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| Филтър на Baxter-King за пропускане на честотна лента× | Фурие трансформация и спектрален анализ (FFT)× | |
|---|---|---|
| Област≠ | Иконометрия | Обработка на сигнали |
| Семейство≠ | Process / pipeline | Machine learning |
| Година на възникване≠ | 1999 | 1965 |
| Създател≠ | Marianne Baxter & Robert King | James Cooley & John Tukey (FFT) |
| Тип≠ | Linear symmetric moving-average filter | Frequency-domain decomposition algorithm |
| Основополагащ източник≠ | Baxter, M., & King, R. G. (1999). Measuring business cycles: Approximate band-pass filters for economic time series. Review of Economics and Statistics, 81(4), 575–593. DOI ↗ | Cooley, J. W., & Tukey, J. W. (1965). An algorithm for the machine calculation of complex Fourier series. Mathematics of Computation, 19(90), 297–301. DOI ↗ |
| Други названия | Baxter-King Filter, Band-Pass Filter (Baxter-King), BK Band-Pass Filter, Bant Geçiren Süzgeç | Fast Fourier Transform, Discrete Fourier Transform, Spectral Analysis, Fourier Dönüşümü |
| Свързани≠ | 3 | 2 |
| Резюме≠ | The Baxter-King (BK) band-pass filter, introduced by Marianne Baxter and Robert King in 1999, is a linear symmetric moving-average filter designed to isolate cyclical fluctuations in macroeconomic time series that fall within a specified range of periodicities. It removes both very low-frequency trends and very high-frequency noise, retaining only the business-cycle component—typically oscillations with a period of six to thirty-two quarters for quarterly data. | The Fourier Transform decomposes a time-domain signal into its constituent sinusoidal frequencies, revealing the spectral content hidden within complex waveforms. Joseph Fourier introduced the continuous transform in 1822, but the computationally efficient Fast Fourier Transform (FFT) was formalized by James Cooley and John Tukey in 1965. Their landmark algorithm reduced the computational complexity from O(N²) to O(N log N), making large-scale spectral analysis practical across engineering, physics, and data science. |
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