China's Space Program News Thread

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DRAGON SPACE
China's first lunar rover to land on moon Saturday: officials
by Staff Writers
Beijing (AFP) Dec 13, 2013


China will attempt to land a probe carrying the country's first lunar rover on the moon Saturday in a major breakthrough for its ambitious space programme.

The spacecraft is expected to make touchdown at 9:40 pm (1340 GMT), state broadcaster China Central Television (CCTV) said, 12 days after the Chang'e-3 mission blasted off on a Long March-3B carrier rocket.

China is aiming to become the third country to carry out a rover mission, following the United States and former Soviet Union, which also made the last soft landing on the moon 37 years ago.

"China's lunar probe Chang'e-3 is expected to land on the moon at 21:40 BJT (Beijing Time) on Saturday," CCTV posted on Weibo, a Chinese version of Twitter.

"The 12-minute autonomous landing will be the key to the success of the task," it said.

The probe is expected to touch down on an ancient 400-kilometre (250-mile) wide plain known in Latin as Sinus Iridum, or The Bay of Rainbows.

Landing is the "most difficult" part of the mission, the Chinese Academy of Sciences said in an online post written on the official Chang'e-3 Weibo page.

The landing craft uses sensors and 3D imaging to identify a flat surface. Thrusters are deployed 100 metres (330 feet) from the lunar surface to gently guide the craft into position.

The probe, which is also fitted with shock absorbers in the legs to cushion the impact of the landing, will "free-fall" for the crucial final few metres of descent.

"Chang'e-3 is completely relying on auto-control for descent, range and velocity measurements, finding the proper landing point, and free-falling," Chang'e-3's microblog said.

"At this stage, the Earth base is effectively powerless, and there is only about 10 minutes to finish the process."

Karl Bergquist, international relations administrator at the European Space Agency (ESA), who has worked with Chinese space officials on the Chang'e-3 mission, said the key challenge was to identify a flat location for the landing.

"I was told by Chinese space officials that the lander and rover are each equipped with a camera and that when the rover separates from the lander they will both take a picture of each other from distance which will then be sent back to Earth," he told AFP.

"I am sure that all those involved in this project in China will feel a great relief and elation when they obtain such images, just like we would do too here at ESA in a similar situation".

After reaching the lunar surface, the module will release its rover, which can climb slopes of up to 30 degrees and travel at 200 metres per hour, according to the Shanghai Aerospace Systems Engineering Research Institute.

The Chang'e-3 mission is named after the goddess of the moon in Chinese mythology and the rover vehicle is called Yutu, or Jade Rabbit, after her pet.

The landing will mark the latest step in an ambitious space programme which is seen as a symbol of China's rising global stature and technological advancement, as well as the Communist Party's success in reversing the fortunes of the once impoverished nation.

It comes a decade after the country first sent an astronaut into space, and ahead of plans to establish a permanent space station by 2020 and eventually send a human to the moon.

CCTV will be airing a live broadcast ahead of the landing, the state broadcaster said on its microblog.

"Excited! Our journey is to the stars and oceans!", said one Weibo poster.
 

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Leonard David Space.com

China
Beijing Institute of Spacecraft System Engineering
The Chang'e 3 lunar lander and moon rover is part of the second phase of China's three-step robotic lunar exploration program.
China's first moon rover mission is poised for a weekend landing on the lunar surface, an event that — if successful — will mark the country's first robotic landing on another celestial body.

China's Chang'e 3 lunar lander is currently orbiting the moon with its solar panels and landing legs deployed. If all goes well, the lander — which is carrying China's first robotic rover — will make a planned soft-landing on Saturday, Beijing time, at Sinus Iridum, also known the Sea of Rainbows.

Once on the moon, the lander will unleash the instrument-laden Yutu rover, a six-wheeled robot built to trundle across the dusty, time-weathered terrain for months. Yutu — which means "Jade Rabbit" — is named after the rabbit that travels with the goddess Chang'e to the moon in Chinese legends. [See photos from China's Chang'e 3 moon landing and rover mission]

The solar-powered Yutu rover comes equipped with cameras, a robotic arm tipped with science sensors and a radar system attached to its underbelly. The stationary lander itself is instrumented to observe Earth, astronomically eye other celestial objects from the moon, as well as watch the Yutu rover scamper about.

More than meets the eye
The surface of the moon has not been visited for decades.

Apollo 17 moonwalkers packed up their belongings and rocketed off that barren landscape in 1972. Last to explore the moon was the former Soviet Union's robotic Luna 24 sample return mission in 1976.

If successful, the Chang'e 3 mission will mark the first time a Chinese spacecraft has touched down on the surface of an extraterrestrial body.

China1
China National Space Administration
China's Yutu moon rover, part of the Chang'e 3 lunar landing mission that is supposed to settle on the moon on Saturday.
"I think a successful landing and rover operations will be of enormous significance for lunar exploration," said Ian Crawford of the Department of Earth and Planetary Sciences at Birkbeck College, University of London.

