Posts Tagged ‘forensic audio analysis’

Dire Straits – Brothers in Arms: 2013 Mobile Fidelity CD Layer – Nine-Track Forensic Analysis

Saturday, September 26th, 2026
Completing the nine-track comparison with the 1985 Bob Ludwig mastering

2013 Mobile Fidelity UDSACD 2099 — CD layer. The nine-track forensic investigation.

In the previous article, Dire Straits – Brothers in Arms: Forensic Analysis of the 2013 Mobile Fidelity CD Layer, I examined the relationship between the 2013 Mobile Fidelity CD layer and the original 1985 Bob Ludwig mastering.

That initial investigation established that the Mobile Fidelity release was not simply a level-shifted copy of the Ludwig CD.

The obvious next question was whether the behaviour seen in the individual examples represented a consistent mastering characteristic across the entire album.

That question can now be answered.

I have completed the same analysis across all nine tracks of the album.


The question we set out to answer

The purpose of this second-stage investigation was straightforward:

Does the 2013 Mobile Fidelity CD layer exhibit a consistent mastering pattern across all nine tracks, or did individual tracks receive materially different treatment?

To answer that, the complete Mobile Fidelity CD layer was compared against the complete 1985 Bob Ludwig mastering.

The analysis covered:

  • sample alignment
  • gain relationships
  • waveform correlation
  • frequency-domain transfer
  • magnitude-squared coherence
  • magnitude-only EQ matching
  • complex transfer behaviour
  • residual analysis

This gives us a much stronger basis for assessing the MoFi than analysing a single track.


The nine tracks

# Track
1 So Far Away
2 Money For Nothing
3 Walk of Life
4 Your Latest Trick
5 Why Worry
6 Ride Across the River
7 The Man’s Too Strong
8 One World
9 Brothers in Arms

The Mobile Fidelity files were extracted from the CD layer as 44.1 kHz / 16-bit stereo PCM and verified using AccurateRip/CTDB.


Track alignment

The corresponding material in the two masterings does not begin at exactly the same sample position.

The offsets required to align the MoFi with the Ludwig reference were:

Track MoFi relative offset
So Far Away 37,146 samples
Money For Nothing 8,240 samples
Walk of Life 2,314 samples
Your Latest Trick 1,582 samples
Why Worry 2,305 samples
Ride Across the River 940 samples
The Man’s Too Strong 941 samples
One World 476 samples
Brothers in Arms 1,028 samples

These are simply the offsets required to place the corresponding audio in the same time reference.

They are not evidence of different musical performances.


Gain-only comparison

The first test was deliberately simple.

Align the two masterings, calculate the optimum gain relationship, and compare the resulting waveforms.

If the MoFi were simply the Ludwig mastering at a different level, this should produce an almost perfect match.

It doesn’t.

Track Left gain Left residual Right gain Right residual
So Far Away +2.79 dB -9.89 dB +2.86 dB -10.68 dB
Money For Nothing +2.75 dB -11.93 dB +2.59 dB -12.17 dB
Walk of Life +3.48 dB -13.97 dB +3.30 dB -13.91 dB
Your Latest Trick +6.55 dB -11.99 dB +6.05 dB -12.90 dB
Why Worry +9.66 dB -15.50 dB +9.83 dB -15.12 dB
Ride Across the River +6.24 dB -11.68 dB +6.10 dB -11.79 dB
The Man’s Too Strong +5.57 dB -13.17 dB +5.12 dB -12.89 dB
One World +3.46 dB -12.60 dB +3.11 dB -12.65 dB
Brothers in Arms +6.04 dB -12.51 dB +6.21 dB -12.29 dB

The residuals are far too large for this to be a simple gain change.

So the first conclusion from the nine-track analysis is reinforced:

The MoFi is a genuinely different digital mastering.


The tonal-transfer signature

The next stage was to examine the frequency-domain relationship between the two masterings.

Each track was analysed using Welch power spectral density measurements. The resulting transfer curves were smoothed and then normalised to remove the overall level difference.

The purpose was not to produce an absolute EQ curve for the MoFi, but to identify the shape of the tonal difference between the two masterings.

All nine tracks show a broadly similar MoFi-minus-Ludwig tonal-transfer signature.

The individual tracks are not identical, but they cluster around a common shape.

