Radio Frequency Identification RFID



             


Thursday, April 10, 2008

RFID Tags

When RFID tags started gaining popularity the general view was that they would revolutionize the world and the industry. However, it did not happen and people were not so fast to accept RFID technology and its advantages. Nonetheless. RFID technology has evolved and new advances in this industry have been made.

The RFID industry is designing better systems and tags while ensuring the cost factor for both active and passive RFID tags reduce. It is a lot cheaper today to take advantage of RFID technology than it was ten years ago. The RFID tags have become smaller in size and have better batteries.

However, RFID technology is still a long way from taking the world by storm. If we take RFID tag use in Wal-Mart, one will realize that this giant uses it minimally. While Gillette?s dream for distribution and robotic factories has not been realized. Still, Gillette and the US military are taking this technology seriously and trying to find ways of using it better and more effectively.

The real challenge for the RFID industry, many say, could be the inability of the industry to produce the tags and readers cheaply and quickly on labels. If this can be done, then it would bring the RFID tags and readers at level with the bar code industry and will enable the retail industry to effectively use this technology. At the moment RFID technology is more popular with shipping and transporting companies to keep a track on consignment.

With companies like Horizon Components who have taken the RFID technology beyond the realms of shipping and transporting companies, the future for RFID technology is bright and optimistic. It will be real soon when we see this technology being a part of our day to day life.

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Friday, March 28, 2008

Radio Frequency Identification Device - RFID

Radio Frequency Identification (RFID) is the utilization of radio waves to recognize the objects. Unlike barcode, in RFID one can find a product without virtually coming in touch with it. The tracking number is stored in a micro-chip, which is connected to the aerial. The chip is then enables to put on the air any tracking data to the receiver. Finally the information will be converted into a digital format, which is read by the computers.

A usual RFID tag holds a microchip attached to an aerial escalated on a substrate. The data storage capacity of a chip ranges from 64 bits to 2 kilobytes. For e.g., information about a manufactured goods or consignment-date of production, and destination, can be downloaded to a tag.

A reader is necessary to recover the data stored on an RFID tag. A reader is a device, which has one or more aerials that releases radio wave and take delivery of signals reversed from the RFID tag. The reader then forwards the data into digital form to attached computer.

RFID Advantage

Whether you are related to tracking record in a warehouse or keeping a large bunch of apparel assortments, there is a requirement of a completely automated data receiving and evaluation system which will help out to sustain track of precious assets and equipments. RFID technology offers exclusive solutions to hard data tracking of record or equipment- specifically in applications, where optical based systems not succeed and when write/read capabilities are necessary. The technology is constantly developing, with unlocked designs becoming more and more accessible.

Benefits of RFID vs. Barcode

The barcode's optical nature needs labels which can be detected by lasers. The straight line between reader and labels is usually difficult, not practical, or even unfeasible to attain in industrial atmosphere. In a move to achieve proper functionality, a barcode reader requires clean and clear optics, label must be spotless and free of scratch, and the label and reader must be rightly oriented to each other. On the other hand, RFID technology makes tag enabled to read from a larger distance, even in worst environments.

Additionally, the data imprinted on a barcode is set and cannot be distorted. On the other side, RFID tags have electronic memory as same as to the common computer or digital camera to hold data and this can changed or updated dynamically.

RFID presents particular features which are not accessible with any other automatic identification technologies. Albeit, not all RFID systems offer every single feature, following are few common advantages of RFID.

. Enduring identification or read/write ability
. Do not require contact or straight sight line for reading
. Practical resistance from incomprehensible paint, dirt etc.
. Automated functioning
. Broad range of tag alternatives and frequencies
. Reading capability ranges from few inches to several feet
. Tremendously high data reliability

RFID Applications can be used in many trades other than retail, which includes animal recognition, supple production (tracking and control), laundry tracking, asset identification, and many many more.

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Wednesday, February 6, 2008

RFID: California's Identity Information Protection Act

Utah introduced a bill designed to limit the use of RFID by state and county government. It was voted down. Maryland introduced a similar bill. It, too, was voted down. This is California's second RFID bill. The first was... voted down.

