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NASA SPACE TELEROBOTICS PROGRAMS 0

Robo tech | 12:00 AM |

Cool Robot Of The Week

The honor of being listed as "Cool Robot Of The Week" is bestowed upon those robotics-related web sites which portray highly innovative solutions to robotics problems, describe unique approaches to implementing robotics system, or present exciting interfaces for the dissemination of robotics-related information or promoting robotics technology. This award carries absolutely no monetary value, official recognition, assumed support, or tangible benefit, other than swamping your web site with a few dozen extra hits for a week. But everyone else was putting up their "Cool Site Of The Millenia" lists, so we figured it was our turn too...
This week's selection:

 Nov 10 RCS - Real-time Control Systems architecture, developed by NIST, complete with a library of free C++ and Java code, scripts, tools, makefiles, and documentation for use in real-time control systems.

Previous Cool

 Nov 03 Player Stage - open source software devleopment tools for robot and sensor applications.
 Oct 27 Person Tracker - the design and construction of a multi-person tracking system using a network of stereo cameras, part of the MIT AI Lab Vision Interfaces Project.
 Oct 20 Millibots - a distributed team of robots for coordinated activities such as extended reconnaissance and surveillance.
 Oct 13 Macaco - the development of an biologically inspired animal (first a dog, and later a monkey) from the MIT Humanoid Robotics Group.
 Oct 06 Scanning Radar - developing a solid state, narrow beam, radar imaging sensor for robotic applications - developed by the National Robotics Engineering Consortium.
 Sep 29 Yogi Cub - design and implement a LEGO mechanical subsystem like those found on a NASA Sojourner rover.
 Sep 22 Mission Mars - introducing the 2003 FIRST Lego League challenge - middle -school students build Lego mars rovers! .
 Sep 15 Carmen - the Carnegie-Mellon Robot Navigation Toolkit, an open-source collection of software for mobile robot control.
 Sep 08 Tumbleweed - a unique design for a robotic vehicle, using wind power for locomotion, is tested at Summit Camp, Greenland.
 Sep 01 Scorpion - biomimetic multi-pod invertebrate robot being developed to complete 25-mile autonomous traverses across the desert.
 Aug 25 Smile Project - Neil the Robotic Sculpture attempts to simulate feelings in and between robots.
 Aug 18 Groundhog - robotic platform for mine exploration, part of the robotic mine mapping project.
 Aug 11 Souryu-I - a "connected crawler vehicle for inspection" segmented robot, another product of Hirose's and Yoneda's's lab at Tokyo Institute of Technology
 Aug 04 Monte Carlo Localization - investigations of particle filters for state estimation in the context of mobile robotics - work from the University of Washington Mobile Robotics Lab.
 Jul 28 Elastic Strip Framework - an approach to real-time replanning and motion execution in dynamic environments for robots with many degrees of freedom.
 Jul 21 People Tracking - visual tracking of moving people by mobile robots, part of the U. Washington and CMU NurseBot project.
 Jul 14 Opportunity - launched last week, the second of the two Mars Exploration Rovers will explore the surface of Mars for signs of the water history of the planet. See the Opportunity launch webcast.
 Jul 07 RoboCup 2003 - Robot World Cup Soccer Games and Conferences, taking place this week in Padua, Italy.
 Jun 30 KiRo - table soccer-playing robot, just in time for the upcoming RoboCup robotic soccer games!.
 Jun 23 BotBall Championships - BotBall national tournament, being held this week in Norman, Oklahoma.
 Hey! We've been Slashdotted!
 Jun 16 Spirit - launched last week, the first of the two Mars Exploration Rovers will explore the surface of Mars for signs of the water history of the planet. Spirit will be joined in flight by her sister rover, Opportunity, around June 26.
 Jun 09 Beagle II - launched last week, Mars lander that includes a robotic "PAW" for analyzing surface samples to search for signs of ancient life, all as part of the European Space Agency Mars Express project.
 We've been picked by Scientific American for a 2003 Sci-tech Web Award as one of the 10 top engineering and technology sites!
 Jun 02 EL BO - an autonomous phototaxic robot arm, and a great example of a home scratch-built robot.
 May 26 Uni-Rover - modular robotic rover system for planetary exploration, from Hirose's and Yoneda's's lab at Tokyo Institute of Technology
 May 19 nBot - David Anderson's two-wheel balancing robot goes the Segway one better by getting rid of the pesky human!
 May 12 Personal Satellite Assistant - a robotic assistant for astronauts working aboard the International Space Station.
 May 05 Limits Of Life In The Atacama - a three year project to develop technologies and techniques to enable robotic astrobiology while also conducting scientific investigation of life in the Atacama Desert of northern Chile.
