Automatic control of the traffic flow.ppt
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1、Automatic control of the traffic flow,Aurel Vlaicu University of Arad, Romania, e-mail: balasdrbalas.ro,Valentina E. Balas,CONTENT INTRODUCTION. THE ADAPTIVE CRUISE CONTROL TRAFFIC INDICATORS THE CONSTANT TIME TO COLLISION CRITERION THE PD FUZZY-INTERPOLATIVE CRUISE CONTROLLER CONSTANT TIME TO COLLI
2、SION PLATOONS CONCLUDING REMARKS,1. Introduction. The Adaptive Cruise Control,Logistics is the management of the flow of goods, information and other resources, including energy and people, between the point of origin and the point of consumption, in order to meet the requirements of consumers. Logi
3、stics involves the integration of information, transportation, material-handling, and packaging. This lecture is dealing with a new method for the management of the traffic flow on highways.,The Intelligent Transportation Systems allow cars to “think.” A set of facilities with different degrees of i
4、mplication in the driving action is proposed by the Advance Driver Assistance Systems (ADAS), etc. ADAS are systems to help the driver in its driving process. When designed with a safe Human-Machine Interface it should increase car safety and road safety.,Adaptive cruise control (ACC) or the Intelli
5、gent Cruise Control (ICC) uses either a radar or laser setup to allow the vehicle to slow when approaching another vehicle and accelerate again to the preset speed when traffic allows. Collision warning system, a system of sensors that is warning the driver of any dangers that may lie ahead on the r
6、oad. Some of the dangers that these sensors can pick up on include how close the car is to other cars surrounding it, how much its speed needs to be reduced while going around a curve, and how close the car is to going off the road.,Following ACC cars on highway,Intelligent speed adaptation or intel
7、ligent speed ad-vice (ISA) are systems that constantly monitor the local speed limit and the vehicle speed and imple-ments an advice or an action when the vehicle is found to be exceeding the speed limit. In-vehicle navigation systems with GPS and TMC (Traffic Message Channel) for providing up-to-da
8、te traffic information. Lane/road departure detection/warning system Lane change assistance Night vision Adaptive light control,Pedestrian protection system Automatic parking Traffic sign recognition Blind spot detection Driver drowsiness detection Car to car communication Hill descent control etc.,
9、ACC (Adaptive Cruise Control) signal processing architecture,Despite the safety benefits: enhanced driving performance and minimization of crash risks, reduced driver stress and fatigue, reduced conflicts and vari-ance in behavior, etc. the effective put in practice of these developments will have t
10、o wait. The causes are economic, but also technical. Automate driving is likely to produce at its turn safety risks by the driver distraction and reduced situation awareness, causing in time the reducing of the driving skill. But above all, any automate inter-vention into the cars operation can caus
11、e instinctive and inopportune reactions of the driver.,ACC (Adaptice Cruise Control) human-machine interface,2. Traffic Indicators,In the car following case, several indicators were introduced in order to measure the characteristics of the traffic flow: the time-to-collision (TTC) the time-to-accide
12、nt (TTA) the post-encroachment-time (PET) the deceleration-to-safety-time (DTS) the number of shockwaves, etc.,The Time-to-Collision (TTC) is the time that it takes before Car2 collide with Car1, assuming unchanged speeds of both vehicles during this approach:(1)Negative TTC imply that Car1 drives f
13、aster, i.e. there is no danger. Positive TTC express a certain unsafe approach. TTC is linked to the longitudinal driving task and supports a set of safety techniques as the Intelligent Speed Adapter (ISA) limiting the speed to the prevailing speed limit of the current road section.,The Time to Coll
14、ision indicator,The Inverse Time to Collision,Due to the annulations of its denominator when v2 = v1, TTC is presenting frequent commutations between . That is why TTC is often replaced by the d(v1 - v2) trajectory.However d(v1 - v2) is not very suggesting when evalu-ating the collision risk. That i
15、s why in a previous paper we introduced the Inverse Time to Collision TTC-1, which is pro-portional to the collision risk : (2),A simulation scenario,A d(v2-v1) diagram,The evolutions of TTC and TTC-1,Fig. 2.,A TTC-1(v2 v1) trajectory and a corresponding fuzzy partition assisting the driver,Among ot
16、her specifications referring to speed, acceleration and deceleration limitations, AICC (Adaptive Intelligent Cruise Control) is introducing a particular di(v2) law: di(v2) = z0 + z1 v2 + z2 v22 = 3 + z1 v2 + 0.01 v22 (3)Several settings are recommended, for example z1 = 0.8s or z1 = 0.6s. Two object
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