Broadly speaking, the MoFi shows:

  • more energy through the lower frequencies
  • a broadly similar midrange
  • less energy through much of the upper midrange and treble

Album-average normalised transfer

Frequency MoFi relative to Ludwig
50 Hz +0.34 dB
100 Hz +1.18 dB
200 Hz +1.51 dB
500 Hz +0.64 dB
1 kHz +0.31 dB
2 kHz +0.14 dB
5 kHz -1.04 dB
10 kHz -1.74 dB
15 kHz -2.16 dB
20 kHz* +0.82 dB

*The 20 kHz result is unstable compared with the rest of the spectrum and should not be treated as a definitive EQ value.


How consistent is the tonal difference?

This is perhaps the most important result of the entire second-stage investigation.

The RMS deviation of each track from the album-average transfer, measured over the more reliable 50 Hz–10 kHz range, was:

Track Deviation from album mean
So Far Away 0.48 dB
Money For Nothing 0.65 dB
Walk of Life 0.61 dB
Your Latest Trick 0.88 dB
Why Worry 0.61 dB
Ride Across the River 0.90 dB
The Man’s Too Strong 0.67 dB
One World 0.61 dB
Brothers in Arms 0.70 dB

The largest deviation is still less than 1 dB.

That is strong evidence that the broad tonal difference is an album-wide characteristic, rather than something caused by one or two individual tracks.


Money For Nothing as an example

The spectral relationship for Money For Nothing illustrates the general pattern particularly well.

Frequency MoFi minus Ludwig
20–50 Hz +0.04 dB
50–100 Hz +0.28 dB
100–200 Hz +0.52 dB
200–500 Hz +0.35 dB
500 Hz–1 kHz +0.26 dB
1–2 kHz -0.07 dB
2–5 kHz -1.66 dB
5–10 kHz -2.18 dB
10–20 kHz -2.64 dB

This is clearly not a simple gain difference.

MoFi-minus-Ludwig spectral difference. Overall level has been normalised before measuring the frequency-dependent difference.


Magnitude EQ matching

The next experiment was to ask whether the spectral difference alone could explain the waveform relationship.

A magnitude-only transfer was derived and applied to the Ludwig reference.

This improves the match considerably.

For Brothers in Arms, for example, the residual improved from approximately:

-12.2 dB ? -14.3 dB

after magnitude EQ.

This confirms that frequency response is an important part of the difference.

However, the match is still not perfect.

There is therefore more happening than a simple EQ curve.


Coherence across the album

Magnitude-squared coherence was examined to determine how strongly the two signals remain related at different frequencies.

The coherence is extraordinarily high over most of the audible spectrum.

For the majority of the tracks, median coherence is effectively at or extremely close to unity across the main audible bands.

Even where it falls slightly at the extreme high-frequency end, the relationship remains very strong.

This is significant because it demonstrates that the MoFi and Ludwig signals are not merely similar in a broad spectral sense.

They retain a very strong frequency-by-frequency relationship.


Complex-transfer analysis

The final stage was to move beyond magnitude response and examine the complex transfer relationship.

This considers both magnitude and phase/filter behaviour.

Complex-transfer residuals for selected tracks. These are residual measurements, not mastering EQ curves.

The resulting correlations are exceptionally high.

Track Left correlation Right correlation
Brothers in Arms 0.999992 0.999987
Your Latest Trick 0.999930 0.999950
Why Worry 0.999999 0.999999
One World 0.999841 0.999942

Selected residual levels were:

  • Brothers in Arms: approximately -18.15 dB left / -18.76 dB right
  • Your Latest Trick: approximately -6.29 dB left / -5.10 dB right
  • Why Worry: approximately -50.40 dB left / -31.38 dB right
  • One World: approximately -19.19 dB left / -9.70 dB right

The variation is important.

It demonstrates that although the underlying relationship is extremely strong, the exact transfer behaviour is not identical on every track or channel.


Was the mastering time-varying?

One possibility considered during the investigation was that the transfer characteristics might change substantially throughout individual songs.

That would potentially suggest time-varying processing.

However, the local transfer measurements did not provide sufficient evidence to support that conclusion.

The transfer curves remained broadly stable when examined at different points in the programme.

The earlier apparent variation seen in some local FIR experiments was therefore not treated as evidence of time-varying mastering.

This is an important example of why intermediate experimental results need to be validated before being treated as conclusions.


