equivalent_level — ACOUSTICS level op

Datenarten: signalmeasurement

Aufruf: import acoustics; acoustics.equivalent_level(x, rate, weighting='A', ref=1.0, floor_db=-200.0, window='none') (oder opsacoustics.get("equivalent_level"))

Verwendung

Der energieäquivalente Pegel einer Aufzeichnung, in dB bezogen auf `ref`.

> Die ausführliche Beschreibung unten ist der Originaltext — Zusammenfassung und Überschriften sind übersetzt.

`L_eq = 10 log10(mean(x_w**2) / ref**2) where x_w` is the signal after

the chosen weighting. Returns a plain float.

The reference is yours to supply. The default `ref=1.0` means dB

relative to one unit of the signal's own units; it is not dB SPL, because

this library never sees your calibration. Pass `ref=20e-6` for pascals.

Measured: a 1 kHz sine of amplitude 1.0 at 16 kHz over exactly 1000 periods

gives `L_eq = -3.010300` dB with Z weighting, against the closed form

`10*log10(1/2) = -3.010300` (difference 2.2e-15 dB), and the same value

under A weighting (difference 8.9e-16 dB), because A is 0 dB at 1 kHz.

Doubling the amplitude adds 6.020600 dB. Silence returns -200.0.

Silence returns `floor_db (default -200) rather than -inf; an -inf`

in a list of levels destroys every average taken over it afterwards.

**A weighted level is only as good as the weighting, and the weighting has a

leakage limit this operator inherits in full.** A pure tone that is not a

whole number of periods in the record comes back too loud — measured

+7.7986 dB at 31.5 Hz (a nominal one-third-octave centre) over 0.5 s at

48 kHz, and up to +17.2116 dB at 20.5 Hz — with no exception, no NaN and

no warning. `weighting="Z" is exempt (it does no filtering) and "C"` is

nearly so (+0.0493 dB on the same tone); it is `"A"`, whose curve spans

about 40 dB across the audio band, that is exposed.

`window="hann"` is the opt-in remedy: the record is multiplied by a Hann

window and the mean square divided by the window's own mean square, which

suppresses the leakage almost entirely — the 31.5 Hz error goes from

+7.7986 to +0.0534 dB and the 20.5 Hz error from +17.2116 to

+0.1841 — while costing about 0.15 dB on records that were exact

before. It is not the default, and must not be used when a transient's

level is the point: a window makes the answer depend on *where in the

record the sound happened*. Measured on a 50 ms burst inside a 0.5 s record

(Z weighting, so only the window acts; unwindowed all three are -13.0103 dB

as they must be): at the start -36.0587, at the centre -8.8218, at

the end -36.0587 — a 27 dB spread produced by nothing but position.

Use `"hann"` for a stationary tonal record, which is exactly the case the

leakage ruins, and `"none"` (the default, an honest energy average) for

everything else. The full measurement is in :func:apply_weighting.

Raises `ValueError: everything :func:_as_signal` refuses, an unknown

`weighting or window, ref <= 0` (a decibel needs a positive reference; a zero

reference makes every level `+inf` and a negative one makes the ratio

negative), `rate <= 0`.

Ausführlicher Anwendungsleitfaden

Leitfaden zur Familie acoustic_condition_monitoring

Referenzen (Beispieldaten, Literatur)

• Katalog der Beispieldaten (Download-URLs / Lizenzen) — 2-D nutzt skimage.data (BSD/Public Domain) plus synthetische Bilder, 3-D nennt Download-URLs echter Datenquellen (Stanford, PDS, …).

• Herkunft und Literatur der Operatoren — die Quellen der Forschung/Verfahren, auf denen diese Operatorfamilie beruht.

• Der kanonische Algorithmus (Autor, Jahr) und seine Anwendungen stehen im Familienleitfaden oben.

Ausführbare Beispiele (verifizierte Samples, die diesen Operator wirklich aufrufen)

acoustic_condition_monitoringpy -3.11 examples/acoustic_condition_monitoring.py

Typkompatible Folge-Operatoren (nehmen measurement als Eingabe)

Gleiche Kategorie (level)

octave_bands · octave_spectrum · weighting_response · apply_weighting · percentile_level


*Provenance: acoustics.py — ACOUSTICS Operator-Registry. Diese Notiz wird von tools/opdocs.py md erzeugt (nicht von Hand bearbeiten).*

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