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Design, Implementation and Comparison of Power Electronic Circuits for Current Control through 3-axis Magnetorquer coils in a Satellite

机译:卫星中通过三轴磁矩线圈进行电流控制的功率电子电路的设计,实现和比较

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This paper expounds different topologies for achieving precise control of current through a solenoid coil. Various power electronic circuits with different control strategies have been implemented. These novel topologies are aimed at achieving current control in the magnetorquer coils in a Nanosatellite. COEPSAT-2 is a student satellite mission aimed at demonstrating propulsion using solar sails. The magnetorquers are required to damp the angular velocities. Three topologies have been implemented and compared based on their transient response, ripple percentage, resolution etc. Limited literature is available on control strategies to drive a constant current through magnetorquer coils in satellites and this paper aims at bridging this gap. The topologies presented can be further extended to various low power applications across several industries; the current control in the magnetorquer of a satellite just exemplifies an application of the same. The paper presents the power electronic topology, control strategy and the comparative analysis of two novel closed loop topologies of current control and a popular open loop topology.
机译:本文阐述了用于实现对电磁线圈电流的精确控制的不同拓扑。已经实现了具有不同控制策略的各种电力电子电路。这些新颖的拓扑旨在实现纳米卫星中磁矩线圈中的电流控制。 COEPSAT-2是一项学生卫星任务,旨在演示使用太阳帆的推进力。需要磁矩器来阻尼角速度。已经实现了三种拓扑,并根据它们的瞬态响应,纹波百分比,分辨率等进行了比较。关于驱动策略以通过卫星中的磁矩线圈驱动恒定电流的控制文献有限,本文旨在弥补这一差距。所展示的拓扑可以进一步扩展到多个行业的各种低功耗应用。卫星磁矩中的电流控制只是其应用的一个例证。本文介绍了功率电子拓扑,控制策略以及两种新型的电流控制闭环拓扑和流行的开环拓扑的比较分析。

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