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Proceedings ArticleDOI

A real-time vision for intelligent vehicles

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TLDR
Results obtained are found to be encouraging, indicating that the vision system is useful for developing vision algorithms and that the algorithms based on a part of the proposed ideas are robust for recognition of complex road environment.
Abstract
This paper presents a real-time vision system as a tool of developing robust vision algorithms. Our goal is to develop robust vision algorithms for complex scenes, such as city streets, and for various outside conditions, such as weather, lighting and shading. Since no ordinary computer has enough computational ability for developing vision algorithms efficiently, the system has been developed in the form of compact image processing hardware. We have developed special hardware modules for extracting image features, namely edge segments, depth from stereoscopic and optical flow. A high speed template matching hardware module has been also developed for detecting and tracking objects. Each hardware consists of one or two 6U format VMEbus compatible boards and operates at a video rate due to the pipeline architecture. Experiments have been done on this vision system as follows: road following from edge segments, moving objects detection from optical flow on the images of moving camera, obstacle detection from depth map based on stereoscopic and tracking preceding vehicles by a template matching method. The results obtained are found to be encouraging, indicating that the vision system is useful for developing vision algorithms and that the algorithms based on a part of the proposed ideas are robust for recognition of complex road environment.

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Citations
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References
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Proceedings ArticleDOI

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TL;DR: A signal matching algorithm that can select an appropriate window size adaptively so as to obtain both precise and stable estimation of correspondences is presented, together with analytical and experimental results that demonstrate their effectiveness.
Proceedings ArticleDOI

Image preprocessor of model-based vision system for assembly robots

TL;DR: The image preprocessor developed reduces the time ratio of feature extraction and model-based analysis to about 1/10 and recognizes partially visible or overlapping industrial workpieces and detects these locations and orientations.
Proceedings ArticleDOI

Automated Vehicle System Using Both A Computer Vision And Magnetic Field Sensors

TL;DR: In this article, an integrated sensing system consisting of computer vision and magnetic field sensors with inductive cable is described for automated vehicle highway systems, which includes a reliable sensor which measures vehicle position and road curvature.