Sunday, June 30, 2019

Space1 Lunar South Polar Results

Around the Moon in 80 Minutes - SPACE1
Lunar South Pole Mission Results


SPACE1 processing Orthographic projection image - Moon’s South Polar region constructed from data returned by the Lunar South Polar Mission to the Moon.

Astronaut Humanoido's high tech Moon mission was 80 minutes long - a reference alluding to Jules Verne adventure novel, Around the World in Eighty Days.

SPACE1 Industries' modern take is a true story, based on high space technology in the 21st Century that has taken astronaut Humanoido around the southern portion of the Moon in 80 minutes. The processed data presented here is rich in information for humanities' return to the Moon. Images are combined and step processed to create a larger view of the Moon's south pole region. The color image represents the thermionic heat signature of craters. The cube represents the projection of the south polar region, homogeneously fit onto the faces of this dimension.

The south polar lunar region has very interesting craters of which the low obique sunlight can either fill a shallow crater or never reach the floor of a deep one. The deepest craters that never receive sunlight have undoubtedly preserved the primordial pristine conditions of the lunar surface, including deposition of water from ancient comets. It's for this reason we are interested in the south polar region of the Moon, for the grand step of humanity, an outpost on the Moon, a telescope base kept in eternal darkness, water for human survival, energy and rocket fuel, colonization, mining, and exploration.

Saturday, June 29, 2019

Space1 Lunar South Polar Orbiter Mission Results

Humanoido and rocket drive
SPACE1 Lunar South Polar Orbiter Mission Results Sets New Records!
Space1 delivers. Back to the Moon in 2019! Fantastic celebration continues into the night over at the Pacific Ocean SPACE1 Mission Control for Rocketry and Space Sciences, with the grand success of SPACE1 Industries Lunar Polar Orbiter Mission!

Breaking News! Thurs., April 4th, 2019
SPACE1 Global News Agency reports..

The manned mission to the South Pole of the Moon was an applauded great success on Sunday, March 31st, 2019. The fantastic Moon technical fly-by was achieved by Astronaut Humanoido and the Electrodynamic Safety Rocket with the extremely reliable Electromag drive. Raw data is processed by the SPACE1 Pacific Ocean Space Processing Laboratory and the Center for Spacecraft Data Analysis.

During mission analysis, color is handled by the interferometric color machine and applied to the raw data. Raw data is processed and presented in 1) raw, 2) film, 3) disk, 4) photo and 5) 3d cube. Processing of scientific mission’s raw data helps create many useful analytical Moon sets - spectromagnetic radiative reference maps of thermal iridescence excitability ions, forward viewing temperature heat maps, lunar reflective albedo detail extractions, latent hydroxil distribution with predicated water mapping analysis, and finite shaded relief area mapping.

— The Asiatic Center for SPACE1 Advanced Space Sciences broke out the rare vintage Ming Dynasty brandy cache for celebrating the spectacular event! —

Data and analysis returned from the mission is rich in detail for future landing programs, establishing lunar colonies, mining on the Moon, generating rocket fuel, and conducting Moon activities such as touring and vacationing. The data is highly useful towards developing and testing high technology flight parametrics for the upcoming Manned Moon Landing by SPACE1 Industries.

— SPACE1 Industries: 1st to fly an astronaut to the Moon in many decades! —

The SPACE1 Lunar South Pole Orbiter is Electrodynamic Rocket Mission E15 with the Electro Mag Drive. Previous manned EM rocket mission E14 took place Tuesday, March 12th, 2019. This mission also tests a completely new high tech lunar lander camera and various new techniques for processing the data. The presented SPACE1 data formats are in film reel, image disk, proportional photo, sequential cube, and raw image.

Friday, June 28, 2019

Space1 Lunar Orbiter Flyby Cube

Moon Cube
from the SPACE1 Lunar Polar Orbiter Flyby

This is a Space1 processed result with photos from the lunar orbiter flyby put on the three facing sides of a three dimensional cube.

Processing at the Pacific Ocean SPACE1 Space Processing Lab & Center for Spacecraft Data Analysis.

All six photos are a sequential part of the Moon South Pole flyby and hold additional detail that can be extracted by processing and reconstruction.

Thursday, June 27, 2019

Space1 Lunar Polar Orbiter First Photo

Lunar Polar Orbiter First Photo
SPACE1's first Lunar Polar Orbiter mission is underway and yesterday began returning raw signal data from the southern polar region of the Moon.

This is the first photo returned from the high tech adventure around the Moon, which is a semi processed lunar image that has received the first level of processing.

In days to follow, more images are scheduled be released. Photos show the great success of the project and include views from the raw data disk, and other data depicting the color analysis of cratered regions with heat and/or water. There are many reasons for going to the polar lunar region, including looking for habitable locations with water inside craters that could facilitate lunar outposts, colonies, mining complexes, and cities inside craters under domes. The refinement processing of the data may find lava tubes for habitation. This is an important precursor mission before landing a man on the Moon.