So, California's Bill No. 682 may not be an original idea, but it is important and relevant. And the strong bipartisan vote in favor of the bill is also important and relevant.

California Senator Joe Simitian (D-Palo Alto) introduced the bill in February 2005. Yesterday the California state senate approved the bill in a 29 to 7 vote (21 Democrats and eight Republicans). If passed into law, the California bill will be the first legislation to limit the use of RFID.

An excerpt from bill 682: "This act would prohibit identification documents created, mandated, purchased or issued by various public entities from containing a contactless integrated circuit or other device that can broadcast personal information or enable personal information to be scanned remotely, except as specified."

Nothing wrong with that.

RFID is amazing technology that represents tremendous positive potential. RFID may be the best tool we have to keep our prescription drug pipeline safe, to alert us when an Alzheimer's patient wanders, or to warn us when our car tire is getting low.

It is not the best tool we have for identification.

New technology requires new vigilance. New uses of old technology also requre new vigilance. If we don't make deliberate decisions about the role of RFID in our lives, someone else will. It is that simple.

Sally Bacchetta - Freelance Writer/Sales Trainer

Sally Bacchetta is an award-winning freelance writer and sales trainer. She has published articles on a variety of topics, including RFID, selling skills, motivation, and pharmaceutical sales.

You can contact her at sb14580@yahoo.com and read her latest articles on her website.

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Friday, January 25, 2008

Five Companies Big In RFID Adoption (Case Studies)

RFID Radio-frequency identification or RFID is new data-collection technology. This technology uses electronic tags to store identification data. A wireless transmitter sends the data to a management system for analysis. Companies are using it to different functions. The main uses of this technology for the companies are in the field of supply chain management. It is used by companies across sectors. Retailers and their suppliers are using this technology mostly. RFID is becoming a unique tool in the business process. It is a very powerful and important system. Most of the companies today adopting RFID to their business. They are not using this technology to their business only, but adopting at their suppliers level also. These companies are helping their suppliers to use RFID in their operation and improve the efficiency.

Companies are issuing mandates, which ask the suppliers to put RFID tags to products that are shipped to them. Even the FDA is looking at the RFID as a way of solving the problem with counterfeit drugs. Wal-Mart Wal-Mart is one of the companies, who are leading the way. Wal-Mart started with adopting RFID to their distribution hubs. It planned to use RFID to its different distribution hubs to increase the efficiency and effectiveness of these hubs. But as they were unable to complete the projected target and as some of the suppliers had problem with the ROI also, they shifted their efforts towards stores. Albertsons Albertsons is a food and drug retailer. It launched an initiative to use electronic tags for tracking goods through its supply chain. It also asked its suppliers to proceed towards adopting RFID in their process. Albertson is using RFID in its warehouses.

It is using RFID tags to track cases and pallets. The main focus is on improving the customer satisfaction by increasing supply chain efficiency. Albertsons this initiative is trying to use RFID technology to track pallets and cases of goods in the movement through warehouses and stores. Best Buy Best buy started with pre-pilot testing of OAT System Inc.'s RFID framework, for its business. RFID tags are being produced by using this framework. For supply chain, it planned to use another software. One of the main suppliers of Best Buy, iRiver started the pre pilot testing for Best Buy. Best Buy has a mandate for its suppliers to use RFID in their business process. According to the mandate, the supplied item to Best Buy should come with the RFID tags attached to them.

Best Buy plans are to move to item-level tagging and to take the RFID adoption to another level beyond simple tagging of pallets and cases. Here it tries to differ from Wal-Mart, Target, Tesco and other retail chains. Tagging individual items is the main objective of Best Buy, which will increase the efficiency. The company is following EPCglobal guidelines for tagging pallets and cases. It has asked for requirements for suppliers which are similar to those issued by Wal-Mart and Target. Target Target is the fourth largest retailer in the United States. Target plan is to use RFID tags on pallets and cases. These pallets and cases are sent to particular regional Distribution Centers (DCs). Target is using EPC standards. Target has put forwarded a mandate for its suppliers, which asks them to apply RFID tags on pallets and cases, which are sent to regional distribution facilities. Target has levied its Radio Frequency Identification (RFID) mandate, thereby forcing the industry to adopt RFID.