 Apr 28 Hybrots - the first robotic device whose movements are controlled by a network of cultured neuron cells, developed at the Georgia TechLaboratory for Neuroengineering.
 Apr 21 Microassembly Cell - workcell consisting of a micromanipulator operated under multiple stereo-microscopic vision with the support of intelligent user interface provides a tool that can be used to visualize and manipulate micro-sized 3D objects in a controlled manner
 Apr 14 Cybersonics - Chairman's Award winners at the 2003 FIRST Robotics Competition Championships held last weekend in Houston. They are joined by the winners of the field competition, Las GuerillasWildstang, and GM Powertrain & Pontiac Northern High School.
 Apr 07 ERA - Extra-Vehicular Activity Robotic Assistant (ERA) is a wheeled robot used as a test bed for research into collaboration between suited astronauts and autonomous robots for planetary exploration. They are currently conducting field experiments with the Mars Desert Research Station - read the daily logs here!
 Mar 31 SpikeForce - real-time spiking networks for robot neural-network controllers.
 Mar 24 MICRoN - miniaturized robotic platform reserach, sponsored by the Future and Emergeing Technologies branch of the European Commission.
 Mar 17 ANSER - UAV platform for SLAM navigation validation and testing, from the Australian Centre for Field Robotics.
 Mar 10 DART - a baseline teleoperation testbed developed by NASA Johnson Space Center for telepresence research.
 Mar 03 RobotSwarms - Jim Mclurkin has won the 2003 Lemelson MIT Prize for his work in developing autonomous micro-robotic swarms, based on his early work with the MIT Ants project and the iRobot Swarm Project.
 Feb 24 Robot Skin - polymer tactile sensor skin with embedded contact sensors for robotic applications, developed by Jonathan Engel at the University of Illinois, published in the Journal of Micromechanics and Microengineering.
 Feb 17 GraspIt! - robotic grasping simulator for arbitrary hand and robot designs, with automatic grasp planning, from Andrew Miller at the Columbia University Robotics Group.
 Feb 10 Automated Spraying Vehicles - automating vehicles so that one worker can remotely oversee four spraying vehicles running at night, part of aNational Robotics Engineering Consortium project.
 Feb 03 CanadaArm2 - the Space Station Remote Manipulator System (SSRMS) is a new generation Canadarm, the first component of the Mobile Servicing System (MSS) for the International Space Station.
 Jan 27 Grand Challenge - Announcing the DARPA Grand Challenge contest, witha $1,000,000 prize to the tam that develops the first autnomous rover to complete the Los Angeles to Las Vegas course. The rules are out!
 Jan 20 Slocum Glider - robotic "gliders" that move through water instead of air, powered by changes in their own buoyancy and temperature differentials. From the Applied Physics Lab at the University of Washington, and the project partner sites at Webb Research Corporation.
 Jan 13 Robotic mitral valve repair - abstract of clinical evaluations on the use of robotic systems in coronary mitral valve repair, as reported in The Annals of Thoracic Surgery (subscription required for full article) and Heart Center Online.
 Jan 06 Intelligent Machining - overview of composite materials machining research being conducted at Berkeley.
Note:  indicates the organization is developing technologies for space applications of robotics

 Check out the 2002 cool... 
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Curing Brain Diseases by Growing New Cells? 0

Robo tech | 11:58 PM |


Scientists are getting closer to reaching one of the Holy Grails of medical research -- regenerating brain cells to wipe out a wide range of neurological diseases, including Alzheimer's, Parkinson's and epilepsy.
"We're not there yet," said Dennis Steindler, executive director of the McKnight Brain Institute at the University of Florida and one of the leaders of the global effort.
Steindler's group has reached a milestone that has set off a buzz throughout the world of regenerative medicine. It suggests that some time in the not-too-distant future scientists might be able to remove a few stem cells from the brain of a person suffering from a neurological disease, then produce a bucket full of new brain cells to replace those destroyed by the disease.
And ultimately, the research may point the way toward new drugs that will reset the chemistry in a diseased brain to make it produce the cells it needs to recover.
"We may not have to drill a hole in anybody's head at all," says Steindler. "We may be able to use drugs instead."
He and his colleagues have used chemicals to coax stem cells from the brain of an adult mouse to make other cells that, in turn, make brain cells, or neurons. Stem cells are primitive cells that develop into specialized cells, like neurons.

