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Showing posts with label Robotic Space Exploration. Show all posts
Showing posts with label Robotic Space Exploration. Show all posts

Tuesday, November 15, 2022

Artemis 1 Launch Attempt #3 Scheduled for 1:04am on November 16th

Artemis 1 Launch



**10:53pm update** A Red Team is working on a hydrogen leak issue that has yet to be resolved.




If all goes well, NASA will be launching the Artemis 1 unmanned mission Wednesday morning at 1:04am Eastern Time. There is a two-hour window for the launch attempt today. If the rocket does not launch today, the next launch window will be on November 19th.

Artemis 1 will last for six weeks and will test all the rocket stages and spacecraft that would be used in later Artemis missions. After reaching orbit and performing a trans-lunar injection (burn to the Moon), the mission will deploy ten CubeSat satellites and the Orion spacecraft will enter a distant retrograde orbit for six days. The Orion spacecraft will then return and reenter the Earth's atmosphere, protected by its heat shield, and splash down in the Pacific Ocean.

The original launch date of Artemis 1 was planned in December 2016, but it was delayed at least eighteen times due to technical issues with the SLS and the Orion spacecraft. Other factors contributing to the delays are the cost overruns and budget limits imposed by the federal government. After the Artemis 1 mission, Artemis 2 will perform a crewed lunar flyby and Artemis 3 will perform a crewed lunar landing, five decades after the last Apollo mission.


Live video feeds from NASA, NASA Spaceflight, and Everyday Astronaut have been embedded below, along with some information from the NASA Press Packet and explainer videos about this mission from various sources. For more detailed information about this mission, download a PDF of the Artemis 1 Reference Guide from the NASA website.


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NASA VIDEO



NASA Spaceflight



Everyday Astronaut


Mission Overview

Artemis I is the first integrated test of NASA’s deep space exploration systems: the Orion spacecraft, Space Launch System (SLS) rocket and the ground systems at the agency’s Kennedy Space Center in Florida. The first in a series of increasingly complex missions, Artemis I is an uncrewed flight test that will provide a foundation for human deep space exploration and demonstrate our commitment and capability to return humans to the Moon and extend beyond.



Leaving Earth

SLS and Orion will blast off from Launch Complex 39B at NASA’s modernized spaceport at Kennedy Space Center in Florida. The SLS rocket is designed for missions beyond low-Earth orbit carrying crew or cargo to the Moon and beyond, and will produce 8.8 million pounds of thrust during liftoff and ascent to loft a vehicle weighing nearly six million pounds to orbit. Propelled by a pair of five segment boosters and four RS-25 engines, the rocket will reach the period of greatest atmospheric force within ninety seconds. After jettisoning the boosters, service module panels, and launch abort system, the core stage engines will shut down and the core stage will separate from the spacecraft.

As the spacecraft makes an orbit of Earth, it will deploy its solar arrays and the Interim Cryogenic Propulsion Stage (ICPS) will give Orion the big push needed to leave Earth’s orbit and travel toward the Moon. From there, Orion will separate from the ICPS within about two hours after launch. The ICPS will then deploy a number of small satellites, known as CubeSats, to perform several experiments and technology demonstrations.

On to the Moon

As Orion continues on its path from Earth orbit to the Moon, it will be propelled by a service module provided by the European Space Agency, which will supply the spacecraft’s main propulsion system and power (as well as house air and water for astronauts on future missions). Orion will pass through the Van Allen radiation belts, fly past the Global Positioning System (GPS) satellite constellation and above communication satellites in Earth orbit. To talk with mission control in Houston, Orion will switch from NASA’s Tracking and Data Relay Satellites system  and communicate through the Deep Space Network. From here, Orion will continue to demonstrate its unique design to navigate, communicate, and operate in a deep space environment.

The outbound trip to the Moon will take several days, during which time engineers will evaluate the spacecraft’s systems and, as needed, correct its trajectory. Orion will fly about 62 miles (100 km) above the surface of the Moon, and then use the Moon’s gravitational force to propel Orion into a new deep retrograde, or opposite, orbit about 40,000 miles (70,000 km) from the Moon.

The spacecraft will stay in that orbit for approximately six days to collect data and allow mission controllers to assess the performance of the spacecraft. During this period, Orion will travel in a direction around the Moon retrograde from the direction the Moon travels around Earth.

Return and Reentry

For its return trip to Earth, Orion will do another close flyby that takes the spacecraft within about 60 miles of the Moon’s surface, the spacecraft will use another precisely timed engine firing of the European-provided service module in conjunction with the Moon’s gravity to accelerate back toward Earth. This maneuver will set the spacecraft on its trajectory back toward Earth to enter our planet’s atmosphere traveling at 25,000 mph (11 kilometers per second), producing temperatures of approximately 5,000 degrees Fahrenheit (2,760 degrees Celsius) – faster and hotter than Orion experienced during its 2014 flight test.