Like Wal-Mart, Target used RFID tags in the products they carry. The company planned testing RFID technologies at the pallet and case level with selected vendor partners at first. Target worked with EPCglobal to develop common technology standards. These standards are supposed to benefit both retailers and their suppliers.

Metro Like other behemoths of different industries and of the same industry where it is operating, Metro has also set out to use RFID in its operations. Metro is one of the top five trading and retailing groups in the world. To meet the competition in the retail industry, Metro has also started to use RFID technology to increase its efficiency and profitability. Metro Group used Intel Solution Services in adopting RFID technology. It helped the company to develop and integrate RFID technology across different supply chain processes. METRO Group launched a European RFIDInnovation Center. Intel Solution Services performed testing and provided consultancy to the Metro group. Challenges These companies often face challenges and barriers in adopting RFID technology like problem in integrating RFID with existing systems where they made significant investments, problem with the cost of implementing, which is very high, problem with ever changing RFID Sector, where technologies keep on changing fast, problem in synchronization of data, which is developing slowly, problem with operation in the implementation time etc. While adopting RFID to the overall business, companies have to overcome these barriers.

Bikash is an MBA who works as an freelance writer. He worked for on eof the best private banks in India. He has been writing for the last 5 years. He has worked with many US,UK and Indian clients. Visit him at http://bikiassam.tripod.com

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Wednesday, January 9, 2008

Wireless Shopping with RFID

So wireless networking has got rid of your network cables and your USB cables... what can it do next? Well, the answer might surprise you: wireless is going shopping. There is a small army of uses for this technology and many are in use at this very moment.

RFID: Electronic Barcodes

Yes, that's right: RFID (Radio Frequency Identification) is a replacement for the barcode, using wireless radio technology. But what's wrong with barcodes, you ask? Well, they need to be scanned, for a start. Supermarkets and other shops have small armies of staff in their stores, in fact, doing almost nothing but scanning barcodes and taking money.

RFID lets barcodes be replaced with radio signals, which can automatically be scanned. In theory, you could have a shopping cart full of RFID-labelled products, put it near an RFID scanner, and the things in your cart would be detected and their prices added up instantly.

Imagine being able to stop in front of a machine at the supermarket's exit, and do nothing but put your credit card in a machine before you leave (if your credit card is RFID-enabled too, you might not even need to do that). You can checkout in a matter of seconds! It's a win-win situation: it saves you time, and it saves the supermarket money. The only people who lose out are the ones getting paid to sit around scanning barcodes, but hey, that's technology for you.

How on Earth Does It Work?

Believe it or not, RFID tags contain tiny antennas, allowing them to transmit small amounts of data by radio. The majority of tags in use today do not have their own power supply (a power supply makes the tag larger and more expensive), which means that they must rely on power they receive through the air by radio. This is such a tiny amount of power that it is only just enough to transmit an ID number. This does work, however, from as much as five metres away.

For shopping use, tags that send numbers are sufficient -- a barcode is just a number in the form of lines, after all. These tags are now as cheap as 40 cents, and mass production means the price is only going to come down -- RFID is likely to become widespread in the next decade. The smallest RFID tags are already thin enough to be almost invisible.

Privacy and Other Uses of RFID

There are privacy concerns around the use of RFID, simply because it makes it so quick and easy to tag just about anything -- and the tags can be scanned without any human interaction. This, however, is also what makes the system very useful.

Pets are already implanted with RFID tags so that they can be identified if found, and the idea of humans being made to have RFID implants as a replacement for identity cards isn't as science fiction as it sounds -- it is possible today. As long ago as 1998, a professor was able to implant a tag in his arm. The technology is being considered for used on prisoners. In countries that already have ID cards or that will have them soon, RFID tracking probably won't be far behind.

If RFID shopping tags are left on things, then people could leave tags on their clothes or other products without realising it. This has all sorts of implications -- someone might be able to point an RFID scanner at your house and get a list of everything in it that still has a tag, for example.

