This fundamental work explains in detail systems for active safety and driver assistance, considering both their structure and their function. These include the well-known standard systems such as Anti-lock braking system (ABS), Electronic Stability Control (ESC) or Adaptive Cruise Control (ACC). But it includes also new systems for protecting collisions protection, for changing the lane, or for convenient parking. The book aims at giving a complete picture focusing on the entire system. First, it describes the components which are necessary for assistance systems, such as sensors, actuators,…mehr
This fundamental work explains in detail systems for active safety and driver assistance, considering both their structure and their function. These include the well-known standard systems such as Anti-lock braking system (ABS), Electronic Stability Control (ESC) or Adaptive Cruise Control (ACC). But it includes also new systems for protecting collisions protection, for changing the lane, or for convenient parking. The book aims at giving a complete picture focusing on the entire system. First, it describes the components which are necessary for assistance systems, such as sensors, actuators, mechatronic subsystems, and control elements. Then, it explains key features for the user-friendly design of human-machine interfaces between driver and assistance system. Finally, important characteristic features of driver assistance systems for particular vehicles are presented: Systems for commercial vehicles and motorcycles.
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Autorenporträt
Hermann Winner began working at Robert Bosch GmbH in 1987, after receiving his Ph.D. in physics, focusing on the predevelopment of "by-wire" technology and Adaptive Cruise Control (ACC). Beginning in 1995, he led the series development of ACC up to the start of production. Since 2002, he has been pursuing the research of driver assistance systems engineering topics as professor of Automotive Engineering at the Technische Universität Darmstadt.
After finishing his studies in physics, Stephan Hakuli developed driving functions for highly automated vehicles as a research associate at the Institute of Automotive Engineering (FZD) at the Technische Universität Darmstadt. Today, he works as product manager and subject specialist for driver assistance systems at IPG Automotive GmbH.
Felix Lotz studied Mechanical Engineering at Technische Universität
Darmstadt. He now works as a scientific assistant at the Institute of Automotive Engineering of Technische Universität Darmstadt and focuses on research in the fields of system architectures and behavior planning of automated vehicles.
Christina Singer studied Mechanical Engineering at Fachhochschule Südwestfalen, Technische Universität Darmstadt, and Virginia Polytechnic Institute and State University. Since 2011, she has been working as scientific assistant at the Institute of Automotive Engineering at Technische Universität Darmstadt, where her research is focused on effort-reduced application and release concepts for brakesystem controllers.
Inhaltsangabe
Introduction.- Part I Fundamentals of Driver Assistance Development.- Part II Virtual Development and Test Environment for DAS.- Part III Test Methods.- Part IV Sensors for DAS.- Part V Data Fusion and Environment Representation.- Part VI Actuation for DAS.- Part VII Human-Machine-Interface for DAS.- Part VIII DAS on Stabilisation Level.- Part IX DAS on Road- and Navigation Level.- Part X 56 1000 Integration.
Introduction.- Part I Fundamentals of Driver Assistance Development.- Part II Virtual Development and Test Environment for DAS.- Part III Test Methods.- Part IV Sensors for DAS.- Part V Data Fusion and Environment Representation.- Part VI Actuation for DAS.- Part VII Human-Machine-Interface for DAS.- Part VIII DAS on Stabilisation Level.- Part IX DAS on Road- and Navigation Level.- Part X 56 1000 Integration.
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