Vaca5 was turned toward Hennessey 34 hours after start�Vaca8 was never turned
Annotatng Plume Points and �estimating ground track
Educating Alexa
Owen wants to� see flow of fire info in AlertWildfire �so that� he can learn the domain of Fire
How Alexa could have answered Owen on his slide 19 when he asked: Alexa, is there fire here?
“Yes, Owen.
You are looking at two fires.
Let me label them for you”
How could this
happen auto-magically?
What we have access to
Camera locations Camera Poses Current Images Timelapses User View locations | Fire Incident Locations MODIS/GOES16, 17 Stars, Planets, Sun Peaks and Terrain RedFlag Risk Areas |
Do we see fire?
Show Owen a Timelapse. Pyrocumulus has a recognizable dynamic
Fire Plume Dynamics
Fire Plume Dynamics
Are we confident about orientation and field of view?
use the XYZ (pan,tilt,zoom) and �let user double-check pixel altitude/azimuth�pull up evening image from this camera
Fire Plume Dynamics
Fire Plume Dynamics
Get Altitude (phi) and Azimuth (theta) �of peak and ridgelines
for this lat/long and pose
1st click / drag:�anchor/translate
2nd drag:�scale and rotate
If overlay is off:
query for closest Camera Pose in Timelapses at night and use stars and calibrate geosphere
Get Active Fire Locations and convert their Lat/Long/Elevation to Alt/Az -> UV of our Camera View
Our Doe Mill Camera�
Hog Fire
Get Altitude (phi) and Azimuth (theta) of fires in this area for my camera’s lat/long and elevation
move camera
Used also to set a timespan for event for archiving (pro feature)
Old Slides
UX / UI of Sextant
UX / UI of Theodolite�like sextant measures angles between objects�https://en.wikipedia.org/wiki/Theodolite
UX : It’s the People behind the camera. We should have a feeling of connection and gratitude when viewing. Our UX should enable community and mutual reliance��You are riding on his shoulders as you look through his camera. You are thankful he is there.
https://stackoverflow.com/questions/42022097/360%C2%BA-degree-camera-in-three-js��360º degree camera in three.js
https://www.clicktorelease.com/tools/CubemapToEquirectangular/index-managed.html
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φ = phi, heading, azimuth (angle clockwise from 0 north)�θ = theta, altitude, pitch (angle 0 to horizon, 90 degrees up, -90 degrees down
Xawf, Yawf, Zawf - sensor reported pan, tilt, zoom of alertwildfire camera
RA, DEC - Right Ascension, Declination (equitorial/celestial) longitude and latitude with north star near north pole
Latitude, Longitude, - need to always specify coordinate/ellipsoid/spheroid�Altitude: height above spheroid, ellipsoid at a point. in units of length
Elevation: Altitude of ground at a point
φ = phi, heading, azimuth (angle clockwise from 0 north)�θ = theta, altitude, pitch (angle 0 to horizon, 90 degrees up, -90 degrees down
Xawf, Yawf, Zawf - sensor reported pan, tilt, zoom of alertwildfire camera
RA, DEC - Right Ascension, Declination (equitorial/celestial) longitude and latitude with north star near north pole. RA of 0 degrees is north
Latitude, Longitude - independent of coordinate system/ellipsoid/spheroid (?)�Altitude: height above spheroid, ellipsoid at a point. in units of length
Elevation: Altitude of ground at a point