RFID is already widely used in many industries. Warehouses use them to track pallets of goods, some libraries put them in books and airlines use them to track baggage. Usage is particularly common in building access control (the ID cards for employees that open the door automatically).

Travel is another growth area: many parts of the USA have the option of using RFID cards to pay at toll booth's, and the London Underground now uses RFID payment cards known as Oyster cards. There are even RFID car keys that can open the door while they're still in your pocket, without you doing a thing.

Environmental Concerns

As a footnote to all this, many people are concerned about the environmental impact RFID could have. Although they are small, using computer chips as a replacement for barcodes could lead to the equivalent of many thousands of computers being thrown away every year.

Information supplied and written by Lee Asher of Eclipse Domain Services
Domain Names, Hosting, Traffic and Email Solutions.

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Conspiracy Theorists and the Mark of the Beast; RFID Implants

The Radio Frequency Identification Tags are able to help streamline distributions and transportation systems in a way, which was never possible before. They allow products and inventory with complete tracking while on the shelf of the store, warehouse or in route. As a matter of fact they can track just about anything you see. Anything you ask, or anybody? Indeed if implanted they could track anybody or every body from cradle to grave.

Do you really believe that RFID implants will lead to the "Mark of the Beast" scenario? Do you believe in that hokum? In the future small implants will allow the body to talk to medical devices, ask for nutrients it needs and deficiencies, even warn of problems. Implants can also help us track "Child Molesters" or our Soldiers or even volunteer peace workers in places they might be kidnapped? RFID Tags can help us track cargo, trucks, shipments to improve the flows of civilization as well.

Are you worried about your rights as a citizen or being implanted with an RFID Tag? Do you believe this is going to lead to the seven-year tribulations in Revelations? Are you spooked yet? Do you believe in secret societies and conspiracy theories? Boo! Think on this in 2006.

"Lance Winslow" - Online Think Tank forum board. If you have innovative thoughts and unique perspectives, come think with Lance; www.WorldThinkTank.net/. Lance is a guest writer for Our Spokane Magazine in Spokane, Washington

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Thursday, January 3, 2008

RFID: Strengthen the Position for SAP; United States

SAP Inc., a global leader in client/server enterprise application software that for years been the backbone to RFID application has seen a 1,000% spike year-over-year in customers, interested in RFID deployment. Acting as a link to RFID data and business applications SAP expects great things further and expedites toward new horizons.

RFID gives trade greater visibility into their supply chains and would stem inventory leakage. This in turn finds United States of America create more in-house and outsourcing jobs especially leading to manufacturing sector. Also "drives product excellence" by brining consumer goods companies closer to the buying action, says McDermott. With real-time understanding of customer’s buying pattern, manufacturing of newer product line proved to be successful and largely contributing to businesses.

“I think consumers would give up a little bit on the privacy side for speed and efficiency”, McDermott said while commenting on the Americans willingness to forgo a level of privacy in order to gain the benefits of RFID in coming years. He further says privacy, as a barrier to adoption, is "nothing more complex than just knowledge."

On the whole, RFID around the world finds larger acceptance especially among the large corporatism and government agencies faces real challenge with consumer awareness. Further demand for unique standardization and harmonization is of the essence to counterfeit the niggling problematic aspects of RFID spectrums.

Rahul Ghosh, working as freelance industry analyst working is a regular contributor and has written many articles and commentaries on diversified industry sectors. For further discussion with the writer, email at rahulghosh@rediffmail.com

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Wednesday, December 5, 2007

Use of RFID Technology in Libraries: An Automated Metheod of Circulation, Security, Tracking and...

 
Introduction

RFID is an acronym for Radio Frequency Identification. It is a technology that allows an item, for example a library book to be tracked and communicated with by radio waves. This technology is similar in concept to a Cell Phone.

Radio frequency identification, or RFID, is a broad term for technologies that use radio waves to automatically identify people or objects. There are several methods of identification, but the most common is to store a serial number that identifies a person or object, and perhaps other information, on a microchip that is attached to an antenna (the chip and the antenna together are called an RFID transponder or an RFID tag). The antenna enables the chip to transmit the identification information to a reader. The reader converts the radio waves reflected back from the RFID tag into digital information that can then be passed on to computers that can make use of it.

