TY - JOUR AU - Batista Dourado, Antonio Miguel AU - Pedrino, Emerson Carlos PY - 2020/05/15 Y2 - 2024/03/28 TI - Evolutionary Approach for Automatic Generation of Multi-Objective Morphological Filters for Depth Images in Embedded Navigation Systems JF - IEEE Latin America Transactions JA - IEEE LAT AM T VL - 18 IS - 7 SE - Articles DO - UR - https://latamt.ieeer9.org/index.php/transactions/article/view/2583 SP - 1320-1326 AB - <p>The efforts spent on the development of assistive technologies has led researches to explore many existing techniques as computer vision, image processing, etc. and apply them as embedded solutions to help people with several types of disabilities, including visual impairment. Embedded navigation systems for visually impaired people (VIP) often use RGB-D cameras to retrieve depth information from surroundings and present them as gray images with depth represented by gray level or black pixels if depth couldn't be estimated, which can be fixed by mathematical morphology. Morphological filters must be efficient to solve the problem and fast to avoid impact on performance. This paper presents an approach for automatic generation and optimization of low complexity and low error morphological filters to fix depth image’s unknown distances based on NSGAII and Cartesian Genetic Programming. Experiments were performed using two different error metrics and results showed that the presented approach managed to generate and optimize feasible morphological filters that fit within embedded navigation systems for VIP.</p> ER -