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A novel 1-gram insect based device measuring visual motion along 5 optical directions

机译:一种新型的基于1克昆虫的设备,可沿5个光学方向测量视觉运动

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Autopilots for micro aerial vehicles (MAVs) with a maximum permissible avionic payload of only a few grams need lightweight, low-power sensors to be able to navigate safely when flying through unknown environments. To meet these demanding specifications, we developed a simple functional model for an Elementary Motion Detector (EMD) circuit based on the common housefly''s visual system. During the last two decades, several insect-based visual motion sensors have been designed and implemented on various robots, and considerable improvements have been made in terms of their mass, size and power consumption. The new lightweight visual motion sensor presented here generates 5 simultaneous neighboring measurements of the 1-D angular speed of a natural scene within a measurement range of more than one decade [25°/s; 350°/s]. Using a new sensory fusion method consisting in computing the median value of the 5 local motion units, we ended up with a more robust, more accurate and more frequently refreshed measurement of the 1-D angular speed.
机译:微型航空飞行器(MAV)的最大允许航空电子有效载荷只有几克的自动驾驶仪需要轻巧的低功率传感器,以便在未知环境中飞行时能够安全导航。为了满足这些苛刻的规范,我们基于常见的蝇蝇视觉系统为基本运动检测器(EMD)电路开发了一个简单的功能模型。在过去的二十年中,已经在各种机器人上设计并实现了几种基于昆虫的视觉运动传感器,并且在质量,尺寸和功耗方面都进行了重大改进。此处介绍的新型轻量级视觉运动传感器可在五分之一以上[25°/ s; 25秒/秒]的测量范围内,对自然场景的一维角速度同时进行5次相邻测量。 350°/ s]。使用一种新的感觉融合方法(包括计算5个局部运动单位的中值),我们最终获得了更稳健,更准确,更频繁地刷新一维角速度的测量结果。

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