Course Orientation and Overview - GitHub Pages · Course Orientation and Overview Fundamental...
Transcript of Course Orientation and Overview - GitHub Pages · Course Orientation and Overview Fundamental...
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Course Orientation and Overview
CE 391F
January 17, 2012
Course Orientation and Overview
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INTRODUCTIONS
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1 Who are you?
2 Where are you from?
3 How long have you been at UT?
4 Who is your advisor?
5 Something interesting about yourself...
Course Orientation and Overview Introductions
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COURSE OVERVIEW
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SYLLABUS ANDADMINISTRATIVE DETAILS
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Office hours: MW 12:30-2:00 or by appointmentCourse website:http://webspace.utexas.edu/~sdb382/teaching/ce391f/index.html
(not Blackboard)Text: Revised Monograph on Traffic Flow Theory, and papers and notes asposted.http:
//www.fhwa.dot.gov/publications/research/operations/tft/
Course Orientation and Overview Syllabus and Administrative Details
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Category Weight
Homeworks 30%Exam 30%
Project 30%Paper presentation 10%
+/− grading will be used. If you need an extension, you must ask at least48 hours in adavnce.
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Miscellanea
Consult catalog and departmental advisors for add/drop policy.
Please coordinate with me and Services for Students with Disabilitiesif you have a disability requiring alternate accomodations.
Course Orientation and Overview Syllabus and Administrative Details
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WHAT IS TRAFFIC FLOWTHEORY?
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What is traffic flow theory?
Mathematical descriptions of the interactions between vehicles, operators,and infrastructure.
Course Orientation and Overview What is traffic flow theory?
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These include models for car following, speed selection, lane changing, gapacceptance, signalized and unsignalized intersections, and so forth.
Course Orientation and Overview What is traffic flow theory?
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How does traffic flow theory relate to traffic assignment?Traffic assignment requires some kind of flow model, often simplifiedversions of the ones we will see in this course.
7th Street
More advanced traffic flow models are applied to smaller areas andcorridors; they can be too complicated to apply to large regional networks.
Course Orientation and Overview What is traffic flow theory?
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Some applications of traffic flow theory...
Development of traffic simulation software. (By the end of this course, youwill have the methodological knowledge to write a simulator.)
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Some applications of traffic flow theory...
Operational analysis
Course Orientation and Overview What is traffic flow theory?
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Some applications of traffic flow theory...
Safety and emissions modeling
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COURSE PREVIEW
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Continuum flow models
This includes the quintessential LWR model.
Course Orientation and Overview Course preview
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Driver behavior and vehicle dynamics
How can we represent human and vehicle limitations in these models?
Course Orientation and Overview Course preview
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Moving beyond continuum models
Car-following, cellular automata, gap accpetance...
Course Orientation and Overview Course preview
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Developing a simulator
Random number generation, Monte Carlo sampling
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FUNDAMENTALCONCEPTS
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Consider a single-lane, one-way roadway
There are several ways to describe the vehicle stream.
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Flow: Rate at which vehicles pass a fixed point, denoted q. [veh/hr]
Volume: Another term for flow
Density: Spatial concentration of vehicles at one point in time, denotedk [veh/mi]
Speed: Velocity of a single vehicle, denoted u [mi/hr]
Time headway: Time between vehicle arrivals at a single point. [sec]
Space headway: Physical distance between vehicles (front bumper tofront bumper). [ft]
Cumulative count: Total number of vehicles which have passed a givenpoint since a given reference time, denoted N. [veh]
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These quantities can be visualized on a trajectory diagram.
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The flow q is the rate trajectories cross a horizontal line.
Course Orientation and Overview Fundamental concepts
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The density k is the rate trajectories cross a vertical line.
How is speed represented in a trajectory diagram? What about time andspace headway?
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Time headway, space headway, and speed are characteristics of individualvehicles.
Volume is an aggregate measure of time headways; density is an aggregatemeasure of space headways; what is an aggregate measure of speed?
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How do we compute average speed? On the surface, it seems easyenough. For instance:
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I travel from A to B at 10 mi/hr; I then return from B to A at 5 mi/hr.What is my average speed?
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Answer 1: You drive ten miles at 10 mi/hr and ten miles at 5 mi/hr.Therefore the average speed is 7.5 mph
Answer 2: You drive one hour at 10 mi/hr and two hours at 5 mi/hr.Therefore the average speed is 6.7 mph (6.7 = (2*5 + 10)/3)
Which answer is right?
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It depends on what we’re trying to measure. Both are valid in somesense... but the usual definition of average speed is total distance dividedby total time.
Total distance: 20 miTotal time: 3 hrAverage speed: 6.7 mi/hr
This is not to say that Answer 1 is completely wrong; it’s just not whatwe’re usually interested in.
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Another way to look at average speed
Track circumference: 5 mi
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Another way to look at average speed
From the aerial photo, it seems obvious that the average speed is (5 + 5+ 10)/3 = 6.7 mph
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What if we couldn’t get an aerial photo with speeds? Let’stry another approach.
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After one hour, what speeds will be recorded?
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So, there are two different types of average speed... we call themtime-mean speed and space-mean speed
Time-mean speed is what the radar gun gives us; space-mean speed iswhat an aerial photo would give us.
Why do they have these names?
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The radar gun is fixed in space but records speeds over time. Thereforeyou get time-mean speed.
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The radar gun is fixed in space but records speeds over time. Thereforeyou get time-mean speed.
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One way to remember this is by analogy with time headway (which wasalso measured horizontally)
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The aerial photo is at a single instant in time but records speeds overspace. Therefore you get space-mean speed.
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One way to remember this is by analogy with space headway (which wasalso measured vertically)
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Generaly, space-mean speed is what we are interested in. (Time-meanspeed is biased toward faster vehicles.)
However, time-mean speed is easier to measure and automate.
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Luckily, we can calculate space-mean speed from time-meanmeasurements. Let ui be the speed of the i-th vehicle measured by a pointdetector (out of n total readings.)
The time-mean speed is just the simple (arithmetic) average of these:
ut =
∑ni=1 ui
n
The space-mean speed is the harmonic average: the reciprocal of theaverage of the reciprocals:
us =1
(∑n
i=1(1/ui )/n)=
n∑ni=1(1/ui )
Example:ut = (5 + 5 + 10 + 10)/4 = 7.5us = 4/(1/5 + 1/5 + 1/10 + 1/10) = 6.7
Course Orientation and Overview Fundamental concepts