"Just being the first controlled soft-landing on the lunar surface for 37 years would be significant enough, but a successful deployment of only the third robotic rover, and the first equipped with modern instruments, will be remarkable," Crawford told Space.com.

And apparently there is more to this mission than meets the eye — given what's known about the Chang'e 3's payload for prospecting.

China's moon science
Crawford said Yutu's ground-penetrating radar, or GPR for short, is one of the most "significant instruments" on the rover. For one, that hardware may reveal the scale of bedding of individual basaltic flows in Sinus Iridum. That data may help identify ancient regoliths, or "paleoregoliths," he said. [The Moon: 10 Surprising Facts]

"I have long been interested in the very rich scientific records, which may be trapped in palaeoregoliths sandwiched between lava flows," Crawford said, and Sinus Iridum would be an excellent location to test the concept.

There are indications, Crawford said, such layers were detected by the orbital radar carried by Japan's Kaguya moon probe. It was launched in 2007, orbited the moon for a year and eight months, and was purposely impacted on the lunar surface in June 2009.

If palaeoregolith layers exist within the uppermost 330 feet (100 meters) or so of the moon's topside, then the Chang'e 3 mission should detect them, Crawford said. While China’s radar-toting spacecraft won't have any means to access such buried layers, "I think the validation of GPR as a means for detecting them, and confirmation of their existence, would be a major contribution to future exploration plans," he said.

Mining potential
Chinese space officials have been clear about surveying the moon and then tapping it for its resources.

China2
China Aerospace Science and Technology Corp.
The lunar orbit of China's Chang'e 3 moon lander carrying the Yutu rover is shown in this graphic released by the China Aerospace Science and Technology Corp. Chang'e 3 is to land on the moon on Saturday.
"China has made no secret of their interest in lunar Helium-3 fusion resources," said Harrison "Jack" Schmitt, a former Apollo 17 moonwalker and professional geologist. He is author of the book, "Return to the Moon — Exploration, Enterprise, and Energy in the Human Settlement of Space."

Rare on Earth, Helium-3, rooted in the moon's upper surface by billions of years of solar wind blasting, could be mined to energize fusion reactors. That initiative has long been advocated by Schmitt. [See Photos from Chang'e 3's Launch to the Moon]

Yutu's belly-mounted radar could give the depth of minable regolith and also identify boulders in that regolith large enough to cause mining problems, Schmitt told Space.com. "In fact, I would assume that this mission is both a geopolitical statement and a test of some hardware and software related to mining and processing of the lunar regolith."

Schmitt said that NASA's now on-duty Lunar Reconnaissance Orbiter (LRO) has radar aboard that has obtained some very useful data. For example, it identified a buried, second fault that crosses the valley of Taurus-Littrow, the site that Eugene Cernan and Schmitt inspected on the Apollo 17 mission in December 1972.

Furthermore, Apollo 17's Command Module pilot, Ronald Evans, operated a radar "sounder" from the Command Service Module in lunar orbit. "I understand that people are still actively trying to process that data," Schmitt said.

China3
China Aerospace Science and Technology Corp.
This image shows the view inside China's mission control center in Beijing for the Chang'e 3 moon lander and rover mission.
Low-hanging fruit
"Chang'e 3 will invariably break new ground by investigating a new site on the moon, partly with new instrumentation, about which we know very little, by the way. So scientifically, it will advance knowledge," said Paul Spudis, a planetary geology and remote sensing expert at the Lunar and Planetary Institute in Houston.

"But its real significance is the development of a lunar surface capable flight system," Spudis said. His question: Why build a lander that can carry nearly 3,750 pounds (1,700 kilograms) to deliver a rover that Chinese media reports as weighing 310 pounds (140 kilograms)?

"Clearly, they have other payloads in the queue, waiting to be sent there. Just what, we shall have to wait and see," Spudis said.

While Apollo 17's Schmitt is a supporter for moon-derived Helium-3, Spudis said "the real, low-hanging fruit" on the moon is the water and permanent sunlight at the poles, useful materials and continuous energy. [NASA's 17 Apollo Missions in Pictures]

"Both enable long-term presence on the moon. I'm not sure that the Chinese see it quite that way yet, but they will eventually," Spudis said.

Geophysical exploration
Pascal Lee, a planetary scientist and chairman of the Mars Institute at the NASA Ames Research Center, Moffett Field, Calif., had done noteworthy work with ground-penetrating radar.

China4
China National Space Administration
An artist's illustration of China's Yutu ("Jade Rabbit") moon rover on the lunar surface. The rover and a lander are part of China's Chang'e 3 mission to the moon's Bay of Rainbows.
GPR can indeed be considered an In-situ Resource Utilization (ISRU) instrument, Lee said, in that GPRs are commonly used on Earth in geophysical exploration. They are used, he told Space.com, as the initial phase of subsurface reconnaissance that precedes any actual exploitation — or utilization — of resources.

