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Discussion (9 Comments)Read Original on HackerNews
I assume the idea is that you're effectively randomly sampling (with each shutter press) that amount of time of the sine wave. You should see a distribution of brightness if there's a signal present, unless you get unlucky and sample at the same brightness (many would be required). Capture many with and without audio signal present, compare std deviation. If they're the same, no signal.
But yes, truly terrible lab report. ;) Who knows if this data is meaningful.
I wonder if the original rumor came from a bulb with a failing ballast, with a "less stable" arc, or maybe with a mic/diaphragm integrated into it, that modulated the light by sinking some current? I always assume these more wizardly things are based in truth.
The second question is whether one can simply modify the tube/ballast in a visually imperceptible way. For example, one could insert an IC in the ballast that modulates the power draw of the lamp dependent on the ambient coupled acoustic/vibration power (eg possibly using the lamp as a vibrational microphone). Then pulse modulating the power draw of the lamp at a relatively low noise part of the power spectrum and within the band of the main power transformer filters. The lamps easily draw 40-80W so there's lots of room to work, and there are already Power Factor Correction implementations that use this simple technique to make lamp's inductive loads "look resistive".
So what's notable is that either the ballast of the lamp could be tampered with or one of the bulbs. Either one could allow transmission out along power lines, if standard transformers and capacitors are used for power delivery. This is how home powerline ethernet works and it transmits Gb/s rather than the few kb/s needed to get voice out over the power lines.
Case in point. I saw a single Korean Samjung lamp interfere with AM radio stations (<1MHz) from 100 meters, by just clipping the power draw of a small fluorescent with a thyristor and oscillator at the ballast of a desk lamp to provide PFC so that thousands of lamps could be placed in huge open plan offices.
Now all you have to do is to get your modified lamps into the supply chain for lamp replacement in the secure area.
Just because the brightness fluctuations aren’t noticeable doesn’t mean they aren’t there.
Or perhaps the contacts need to be realistically cruddy and intermittent, and the long glass tube acts as a sounding body to trigger an intermittent contact, encoding sound into light.