In this work, we aim to devise an end-to-end spiking implementation for contour tracking in 3D media inspired by chemotaxis, where the worm reaches the region which has the given set concentration. For a planer medium, efficient contour tracking algorithms have already been devised, but a new degree of freedom has quite a few challenges. Here we devise an algorithm based on klinokinesis - where the motion of the worm is in response to the stimuli but not proportional to it. Thus the path followed is not the shortest, but we can track the set concentration successfully. We are using simple LIF neurons for the neural network implementation, considering the feasibility of its implementation in the neuromorphic computing hardware.
翻译:在这项工作中,我们的目标是设计一个端到端的直射执行,用于3D媒体的轮廓跟踪,该3D媒体受化工税的启发,蠕虫到达了特定集中的区域。对于一个规划介质,已经设计出了高效的轮廓跟踪算法,但新的自由度有不少挑战。在这里,我们设计了一个基于 klinokinesis 的算法 — 蠕虫运动是针对刺激的,但与它不相称。因此,所遵循的路径不是最短的,但我们可以成功地跟踪集集。我们正在使用简单的LIF神经元来实施神经网络,同时考虑将其应用于神经形态计算硬件的可行性。