论文标题
航天器时间序列的最佳频域分析:介绍缺失的DATA多时间谱估计器
Optimal frequency-domain analysis for spacecraft time series: Introducing the missing-data multitaper power spectrum estimator
论文作者
论文摘要
虽然Lomb-Scargle周期图是天文学的基础,但它具有重大的缺点:随着获取更多数据的获取,估计的功率谱的差异不会降低。统计学家有60年的历史,可以发展为差异的功率谱估计器,但大多数人不在天文学中使用,因为它们是为时间序列配制的,具有均匀的观察节奏,没有季节性或每日差距。在这里,我们演示了如何将缺失的DATA多层功率谱估计器应用于与观测值之间的时间间隔均匀的航天器数据,但在推进器火灾或动量转储过程中缺少数据。谐波组件的F检验可以应用于多立纸功率谱估计值,以识别具有统计学意义的振荡,这些振荡不会超过基于白噪声的错误警报概率。多立面改善了功率谱估计的动态范围,并抑制了光谱窗口伪像。我们表明,用于KIC 6102338的开普勒观察结果的多立纸-F检验组合可检测差异旋转,而无需迭代性正弦曲线拟合和减法。显着的信号位于两个基本旋转频率的谐波上,并暗示了反极旋转曲线。接下来,我们使用缺失的DATA多底功率频谱估计器来识别负责史诗203354381 K2光曲线的复杂“扇贝壳”形状的振荡模式。我们认为,应使用常规观察可弥补的多纸功率谱估计器用于所有时间序列。
While the Lomb-Scargle periodogram is foundational to astronomy, it has a significant shortcoming: the variance in the estimated power spectrum does not decrease as more data are acquired. Statisticians have a 60-year history of developing variance-suppressing power spectrum estimators, but most are not used in astronomy because they are formulated for time series with uniform observing cadence and without seasonal or daily gaps. Here we demonstrate how to apply the missing-data multitaper power spectrum estimator to spacecraft data with uniform time intervals between observations but missing data during thruster fires or momentum dumps. The F-test for harmonic components may be applied to multitaper power spectrum estimates to identify statistically significant oscillations that would not rise above a white noise-based false alarm probability. Multitapering improves the dynamic range of the power spectrum estimate and suppresses spectral window artifacts. We show that the multitaper - F-test combination applied to Kepler observations of KIC 6102338 detects differential rotation without requiring iterative sinusoid fitting and subtraction. Significant signals reside at harmonics of both fundamental rotation frequencies and suggest an antisolar rotation profile. Next we use the missing-data multitaper power spectrum estimator to identify the oscillation modes responsible for the complex "scallop shell" shape of the K2 light curve of EPIC 203354381. We argue that multitaper power spectrum estimators should be used for all time series with regular observing cadence.