Showing posts with label postal inspection. Show all posts
Showing posts with label postal inspection. Show all posts

Thursday, May 14, 2020

Abstract-New Ultra-Fast Sub-Terahertz Linear Scanner for Postal Security Screening

A. V. Shchepetilnikov, P. A. Gusikhin, V. M. Muravev, G. E. Tsydynzhapov, Yu. A. Nefyodov, A. A. Dremin.  I. V. Kukushkin


https://link.springer.com/article/10.1007/s10762-020-00692-4

To meet increasingly demanding technological needs in modern security and industrial applications involving rapid close-range screening, we have developed a 100-GHz linear scanner. Having incorporated a novel approach in terahertz sensing and an advanced IMPATT-diode signal generating technique, the proposed system offers an efficient non-destructive testing (NDT) solution that is absolutely safe, fast, highly portable, and cost-effective. The test results demonstrate outstanding capability of the scanner to provide continuous, high-throughput security screening of mail. The system can perform real-time imaging with effective resolution approaching 5 mm at conveyor speeds of up to 15 m/s.

Tuesday, June 9, 2015

A high-tech way to detect a mail bomb




By 
http://www.foxnews.com/tech/2015/06/09/hi-tech-ways-to-detect-mail-bomb/
The US Postal Service delivers more than 160 billion pieces of mail a year, so how can we tell if one of those pieces is a bomb in disguise?
A new piece of technology uses harmless, low-frequency terahertz waves to scan for dangerous threats hidden in the mail.
Without having to open suspicious packages or envelopes, the T-COGNITION system can detect hidden criminal drugs, hazardous materials and explosives disguised as harmless mail.
A German team made up of researchers from the Fraunhofer Institute for Physical Measurement Techniques IPM and Hübner developed the tech.
The T-COGNITION system is based on a terahertz scanner and could help to reduce the risk to postal workers and intended targets of the sender.
Soon after the 9/11 terrorist attacks, letters loaded with the biological weapon anthrax began surfacing in the U.S. mail. Ultimately, five Americans were killed and 17 became ill.
Last year, several letter bombs were sent to Armed Forces recruitment offices in the United Kingdom.
Letter bombs still occur in the United State and it is not just high profile people who are targets. Without the aid of technology, postal workers sometimes recognize the hallmarks of a threat and act to prevent a tragedy.
In Virginia for example, a woman sent her estranged husband a package with a bomb in it. In this instance, a postal worker recognized the threat and saved lives.
Smart, effective, and affordable technology could only increase the success of thwarting these threats.
So what’s the technology?
Is it an innocent birthday present or a bomb? Is it an innocuous letter or an explosive threat? This tech leverages terahertz to distinguish threats lurking in the mail.
"The terahertz range lies midway between microwave and infrared in the electromagnetic spectrum, and thus combines the advantages of both,” said René Beigang of Fraunhofer IPM and Dipl.-Ing, in a press release.
Similar to microwaves, terahertz waves are low-energy frequencies and ones that can readily penetrate a wide range of materials from paper and fabrics through to plastics and more.
Another big advantage is that terahertz waves, unlike x-rays, are safe to use in an unprotected environment.
It is still early days for terahertz technology and researchers continue to explore and develop applications for it.
How does T-COGNITION work?
The scanner has a retractable tray. A suspicious envelope or package can be placed on it. The current system works on postal packages the size of a standard piece of printer paper with a thickness of up to two centimeters.
T-COGNITION uses terahertz waves to reveal threats. Depending on the material in the package and what the waves have to travel through, the waves are absorbed at different frequencies within the spectral range.
Scanner detectors record the transmitted wavelengths and identify the object’s unique spectroscopic “fingerprint.” The data can then be analyzed quickly using special software. The fingerprint is then compared with those collected in a database. The hidden material in the package is then identified.
If the tech identifies a threat or something illegal like drugs, then it sounds an alarm.
It could be deployed for all sorts of mailrooms ranging from companies and schools to prisons, government agencies, and embassies.
What can you do to identify threats?
The U.S. Postal Inspection Service has put together a number of hallmark signs that indicate a letter or package may contain a threat.
According to the USPS, mail bombs may have excessive postage since a bomber may not want to have face-to-face contact with a window clerk. The return address may be fictitious or non-existent.
Another indication may be the postmark may show a different location than the return address.
Mail bombs disguised as packages may have notations on the outside like "Personal" or "Private." When the intended recipient does not usually receive personal mail at that address, then this is particularly relevant.
The packaging may also state things like "Fragile: Handle with care" or "Rush: Do not delay."
Packages that pose a threat may have distorted handwriting. Homemade labels or cut-and-paste lettering may be used for the name and address.
Several combinations of tape may be used to seal the package and there may be protruding wires, aluminum foil, or oil stains. Packages and letters that contain a threat may also have peculiar odor.
In terms of shape, letter bombs may feel rigid or appear uneven or lopsided. An irregular shape, soft spots or bulges could be signs of a package bomb.