2.Concept of RFID for Libraries

RFID (Radio Frequency Identification) is the latest technology to be used in library circulation operations and theft detection systems. RFID-based systems move beyond security to become tracking systems that combine security with more efficient tracking of materials throughout the library, including easier and faster charge and discharge, inventorying, and materials handling.

This technology helps librarians reduce valuable staff time spent scanning barcodes while checking out and checking in borrowed items.

RFID is a combination of radio -frequency-based technology and microchip technology. The information contained on microchips in the tags affixed to library materials is read using radio frequency technology regardless of item orientation or alignment (i.e., the technology does not require line-of-sight or a fixed plane to read tags as do traditional theft detection systems). The RFID gates at the library exit(s) can be as wide as four feet because the tags can be read at a distance of up to two feet by each of two parallel exit gate sensors.

2.1 Components of an RFID System
A comprehensive RFID system has four components:

(1) RFID tags that are electronically programmed with unique information;

(2) Readers or sensors to query the tags;

(3) Antenna; and

(4) Server on which the software that interfaces with the integrated library software is loaded.

2.1.1Tags

The heart of the system is the RFID tag, which can be fixed inside a book's back cover or directly onto CDs and videos. This tag is equipped with a programmeable chip and an antenna. Each paper-thin tag contains an engraved antenna and a microchip with a capacity of at least 64 bits. There are three types of tags: "read only", "WORM," and "read/write.

"Tags are "read only" if the identification is encoded at the time of manufacture and not rewritable.

"WORM" (Write-Once-Read-Many)" tags are programmed by the using organization, but without the ability of rewriting them later.

"Read/write tags," which are chosen by most libraries, can have information changed or added. In RFID library, it is common to have part of the read/write tag secured against rewriting, e.g., the identification number of the item.

2.1.2 Readers
The reader powers an antenna to generate an RF field. When a tag passes through the field, the information stored on the chip in the tag is interpreted by the reader and sent to the server, which, in turn, communicates with the Integrated library system when the RFID system is interfaced with it.

RFID exit gate sensors (readers) at exits are basically two types. One type reads the information on the tag(s) going by and communicates that information to a server. The server, after checking against the circulation database, turn on an alarm if the material is not properly checked-out. Another type relies on a "theft" byte in the tag that is turned on or off to show that the item has been charged or not. It is then not necessary to communicate with the circulation database.

Readers in RFID library are used in the following ways:

Conversion station-where library data is written to the tag;

Staff workstation at circulation- used to charge and discharge library materials;

Self check-out station-used to check-out library materials without staff assistance;

Self check-in station-used to check in books etc. without staff assistance;

Exit sensors- to verify that all the books etc. leaving the library have been checked-out;

Book-drop reader- used to automatically discharge library materials and reactivate security.

Sorter and conveyor-automated system for returning books etc. to proper area of library;

Hand-held reader-used for inventorying and verifying that books etc. are shelved correctly.

2.1.3 Antenna
The antenna produces radio signals to activate the tag and read and write data to it. Antennas are the channels between the tag and the reader, which controls the system’s data acquisitons and communication. The electromagnetic field produced by an antenna can be constantly present when multiple tags are expected continually. Antennas can be built into a doorframe to receive tag data from person’s things passing through the door.

2.1.4 Server
The server is the heart of some comprehensive RFID systems. It is the communications gateway among the various components. It receives the information from one or more of the readers and exchanges information with the circulation database. Its software includes the SIP/SIP2 (Session Initiation Protocol), APIs (Applications Programming Interface) NCIP or SLNP necessary to interface it with the integrated library software. The server typically includes a transaction database so that reports can be produced.

2.2 Optional Components

Optional RFID system includes the following three components:

1. RFID Label Printer

2. Handheld Reader

3. External Book Return

1. RFID label Printer

An RFID-printer is used to print the labels with an individual barcode, library logo etc. When the print is applied, it simultaneously programmed the data in to the chip. After this process, the RFID label is taken from the printer and self-adhered to the book. It also checks each RFID label for function.

