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1)  Simulation spring car following model
模拟弹簧跟驰模型
2)  car-following model
跟驰模型
1.
An car-following model based on dynamic desired time headway;
一种基于动态期望车头时距的跟驰模型
2.
Simulation on the Transition of Chaos in Traffic Flow Based on the Car-following Model;
跟驰模型的交通流混沌转化现象的仿真
3.
Numerical simulation and analysis of car-following models on particular progress;
特殊过程下的车辆跟驰模型数值模拟分析
3)  car following model
跟驰模型
1.
Driving decision in the car following model is a complex process of reasoning,deciding and executing.
车辆跟驰模型中的驾驶行为是一个复杂的推理、决策、执行过程,在知识表达和推理机制上存在模糊性和随机性。
2.
The chaos of the traffic flow based on the Car following model is studied.
研究基于跟驰模型的交通流混沌问题。
3.
A car following model that uses the fuzzy inference system,which consists of many straightforward natural language based driving rules,is proposed in this paper.
在模糊推断的基础上 ,以直接自然的语言描述驾驶行为准则 ,提出了车辆跟驰模
4)  Bierley car-following model
Bierley跟驰模型
5)  spring model
弹簧模型
1.
The relation of lateral displacement of bucket top with horizontal loads is obtained based on a soil-spring model.
根据土体的简化弹簧模型,建立了单桶和四桶结构在横向载荷作用下力系的平衡方程,提出了估算水平载荷作用下桶顶水平位移的方法,并将桶顶位移的估算结果同三维有限元方法的数值计算结果进行了比较,发现两者相当一致。
2.
Based on the foundation of spring model of concentrating force in documents[1,2], the calculation method considering effects between springs of concentrating force was given.
在集中力弹簧模型的基础上,给出了集中力弹簧之间考虑相互影响的计算方法、考虑相互影响及不考虑相互影响力弹簧模型的算例,以及工程实例的计算与实测结果的比较。
6)  car-following model
车辆跟驰模型
1.
Summarization of car-following models based on security distance;
基于安全间距的车辆跟驰模型研究综述
2.
The car-following models and lane changing models are the basic microscopic traffic flow models.
车辆跟驰模型和换车道模型是微观交通流模型研究的基础。
3.
Specifically,we present a full velocity difference(FVD) car-following model,a cellular automata(CA) model that considers the velocity effect of the preceding car,another CA model that can describe the synchronized flow,and a speed gradient(SG) macroscopic model which can describe the anisotropic properties of traffic flow.
具体地说,我们提出了一种全速度差车辆跟驰模型,一种考虑前车速度效应的元胞自动机模型,另一种能较好模拟同步流的元胞自动机模型,以及一种能体现交通流各向异性特征的速度梯度宏观连续模型。
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