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Magnetic Levitation and control using two solenoids with their axes in a vertical plane

机译:使用两个螺线管,其轴线在垂直平面上,进行磁悬浮和控制

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Magnetic Levitation has found tremendous utility in fields like transport and tribology. It is also one of the classic experiments used in introductory courses in controls. This paper discusses a two-dimensional extension to this classic experiment. In this proposed setup, a diamagnetic object is to be levitated using the magnetic field strength of two solenoids with an iron core each located in two separate locations with their axes in the same vertical plane. The key feature of this new setup is the ability to levitate the object in any position within a portion of a plane as compared to a single line in the classical experiment. Using two currents in the coils as two inputs, the objective is to have a position and velocity control of the object. In order to do so, first, the analytical form of the magnetic field strength outside the two solenoids is determined. Then, the magnetic force acting on the sphere is evaluated. Using these expressions, equilibrium points are established based on the required position and the stability of these points is analysed. Further, a control system is implemented to achieve the aforestated objective.
机译:磁悬浮已发现在运输和摩擦学等领域具有巨大的实用性。这也是控件入门课程中使用的经典实验之一。本文讨论了对该经典实验的二维扩展。在此建议的设置中,将使用两个具有铁芯的螺线管的磁场强度来悬浮抗磁性物体,每个螺线管的铁心位于同一垂直平面上的两个单独的位置。与经典实验中的单条线相比,此新设置的关键功能是能够将对象悬浮在平面一部分内的任何位置。使用线圈中的两个电流作为两个输入,目标是对对象进行位置和速度控制。为此,首先确定两个螺线管外部的磁场强度的解析形式。然后,评估作用在球体上的磁力。使用这些表达式,可以根据所需位置建立平衡点,并分析这些点的稳定性。此外,实施控制系统以实现上述目的。

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