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Triangular formation maneuver using designed mismatched angles

机译:使用设计不匹配的角度进行三角编队机动

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This paper investigates the problem of triangular formation maneuver control for mobile 3-agent systems with bearing measurements. Different from controlling rigid formations' maneuvering by introducing a pair of mismatches per distance constraint, we introduce a pair of designed-mismatches per angle constraint which leads to the desired triangular formation shape. Considering that for the control of triangular formations with angle constraints, each agent aims at maintaining its own interior angle, to realize the formation maneuver control we design the mismatches into each agent's own desired interior angle. Two types of designed-mismatch are investigated: time-varying case and constant case. For the time-varying case, under the assumption that each agent can additionally measure the relative position from itself to the formation centroid, the triangular formation maneuver control algorithm is designed such that the desired maneuvering in terms of translation, rotation, and scaling can be realized. For the constant case, under the constraint that the desired triangular shape is known only once for the mismatch design, the triangular formation maneuver control algorithm is also proposed, and the angle dynamics are derived by using the dot product of two bearing vectors. Finally, simulation examples demonstrate the effectiveness of the theoretical results.
机译:本文研究了带有轴承测量值的移动式3代理系统的三角编队机动控制问题。与通过引入每个距离约束不匹配来控制刚性地层的操纵不同,我们引入了每个角度约束一对设计不匹配的对,这导致了所需的三角形地层形状。考虑到对于具有角度约束的三角形地层的控制,每个代理旨在保持其自身的内角,为实现编队操纵控制,我们将失配设计为每个代理自身所需的内角。研究了两种类型的设计不匹配:时变情况和常数情况。对于随时间变化的情况,在假设每个代理都可以额外测量从其自身到地层质心的相对位置的情况下,设计了三角地层机动控制算法,以便可以在平移,旋转和缩放方面进行所需的机动实现。对于恒定情况,在不匹配设计只知道一次所需的三角形形状的约束下,还提出了三角形编队操纵控制算法,并使用两个方位矢量的点积推导了角度动力学。最后,仿真算例验证了理论结果的有效性。

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