Blueprints to 'Neuron Factories?'

What distinguishes the Florida researchers is their ability to monitor every change along the way.
They also record the chemical and electrical activity during each change, and that has given them a comprehensive image of exactly where the process starts, how it changes, and the end results.
"We have a fingerprint of what the cell looks like, and what all of its children look like en route to making lots of new brain cells,'' he says. "That has never been done before."
What they have ended up with, he says, are "neuron-generating factories."
At this point, all this action occurs in a petri dish, and while other researchers have created brain cells in the lab, no one else has been able to document every event as thoroughly, thus shedding new light on how the process works.
"It's like an assembly line," says Bjorn Scheffler, a neuroscientist at the university and a member of the team. "We can basically take these cells and freeze them until we need them. Then we thaw them, begin a cell-generating process, and produce a ton of new neurons."
The researchers reported their findings in the June 13 issue of the Proceedings of the National Academy of Sciences.

Optimism Abounds

The research so far involves cells from the brain of a mouse, but Steindler thinks it won't be hard to move from mice to humans.
"I don't think it's going to be difficult at all," he says. Of course, as so often is the case, what works for mice may not work at all for humans, but it's clear that Steindler is having a tough time keeping his optimism in check.
Here's how he was quoted in an Irish publication:
"I'm quite optimistic we will translate this to human therapeutics in the very near future. Because advances in the field of regenerative medicine are occurring so quickly at the moment, it could be anytime. It could be next week, it could be 10 years. I'd like it to be next week."
During my interview he was less specific:
"I hope it is pretty quick."
Other scientists not associated with the research say that if further experiments confirm the findings, it could be very, very important.
"The ability to regenerate the needed cell type and place it in the correct spot would have major impact," says Eric Holland, a neurosurgeon at Memorial Sloan-Kettering Cancer Center in New York, who specializes in the treatment of brain tumors.

Detailed Developments

Where all this will lead is still debatable, but the research stands alone in terms of detail.
Using a powerful microscope, the researchers photographed the stem cells in the petri dish every five minutes for up to 30 hours. They ended up with a time-lapse movie that shows exactly what changed every time a new chemical was tried out on the cells.
Thus they were able to change the course of the development by chemical manipulation, and that's perhaps the most important aspect of all. That suggests that chemicals, not surgery, may be able to correct a diseased mind that is now almost impossible to treat.
It's a pot of gold at the end of a rainbow, and it all could be a mirage. Success would mean so much to so many people that it is almost impossible to hold one's enthusiasm in check. But many promising results in the past have proved disappointing.
There's still no cure for Alzheimer's disease, for example, despite decades of research. The progression of the disease can be slowed with some drugs, but only a little.
If a cure could be found, the financial problems that threaten to cripple Medicare would vanish, and families would no longer have to endure what has become known as "the long goodbye."
Steindler's group is already testing lab animals with neurological diseases to see if they can be coaxed into generating new brain cells to replace those destroyed by the diseases. That would be a major accomplishment, and if it works, "then we will begin to talk about human trials," he says.
It's worth hoping that Steindler and his colleagues are on the right track.
But only time, and much more research, will prove it.
Lee Dye's column appears weekly on ABCNEWS.com. A former science writer for the Los Angeles Times, he now lives in Juneau, Alaska.