2. Handheld Reader/Inventory Wand

The portable Handheld Reader or inventory wand can be moved along the items on the shelves without touching them. The data goes to a storage unit, which can be downloaded at a server later on, or it can go to a unit, which will transmit it to the server using wireless technology. The inventory wand will cover three requirements:

· Screen the complete book collection on the shelves for inventory control.

· Search for books, which are mis-shelved.

· Search for individual book requested.

Other applications can be written for the inventory wand, since the system utilizes a personal data terminal (PDT).

3. External Book Return

Libraries can offer a distinct service, which is very useful for users like ability to return books during off hours. External book return is a machine with a slot with a chip RFID reader integrated into the wall. It works the same way as the Self Check –Out Station. The user identifies himself/herself (if required by the library), and then puts the book(s) in to the slot. Upon completing his/her return, the user will receive a receipt showing how many and which books were returned. Since they have already been checked-in, they can go directly back onto the shelves. These units can also be used with sorter and conveyor systems.

3. Key Features of RFID in library

The reliability of the system, its ease of operation, and the flexibility of tagging all kinds of media easily, is important criteria in choosing an RFID system. The main aim for today's libraries to adopt RFID is the need to increase efficiency and reduce cost. Automation and self-service can help libraries of all sizes toward achieving these aims, and RFID has the added advantage that it can also provide security for the range of different media on offer in libraries. The technology can also improve circulation and inventory control, which helps to optimise the allocation of labour and financial resources. This means that libraries can relieve their professional employees of routine work and operational tasks.

All of the tags used in RFID technology for libraries are "passive." The power to read the tags comes from the reader or exit sensor (reader), rather than from a battery within the tag.

A few libraries use "smart" card, which is an RFID card with additional encryption, is an alternative to merely adding an RFID tag on staff and user identification cards. Not only does that identify users for issue and return of library materials, but also for access to restricted areas or services. This would make it possible to make it into a "debit" card, with value added upon pre-payment to the library and value subtracted when a user used a photocopier, printer, or other fee-based device, or wished to pay fines or fees.

3.1 Speedy and Easy User self-charging/discharging

The use of RFID reduces the amount of time required to perform circulation operations. This technology helps librarians eliminate valuable staff time spent scanning barcodes while checking out and checking in borrowed items. For the users, RFID speeds up the borrowing and returns procedures. The Library professionals, instead of scanning bar codes all day long in front of a queue of users, are released for more productive and interesting duties. Staff is relieved further when readers are installed in book drops.

3.2 Reliability

The readers are highly reliable. Several vendors of RFID library systems claim an almost 100 percent detection rate using RFID tags.

Some RFID systems have an interface between the exit sensors and the circulation software to identify the items moving out of the library. Were a library user to run out of the library and not be catched, the library would at least know what had been stolen. If the user card also has an RFID tag, the library will also be able to determine who removed the items without properly charging them.

Other RFID systems encode the circulation status on the RFID tag. This is done by designating a bit as the "theft" bit and turning it off at time of charge and on at time of discharge. If the material that has not been properly charged is taken past the exit gate sensors, an immediate alarm is triggered. Another option is to use both the "theft" bit and the online interface to an integrated library system, the first to signal an immediate alarm and the second to identify what has been taken out.

3.3 High-speed inventorying

A unique advantage of RFID systems is their ability to scan books on the shelves without tipping them out or removing them. A hand-held inventory reader can be moved rapidly across a shelf of books to read all of the unique identification information. Using wireless technology, it is possible not only to update the inventory, but also to identify items, which are out of proper order.

3.4 Automated materials handling

Another application of RFID technology is automated materials handling. This includes conveyor and sorting systems that can move library materials and sort them by category into separate bins or onto separate carts. This significantly reduces the amount of staff time required to ready materials for re-shelving.

3.5 Tag life

RFID tags last longer than barcodes because, the technology does not require line-of-sight. Most RFID vendors claim a minimum of 100,000 transactions before a tag may need to be replaced.