What have we actually established?

After completing the complete nine-track analysis, the evidence supports several conclusions.

The MoFi is a different mastering

The gain-only comparison leaves substantial residual differences across the album.

The tonal difference is album-wide

The nine tracks exhibit a remarkably similar broad transfer shape.

The tracks are not mathematically identical

The detailed transfer characteristics vary between songs and channels.

EQ explains part of the difference

Magnitude correction improves the match.

EQ does not explain everything

Significant residual differences remain after magnitude correction.

The underlying waveform relationship is exceptionally strong

Complex-transfer analysis produces correlations extremely close to unity on the tracks examined in detail.


What this does not tell us

The analysis describes the relationship between the digital PCM signals.

It does not establish the physical analogue source used to create the Mobile Fidelity master.

Therefore, the measurements do not prove whether the MoFi originated from:

  • the original master tape
  • a safety copy
  • another analogue-generation copy
  • a digital intermediate
  • or another source

Nor can the waveform analysis identify the exact analogue playback equipment, converter or mastering chain.

Those questions require documentary evidence.


The 1985 Ludwig comparison provides an important reference

The earlier comparison of the 1985 Bob Ludwig and John Dent editions provides a useful benchmark.

After correcting for channel orientation, gain and sample alignment, tracks 1, 2 and 4–9 of those two releases match to approximately ±1 LSB.

The residuals are around the -61 to -69 dB region.

The MoFi residuals are substantially larger and more structured than that on most tracks.

This reinforces the conclusion that the 2013 Mobile Fidelity release is not simply another digital representation of the same 1985 mastering.


Final conclusion

The original question was whether the differences observed between the 2013 Mobile Fidelity CD layer and the 1985 Bob Ludwig mastering followed a consistent mastering pattern.

Having now analysed all nine tracks, the answer is clear:

There is a consistent broad mastering pattern across the album, while the precise transfer characteristics vary from track to track and channel to channel.

The 2013 Mobile Fidelity CD layer is therefore a genuinely distinct digital mastering.

It has:

  • a higher average level than the original Ludwig CD
  • a different tonal balance
  • a measurable frequency-dependent transfer
  • transfer characteristics that cannot be explained by gain alone
  • differences that cannot be completely explained by magnitude EQ alone
  • an exceptionally strong underlying waveform relationship with the Ludwig mastering

The most defensible summary is:

The 2013 Mobile Fidelity CD layer is a distinct mastering of Brothers in Arms, with different level, tonal and transfer characteristics from the 1985 Bob Ludwig CD, while retaining an exceptionally strong underlying waveform relationship to the original programme.

We can now say this with confidence across the entire nine-track album, rather than relying on one or two representative tracks.


So what does this mean?

The investigation does not establish which physical tape Mobile Fidelity used.

It does establish something more immediately measurable:

The 2013 MoFi CD layer is not simply the 1985 Ludwig CD at a different volume.

It has its own tonal and transfer characteristics, and those characteristics are present across the album.

At the same time, the exceptionally high waveform relationship shows just how much common information remains between the two masterings.

That combination is what makes the 2013 Mobile Fidelity edition particularly interesting.


Analysis complete

This completes the planned nine-track forensic comparison of the 2013 Mobile Fidelity Brothers in Arms CD layer.

The analysis has moved from a single-track investigation to a complete album-level examination, providing a much stronger basis for describing the relationship between the MoFi and the original 1985 Bob Ludwig mastering.

Analysis by Andy Hancock.

Measurements are based on the actual extracted CD-layer PCM data. Figures labelled as summary or illustrative should not be treated as raw measurement plots.


Related article

This article is the follow-up to:

Dire Straits – Brothers in Arms: Forensic Analysis of the 2013 Mobile Fidelity CD Layer

That article introduced the MoFi investigation and set out the initial findings. This follow-up completes the planned nine-track analysis.

 

Coming Next: The SACD Versions

The CD-layer investigation is now complete, but there is another part of the Brothers in Arms story still to explore.

Come back soon as we turn our attention to the SACD versions — including the 2005 20th Anniversary Hybrid SACD, the 2013 Mobile Fidelity UDSACD 2099, and the 2014 SHM-SACD.

We’ve already seen how differently the CD masterings can behave. The next stage is to examine what these SACD releases actually contain and how their high-resolution stereo programmes compare.

