This paper models the effects of the leaves of mature broadleaf trees on air-to-ground free-space optical (FSO) communication systems operating through the leaf canopy. Ecological radiation transfer models are considered and the concept of Leaf Area Index (LAI) is reviewed and related to a probabilistic model. Leaf transmittance is experimentally measured for different leaf types and determined to be very close to zero. A probabilistic canopy model of foliage is developed as obscuring leaves are randomly distributed throughout the treetops. The expected fractional unobscured area statistic is derived as well as the variance around the expected value. Monte Carlo simulation results confirm the probabilistic model’s statistical conclusions. M...
Solar radiation, the radiant energy from the sun, is a driving variable for numerous ecological, phy...
A radiative transfer model for a homogeneous plane parallel vegetative canopy is developed. A method...
A forest canopy is a complex system with a highly structural multi-scale architecture. Physical base...
This paper models the effects of the leaves of mature broadleaf trees on air-to-ground free-space op...
The forest canopy is a region of vast ecological relevance constituting the bulk for photosynthetica...
The forest canopy is a region of vast ecological relevance constituting the bulk for photosynthetica...
A methodology is presented that describes the direct interaction of a forest canopy with incoming ra...
Accurate and fast non-destructive measurements of leaf area index (LAI) of plant canopies are essent...
Leaf area and its spatial distribution are key canopy parameters needed to model the radiation regim...
Transmitted radiation under trees shows variability in space and time that may have implications for...
The amount of leaf area and canopy absorbed photosynthetically active radiation (APAR) (often expres...
Light interception is a driving variable for many key ecosystem processes in forests. Canopy gaps, a...
Monitoring of vegetation structure and functioning is critical to modeling terrestrial ecosystems an...
Understanding canopy radiation regimes is critical to successfully modeling vegetation growth and fu...
We depend on numerous technologies that use microwave signals. The reception of these signals is deg...
Solar radiation, the radiant energy from the sun, is a driving variable for numerous ecological, phy...
A radiative transfer model for a homogeneous plane parallel vegetative canopy is developed. A method...
A forest canopy is a complex system with a highly structural multi-scale architecture. Physical base...
This paper models the effects of the leaves of mature broadleaf trees on air-to-ground free-space op...
The forest canopy is a region of vast ecological relevance constituting the bulk for photosynthetica...
The forest canopy is a region of vast ecological relevance constituting the bulk for photosynthetica...
A methodology is presented that describes the direct interaction of a forest canopy with incoming ra...
Accurate and fast non-destructive measurements of leaf area index (LAI) of plant canopies are essent...
Leaf area and its spatial distribution are key canopy parameters needed to model the radiation regim...
Transmitted radiation under trees shows variability in space and time that may have implications for...
The amount of leaf area and canopy absorbed photosynthetically active radiation (APAR) (often expres...
Light interception is a driving variable for many key ecosystem processes in forests. Canopy gaps, a...
Monitoring of vegetation structure and functioning is critical to modeling terrestrial ecosystems an...
Understanding canopy radiation regimes is critical to successfully modeling vegetation growth and fu...
We depend on numerous technologies that use microwave signals. The reception of these signals is deg...
Solar radiation, the radiant energy from the sun, is a driving variable for numerous ecological, phy...
A radiative transfer model for a homogeneous plane parallel vegetative canopy is developed. A method...
A forest canopy is a complex system with a highly structural multi-scale architecture. Physical base...