Quoted post said:Originally posted by acoggan
Yes, all the data *that have been reported* do seem to show reasonable accuracy.
Well...that's all I can go on, now isn't it? It's hard to form an opinion on *unreported* data.
Quoted post said:Originally posted by acoggan
However, not all that much data has actually been reported, and some of it has been generated by/with the help of one of the Cote brothers, who obviously have a vested interested in the success of the Polar powermeter.
The data that was generated and posted by JJ Cote is on Robert Chung's site comparing the Polar to a Power Tap. However, there is also the data taken by Kraig Willett with the Powertap, Polar, and SRM all together. Additionally, there's a published study comparing the Polar to an SRM.
Quoted post said:Originally posted by acoggan
On the flip side, you have people like Dave Harris who have very low opinions of the Polar powermeter (based on first hand experience), and prominent coaches (like Ed Monnier) who refuse to work with athletes who use one.
Dave Harris's case is a special situation in that he was using it on a mountain bike with knobby tires. Some of the same vibrational issues that affect the Polar's trainer performance were evident in his readings during on-road training.
Quoted post said:Originally posted by acoggan
I think the takeaway message is that, unless the person installing the device is somewhat technically adept and takes the time to verify that it is giving reasonable numbers, you can't be completely confident in the data.
I agree that it's not a "plug and play" type device. However, you have to agree that none of the power meter options are to that extent either. There's always some sort of calibration, resetting offsets, etc. that takes place with any of the current offerings.
Quoted post said:Originally posted by acoggan
That's good, but can you ride up that 8% climb using every one of your gear combinations, to be certain that you don't have at least some chainline dependency to your numbers? Unless you're exceptionally powerful and/or can pedal at very low cadences, then the answer is probably not...which is one of the things I see as being most limiting about the Polar approach, i.e., the accuracy of the data is dependent upon the installation, yet there's no easy way to be 100% certain you've got the sensor in the "sweet spot".
Aahh...but I don't need to repeat this test in all gears. First, based on the Polar's method of operation, if I'm getting good numbers with the chain at it's furthest position from the sensor, it'll be good across the range (as long as it's not mounted on a trainer, of course). There can't be any proportional type errors (except if your initial measured inputs have errors). The "spacing" issues come about when the vibrational signal is too weak (i.e. when the chain is furthest away). This case is covered by this hillclimb test. Then, looking at the "head to head" on-road data mentioned above, there's no gear by gear discrepancies as compared to other power meters. Therefore, I feel reasonably confident in the numbers I'm seeing.
All I can say is that in my relatively limited experience (>4 months now) the Polar Power module has been "bullet proof" in it's performance. In fact, I've had more issues with the HR monitor performance than with the power measurement....Of course, what am I doing still looking at HR, huh?