Dire Straits – Brothers in Arms: Forensic Analysis of the 2013 Mobile Fidelity CD Layer

Friday, September 25th, 2026

Introduction

The 2013 Mobile Fidelity release of Brothers in Arms is often discussed alongside the original 1985 CD masterings, but listening alone cannot tell us exactly how the mastering relates to those earlier versions.

I therefore treated the CD layers as digital data and compared the actual PCM samples. The aim was not simply to measure loudness, but to determine how closely the Mobile Fidelity mastering is related to the 1985 programme and what processing separates the two.

The editions compared

  • 1985 John Dent — Matrix 06
  • 1985 Bob Ludwig — Matrix 12/17
  • 1996 SBM
  • 2005 20th Anniversary
  • 2013 Mobile Fidelity UDSACD 2099 — CD layer
  • 2025 40th Anniversary
Important: Matrix 12 and Matrix 17 of the 1985 Bob Ludwig mastering were found to be digitally identical after accounting for a 255-sample offset, so they represent one unique mastering for this analysis.

The Mobile Fidelity CD layer

The Mobile Fidelity UDSACD 2099 CD layer is a standard 44.1 kHz / 16-bit stereo programme. The nine tracks were extracted and verified with AccurateRip and CTDB. All nine tracks returned high-confidence AccurateRip results with no extraction errors.

The measured EAC peak levels range from 53.7% to 99.3%. More importantly, the average level is substantially higher than the 1985 masterings, while the crest factor remains much closer to the original CDs than to the later, more heavily levelled editions.

Dynamic level comparison

Median RMS level across the album. The 2013 Mobile Fidelity CD layer is considerably louder than the 1985 masterings, but remains substantially more dynamic than the 1996, 2005 and 2025 editions.

The album-wide median RMS figures are approximately:

Mastering Median RMS Median crest
1985 Bob Ludwig -27.73 dBFS 22.52 dB
1985 John Dent -25.54 dBFS 22.33 dB
2013 Mobile Fidelity -22.86 dBFS 21.51 dB
1996 SBM -18.18 dBFS 18.18 dB
2025 40th Anniversary -16.36 dBFS 15.36 dB
2005 20th Anniversary -12.84 dBFS 12.74 dB

Test 1 – Is the Mobile Fidelity version simply a level-shifted 1985 mastering?

No. A simple gain adjustment does not reproduce the Mobile Fidelity waveform.

For example, on Brothers in Arms, Your Latest Trick and Why Worry, aligning corresponding events and optimising the gain produces very high waveform correlations, but leaves substantial residual energy. The residuals are far above the level expected from simple 16-bit quantisation differences.

Test 2 – Spectral differences

The tonal balance is also different. Money For Nothing provides a useful example. After normalising total 20 Hz–20 kHz power, the approximate Mobile Fidelity-minus-Ludwig spectral difference is:

Band Difference
20–50 Hz +0.04 dB
50–100 Hz +0.28 dB
100–200 Hz +0.52 dB
200–500 Hz +0.35 dB
500 Hz–1 kHz +0.26 dB
1–2 kHz -0.07 dB
2–5 kHz -1.66 dB
5–10 kHz -2.18 dB
10–20 kHz -2.64 dB

Approximate spectral difference after overall power normalisation: Mobile Fidelity minus 1985 Bob Ludwig, Money For Nothing.

This is not the signature of a simple digital gain change. The Mobile Fidelity version has a different frequency balance, with relatively more low-frequency energy and less upper-mid/high-frequency energy than the Ludwig reference.

Test 3 – Can magnitude-only EQ explain the difference?

Magnitude-only EQ improves the match significantly, but it does not completely explain the waveform relationship.

For example, on Brothers in Arms, the gain-only residuals were approximately -12 dB, while a magnitude-EQ correction reduced them to roughly -14 dB. The waveform correlation also increased.

That tells us that tonal balance is part of the difference, but not all of it.

Test 4 – Coherence

The most striking result is the magnitude-squared coherence between the two masterings.

  • Brothers in Arms: approximately 0.999–1.000 across essentially the entire audio band.
  • Your Latest Trick: approximately 1.000 through most of 100 Hz–20 kHz.
  • Why Worry: approximately 1.000 through most of 100 Hz–10 kHz.
  • One World: still extremely high, with the largest reduction occurring at the very top end.

