Satellite Telemetry: Performance of Animal-Tracking Systems

Keating KA, Brewster WG, Key CH. 1991. Satellite Telemetry: Performance of Animal-Tracking Systems. The Journal of Wildlife Management. 55(1):160-171

We used 10 Telonics ST-3 platform transmitter terminals (PTT's) configured for wolves and ungulates to examine the performance of the Argos satellite telemetry system. Under near-optimal conditions, 68 percentile errors for location qualities (NQ) 1, 2, and 3 were 1,188, 903, and 361 m, respectively. Errors () exceeded expected values for NQ = 2 and 3, varied greatly among PTT's, increased as the difference (HE) between the estimated and actual PTT elevations increased, and were correlated nonlinearly with maximum satellite pass height (). We present a model of the relationships among , HE, and . Errors were bimodally distributed along the east-west axis and tended to occur away from the satellite when HE was positive. A southeasterly bias increased with HE, probably due to the particular distribution of satellite passes and effects of HE on . Under near-optimal conditions, ≥1 sensor message was received for up to 64% of available () satellite passes, and a location (NQ ≥ 1) was calculated for up to 63% of such passes. Sampling frequencies of sensor and location data declined 13 and 70%, respectively, for PTT's in a valley bottom and 65 and 86%, respectively, for PTT's on animals that were in valley bottoms. Sampling frequencies were greater for ungulate than for wolf collars.

Type
Journal Article
Authors
Keating, Kimberly; Brewster, Wayne; Key, Carl
Units
GLAC
Keywords
Absence (Biodiversity), Canidae (Coyotes Dogs Foxes Jackals Wolves), Canis lupus (Gray Wolf), Flathead River drainage MT, Mammalia (Mammals), Presence (Biodiversity), Research Methods, Satellite Telemetry, Taxa Links To Datasets, Taxa Links To References

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