DocumentCode :
1820528
Title :
Calibration and validation of software performance models for pedestrian detection systems
Author :
Kiesel, Rainer ; Streubuhr, M. ; Haubelt, Christian ; Löhlein, Otto ; Teich, Jürgen
Author_Institution :
Dept). Environ. Perception (GR/PAP), Daimler AG, Ulm, Germany
fYear :
2011
fDate :
18-21 July 2011
Firstpage :
182
Lastpage :
189
Abstract :
In recent years, road vehicles have seen a tremendous increase on driver assistance systems like lane departure warning, traffic sign recognition, or pedestrian detection. The development of efficient and cost-effective electronic control units that meet the necessary real-time performance for these systems is a complex challenge. Often, Electronic System-Level design tackles the challenge by simulation-based performance evaluation, although, the quality of system-level performance simulation approaches is not yet evaluated in detail. In this paper, we present the calibration and validation of a system-level performance simulation model. For evaluation, an automotive pedestrian detection algorithm is studied. Especially the varying number of pedestrians has a significant impact to the system performance and makes the prediction of execution time difficult. As test cases we used typical sequences and corner cases recorded by an experimental car. Our evaluation results indicate that prediction of execution times with an average error of 3.1% and a maximum error of 7.9% can be achieved. Thereby, simulated and measured execution times of a software implementation are compared.
Keywords :
calibration; driver information systems; object detection; software performance evaluation; automotive pedestrian detection algorithm; calibration; driver assistance systems; electronic system-level design; lane departure warning; road vehicles; simulation-based performance evaluation; software implementation; software performance models; traffic sign recognition; validation; Accuracy; Calibration; Computational modeling; Dynamic scheduling; Estimation; Processor scheduling; Software;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Embedded Computer Systems (SAMOS), 2011 International Conference on
Conference_Location :
Samos
Print_ISBN :
978-1-4577-0802-2
Electronic_ISBN :
978-1-4577-0801-5
Type :
conf
DOI :
10.1109/SAMOS.2011.6045460
Filename :
6045460
Link To Document :
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