BCR
Master Poster
- Joined
- Dec 6, 2008
- Messages
- 2,278
I was checking the referral links to AAL77.COM this morning and came across some interesting work by dMole at the P4T forum. He seems to be a sharp individual who is attempting to use some of the FAA TRACON data I have posted at the site to come up with a viable flight path. Unfortunately he is asserting inconsistencies in the data and of course people over there tend to scream "alteration". So I thought I would explain those inconsistencies and help the boys out.
The first is a time offset. NEADS time is running around 25.1 seconds slower than SEADS time. There is also a difference in one-two radar sweeps (4.7 seconds) between the TRACON's. I am awaiting radar data from the ZNY area so that I can do a full time correlation between the sites and broadcast time, but for the time being, it is enough to realize that there is a time offset between the site data sets.
Another aspect of the data that is critical to understand is that the positional data for the FAA TRACON's is calculated using the azimuth. The azimuth is given in whole degrees in the files provided by the FAA. This means that there is an inherent error in the positional values due to rounding which increases over time. Using a point at Columbia Pike and South Glebe as a reference the following errors must be considered.
DCA positional error = 0.05 nautical miles (translates to 40 knots in speed calculations)
ADW positional error = 0.19 nautical miles (147 knots)
IAD positional error = 0.33 nautical miles (254 knots)
So of course, there are going to be significant variations in speed estimates based on this data. As such, central trend lines should be examined, not one-to-one speed estimates.
When examined in this context, the speed trends correlate well with some predicted wild swings in speed estimates in the IAD data. The time offsets are visible in the graph, but what should be noted is the speed trends. For the purposes of dMole's assertions, all of the data is consistent with a sharp increase in speed which is increasing during the final seconds of flight and exceeding 450 knots at the terminus. The inconsistencies noted by P4T are due to measurement and rounding errors.
The first is a time offset. NEADS time is running around 25.1 seconds slower than SEADS time. There is also a difference in one-two radar sweeps (4.7 seconds) between the TRACON's. I am awaiting radar data from the ZNY area so that I can do a full time correlation between the sites and broadcast time, but for the time being, it is enough to realize that there is a time offset between the site data sets.
Another aspect of the data that is critical to understand is that the positional data for the FAA TRACON's is calculated using the azimuth. The azimuth is given in whole degrees in the files provided by the FAA. This means that there is an inherent error in the positional values due to rounding which increases over time. Using a point at Columbia Pike and South Glebe as a reference the following errors must be considered.
DCA positional error = 0.05 nautical miles (translates to 40 knots in speed calculations)
ADW positional error = 0.19 nautical miles (147 knots)
IAD positional error = 0.33 nautical miles (254 knots)
So of course, there are going to be significant variations in speed estimates based on this data. As such, central trend lines should be examined, not one-to-one speed estimates.
When examined in this context, the speed trends correlate well with some predicted wild swings in speed estimates in the IAD data. The time offsets are visible in the graph, but what should be noted is the speed trends. For the purposes of dMole's assertions, all of the data is consistent with a sharp increase in speed which is increasing during the final seconds of flight and exceeding 450 knots at the terminus. The inconsistencies noted by P4T are due to measurement and rounding errors.