After about four to six weeks and a total distance traveled exceeding 1.3 million miles, the mission will end with a test of Orion’s capability to return safely to the Earth as the spacecraft makes a precision landing within eyesight of the recovery ship off the coast of Baja, California. Following splashdown, Orion will remain powered for a period of time as divers from the U.S. Navy and operations teams from NASA’s Exploration Ground Systems approach in small boats from the waiting recovery ship. The divers will briefly inspect the spacecraft for hazards and hook up tending and tow lines, and then engineers will tow the capsule into the well-deck of the recovery ship to bring the spacecraft home.




This first Artemis mission will demonstrate the performance of both Orion and the SLS rocket and test our capabilities to orbit the Moon and return to Earth. The flight will pave the way for future missions to the lunar vicinity, including landing the first woman and first person of color on the surface of the Moon.

With Artemis I, NASA sets the stage for human exploration into deep space, where astronauts will build and begin testing the systems near the Moon needed for lunar surface missions and exploration to other destinations farther from Earth, including Mars. With Artemis, NASA will collaborate with industry and international partners to establish long-term exploration for the first time.


Explainer Videos What's The Big Deal About Artemis - NASA's New Massive Moon Rocket | Scott Manley



The Full Plan For Artemis Part 1: The Robotic Missions | Answers With Joe



Artemis I: We Are Ready | NASA




Support Macon Media

If you receive value from what Macon Media provides to the community, please consider becoming a supporter and contribute at least a dollar a month. Those who support Macon Media with at least a dollar a month receive early access to video of some events and meetings before they are made public on the website. Videos and news involving public safety are not subject to early access.



Become a Patron!



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Published at 10:55pm on Tuesday, November 15, 2022
Author: Bobby Coggins


Monday, August 29, 2022

Artemis 1 August 29th Launch Coverage

**update** Today's attempt has been scrubbed. They will try again at 12:48am on Friday, September 2nd, if they can fix the problem with engine number three.







If all goes well, NASA will be launching the Artemis 1 unmanned mission today at 8:33am Eastern Time. There is a two-hour window for the launch attempt today. If the rocket does not launch today, the next launch window will begin at 12:30am Friday, September 2nd.

Artemis 1 will last for six weeks and will test all the rocket stages and spacecraft that would be used in later Artemis missions. After reaching orbit and performing a trans-lunar injection (burn to the Moon), the mission will deploy ten CubeSat satellites and the Orion spacecraft will enter a distant retrograde orbit for six days. The Orion spacecraft will then return and reenter the Earth's atmosphere, protected by its heat shield, and splash down in the Pacific Ocean.

The original launch date of Artemis 1 was planned in December 2016, but it was delayed at least sixteen times due to technical issues with the SLS and the Orion spacecraft. Other factors contributing to the delays are the cost overruns and budget limits imposed by the federal government. After the Artemis 1 mission, Artemis 2 will perform a crewed lunar flyby and Artemis 3 will perform a crewed lunar landing, five decades after the last Apollo mission.


Live video feeds from NASA, NASA Spaceflight, and Everyday Astronaut have been embedded below, along with some information from the NASA Press Packet and explainer videos about this mission from various sources. For more detailed information about this mission, download a PDF of the Artemis 1 Reference Guide from the NASA website.


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NASA VIDEO (starts at 6:30am)



NASA Spaceflight



Everyday Astronaut


Mission Overview

Artemis I is the first integrated test of NASA’s deep space exploration systems: the Orion spacecraft, Space Launch System (SLS) rocket and the ground systems at the agency’s Kennedy Space Center in Florida. The first in a series of increasingly complex missions, Artemis I is an uncrewed flight test that will provide a foundation for human deep space exploration and demonstrate our commitment and capability to return humans to the Moon and extend beyond.



Launch site: Launch Pad 39B at NASA’s Kennedy Space Center in Florida
Launch date: Aug. 29, 2022
Launch window: 8:33 a.m. EDT to 10:33 a.m.
Mission Duration: 42 days, 3 hours, 20 minutes
Destination: distant retrograde orbit around the Moon
Total mission miles: approximately 1.3 million miles (2.1 million kilometers)
Targeted splashdown site: Pacific Ocean, off the coast of San Diego
Return speed: Up to 25,000 mph (40,000 kph)
Splashdown: Oct. 10, 2022
During this flight, Orion will launch atop the most powerful rocket in the world and fly farther than any spacecraft built for humans has ever flown. Over the course of the mission, it will travel 280,000 miles (450,000 kilometers) from Earth and 40,000 miles (64,000 kilometers) beyond the far side of the Moon. Orion will stay in space longer than any human spacecraft has without docking to a space station and return home faster and hotter than ever before.



This first Artemis mission will demonstrate the performance of both Orion and the SLS rocket and test our capabilities to orbit the Moon and return to Earth. The flight will pave the way for future missions to the lunar vicinity, including landing the first woman and first person of color on the surface of the Moon.

With Artemis I, NASA sets the stage for human exploration into deep space, where astronauts will build and begin testing the systems near the Moon needed for lunar surface missions and exploration to other destinations farther from Earth, including Mars. With Artemis, NASA will collaborate with industry and international partners to establish long-term exploration for the first time.


