Silva Fennica · 2006 · 366 citations · 30 references
Field Measurement TechniquesPrecision AgricultureEnvironmental MonitoringForest Canopy CoverEngineeringForest BiometricsForestryGeographyRemote SensingCajanus TubeForest ProductivityForest MeteorologyForest Health MonitoringCanopy CoverForest InventoryEarth ScienceDeforestation
<ja:p>Estimation of forest canopy cover has recently been included in many forest inventory programmes. In this study, after discussing how canopy cover is defined, different ground-based canopy cover estimation techniques are compared to determine which would be the most feasible for a large scale forest inventory. Canopy cover was estimated in 19 Scots pine or Norway spruce dominated plots using the Cajanus tube, line intersect sampling, modified spherical densiometer, digital photographs, and ocular estimation. The comparisons were based on the differences in values acquired with selected techniques and control values acquired with the Cajanus tube. The statistical significance of the differences between the techniques was tested with the nonparametric Kruskall-Wallis analysis of variance and multiple comparisons. The results indicate that different techniques yield considerably different canopy cover estimates. In general, labour intensive techniques (the Cajanus tube, line intersect sampling) provide unbiased and more precise estimates, whereas the estimates provided by fast techniques (digital photographs, ocular estimation) have larger variances and may also be seriously biased.</ja:p>
30
Introduction to the Practice of Statistics
Technometrics · 2004 · 2.3K citations
Y. Knyazikhin, John V. Martonchik, Ranga B. Myneni et al. · Journal of Geophysical Research Atmospheres · 1998 · 924 citations · Full text
Precision Agriculture, Environmental Monitoring, Engineering +26
A Spherical Densiometer For Estimating Forest Overstory Density
Paul E. Lemmon · Forest Science · 1956 · 921 citations