Road Transport Systems

ETHZ / D-BAUG / Spring Semester 2021

ETHZ / D-BAUG / Spring Semester 2021


D. B.
This flashcard set delves into the intricacies of road transport systems at a university level, focusing on traffic flow, vehicle movement, and control models. It covers topics like traffic simulation, lane management, and the impact of autonomous vehicles, providing insights into how different systems and strategies influence travel time, capacity, and overall efficiency. Ideal for students and professionals in traffic engineering, this flashcard set offers a comprehensive understanding of the dynamics and control mechanisms in road transport systems.
Flashcards
78
Students
9
Language
English
Category
Traffic
Level
University
Created / Updated
20.06.2021 / 06.02.2024

Flashcards

User equilibrium vs. System optimum

User equilibrium (UE): Find a feasible assignment in which all used paths have equal and minimal travel times.

  • This principle follows directy from the assumptions that:
    • drivers choose minimum time paths
    • drivers are well-informed about network conditions
  • most widely used trip assignment method for auto trips
  • UE does not minimize congestion
  • Total system travel time may not be the minimum

 

System optimum (SO): Find a feasible assignment which minimizes the total system travel time.

  • SO is not a natural process --> measures have to be taken to reach SO

 

Dynamic Traffic Assignment (DTA)

DTA must involve the following concepts:

  • A model for how congestion (travel times) varies over time
  • A concept of equilibrium route choice
  • Equilibration based on experienced travel times, not instantaneous travel times

Compared to Static Traffic Assignment (STA) DTA-Simulations are more realistic.

Problems:

  • Limited link capacity (high computing cost)
  • multicommodity flow (e.g. trucks, toll roads)
  • elastic demand
  • multi-mode supply

Calibration of microscopic models

Three step strategy:

  • Capacity calibration
  • Route choice calibration
  • System performance calibration

Calibration Process:

  • Select parameters to calibrate
    • Global
    • Link specific
  • Collect field data
  • Set calibration goals
  • Search for optimal parameter values

Microsimulation - Operational outputs

Operational outputs specifications

  • link level demand
  • speed
  • density
  • throughput
  • delay
  • post processing data
  • queues
  • travel time
  • 2D, 3D visualization

ALINEA

ALINEA is a local feedback ramp-metering strategy.

Behavioral differences - AVs vs. human drivers

  • Human drivers anticipate disturbances downstream
    --> inability of traffic anticipation can lead to platoon instability
  • AVs drive with lower speed variations at stable following conditions
  • Reaction times of humans are larger than of controllers (yet comparable)
  • Controllers drive based on time headway strategies but humans don't

Such behavioral differences directly impact traffic congestion, energy consumption, driving behaviors and possibly other dimensions.