Showing posts with label spectrum. Show all posts
Showing posts with label spectrum. Show all posts

Sunday, April 5, 2020

Space1 Artificial Planet Radiometry Anatomy

Space1 Artificial Planet Radiometry Anatomy
Typical SPACE1 Artificial Micronic Planet in Radiometry Electromagnetic Spectrum for Analysis

SPACE1 Artificial Planets are given their own radio spectrum due to emanation of transmitter radio wave telemetry harmonics.

This creates a specific radiometric polarization pattern for planetary analysis using radio telescope receivers. Internally, the planet contains specific types of radiation antennae for experimentation to determine propagation and range. There are different planets with different radio signatures. Internal skew planar, or cloverleaf antennas are omnidirectional circularly polarized antennas that are constructed of a collection of wire lobes connected to the tip of a length of coaxial cable. As the planet is designed to transmit video to record space time compression evolution, these antennas are almost exclusively used.

Space1 Index Micron Planet (Updated March 17th 2020)
https://humanoidolabs.blogspot.com/2020/03/big-brain-index-micron-planet.html

Thursday, January 21, 2016

Space1 Listening to Rockets

SPACE RADIO
You can listen in to Space1 rockets by constructing your own DIY equipment. Space1 rockets vary their frequency on a regular basis based on particular missions, tests, and space rocket launches. Currently we are conducting rocket telemetry tests with new systems in the HF radio spectrum.

Interests
For example, future telemetry of interest may be in the form of camera motion pictures and images showing tests, the interior or exterior of rockets, the receding Earth during rocket launches, and the environments during reentry and recovery.

How To DIY
To find the right frequency, use of an auto scanning frequency receiver will lock onto the signal. A large directional gain rotation antenna will tune in the carrier band much better. Output can be your choice of PAL or NTSC to a video monitor to show real time events. We often use sound as a component of the transmission. You might hear the roar of a rocket engine during a test. As events unfold, a capture board can save the data. For a home brew system on a budget, you can build your own DIY antenna from a small recycled satellite TV Dish. http://www.wlan.org.uk/diy-ant.html You can get some ideas from this little itty bitty radio telesscope.
http://www.stargazing.net/david/radio/itty_bitty_radio_telescope.html

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