<!-- canonical: https://jmrplens.github.io/phonometry/about/ -->
Source: https://jmrplens.github.io/phonometry/about/

This page exists because a library that asks you to trust its numbers owes you
the name of the person behind them, the method those numbers come from, and a
way to tell me when one of them is wrong.

## Who maintains phonometry

I am José Manuel Requena Plens. I wrote phonometry (originally released as
PyOctaveBand) and I maintain it: the implementations, the test suite, this
documentation site and the releases. There is no company behind it and no team,
so if something on this site is wrong, it is mine to fix.

You can verify who I am through any of these:

- **ORCID:** [0000-0003-1250-6212](https://orcid.org/0000-0003-1250-6212)
- **Google Scholar:** [scholar.google.com/citations?user=9b0kPaUAAAAJ](https://scholar.google.com/citations?user=9b0kPaUAAAAJ)
- **ResearchGate:** [Jose Requena Plens](https://www.researchgate.net/profile/Jose-Requena-Plens-2)
- **GitHub:** [@jmrplens](https://github.com/jmrplens)
- **Personal site:** [jmrp.io](https://jmrp.io)

The same identity is also published on
[MathWorks File Exchange](https://www.mathworks.com/matlabcentral/profile/authors/5890853),
[LinkedIn](https://www.linkedin.com/in/jmrplens),
[Mastodon](https://mstdn.jmrp.io/@jmrplens) and
[Keyoxide](https://keyoxide.org/0A993B268654DBBA52B7E8D3FCF653391E2C91FC),
where the OpenPGP key that signs my work is listed.

My background is in acoustics and in signal processing, and it is on the
record rather than self-described: I trained as a Telecommunications Engineer
specialised in Sound and Image at the Universidad de Alicante (2011-2018),
took the MSc in Acoustics Engineering at the Universitat Politècnica de
València (2018-2019), and worked as an acoustics researcher at the UPV from
2020 to 2023, publishing there on acoustic metasurfaces, sound diffusers and
acoustic field prediction; the papers are listed under the Google Scholar and
ORCID profiles above. Today I work in industrial R&D as a firmware and
software engineer.

The library grew out of the measurement side of that work: I kept needing
octave-band levels and sound level meter quantities that I could defend
against a tolerance table, so I built them once, properly, instead of
re-deriving them for each project.

## How I build the library

The method is the whole point of the project, and it is deliberately narrow:

1. **I implement each metric from the text of its governing standard**, clause
   by clause, rather than from a secondary description of it or from another
   implementation. When a formula is ambiguous, the ambiguity is resolved from
   the document itself or from the physics, and the reading I chose is written
   down.
2. **I transcribe the standard's own reference values into the test suite.**
   Where a standard publishes a worked example, a tolerance table or a set of
   nominal responses (the IEC 61672-1 Table 3 weighting values, its Table 4
   tone-burst responses, the IEC 61260-1 Table 1 filter limits, the ISO 226
   Annex B contours, and so on), those numbers become the expected values of
   real tests.
3. **CI enforces them on every change.** A regression that moves a computed
   value outside the standard's acceptance limit fails the build, so the claim
   cannot quietly stop being true between releases.

Not every standard publishes a numerical example. Where one does not, the
implementation is anchored to the closed-form expressions in the normative text
and pinned with a case synthesized to a known result, which is a weaker
guarantee than a transcribed worked example and is labelled as such in the
report. I would rather say that plainly than round it up.

The numbers are public. The
[conformance report](/phonometry/reference/conformance/) lists, per check, the
standard and clause, the normative expected value, the value the library
actually computes, the delta and a pass or fail verdict; it is regenerated by
CI on every pull request, so it cannot drift from the code.
[Why phonometry](/phonometry/reference/why-phonometry/) walks through the
method on a single worked case (time weighting under IEC 61672-1:2013) if you
want to see it applied end to end before trusting it in general.

## Reporting an error

Please report it. A wrong number that nobody tells me about stays wrong.

Open an issue at
[github.com/jmrplens/phonometry/issues](https://github.com/jmrplens/phonometry/issues).
The most useful report gives me the standard and clause you are checking
against, the expected value, the value phonometry produced, and a short snippet
that reproduces it. If you cannot share the signal, the parameters alone are
usually enough for me to rebuild a case.

If an issue tracker is not an option for you, write to me directly at
[mail@jmrp.io](mailto:mail@jmrp.io); the issue is still the better channel,
because the report and the fix stay public next to the code they concern.

That includes errors you find in the standards themselves. Re-deriving formulas
and recomputing worked examples from the source documents occasionally turns up
defects in the sources: misprints, worked examples that contradict their own
normative clauses, ambiguous wording. I do not silently work around those. Each
confirmed case is recorded in the
[errata registry](https://github.com/jmrplens/phonometry/blob/main/docs/ERRATA.md)
with the location, the evidence, the reading the library implements, and
whether it has been reported to the issuing body. The registry covers standards
(ISO, IEC, EN), guidance documents and technical reports, textbooks and journal
papers alike. If you disagree with one of those readings, that is exactly the
kind of issue I want to receive.

## Cite this software

If phonometry contributed to published work, please cite it. The archived
record and its DOI are on Zenodo:

**[doi.org/10.5281/zenodo.21215280](https://doi.org/10.5281/zenodo.21215280)**

That is the concept DOI: it always resolves to the most recent archived
release, and each release also has its own version DOI on the same record. Cite
the version you actually ran.

APA:

> Requena Plens, J. M. (2026). *phonometry: acoustic measurement toolkit for
> Python* (Version 3.2.0) [Computer software].
> https://doi.org/10.5281/zenodo.21215280

BibTeX:

```bibtex
@software{requenaplens_phonometry,
  author  = {Requena Plens, Jose Manuel},
  title   = {phonometry: acoustic measurement toolkit for Python
             (formerly PyOctaveBand)},
  year    = {2026},
  version = {3.2.0},
  doi     = {10.5281/zenodo.21215280},
  url     = {https://jmrplens.github.io/phonometry/},
  license = {MIT}
}
```

Both entries are derived from
[`CITATION.cff`](https://github.com/jmrplens/phonometry/blob/main/CITATION.cff)
in the repository, which is the authoritative metadata and the file GitHub and
Zenodo read. If you use a reference manager, import that file rather than
copying the block above, and adjust the version and year to the release you
used.

## Licence

phonometry is released under the
[MIT licence](https://github.com/jmrplens/phonometry/blob/main/LICENSE), so you
can use it in commercial and academic work, modify it and redistribute it, as
long as the copyright notice and the licence text travel with it. The software
is provided without warranty: it is verified against the standards it
implements, as described above, but it is not a calibrated instrument and it
carries no accreditation. Deciding whether a result is fit for your purpose
remains yours.

The standards themselves are copyrighted by their issuing bodies and are not
redistributed here. This documentation cites clauses and reference values as
needed to explain and verify the implementations; it is not a substitute for
buying the documents.
