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Disturbance Rejection Ability Enhancement Using Repetitive Observer in Phase-locked Loop for More Electric Aircraft

机译:使用锁相环中的重复观测器增强干扰抑制能力,以用于更多电动飞机

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Under the concept of transportation electrification, more electric aircraft (MEA) involves more electrical energy to reduce emissions. Phase-looked loops (PLLs) have been well developed for synchronizing different power sources in a grid. Since MEA operates at variable frequency from 360 Hz to 800 Hz, a third-order model based steady-state linear Kalman filter PLL (SSLKF-PLL) has been proposed in literature to achieve fast tracking performance during such grid frequency variations. To suppress the potential disturbances due to harmonics in the grid, sensor scaling errors/unbalances and d.c offsets while maintaining low computational burden, this paper aims to enhance the disturbance rejection ability of SSLKF-PLL by adding a repetitive observer (RO). Simulation tests show that RO allows stable and effective suppression of disturbances from all above-mentioned sources during variable frequency operation.
机译:在运输电气化的概念下,更多的电动飞机(MEA)涉及更多的电能以减少排放。相相环(PLL)已经被很好地开发用于同步电网中的不同电源。由于MEA在360 Hz至800 Hz的可变频率下工作,因此文献中提出了基于三阶模型的稳态线性卡尔曼滤波器PLL(SSLKF-PLL),以在此类电网频率变化期间实现快速跟踪性能。为了抑制电网中的谐波,传感器缩放错误/不平衡以及d.c偏移引起的潜在干扰,同时保持较低的计算负担,本文旨在通过添加重复观测器(RO)来增强SSLKF-PLL的抗干扰能力。仿真测试表明,RO可以在变频运行中稳定有效地抑制所有上述来源的干扰。

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