4. Demerits of RFID Systems

4.1 High cost

The major disadvantage of RFID technology is its cost. While the readers and gate sensors used to read the information typically cost around $1,500 to $2,500 each; and the tags cost $.40 to $.75 each.

4.2 Accessibility to compromise

It is possible to compromise an RFID system by wrapping the protected material in two to three layers of ordinary household foil to block the radio signal. It is also possible to compromise an RFID system by placing two items against one another so that one tag overlays another. That may cancel out the signals. This requires knowledge of the technology and careful alignment.

4.3 Removal of exposed tags

RFID tags are typically affixed to the inside back cover and are exposed for removal. This means that there would be problems when users become more familiar with the role of the tags. In Indian libraries this is a major challenge to keep the tags intact.

4.4 Exit gate sensor (Reader) problems

While the short-range readers used for circulation charge and discharge and inventorying appear to read the tags 100 percent of the time, the performance of the exit gate sensors is more problematic. They always don’t read tags at up to twice the distance of the other readers. There is no library that has done a before and after inventory to determine the loss rate when RFID is used for security.

4.5 Invasion of User Privacy

Privacy concerns associated with item-level tagging is another significant barrier to library use of RFID tags. The problem with today’s library RFID system is that the tags contain static information that can be relatively easily read by unauthorized tag readers. This allows for privacy issues described as “tracking” and “hotlisting”.

Tracking refers to the ability to track the movements of a book (or person carrying the book) by “correlating multiple observations of the book’s bar code” or RFID tag. Hotlisting refers to the process of building a database of books and their associated tag numbers (the hotlist) and then using an unauthorized reader to determine who is checking out items in the hotlist.

4.6 Reader collision

One problem meet with RFID is the signal from one reader can interfere with the signal from another where coverage overlaps. This is called reader collision. One way to avoid the problem is to use a technique called time division multiple access, or TDMA. In simple terms, the readers are instructed to read at different times, rather than both trying to read at the same time. This ensures that they don't interfere with each other. But it means any RFID tag in an area where two readers overlap will be read twice.

4.7 Tag collision

Another problem readers have is reading a lot of chips in the same field. Tag clash occurs when more than one chip reflects back a signal at the same time, confusing the reader. Different vendors have developed different systems for having the tags respond to the reader one at a time. Since they can be read in milliseconds, it appears that all the tags are being read simultaneously.

4.8 Lack of Standard

The tags used by library RFID vendors are not compatible even when they conform to the same standards because the current standards only seek electronic compatibility between tags and readers. The pattern of encoding information and the software that processes the information differs from vendor to vendor, therefore, a change from one vendor’s system to the other would require retagging all items or modifying the software.

5. Best Practices guidelines for Libraries

As libraries are implementing RFID systems, it is important to develop best practices guidelines to utilize the technology in best way and to keep the privacy concern away. The following may be the best practices guidelines for library RFID use:

· The Library should be open about its use of RFID technology including providing publicly available documents stating the rational for using RFID, objectives of its use and associated policies and procedure and who to contact with questions.

· Signs should be pasted at all facilities using RFID. The signs should inform the public that RFID technology is in use, the types of usage and a statement of protection of privacy and how this technology differs from other information collection methods.

· Only authorized personnel should have access to the RFID system.

· No personal information should be stored on the RFID tag.

· Information describing the tagged item should be encrypted on the tag even if the data is limited to a serial number

· No static information should be contained on the tag (bar code, manufacturer number) that can be read by unauthorised readers.

· All communication between tag and reader should be encrypted via a unique encryption key.

· All RFID readers in the library should be clearly marked.

· ISO 18000 mode-2 tags should be used rather than ISO 15693.

6. Installations

While there are over 500,000 RFID systems installed in warehouses and retail establishments worldwide, RFID systems are still relatively new in libraries. Fewer than 150 had been installed as of the 2004.

Most installations are small, primarily in branch libraries. The University of Connecticut Library; University of Nevada/Las Vegas Library, the Vienna Public Library in Austria, the Catholic University of Leuven in Belgium, and the National University of Singapore Library are the only sites that appear to have tagged more than 500,000 items each. So far in India only two University libraries have Installed the RFID system. First among them is Jayakar Library of Pune University and second is Dhanvantri Library of Jammu University. The use of RFID throughout Indian libraries will take at least four to five years.