Explainer Videos What's The Big Deal About Artemis - NASA's New Massive Moon Rocket | Scott Manley



The Full Plan For Artemis Part 1: The Robotic Missions | Answers With Joe



Artemis I: We Are Ready | NASA




Support Macon Media

If you receive value from what Macon Media provides to the community, please consider becoming a supporter and contribute at least a dollar a month. Those who support Macon Media with at least a dollar a month receive early access to video of some events and meetings before they are made public on the website. Videos and news involving public safety are not subject to early access.



Become a Patron!



Or, if you prefer Pay Pal, try PayPal.me/MaconMedia


Published at 6:00am on Monday, August 29, 2022
Author: Bobby Coggins


Saturday, October 16, 2021

Webcast of LUCY Mission Launch

**5:54am** SciNews has already published a launch video. The first 36 seconds of the video has no audio.



The ULA (United Launch Alliance) is scheduled to launch NASA's Lucy Mission (also known as Discovery 13) this morning at 5:34am. Even though the launch window is 23 days long, the Atlas rocket is a very reliable one, so unless there is a problem with the weather, the lauch should take place this morning.

Launch of NASA's Lucy Mission to Jupiter's Trojan Asteroids



Mission Briefing

The mission will be to fly past seven asteroids in twelve years in both the leading and the trailing asteroid fields orbiting at the Jupiter-Sun L4 and L5 Lagrange points. On April 20, 2025, the first asteroid it will encounter will be a main-belt asteroid called 52246 Donaldjohanson (named after the paleoanthropologist who discovered hominin australopithecine known as "Lucy" in the Afar Triangle region of Hadar, Ethiopia). The spacecraft will fly past four Trojan asteroids at L4 from August 2027 to November 2028, then it will fall back to the inner solar system for a gravity boost in December 2030 for its final encounter with an asteroid in the L5 Trojan asteroid field in March 2033. After this, it will fall back into the inner solar system. It is possible that another gravity boost may be performed if the mission is extended.

For more information:

Wikipedia [LINK]

MIssion Webpage [LINK]

NASA Mission Brief [LINK]

Lucy Plaque [LINK]

Videos about the mission are embedded below.

How NASA's Lucy Mission Will Visit More Asteroids Than Any Other Spacecraft



NASA Goddard: Designing Lucy’s Path to the Trojan Asteroids



NASA Goddard: Lucy Mission Overview: Journey to Explore the Trojan Asteroids



Astrum: The Most Unusual Mission Goal Yet? | NASA's Lucy Probe to Jupiter's Trojans






If you receive value from what Macon Media provides to the community, please consider becoming a supporter and contribute at least a dollar a month. Those who support Macon Media with at least a dollar a month receive early access to video of some events and meetings before they are made public on the website. Videos and news involving public safety are not subject to early access.

Become a Patron!



Or, if you prefer Pay Pal, try PayPal.me/MaconMedia



Published at 4:52am on Saturday, October 16, 2021
Author: Bobby Coggins

Thursday, February 18, 2021

Live Coverage of Perseverence Rover Landing on Mars



The Perseverance Rover will be attempting a landing on Mars this afternoon and here are some resources to allow you to watch the event in realtime or to bookmark and return to later. After the event is over, video clips, images, and other information will be added to the end of the article. There are also resource to assist you in learning more about this mission. 

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Mission Briefing from CBS 
(more background videos are posted below the live feeds)



NASA-TV



Mission Control Live: A 360 Degree Video
(can use VR Goggles or Google Cardboard)



Everyday Astronaut Hosted Stream
(Tim Dodd is a Citizen Journalist Who Covers Space)



PBS News Hour
(a restream of the NASA-TV Stream)



Background Information

Official NASA Website for the mission [MARS 2020]

Wikipedia has information about the flight in a format that is more easily accessed than the NASA website [Wikipedia]

The Insane Engineering of the Perseverance Rover



NASA’s Perseverance Mars Rover VS Curiosity - What's New? What's Improved?



Reserved For Additional Coverage After the Landing

Update #1 4:30pm

The landing was successful and they've had some images from one of the low-resolution engineering hazard cameras. The rover carries 23 different cameras, ranging from low resolution and specialized cameras to a 20 megapixel color camera that can take single shots and do panoramic shots.

Here are the first images:





Here is a short video from SciNews that recaps the landing



Macon Media will post more images and video as they come in. Until then, here is a video shot by Veritasium (a citizen journalist who focuses on science toipics) of the Ingeniuty Drone that will be flown on Mars as part of this mission.










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If you receive value from what Macon Media provides to the community, please consider becoming a supporter and contribute at least a dollar a month. Those who support Macon Media with at least a dollar a month receive early access to video of some events and meetings before they are made public on the website. Videos and news involving public safety are not subject to early access.



Become a Patron!



Or, if you prefer Pay Pal, try PayPal.me/MaconMedia


Published at 1:30pam on Thursday, February 18, 2021