The SPACE1 Lunar Polar Orbiter is Electrodynamic Rocket Mission E15 with the Electro Mag Drive. Previous manned EM rocket mission E14 took place Tuesday, March 12th, 2019. This mission tests a completely new camera and techniques for processing the images. The presented SPACE1 data formats are in film reel, image disk, proportional photo, sequential cube, and raw image.

Space1 Electrodynamic EM Rocket Launch E14
https://space1usa.blogspot.com/2019/03/space1-electrodynamic-rocket-mission-e14.html

Space1 Electrodynamic EM Rocket Launch Index
https://space1usa.blogspot.com/2019/03/space1-index-em-rocket-launches.html

Wednesday, June 26, 2019

Space1 Lunar Polar Orbiter Launched

Lunar Polar Orbiter Mission Launched

News Alert - March 31, 2019

SPACE1 News Agency reports the Lunar Polar Orbiter Mission has launched and reached the South Pole of the Moon successfully and is returning telemetry lunar data which appears good. Updates including imagery from the spacecraft will appear here shortly. Stay tuned!

SPACE1, the private space industry, is planning a series of lunar missions culminating with a manned lunar landing. The SPACE1 Lunar Polar Orbiter
Mission is the first of a series of missions to the Moon. Successful data returned is being analyzed for the next mission.

Tuesday, June 25, 2019

Space1 Far Side Moon Mission Bumped

Russian Luna-3 photo
Moon Far Side Mission Bumped
SPACE1 has bumped the Moon Far Side Mission off the 2019 schedule for several reasons:

1) More time is needed for the Manned Moon Landing
2) Lunar Orbiter Flyby makes Far Side Missions unnecessary
3) More time is needed for the Moon to have proper orbital alignments
4) Parts are delayed from California

Now that the Moon Polar Orbital Flyby is a great success, SPACE1 will focus on two more missions - the ceremonial mission to Ptolemaeus, Alphonsus, Arzachel crater array and the Manned Moon Landing. The Moon Far Side mission can happen in the future, perhaps 2022, to get a look at the China probe, see craters the Russian spacecraft photographed, and to supplement the USA lunar farside program. On the other hand, SPACE1 is seriously thinking about a quick & dirty manned landing on the far side of the Moon. It would be a spartan private space industry first as no human has ever walked on the far side of the Moon!

Monday, June 24, 2019

Moon Landing Update

Moon by Humanoido
Moon Landing is Updated
When will we see Boots on the Moon?

Work and excitement is rapidly progressing at SPACE1 towards the high technology Manned Moon Landing Mission. The mission is dependent on several other mission completions and these have some requirements to be met. SPACE1 is scheduled to host the first manned return mission in 2019 to the Moon since Harrison Schmitt and Gene Cernan left the surface of the Moon 47 years ago. In this endeavor, SPACE1 appears to be at the top of the group for a scheduled first to reach the Moon ahead of NASA and ahead of private industry SpaceX, Boeing, Blue origin, and Lockheed Martin. SPACE1 has worked six years on the project and excited followers of the private space industry are looking forward to seeing results in their lifetime!

Parts Aquisition
Apparently the parts supplier put parts on backorder, after specifying parts were available, and while the lunar missions can be accomplished without the parts, it would be much better to include the new constructed modules and components. This is now a priority.

Camera Lunar Landing Imaging
While several Moon cameras are now available at SPACE1 Labs, work needs to begin on the primary mission camera. All the components are available for the primary mission camera. As a backup insurance policy, purchasing will go out this week to review new off the shelf cameras ready to be installed onto the spacecraft so as not to miss the timeline.

— We cast our line of technology into the ocean of space, catching the greatest wonders in the Universe — Humanoido

Prerequisite Lunar Missions
It's still very important to initiate and complete the lunar missions prior to the Moon landing. The includes the A) Commemorative Mission, B) Polar Orbiter Mission, C) Far Side Mission, and finally D) Lunar Landing. The one mission in question is the Far Side Mission because it requires a more specialized launch window to become available. It's possible the Lunar Polar Orbiter Mission will be pushed to the number one position and happen first because the parameter calculations are now simplified and ready to go.

Astronaut & Spacesuit
Astronaut Humanoido is prepared and trained for the mission, and will continue to prepare with instrumentation and setup plus rehearsals up to the launch date. Last minute ideas and flight conveniences are being incorporated into the Lunar Landing Mission spacesuit, primarily work with the helmet complexity.

Space Helmet design
Humanoido has designed a system to simultaneous compliment the lunar landing mission through a special space helmet that allows it to generate wireless transmission telemetry and automatically record the entire mission as it unfolds. When an astronaut looks in a direction, the flight telemetry will record that direction. This will happen with new electronic digital media lasting the entire duration of the Moon landing mission. If all goes according to plan, the mission will play back on computers equipped with playback devices at Mission Control and therefore snippets of the best part of the mission will concatenate and post to news sources.

Singularity Observatory Participation
Singularity Observatory is taking part in the pre-mission by telescopic lunar surveys and mapping the lunar topology in search of a suitable landing site. This is based on lunar regolith temperature, popularity of the site, accessibility, the shape and type of lunar terrain, and the analysis of landing parameters. Two or more telescopes will be used for the surveys and the results will be combined.