Quantum Teleportation 0

Robo tech | 3:58 AM |

Teleportation is the name given by science fiction writers to the feat of making an object or person disintegrate in one place while a perfect replica appears somewhere else. How this is accomplished is usually not explained in detail, but the general idea seems to be that the original object is scanned in such a way as to extract all the information from it, then this information is transmitted to the receiving location and used to construct the replica, not necessarily from the actual material of the original, but perhaps from atoms of the same kinds, arranged in exactly the same pattern as the original. A teleportation machine would be like a fax machine, except that it would work on 3-dimensional objects as well as documents, it would produce an exact copy rather than an approximate facsimile, and it would destroy the original in the process of scanning it. A few science fiction writers consider teleporters that preserve the original, and the plot gets complicated when the original and teleported versions of the same person meet; but the more common kind of teleporter destroys the original, functioning as a super transportation device, not as a perfect replicator of souls and bodies.
Six scientistsIn 1993 an international group of six scientists, including IBM Fellow Charles H. Bennett, confirmed the intuitions of the majority of science fiction writers by showing that perfect teleportation is indeed possible in principle, but only if the original is destroyed. In subsequent years, other scientists have demonstrated teleportation experimentally in a variety of systems, including single photons, coherent light fields, nuclear spins, and trapped ions.  Teleportation promises to be quite useful as an information processing primitive, facilitating long range quantum communication (perhaps unltimately leading to a "quantum internet"), and making it much easier to build a working quantum computer.   But science fiction fans will be disappointed to learn that no one expects to be able to teleport people or other macroscopic objects in the foreseeable future, for a variety of engineering reasons, even though it would not violate any fundamental law to do so.  
In the past, the idea of teleportation was not taken very seriously by scientists, because it was thought to violate the uncertainty principle of quantum mechanics, which forbids any measuring or scanning process from extracting all the information in an atom or other object. According to the uncertainty principle, the more accurately an object is scanned, the more it is disturbed by the scanning process, until one reaches a point where the object's original state has been completely disrupted, still without having extracted enough information to make a perfect replica. This sounds like a solid argument against teleportation: if one cannot extract enough information from an object to make a perfect copy, it would seem that a perfect copy cannot be made. But the six scientists found a way to make an end run around this logic, using a celebrated and paradoxical feature of quantum mechanics known as the Einstein-Podolsky-Rosen effect. In brief, they found a way to scan out part of the information from an object A, which one wishes to teleport, while causing the remaining, unscanned, part of the information to pass, via the Einstein-Podolsky-Rosen effect, into another object C which hasfigure never been in contact with A. Later, by applying to C a treatment depending on the scanned-out information, it is possible to maneuver C into exactly the same state as Awas in before it was scanned. A itself is no longer in that state, having been thoroughly disrupted by the scanning, so what has been achieved is teleportation, not replication.
As the figure to the left suggests, the unscanned part of the information is conveyed from A to C by an intermediary object B, which interacts first with C and then with A. What? Can it really be correct to say "first with C and then with A"? Surely, in order to convey something from A to C, the delivery vehicle must visit A before C, not the other way around. But there is a subtle, unscannable kind of information that, unlike any material cargo, and even unlike ordinary information, can indeed be delivered in such a backward fashion. This subtle kind of information, also called "Einstein-Podolsky-Rosen (EPR) correlation" or "entanglement", has been at least partly understood since the 1930s when it was discussed in a famous paper by Albert Einstein, Boris Podolsky, and Nathan Rosen. In the 1960s John Bell showed that a pair of entangled particles, which were once in contact but later move too far apart to interact directly, can exhibit individually random behavior that is too strongly correlated to be explained by classical statistics. Experiments on photons and other particles have repeatedly confirmed these correlations, thereby providing strong evidence for the validity of quantum mechanics, which neatly explains them. Another well-known fact about EPR correlations is that they cannot by themselves deliver a meaningful and controllable message. It was thought that their only usefulness was in proving the validity of quantum mechanics. But now it is known that, through the phenomenon of quantum teleportation, they can deliver exactly that part of the information in an object which is too delicate to be scanned out and delivered by conventional methods.
figureThis figure compares conventional facsimile transmission with quantum teleportation (see above). In conventional facsimile transmission the original is scanned, extracting partial information about it, but remains more or less intact after the scanning process. The scanned information is sent to the receiving station, where it is imprinted on some raw material (eg paper) to produce an approximate copy of the original. By contrast, in quantum teleportation, two objects B and C are first brought into contact and then separated. Object B is taken to the sending station, while object C is taken to the receiving station. At the sending station object B is scanned together with the original object A which one wishes to teleport, yielding some information and totally disrupting the state of A and B. The scanned information is sent to the receiving station, where it is used to select one of several treatments to be applied to object C, thereby putting C into an exact replica of the former state of A.
To learn more about quantum teleportation, see the following articles and links:

