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Propulsion control for controlled-PM LSM levitation system with gap-length fluctuation

机译:具有间隙长度波动的受控-PM LSM悬浮系统的推进控制

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Controlled-PM linear synchronous motor (LSM) is a potential structure type for levitation system. Although the levitation and propulsion is controlled independently, they may influence each other. The change of gap-length may worsen the propulsion performance and the d-axis current may aggravate the levitation load. This paper presents a decoupled control for thrust and lift force, and a vehicle-loaded magnet flux oriented control of propulsion considering the gap-length change. The numerical simulation and experiments for propulsion and levitation control shows satisfactory performance for a controlled-PM LSM model vehicle in our Lab.
机译:受控PM线性同步电动机(LSM)是悬浮系统的潜在结构类型。虽然悬浮和推进是独立控制的,但它们可能互相影响。间隙长度的变化可能使推进性能恶化,并且D轴电流可以加重悬浮载荷。本文介绍了考虑间隙长度变化的推力和提升力的去耦控制,以及车载磁通量的推进控制。推进和悬浮控制的数值模拟和实验显示了我们实验室中受控-PM LSM模型车辆的令人满意的性能。

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