[Home]
[Full version]
Computer scientists develop solutions for long-term storage of digital data
Apr 21 ,Technology
Although the digital age is well under way, one crucial detail remains to be worked out--how to store vast amounts of digital information in a way that allows future generations to recover it.
"The problem is how to build a large-scale data storage system to last 50 to 100 years," said Ethan Miller, associate professor of computer science in the Baskin School of Engineering at the University of California, Santa Cruz.
Tape libraries are widely used for data storage, but digital tape has many shortcomings as an archival medium. Miller's group has come up with a new approach, called Pergamum, which uses hard disk drives to provide energy-efficient, cost-effective storage. The declining cost of hard drives has made them more competitive with tape, and they offer numerous advantages for searching and retreiving data. "It's like the difference between a VCR and TiVo," Miller said.
Pergamum, named after the ancient Greek library that made the transition from fragile papyrus to more durable parchment, is a distributed network of intelligent, disk-based storage devices. The team that developed it includes UCSC graduate students Mark Storer and Kevin Greenan, along with researcher Kaladhar Voruganti of NetApp (formerly Network Appliance), a company that focuses on storage and data management solutions.
Archival storage is a big issue for businesses, partly due to legal requirements for the preservation of financial and business records, and also because data mining strategies can turn stored data into a valuable resource. Long-term storage is also a growing issue for individuals who are filling their personal computers with digital photos, movies, and documents.
"There is a risk that an entire generation's cultural history could be lost if people aren't able to retrieve that data," Storer said. "Everyone is switching to digital cameras, but we've never demonstrated that digital data can be reliably preserved for a long time."
Pergamum has attracted a lot of attention from industry since Storer presented it at a leading conference in the field, the USENIX Conference on File and Storage Technologies (FAST '08), held in San Jose in February. Robin Harris, an industry consultant who writes an influential blog called StorageMojo, called the Pergamum paper his "favorite FAST '08 paper".
The researchers designed the system to provide reliable, energy-efficient data storage using off-the-shelf components. It also has the ability to evolve over time as storage technologies change. "You want to avoid 'forklift upgrades,' where you have to get rid of the old system and transfer all your data to a whole new system," Miller said.
According to Storer, businesses are beginning to recognize that archival storage is very different from simply backing up their data. "A backup is a safety net--you hope you won't need it. Archival data you do want to use--it's a valuable resource and you want to be able to mine it for information," he said.
Tapes work well for backups, in which data are written once, rarely read, and not kept indefinitely. But archival data should be easy to read, query, browse, and search, and tape has inherent weaknesses in these areas. Existing disk-based systems offer excellent performance, but rely on power-hungry central controllers.
"Energy usage is a big issue, so a lot of our effort in designing Pergamum focused on dramatically reducing power use," Miller said.
Pergamum uses individual building blocks consisting of a hard drive; a small, low-power processor (like the chip in an iPhone); a flash memory card; and an ethernet port. These units, called "tomes," are connected using relatively inexpensive ethernet switches.
"Each tome is like a minicomputer, but with very low power demands," Miller said. "When not in use, it can shut down almost completely."
Even when active, the devices use very little power (less than 13 watts), which can be delivered over the network using Power over Ethernet technology. As a result, each unit is essentially a self-contained box with a network connection. The flash memory provides low-power, persistent storage so that many operations can be performed without activating the hard drive.
For reliability, Pergamum uses two levels of redundancy--within and between disks--to protect from both disk failures and errors in writing data to a disk (so-called "latent sector errors"). Tomes can be easily added to expand the system or to replace failed disks. And if hard disk drives become obsolete in 10 years, Pergamum won't suffer the same fate. The system doesn't care what the actual storage medium is, as long as the device can implement the simple protocol that will allow it to function as part of the network.
"In 50 years, the devices might use holographic storage," Storer said. "As long as you can wrap the new storage medium in this intelligent layer that speaks the protocol, it can participate in the network."
Pergamum is one of several related projects being developed by researchers in the Storage Systems Research Center (SSRC) at UCSC's Baskin School of Engineering. The center's other archival storage projects include Deep Store, which dramatically reduces the amount of space required to store data, and POTSHARDS, which provides long-term secure storage using "secret splitting" instead of traditional encryption. Both of these projects would be compatible with Pergamum, Miller said.
Source: University of California - Santa Cruz
Related stories:
Fujitsu Develops New Technology that Ensures Authenticity of Digital Video Clips
Fujitsu Laboratories announced today the development of the world's first technology that makes it possible to ensure that digital video data recorded over long time periods and then stored and managed in segments, or clips extracted from the video, are actual parts of the original video and that the segments have not been falsely manipulated, while at the same verifying the time that the video data was recorded.
Physicists Produce Quantum-Entangled Images
Using a convenient and flexible method for creating twin light beams, researchers from the National Institute of Standards and Technology (NIST) and the University of Maryland (UM) have produced “quantum images,” pairs of information-rich visual patterns whose features are “entangled,” or inextricably linked by the laws of quantum physics.
Physicists produce quantum-entangled images
Using a convenient and flexible method for creating twin light beams, researchers at the Joint Quantum Institute of the Commerce Department's National Institute of Standards and Technology and the University of Maryland have produced "quantum images," pairs of information-rich visual patterns whose features are "entangled," or inextricably linked by the laws of quantum physics. In addition to promising better detection of faint objects and improved amplification and positioning of light beams, the researchers' technique for producing quantum images—unprecedented in its simplicity, versatility, and efficiency—may someday be useful for storing patterns of data in quantum computers and transmitting large amounts of highly secure encrypted information. The research team, led by JQI's Paul Lett, describes the work in the June 12 edition of
Science Express.
Nanotech: Hot Technology Gets a Cool Down
It’s the hottest technology – featherweight laptops that feature rapid response, crisp graphics and operate complex computer games; slim cell phones with Web-browsing capabilities, store high resolution photos and keep track of our lives; credit card-sized MP3 players that store thousands of songs and hours of videos.
Groundbreaking research study to measure 'how much information?' is in the world
Researchers at the University of California, San Diego, today announced a new study to quantify the amounts and kinds of information being produced worldwide by businesses and consumers alike. The "How Much Information?" study will be completed by a multi-disciplinary, multi-university faculty team supported by corporate and foundation sponsorship. The program will be undertaken at the Global Information Industry Center (GIIC) at the School of International Relations and Pacific Studies (IR/PS), with support from the Jacobs School of Engineering and the San Diego Supercomputer Center.
Intel, Micron First to Deliver Sub-40 Nanometer NAND Flash Memory Device
Today Intel Corporation and Micron Technology, Inc. introduced the industry's first sub-40 nanometer NAND memory device, unveiling a 34nm 32 gigabit multi-level cell chip. This process technology was jointly developed by Intel and Micron and manufactured by the companies' NAND flash joint venture, IM Flash Technologies (IMFT).
World’s First Two-in-one Server Blade Joins HP Portfolio for Powering 'Scale-out' Computing Environments
HP today announced the world’s first two-in-one server blade, which offers customers with scale-out environments improved data center performance, reduced floor space and lower power usage.
X-rays power discoveries at Chicago's Field Museum
Digital medical imaging and information technology from Carestream Health, Inc., is playing a key role in helping The Field Museum of Chicago discover and analyze secrets hidden within its world-class collections.
[Home]
[Full version]