DOE Pursues SunShot Initiative to Achieve Cost Competitive Solar Energy by 2020 0

Robo tech | 3:55 AM | ,


U.S. Energy Secretary Steven Chu today announced additional details of the Department of Energy's "SunShot" initiative to reduce the total costs of photovoltaic solar energy systems by about 75% so that they are cost competitive at large scale with other forms of energy without subsidies before the end of the decade. By reducing the cost for utility scale installations by about 75% to roughly $1 a watt—which would correspond to roughly 6 cents per kilowatt-hour—solar energy systems could be broadly deployed across the country.
This will increase American economic competitiveness and help the United States regain leadership in the global market for solar photovoltaics. As part of the SunShot initiative, Secretary Chu announced today that the Department of Energy is awarding $27 million in projects to support the development, commercialization, and manufacturing of advanced solar energy technologies.
"America is in a world race to produce cost-effective, quality photovoltaics. The SunShot initiative will spur American innovations to reduce the costs of solar energy and re-establish U.S. global leadership in this growing industry," said Secretary Chu. "These efforts will boost our economic competitiveness, rebuild our manufacturing industry and help reach the President's goal of doubling our clean energy in the next 25 years."
The SunShot program builds on the legacy of President Kennedy's 1960s "moon shot" goal, which laid out a plan to regain the country's lead in the space race and land a man on the moon. The program will aggressively drive innovations in the ways that solar systems are conceived, designed, manufactured and installed.
In addition to investing in improvements in cell technologies and manufacturing, the SunShot initiative will also focus on steps to streamline and digitize local permitting processes that will reduce installation and permitting costs. To achieve the SunShot goal of reducing the total installed cost of large scale solar electricity by about 75%, DOE will be working closely with partners in government, industry, research laboratories, and academic institutions across the country.
SunShot will work to bring down the full cost of solar—including the costs of the solar cells and installation—by focusing on four main pillars:
  • Technologies for solar cells and arrays that convert sunlight to energy
  • Electronics that optimize the performance of the installation
  • Improvements in the efficiency of solar manufacturing processes
  • Installation, design and permitting for solar energy systems.
For more information and to follow the initiative's progress, visit the SunShot Initiative website.
As part of the launch of the SunShot initiative, DOE is also announcing $27 million in awards to nine new projects. This funding includes support for five projects that are receiving $20 million to further develop U.S. supply chains for PV manufacturing. This includes support for companies across the solar energy supply chain, including U.S. material and tool suppliers and companies that are developing technologies that can be adopted directly into current manufacturing processes. More information and a list of awardees is available.
Additionally, DOE's National Renewable Energy Laboratory is investing $7 million to fund the latest round of the successful PV Incubator program, which helps to shorten the commercialization timeline for promising emerging solar technologies. The companies work closely with DOE national laboratories to scale their technologies and manufacturing processes and move the products from pre-commercial and prototype stage to pilot and full-scale manufacturing operations. More information and a list of awardees is available.
The SunShot initiative builds on the Department's significant research and development (R&D) efforts in solar energy over the past decade, conducted in partnership with American universities, national laboratories, and the private sector. In the last ten years, DOE has invested more than $1 billion in solar energy research that has been leveraged with significant private industry funding to support more than $2 billion in total solar R&D projects. This includes investments by DOE's Office of Science, Solar Energy Technologies Program, and ARPA-E, the Advanced Research Projects Agency-Energy. Innovations in both science and technology have driven the cost of solar down 60% since 1995, and have yielded a number of critical breakthroughs in solar PV performance and cost

