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Purposing active vision on the influencing of exoskeleton behaviors

机译:在影响外骨骼行为的情况下引发积极的愿景

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Chameleonization occurs when a self-learning autonomous mobile system's (SLAMR) active vision scans the surface of which it is perched causing the exoskeleton to changes colors exhibiting a chameleon effect. Intelligent agents having the ability to adapt to their environment and exhibit key survivability characteristics of its environments would largely be due in part to the use of active vision. Active vision would allow the intelligent agent to scan its environment and adapt as needed in order to avoid detection. The SLAMR system would have an exoskeleton, which would change, based on the surface it was perched on; this is known as the "chameleon effect." Not in the common sense of the term, but from the techno-bio inspired meaning as addressed in our previous paper. Active vision, utilizing stereoscopic color sensing functionality would enable the intelligent agent to scan an object within its close proximity, determine the color scheme, and match it; allowing the agent to blend with its environment. Through the use of its' optical capabilities, the SLAMR system would be able to further determine its position, taking into account spatial and temporal correlation and spatial frequency content of neighboring structures further ensuring successful background blending. The complex visual tasks of identifying objects, using edge detection, image filtering, and feature extraction are essential for an intelligent agent to gain additional knowledge about its environmental surroundings.
机译:当自学习自主移动系统的(SLAMR)活性视觉扫描其栖息地导致外骨骼改变表现为变色龙效应的颜色时,发生变色锁。具有适应其环境和其环境的关键生存能力特性的能力的智能代理在很大程度上是由于使用活跃视觉的主要原因。主动视觉将允许智能代理扫描其环境并根据需要进行适应,以避免检测。血液系统将具有外骨骼,这将根据它栖息的表面而改变;这被称为“变色龙效应”。不是在术语中的常识,而是从我们之前的论文中的解决方案的Techno-Bio启发意义。有效视觉,利用立体色感测功能将使智能代理能够在其关闭的附近扫描物体,确定颜色方案并匹配;允许代理与其环境混合。通过使用它的光学功能,SLAMR系统将能够进一步确定其位置,考虑到空间和时间相关和相邻的结构进一步确保成功背景混合的空间频率内容。使用边缘检测,图像过滤和特征提取的识别对象的复杂视觉任务对于智能代理来获得有关其环境环境的额外知识至关重要。

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