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Dynamic Phasor Estimates Under the Bellman's Principle of Optimality: The Taylor-LQG-Fourier Filters

机译:Bellman最优性原理下的动态相量估计:Taylor-LQG-Fourier滤波器

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Recently TaylorK-Kalman-Fourier filters were proposed for estimating dynamic phasors to provide instantaneous estimates and drastically reduce the total vector error by a factor of 10. However, they exhibit resonant frequencies at the edges of the pass band, and high-interharmonic gains. In this paper, the optimal linear quadratic (LQ) control is applied to design feedback filters referred to as TaylorK-LQG-Fourier filters. This method reduces the interharmonic gains and the resonant frequency at the passband edges of the TaylorK-Kalman-Fourier filter. The estimates from oscillating signals obtained through this optimal technique are quasi-instantaneous, and provide estimates of the instantaneous frequency, and its rate of change, preserving its synchrony with the signal for control applications. The effectiveness of the proposed algorithm is verified through simulations and experimental results.
机译:最近,提出了Taylor K -Kalman-Fourier滤波器来估计动态相量,以提供瞬时估计并大幅降低总矢量误差达10倍。但是,它们在通过的边缘表现出谐振频率频段和高间谐波增益。本文将最优线性二次(LQ)控制应用于设计反馈滤波器,称为Taylor K -LQG-Fourier滤波器。该方法减小了Taylor K -Kalman-Fourier滤波器的通带边缘的谐间增益和谐振频率。通过这种最佳技术获得的振荡信号的估计值是准瞬时的,并提供瞬时频率及其变化率的估计值,从而保持了与控制应用中信号的同步性。仿真和实验结果验证了所提算法的有效性。

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