"GPR is a profiling instrument, so it is expected to be operating while the rover is roving, as opposed to when it’s stopped at any particular location," Lee said.

Lunar radar returns
GPR usually has a dipole antenna setup, so one antenna transmits a radar signal into the ground, while the other antenna receives the echoed signal, Lee said. Radar returns are triggered by discontinuities in the physical properties underground, for instance when more or less electrically conducting materials are encountered by the incoming radar signal, he said.

"The time of return of various echoed signals tells you how deep things are. The shape and polarization of the returning signal tells you what types of materials are encountered," Lee said. "If different sounding frequencies are available on the GPR, which seems to be the case on the Chinese rover, the higher frequencies are used for probing to shallow depths while the lower frequencies, longer wavelength, are used to probe to greater depths," he said.

Usually, GPR does not do well in the presence of liquid water in the ground, Lee said. "In the case of the moon, we are in GPR heaven, and the subsurface is expected to be bone dry when it comes to any liquid water."

Excavation plans
Lee said that the GPR on Yutu is expected to be a subsurface structural profiler. If that's the case, at higher frequencies, it will provide profiles of subsurface material transitions down to a depth of about 100 feet (30 meters).

"It should, therefore, be able to tell us where the lunar regolith transitions to more compact underlying materials. At lower frequencies, it will generate profiles of the deeper subsurface structure of the moon, down to hundreds of meters, provided the rover can rove over distances of order hundreds of meters or more," Lee said.

From an ISRU perspective, it's mostly the high-frequency soundings, down to a depth of 30 meters or so, that will be most informative, as they will tell you how deep the lunar rubble layer is, "an important piece of information if one has future excavation plans," Lee said. The deep sounding of the lunar subsurface, he said, down to hundreds of meters is more of value in an academic and possible geologic context, he said.

First order data
The Chang'e rover's GPR is thought to have a penetration depth of 100 feet to nearly 330 feet (30 meters to 100 meters). It apparently can operate in two wavelengths, giving it very high resolution at shallow depths to penetrate through the regolith and into the mare basalts. The other GPR wavelength can penetrate through the regolith and into the mare basalts.

Once operating on the moon, the GPR should provide some first order data, said Jeff Plescia, a space scientist at Johns Hopkins University's Applied Physics Laboratory in Laurel, Md.

Plescia also chairs NASA's Lunar Exploration Analysis Group (LEAG), chartered to assist the space agency in planning the scientific exploration of the moon. [Photos: New Views of Apollo Moon Landing Sites]

The subsurface distribution of boulders on the moon is unknown, Plescia told Space.com. The late astrogeologist, Gene Shoemaker, argued years ago that the subsurface distribution should resemble the surface distribution, Plescia said.

"But there is no data. The trenches that were dug during the (Apollo) missions did not go very deep and there were only one or two instances where they thought they hit a rock either in drilling or with a cone penetrometer…which might suggest rocks are rare," Plescia said.

Radar equipment onboard NASA's LRO does get some penetration, as does Earth-based Goldstone and Arecibo radar dishes, Plescia said. "But given the spatial resolution it would be more statistical than actually mapping boulders as Chang'e 3 could do," he said.

Visit Space.com for the latest news on China's space missions and the Chang'e 3 moon landing.

Leonard David has been reporting on the space industry for more than five decades. He is former director of research for the National Commission on Space and is co-author of Buzz Aldrin's new book "Mission to Mars – My Vision for Space Exploration" published by National Geographic. Follow us @Spacedotcom, Facebook or Google+. Original article on Space.com.
 
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Maggern

Junior Member
Yup! And actually half an hour in advance. I almost missed it!
They said on cctv that the probe will work for eight hours before Yutu is deployed, so that launch was not advanced akin to the landing...
 

Equation

Lieutenant General
AAAARRRRRGGGGhhhh....I'm still at work!:(:mad: The things I do just to make enough money to find the potential perfect Mrs. Equation...oh well, it will pay off someday.:eek:
 

blacklist

Junior Member
:p

cmon... it was just a rover landing, not human. you still can see the rover in action and off course the replay.

05:00 特别节目
it was cool to see, i wonder how they know the exact location so precise and does it really automatic landing ?

btw, i thing the naming is wrong, it should be xiao pai tu.
:D
AAAARRRRRGGGGhhhh....I'm still at work!:(:mad: The things I do just to make enough money to find the potential perfect Mrs. Equation...oh well, it will pay off someday.:eek:
 
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vesicles

Colonel
btw, i thing the naming is wrong, it should be xiao pai tu (every chinese should know what it is and what it mean). and i prefer me-too than yu-too
:D

Uh.... Yu tu, or jade rabbit is the official name of Chang E's pet bunny in Chinese mythology. "Xiao bai tu" is simply "little white bunny", too generic.
 
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