A Case Study on Optimization of Platooning Coordination

11/18/2021
by   Veronika Lesch, et al.
0

In today's world, circumstances, processes, and requirements for software systems are becoming increasingly complex. In order to operate properly in such dynamic environments, software systems must adapt to these changes, which has led to the research area of Self-Adaptive Systems (SAS). Platooning is one example of adaptive systems in Intelligent Transportation Systems, which is the ability of vehicles to travel with close inter-vehicle distances. This technology leads to an increase in road throughput and safety, which directly addresses the increased infrastructure needs due to increased traffic on the roads. However, the No-Free-Lunch theorem states that the performance of one platooning coordination strategy is not necessarily transferable to other problems. Moreover, especially in the field of SAS, the selection of the most appropriate strategy depends on the current situation of the system. In this paper, we address the problem of self-aware optimization of adaptation planning strategies by designing a framework that includes situation detection, strategy selection, and parameter optimization of the selected strategies. We apply our approach on the case study platooning coordination and evaluate the performance of the proposed framework.

READ FULL TEXT
research
11/08/2021

Trust-aware Control for Intelligent Transportation Systems

Many intelligent transportation systems are multi-agent systems, i.e., b...
research
05/03/2022

Real-time Cooperative Vehicle Coordination at Unsignalized Road Intersections

Cooperative coordination at unsignalized road intersections, which aims ...
research
02/07/2023

A Tightly Coupled Bi-Level Coordination Framework for CAVs at Road Intersections

Since the traffic administration at road intersections determines the ca...
research
09/29/2019

Clustering Strategies of Cooperative Adaptive Cruise Control: Impacts on Human-driven Vehicles

As a promising application of connected and automated vehicles (CAVs), C...
research
11/05/2020

A Hysteretic Q-learning Coordination Framework for Emerging Mobility Systems in Smart Cities

Connected and automated vehicles (CAVs) can alleviate traffic congestion...
research
03/16/2020

Influence of CAV Clustering Strategies on Mixed Traffic Flow Characteristics: An Analysis of Vehicle Trajectory Data

Being one of the most promising applications enabled by connected and au...
research
10/26/2021

A proposed method using GPU based SDO to optimize retail warehouses

Research in warehouse optimization has gotten increased attention in the...

Please sign up or login with your details

Forgot password? Click here to reset