Seven superior tablet computers of 2010 0

Robo tech | 11:57 PM |

  1. iPadScreen: 9.7-inch Multi-Touch display with IPS technology, LED backlit, 1024×768
    Storage: 16GB, 32GB or 64GB flash
    Camera: None
    Processor: Apple A4 1GHz
    OS: iOS
    Ships: Within 24hrs
    Price: $499 – $829 with 3G+WiFi
  2. Samsung Galaxy TabScreen: 7-inch Super TFT-LCD, 1024×600
    Storage: 16GB internal, + 16GB micro SD
    Camera: Front VGA, Rear 3.2 megapixel
    Processor: Cortex A8 1.0GHz
    OS: Android 2.2
    Ships: September 2010
    Price: Reported to be $200 and $300 on-contract, $1,000 without
  3. ViewSonic ViewPad 100Screen: 10-inch LED backlit LCD, 1024×600
    Storage: 16GB SSD, + 32GB micro SD
    Camera: Front facing 1.3 megapixel
    Processor: Intel Atom N455 1.66GHz
    OS: Windows 7 Home Premium, Android 1.6
    Ships: European release set for October 2010
    Price: £549 (US$845)
  4. ViewSonic ViewPad 7Screen: 7-inch capacitive touch screen LCD, 800×480
    Storage: 16GB SSD, + 32GB micro SD
    Camera: Front facing 1.3 megapixel, 3 megapixel on back
    Processor: 600MHz Qualcomm Snapdragon
    OS: Android 2.2 Froyo (possible 3.0)
    Ships: European release set for October 2010
    Price: £350 (US$536)
  5. Toshiba Folio 100Screen: 10.1-inch capacitive touch screen LCD, 1024×600
    Storage: 16GB SSD, + 16GB SD
    Camera: Front facing 1.3 megapixel
    Processor: Nvidia Tegra 2
    OS: Android 2.2 Froyo
    Ships: Now shipping in Europe
    Price: 399 Euro (US$510)
  6. Archos 101 Internet TabletScreen: 10.1-inch TFT LCD, 1024×600
    Storage: 8GB and 16GB flash, +32GB MicroSD
    Camera: Front facing VGA
    Processor: ARM Cortex A8 at 1 GHz with DSP
    OS: Android 2.2 Froyo
    Ships: October 2010
    Price: $299.99 (8GB) and $349.99 (16GB)
  7. Archos 7o Internet TabletScreen: 7-inch Capacitive multitouch screen LCD, 800×480
    Storage: 8GB flash, up to 250GB HD
    Camera: Front facing VGA
    Processor: ARM Cortex A8 at 1 GHz with DSP
    OS: Android 2.2 Froyo
    Ships: October 2010
    Price: $274.99 (8GB) and $349.99 (250GB)

Future Gadget: Nook eBook Reade 0

Robo tech | 12:07 AM |

Bookstore giant Barnes & Noble just announced today the release of their future eBook reader known as the Nook, and they are already taking orders. Priced competitively at $259, the Nook costs pretty much the same as the once popular Kindle, but offers a whole lot more. Check out some of the coolest specs the Nook has to offer:
  • Color Touch Screen – Unlike the other eBooks which are pure black and white
  • Screen Display – No glare or backlight with adjustable text size
  • Share Books – You can share books you have purchased with your friends and family for free
  • Huge Selection – There are over 1,000,000 available books (twice as many as the Kindle)
  • Wi-fi Capable – Connect to the internet with local hotspots
  • Media Slot – Supports Micro SD cards for extra storage space of up to 17,500 books
  • 3G Network – Offered by AT&T so you can buy books from almost anywhere
  • Customization – You can get custom covers with different colors as well as upload photos
  • Free books – There are over 1,000 free books offered to Nook buyers
  • Hands-on Demos – You can test out the Nook before buying at any of the Barnes & Noble stores
Barnes and Noble has chosen a very strategized release date, which comes right before the heavy holiday shopping. For those of you who have held off on buying a Kindle, your patience has just paid off. The Nook will make the perfect holiday gift to those who love to read and travel quite frequently. Additionally, you may find consumer product reviews of eReaders on the Consupo website.