This does not prove that the two CDs came from the same physical analogue tape or mastering chain. It does, however, demonstrate an exceptionally strong deterministic relationship between their waveforms.

Test 5 – Complex transfer behaviour

The next step was to allow both magnitude and phase/filter behaviour to vary rather than attempting to describe the difference with EQ alone.

After aligning the programmes, a complex transfer analysis produced very high correlations and substantially lower residuals on several tracks. The results vary by track and channel, which is important: there is no evidence here for one universal album-wide transfer function.

Residual levels after complex-transfer modelling for selected tracks and channels.

Test 6 – FIR filtering

Finite impulse response filtering was also tested. Increasing filter length improved the match in some cases, but the improvement eventually plateaued. This is consistent with a relationship that contains more than a simple static EQ curve, while not by itself proving a particular analogue or digital processing chain.

Illustrative progression of the matching methods used during the investigation. The chart is a summary of the analysis rather than a raw measurement plot.

Test 7 – Is the mastering changing over time?

An important possibility was that the Mobile Fidelity transfer might contain time-varying processing. Local transfer measurements were therefore compared at different points in the programme.

The transfer behaviour proved sufficiently stable that a claim of genuine time-varying mastering processing could not be justified from these tests. Some variation appeared in local FIR fits, but that variation was at least partly dependent on the musical content and limitations of the model.

Final complex-transfer results

The final reproducible complex-transfer validation gave the following approximate residuals:

Track Left Right
Brothers in Arms -18.15 dB -18.76 dB
Your Latest Trick -6.29 dB -5.10 dB
Why Worry -50.40 dB -31.38 dB
One World -19.19 dB -9.70 dB

The very low residual on the left channel of Why Worry is particularly interesting, with
the residual approaching the regime where quantisation and numerical effects become relevant.
However, the same cannot be said of every track, so the Mobile Fidelity mastering cannot simply
be described as a quantised copy of the Ludwig master.

Quantisation noise and the 1985 comparison

The relationship between the two 1985 masterings provides a useful control experiment. After channel reversal, gain correction and track-specific sample alignment, the John Dent and Bob Ludwig files match within approximately ±1 least-significant bit on most tracks. Their residuals are typically around -61 to -69 dB.

The Mobile Fidelity residuals are materially higher on several tracks. That is strong evidence against describing the 2013 CD layer as merely a digital level-shift or quantised copy of the 1985 Ludwig mastering.

What the analysis actually proves

  • The 2013 Mobile Fidelity CD layer is a distinct mastering.
  • It is not simply a global gain change of the 1985 Bob Ludwig mastering.
  • Its tonal balance is measurably different.
  • Magnitude-only EQ cannot fully explain the relationship.
  • The two programmes retain an exceptionally strong waveform relationship.
  • Complex transfer behaviour accounts for substantially more of the relationship than simple EQ.
  • A single universal album-wide transfer function has not been demonstrated.
  • Time-varying processing has not been demonstrated.
  • The waveform data alone cannot identify the physical analogue source tape.

What it does not prove

Digital waveform analysis cannot tell us with certainty which physical tape was used at the Mobile Fidelity mastering stage. A strong waveform relationship is evidence about the digital signals; it is not direct evidence about the provenance of the analogue source.

Likewise, these measurements do not establish the exact analogue mastering chain, converter, equaliser, compressor, limiter or other equipment that may have been used. Those conclusions would require documentation or additional independent evidence.

Conclusion

The 2013 Mobile Fidelity UDSACD 2099 CD layer is best described as a genuinely distinct digital mastering of Brothers in Arms. It is not simply the 1985 Bob Ludwig CD with its level changed.

At the same time, the forensic measurements show an unusually strong underlying relationship between the two programmes. The Mobile Fidelity version appears to preserve the same musical programme extremely closely while applying a different tonal and transfer characteristic.

That makes the 2013 CD layer particularly interesting: the differences are not adequately described by loudness alone, but neither does the evidence support treating it as an unrelated digital source.

Next stage

The next stage of the investigation is to run the same full analysis across all nine tracks and compare the transfer behaviour track by track. That should show whether the differences follow a consistent mastering pattern or whether individual tracks received materially different treatment.

Analysis by Andy Hancock. Measurements are based on the actual extracted CD-layer PCM data. Figures
labelled as summary or illustrative should not be treated as raw measurement plots.