7. Recent Developments

Recent developments in hardware and software for RFID systems have increased the potential of this technology in library automation and security. 'Today, the one important result for libraries is the ability to use non-proprietary systems, now that the new generation of RFID-chips with standard ISO 15693 (to be integrated into ISO 18000-3) is available,' explains Dr Christian Kern, system development manager of Bibliotheca RFID Library Systems, a Swiss company specialising in such systems for libraries. 'With this technology, libraries do not have to depend on one single supplier for tags. As libraries make a long-term investment, which mainly consists of the quantity of tags needed, this is a very important requirement.'

8. Vendors

The products of six manufacturers of library RFID systems are available in India through their business associates: Bibliotheca, Checkpoint, ID Systems, 3M, X-ident technology GmbH represented by Infotek software and systems in India and TAGSYS— the last represented by Tech Logic, Vernon, Libsys in India and VTLS .

There are several other companies that provide products that work with RFID, including user self-charging stations and materials handling equipment.

Conclusion

It is quite clear from the above discussion that an RFID system may be a comprehensive system that addresses both the security and materials tracking needs of a library. RFID in the library is not a threat if best practices guidelines followed religiously, that it speeds up book borrowing and inventories and frees staff to do more user-service tasks. The technology saves money too and quickly gives a return on investment.

As far as privacy issue is concerned it is important to educate library staff and library users about the RFID technology used in libraries before implementing a program.

It may be good for librarians to wait and watch the developments in RFID for some time before the cost of tags comes down to $.20 or less, the figure which librarians has determined is the key to their serious consideration for the use of technology.

While library RFID systems have a great deal in common with one another, including the use of high frequency (13.56 MHz), passive, read-write tags. Lack of Standard and Compatibility of tags produced by different vendors is a major problem in implementation of RFID in Libraries. Current standards (ISO 15693) apply to container level tagging used in supply chain applications and do not address problems of tracking and hot listing. Next generation tags (ISO 18000) are designed for item level tagging. The newer tags are capable of resolving many of the privacy problems of today’s tags. However, no library RFID products are currently available using the new standard. Apart from that cost of the RFID Tags and equipments is also a major problem for libraries to implement the same in a developing country like India.

References:

Ayre, Lori Bowen, The Galecia Group (August 2004) Position paper: RFID and libraries. Retrived from http://www.galecia.com/weblog/mt/archives/cat_rfidandwireless.php

Berkeley Public Library (n.d.) Berkeley Public Library: Best Practices for RFID technology. Retrieved from http://berkeleypubliclibrary.org/BESTPRAC.pdf.

BIBLIOTHECA RFID Library Systems AG (2003) RFID Technology Overview Retrieved from http://www.bibliotheca-rfid.com

Boss. R. W. (2003). RFID technology for libraries [Monograph]. Library Technology Reports. November-December 2003.

Boss. R. W. PLA Tech Notes (May 14, 2004) RFID Technology for libraries. Retrieved from http://www.ala.org/ala/pla/plapubs/technotes/rfidtechnology.htm

FAQ RFID Journal (OnlineVersion) Retrieved from http://www.rfidjournal.com/article/articleview/207

Koppel, T. (March 2004). Standards in Libraries: What’s Ahead: a guide for Library Professional about the Library Standards of Today and the Future. The Library Corporation. Retrieved from http://www.tlcdelivers.com/tlc/pdf/standardswp.pdf.

Molnar, D., Wagner, D. A. (June 2004). Privacy and security in library RFID: Issues, practices and architectures. Retrieved from http://www.cs.berkeley.edu~dmolnar/library.

Sarma, E. S. Weis, S. A., Engels, D.W. (November 2002). White paper: RFID systems, security & privacy implications. Cambridge, MA: Massachusetts Institute of Technology, AUTO-ID Center.

Author is presently working as Assistant Librarian, University of Jammu, Jammu-180006, India

Syed Md. Shahid
Assistant Librarian, University of Jammu, Jammu-180006
smshahid20032yahoo.co.in

 

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