Future Car: Eco-Friendly Porsche 918 Spyder 0

Robo tech | 11:54 PM | ,

Most people wouldn’t expect a car that can go from 0-60 in under 3.2 seconds to be eco-friendly in the least, but the Porsche automakers beg to differ. This future car concept, the 918 Spyder, is supposed to be one of the fastest (if not the fastest) hybrid electric car on the market. This one-of-a-kind ride can teach tops speeds of 200 mph and gets a whopping 78 miles per gallon – double the amount most compact cars achieve on a good day.
This speed demon is charged by a 3.4 liter V8 engine which comes equipped with a lithium ion battery pack that can be charged from almost anywhere, not to mention whenever you hit the brakes as well.  No word yet on the pricing but you can safely assume it will be in the 6 digit field (estimates have been set near the $500,000 mark), and is not expected to be listed for sale on the market for at least another year, probably closer to 2012 or 2013. The bad news is that you probably never will own one of these babies, or anything close to it, but the good news is that future cars will benefit from these technological break-throughs and the overall quality of regular day-to-day cars will be enhanced. Way to go Porsche!

Seagate goes green with latest Barracuda Green hard drive 0

Robo tech | 3:42 AM |


As you can tell by its name, the latest Seagate Barracuda Green hard drive has a heart for our environment. Yes, years after the hard drive industry has added countless toxins to Mother Nature, Seagate has recently developed a conscience that delivers technology without resulting in Greenpeace activists protesting outside of their offices. OK, so we’re kidding about that part, but you do get the point, right?
The Seagate Barracuda Green hard drive is the industry’s highest performance eco-friendly 3.5-inch desktop drive that is meant for low-power personal computers, multi-drive home networking systems and external PC storage. Apart from offering environmental improvements in power consumption and material usage, these drives will also be among the first hard drives from Seagate that come with SmartAlign technology.
The Barracuda Green hard drive is also known as the Barracuda LP if you were to have a sense of continuity, where it will merge the industry’s highest spin speed (5900 RPM) with Seagate’s aforementioned SmartAlign technology, delivering best-in-class performance. Just what does SmartAlign technology offer? Well, it enables all the benefits of the new 4K sector standard while simplifying drive installation, doing away with the need for utilities that are more often than not required to ensure optimum drive performance. Not only that, being cool-running, this lower-power Barracuda Green hard drive will be pleasant on your ears by delivering whisper-quiet acoustics while reducing system costs associated with the fans and power supply devices often required for power-hungry systems.
Over 70 percent of the materials used to build the drive can be recycled – now how green is that? In addition, all Barracuda Green drives will utilize low halogen components to further reduce the negative environmental impacts related to these substances. There is no word on pricing as at press time, but if you’re interested in picking up this puppy while doing your bit for the environment, it will come in 1TB, 1.5TB and 2TB capacities.

HONDA CONDUCTS EUROPEAN RESEARCH T0 PERFECT HUMAN ROBOT 0

Robo tech | 4:45 AM | ,

Linz, Austria, September 1, 2010 - A research project will be conducted this week in Linz, Austria, to discover what the ideal interaction between people and humanoid robots ought to be in the future, Honda R&D and Ars Electronica Futurelab announced today. The research, the first of its kind in Europe, will involve members of the public directly interacting with ASIMO, Honda's humanoid robot.
The findings from this and similar research around the world will be integrated into the functionality of future versions ASIMO. It will also help realize a humanoid robot that can interact effortlessly with people in a living environment and take on some the tasks that would help make people's lives easier.
For nearly a quarter of a century Honda has made significant progress towards this goal.  The latest generation of this research is Honda's ASIMO, widely regarded as the most advanced humanoid robot. ASIMO, which stands for Advanced Step in Innovative MObility, features functionality including high-level mobility and an ability to give and receive objects.
Satoshi Shigemi, Large Project Leader of ASIMO development, Honda R&D Co., Ltd., said:  "This is an exciting collaboration for us with Ars Electronica Futurelab, which has a long history of investigating human-machine interaction and design. It is a significant milestone in our development of ASIMO and an important piece of human-robot interaction research to examine the diverse levels of robot acceptance and interaction around the world. We've already held research in Japan and in time we will conduct similar research in different cultures and different parts of the world."
He added: "The aim of this research is to better understand what the ideal interaction and communication between people and humanoid robots ought to be in the future. People need to be able to comfortably communicate with the robot so that it can react properly to their commands and carry out their wishes when assistance is needed."
The collaborative research with members of the public visiting the Ars Electronica Center will take place from the 2nd to 8th September 2010 during the Ars Electronica Festival in Linz, Austria. Leading experts from around the globe in the fields of robotics, futurology and design will gather at the Festival.


 
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