简化模型,对制动、转向及两者相结合的3种不同避撞方式进行对比分析。其次,为深入研究汽车避撞过程中的实际响应,建立包含转向、制动及悬架3个子系统耦合特性的底盘18自由度统一动力学模型,并进行相关试验验证。随后构建智能汽车自动紧急转向避撞控制框架,对五次多项式参考路径和七次多项式参考路径的横摆角速度和横摆角加速度进行对比分析。接着以线性2自由度转向动力学模型为参考对象,对最优控制四轮转向、最优控制前轮转向、前馈与反馈控制相结合的前轮转向3种不同的跟踪控制系统分别进行设计。最后,以汽车底盘18自由度统一动力学模型为研究对象,对上述3种避撞控制系统进行仿真试验对比分析。研究结果表明:与制动避撞相比而言,转向避撞所需的纵向距离有较大降低,随着车速的增加和路面附着系数的越低,效果越明显;七次多项式参考路径比五次多项式参考路径的避撞过渡过程更为平缓,当实际车速与控制器所用车速不一致时,前者避撞性能表现更优;最优四轮转向控制系统在高、低2种不同附着路面都具有较好的避撞效果,最优前轮转向控制系统次之,而前馈与反馈相结合的前轮转向控制系统在低附着路面上则表现出严重的失稳。  相似文献   
4.
随着很多国际航行船舶选择加装脱硫塔来应对全球限硫令,单个设备运转试航船舶艘次大量增加。该类试航活动次数频繁、航经水域通航环境复杂、参与人员较多且未经必要的培训,存在较大的安全风险。文中归纳加装脱硫塔船舶的试航活动特征,梳理、分析存在的安全隐患和监督难点,提出相应的管理对策和建议。  相似文献   
5.
铁路接触网最优主动控制研究   总被引:1,自引:0,他引:1  
杨岗  李芾 《铁道工程学报》2012,(3):79-84,90
研究目的:本文为研究主动控制对接触网性能的影响,建立了接触网有限元模型,应用Ansys软件计算模型的整体质量及刚度矩阵数据,并利用KMExtract程序分离出整体质量、整体刚度矩阵,据此建立接触网系统动力学方程。为便于系统仿真及控制器设计,使用模态降阶法对系统降阶并将其转化为状态方程形式,而后为系统设计LQR控制器,使用simulink对实施主动控制前后的接触网系统进行动态仿真分析。研究结论:研究表明:(1)对接触网实施主动控制能有效改善其振动特性,接触网振动的最大值、最小值有较大降低,幅度达90%以上,均方差也有较大下降,幅度达70%以上,系统性能得到了极大提升。(2)在通过改变弓网自身参数的方法改善弓网性能遇到瓶颈时,接触网的主动控制或半主动控制将成为改善弓网性能的重要手段。  相似文献   
6.
基于灰色评价理论的自适应最优路径选择   总被引:18,自引:1,他引:18  
充分考虑了驾驶员在路径选择中的不同要求,依据层次分析法和灰色评价理论建立了一种根据驾驶员的偏好自适应选择最优路径的方法,并设计了相应的决策支持系统,为智能交通流诱导系统的进一步发展铺平了道路。  相似文献   
7.
李杰  徐岳  郑凯锋 《公路》2004,(4):73-78
考虑侧向风压产生扭转及温度变化产生纵向变形的作用,通过对双薄壁墩连续刚构桥的受力分析,探讨了双薄壁墩设计的影响因素,以非线性规划为基础,应用罚函数法对双薄壁墩参数进行优化研究。  相似文献   
8.
Adjusting traffic signal timings is a practical way for agencies to manage urban traffic without the need for significant infrastructure investments. Signal timings are generally selected to minimize the total control delay vehicles experience at an intersection, particularly when the intersection is isolated or undersaturated. However, in practice, there are many other potential objectives that might be considered in signal timing design, including: total passenger delay, pedestrian delays, delay inequity among competing movements, total number of stopping maneuvers, among others. These objectives do not tend to share the same relationships with signal timing plans and some of these objectives may be in direct conflict. The research proposes the use of a new multi-objective optimization (MOO) visualization technique—the mosaic plot—to easily quantify and identify significant tradeoffs between competing objectives using the set of Pareto optimal solutions that are normally provided by MOO algorithms. Using this tool, methods are also proposed to identify and remove potentially redundant or unnecessary objectives that do not have any significant tradeoffs with others in an effort to reduce problem dimensionality. Since MOO procedures will still be needed if more than one objective remains and MOO algorithms generally provide a set of candidate solutions instead of a single final solution, two methods are proposed to rank the set of Pareto optimal solutions based on how well they balance between the competing objectives to provide a final recommendation. These methods rely on converting the objectives to dimensionless values based on the optimal value for each specific objectives, which allows for direct comparison between and weighting of each. The proposed methods are demonstrated using a simple numerical example of an undersaturated intersection where all objectives can be analytically obtained. However, they can be readily applied to other signal timing problems where objectives can be obtained using simulation outputs to help identify the signal timing plan that provides the most reasonable tradeoff between competing objectives.  相似文献   
9.
Nonlinear road pricing charges each traveler based on his/her trip’s corresponding particular attribute level. In order to help authorities in designing road pricing systems at a strategic level, this paper attempts to address two fundamental questions: (i) what is the value of pricing’s nonlinearity for mitigating traffic congestion? (ii) if a nonlinear toll function is implemented, should it be convex, concave or other shape? Specifically, we consider distance-based pricing in linear cities. For linear monocentric cities with heterogeneous travelers, we show that the system optimal distance-based pricing indeed exhibits nonlinearity. It is proved that: (i) the cost-based system optimal toll function is monotonically increasing and concave with respect to the traveled distance; (ii) the time-based system optimal toll function always exists and is unique. If the initial proportion of each traveler group is invariant along a corridor and the demand function is of exponential type, then the time-based system optimal toll function enables the travelers, living further away from a city center, to face a lower toll level per unit distance. For a linear polycentric city, we demonstrate: (i) there always exists the system optimal differentiated (in terms of city centers) toll functions; (ii) it is highly possible that the system optimal non-differentiated toll function does not exist. Hence, we further propose an optimal toll design model, prove the Lipschitz continuity of its objective and adopt a global-optimization algorithm to solve it.  相似文献   
10.
Traffic congestion and energy issues have set a high bar for current ground transportation systems. With advances in vehicular communication technologies, collaborations of connected vehicles have becoming a fundamental block to build automated highway transportation systems of high efficiency. This paper presents a distributed optimal control scheme that takes into account macroscopic traffic management and microscopic vehicle dynamics to achieve efficiently cooperative highway driving. Critical traffic information beyond the scope of human perception is obtained from connected vehicles downstream to establish necessary traffic management mitigating congestion. With backpropagating traffic management advice, a connected vehicle having an adjustment intention exchanges control-oriented information with immediately connected neighbors to establish potential cooperation consensus, and to generate cooperative control actions. To achieve this goal, a distributed model predictive control (DMPC) scheme is developed accounting for driving safety and efficiency. By coupling the states of collaborators in the optimization index, connected vehicles achieve fundamental highway maneuvers cooperatively and optimally. The performance of the distributed control scheme and the energy-saving potential of conducting such cooperation are tested in a mixed highway traffic environment by the means of microscopic simulations.  相似文献   
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