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Nonlinear control of axial flux flywheel motor/generator set of coil launchers

机译:线圈发射器轴向磁通飞轮电动机/发电机组的非线性控制

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摘要

One of the main challenges in Electromagnetic Launcher (EML) studies is pertinent to the requirement of a huge amount of energy for a very short time period. In space and defense applications, launching operation takes just a couple of seconds but it requires power in mega- or terawatt levels. Generally speaking, there are two major types of power source to meet such a requirement; capacitor sets and motor/generator sets. In this study, a nonlinear velocity tracking controller for an Axial Flux Permanent Magnet (AFPM) motor/generator set with a flywheel is designed. The AFPM machine can operate in both motor and generator mode so that the machine serves as main supply to store mechanical energy on a flywheel mounted on the shaft of the machine in motor mode of operation. In generator mode of operation, on the other hand, the AFPM machine will supply the coils of EML by converting the mechanical energy stored in the flywheel into electrical energy. Designed controller aims to achieve performance specifications in both modes of operation. Numerical results are also presented to show the performance and feasibility of the proposed nonlinear control scheme.
机译:电磁发射器(EML)研究的主要挑战之一是在非常短的时间内需要大量能量。在太空和国防应用中,发射操作仅需几秒钟,但需要兆瓦级或兆瓦级的功率。一般而言,有两种主要类型的电源可以满足这种要求。电容器组和电动机/发电机组。在这项研究中,设计了带有飞轮的轴向磁通永磁(AFPM)电动机/发电机组的非线性速度跟踪控制器。 AFPM机器可以在电动机和发电机两种模式下运行,因此该机器充当主电源,以在电动机运行模式下将机械能存储在安装在机器轴上的飞轮上。另一方面,在发电机运行模式下,AFPM机器将通过将飞轮中存储的机械能转换为电能来提供EML线圈。设计的控制器旨在在两种操作模式下均达到性能指标。数值结果也表明了所提出的非线性控制方案的性能和可行性。

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