point_spectrum — ONED signal op

データ種: positionstable

呼び出し: import fullseye as fs; fs.ledger.point_spectrum(positions, extent=None, n_freq=2048, f_max=None, method='direct', weights=None, bins_per_period=8) (実装を直接呼ぶなら import dsp; dsp.point_spectrum(positions, extent=None, n_freq=2048, f_max=None, method='direct', weights=None, bins_per_period=8)、台帳から引くなら ops1d.get("point_spectrum"))

使い方

Periodogram of event positions — defects, impacts, counts, arrivals.

:func:spectrum needs an evenly sampled signal, but a great deal of

industrial data arrives as a *list of positions*: where each defect was on

the web, when each particle was counted, at what angle each dent sits. The

usual workaround is to histogram the positions and FFT the histogram, which

works but hides two choices — bin width and record length — that decide the

answer. This operator makes both explicit and returns them.

*method* picks the estimator:

`"direct"`

the point-process (Bartlett) periodogram

`|sum_j w_j exp(-2 pi i f x_j) - rate * integral|^2 / sum_j w_j`,

evaluated at each requested frequency. No binning at all, so no bin

width to choose and no aliasing from one. The subtracted term is the

contribution a *uniform* process of the same rate would make; without it

every spectrum peaks at f -> 0 simply because events exist.

`"binned"`

histogram the positions, then `rfft`, with the bin width set so the

finest frequency asked for still gets `bins_per_period` samples per

cycle. Cheaper for very many events, and the result is what a

histogram-and-FFT pipeline would have produced.

The frequency resolution is a property of the record, not of the method.

Two periods closer than `1/extent` apart cannot be told apart by either

estimator, and the returned dict says so in `resolution`: read it before

reading a peak, not after.

A periodic train of events is a comb, not a line. Its harmonics at

`k/period are as tall as the fundamental, so argmax` of this spectrum

routinely returns `period/k` rather than the period. Measured on 93 events

(43 spaced 471.24 apart with 1.5 of jitter, plus 50 uniformly random) over a

record of 20000: the global maximum lands on `58.90 with direct` (the

8th harmonic) and `52.35 with binned` (the 9th), while the fundamental

is present and prominent in both — `direct` puts 0.947 of the maximum

power at `1/471.24, binned` 0.379. Take the lowest frequency whose

first few harmonics *all* stand, rather than the tallest line — see

`examples/poc_web_roll_periodicity.py`, which is what this operator was

added for.

Returns a dict: `freq (cycles per unit of *positions*), power`,

`resolution (1/extent), extent, n_events, method`, and

`bin_width (None for "direct"`).

Fail-closed: fewer than two events raises `ValueError` — a periodogram of

one point is not a weak measurement, it is not a measurement.

参考(サンプルデータ・文献)

• サンプルデータ カタログ(DL URL / ライセンス) — 2-D は skimage.data(BSD/public)+ 合成、3-D は実データ源(Stanford/PDS 等)の DL URL。

• 演算子の来歴・参考文献 — この op 族の元になった研究/手法の出典。

• アルゴリズムの正典(著者・年)と用途は上記ファミリ使い方ガイドに記載。

実行できる例(この op を実際に呼ぶ検証済みサンプル)

poc_web_roll_periodicitypy -3.11 examples/poc_web_roll_periodicity.py

型が繋がる次の op(table を入力に取れる)

同カテゴリ(signal)

lowpass · highpass · bandpass · envelope · rms · local_std · quantize · companding_mu_law


*Provenance: dsp.py — ONED operator registry. この per-op ノートは tools/opdocs.py md が自動生成(手編集しない)。*

© 2026 Kazufumi Furuse — Fullseye operator documentation. Licensed under Apache-2.0.