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wrote:
Couple questions, maybe Darryl you could take a shot at these. Would there be a perceptible position error if one compared the reported position from a PowerFlarm Core with a fully approved ADSB source. Compare it to say the Trig TN70 unit. http://www.trig-avionics.com/tn70.html If the reported position error is suitably small, what would be required to show that the PowerFlarm Core meets the "performance requirements" to be used as a NMEA source for ADSB out? With many of us in the US installing PowerFlarm, there is some sense to seeing if this device could get to the point, legally, of being used as a source for a Trig transponder that is capable of ADSB out. Mark I already kind of covered this in another thread, there is absolutely no way any standard consumer type GPS source (like used in PowerFLARM) can meet the performance requirements of TSO-C145 or similar specs. The hard part of those requirements is not so much positional accuracy they are reliability and error detection. You cannot use any NEMA GPS to do this (meet the 2020 carriage mandate requirements), there is not enough reliability related data in the NEMA steam, suitable GPS' talk ARINC 429 or 'Aviation' serial format over RS-232. Again, all this is why TSO-C199 is interesting as it specifically covers using consumer GPS sources in ADS-B based anti-collision beacons. However that TSO does not apply to the 2020 ADS-B out carriage mandate (which gliders are exempt from). Read that TSO to get a flavor of what is involved, it needs work from a vendor to show a GPS is suitable, not just an end-user connecting up any old consumer GPS. One of the encouragements for the FAA doing all this is... the careful and successful use of consumer GPS technology in FLARM. |
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