Wednesday, April 1, 2015

TeraView kit to boost postal security


New TeraPulse 4000 imaging system installed at University of Bordeaux laboratory.
                                               Imaging drugs
http://optics.org/news/6/3/44

A European research project working to improve postal security is set to begin using new terahertz imaging equipment developed by the UK companyTeraView.
The Cambridge firm, which spun out of Toshiba Research Europe in 2001, and has close links with the nearby Cavendish Laboratory, has just shipped and installed its new portable “TeraPulse 4000” imaging and spectroscopy kit at the Laboratoire Ondes et Matière d'Aquitaine (LOMA) in Bordeaux, France.
Patrick Mounaix, a professor at LOMA with expertise in terahertz technology, is to use the system as part of the“InPoSec” project, a German-French collaboration to improve postal security.
According to TeraView’s data sheet, the benchtop-sized instrument – which is based around an ultrashort-pulsed fiber laser - covers a spectral range from 0.06 THz to 4 THz, with an optional extension to 7 THz.
This almost totally unexploited part of the electromagnetic spectrum lies between the far-infrared and microwave regions, and in theory offers a powerful new way to image and identify materials including explosives and pharmaceuticals. However, until recently systems have been based around bulky Ti:sapphire lasers to generate terahertz radiation, and as a result have only really been suitable for laboratory use.
TeraView CEO and co-founder Don Arnone said: “We have received substantial interest in the TeraPulse 4000, and are delighted by the quick acceptance of the new system by our customers.”
Art and communications applications
Having launched the new system just last month, TeraView told optics.org that it had two additional orders beyond the one already shipped to Bordeaux.
“One system will be used to look at atmospheric transmission of terahertz [frequencies] for high-bandwidth communications applications,” said the company. “The other unit will look for hidden layers below the outer surface of paintings and other pieces of fine art.”
TeraView added that it is expecting to sell more TeraPulse 4000 systems this year, with anticipated applications including the characterization of active ingredients in pharmaceuticals, explosives detection, and non-destructive materials testing.
The latest equipment features a re-written and proprietary software platform, following customer feedback on earlier incarnations.
”The new software package fully integrates the spectroscopic and imaging capabilities of the unit into one common user interface,” says the firm. “The system can also be supplied with its own LABVIEW interface to allow customers to configure the software into their own applications.”
External fibers
For the postal security application in Bordeaux, the instrument was fitted with external fibers, to provide a flexible setup that can be adapted for different experiments.
The InPoSec project, which began in early 2012 and is now in its closing stages, involves both Groupe La Poste in France and Germany’s Deutsche Post. Its overall goal is to improve the security of postal supply chains against terrorist groups and organized crime, using imaging technologies that are better suited to the application than conventional but slow and bulky X-ray systems that are really only useful for air and sea freight.
When launched last month, Arnone said of the new system: "TeraPulse represents a substantial investment by TeraView in the future of terahertz instrumentation, developed with extensive feedback from our customers around the world."
TeraView is one of many partners involved in a five-year, £6.6 million project to develop terahertz technology funded by the UK's Engineering and Physical Sciences Research Council (EPSRC) that runs until April 2017.
Called the COherent Terahertz Systems (COTS) project, it also involves the UK's Home Office, with industrial partners including the likes of Airbus, IBM and Smiths-Detection.
TeraPulse 4000
TeraPulse 4000
"It takes all of the reliability, stability and improved performance achieved over the last several years, and puts them into a smaller, lighter package with enhanced capabilities," said Arnone of the company's latest technology. "The TeraPulse 4000 is designed to serve as a versatile core unit which can be configured for a variety of laboratory, production and other industrial applications.
"We are also planning other exciting additions to the TeraPulse range over the coming months, which come out of our continued commitment to research and development of terahertz technology as well as close collaborations with our customers and partners."

Wednesday, May 21, 2014

Inspecting letters with terahertz waves



The prize-winning team presents terahertz scanner for the secure identification: Professor René Beigang and Thorsten Sprenger (from left to right). Credit: Dirk Mahler/Fraunhofer
Is it a harmless parcel or a bomb, an innocent letter or a drug shipment? A new terahertz scanner is capable of detecting illicit drugs and explosives sent by post without having to open suspicious packages or envelopes

Alert at Schloss Bellevue. A suspicious letter addressed to German President Joachim Gauck has been detected, which might contain a bomb. Not willing to take any risks, the bomb squad is called out to destroy the package. Later investigations revealed that the envelope did not contain any explosives, but better safe than sorry. A year ago, this event created turmoil in the mail sorting office in Berlin, because at the time there was no safe and simple way of reliably detecting the presence of explosives or drugs in letters and small packets. A new solution is offered by the terahertz scanner developed by researchers at the Fraunhofer Institute for Physical Measurement Techniques IPM in Kaiserslautern in collaboration with Hübner GmbH & Co. KG in Kassel. Their T-COGNITION system is capable of detecting and identifying the hidden content of suspicious packages or envelopes without having to open them. One of this year's Joseph von Fraunhofer prizes was awarded to Prof. Dr. René Beigang of Fraunhofer IPM and Dipl.-Ing. Thorsten Sprenger, Head of Public Security and Photonics at Hübner, for their work on the terahertz scanner for the secure identification of hazardous materials and illicit drugs in postal consignments.
But why did the scientists choose to use  for this application? Professor René Beigang explains: "The terahertz range lies midway between microwave and infrared in the electromagnetic spectrum, and thus combines the advantages of both." Like microwaves, these low-energy frequencies can easily penetrate paper, wood, lightweight fabrics, plastics, and ceramics. Moreover, terahertz waves generate characteristic spectra depending on the type of material they travel through, which can be analyzed quickly using intelligent software. A further significant advantage is that terahertz waves are non-ionizing and therefore safe to use in an unprotected environment, unlike X-rays. This makes the technology an interesting option for use in mail scanners.
Scaling up terahertz technology for industrial applications
Terahertz technology is still in its infancy, and until now it has found relatively few applications. The department of Material Characterization and Testing at the University of Kaiserslautern, sponsored jointly by Fraunhofer IPM and the Land of Rheinland-Pfalz, hopes to change this situation. "Our goal is to scale up  and extend its range of use to include security applications," says Beigang. The engineers at Hübner were among the first to recognize the potential of the Fraunhofer researchers' work. The company's traditional line of business is manufacturing key components for the transportation industry (e.g. rail vehicles, buses, airport technology, automotive). A new division for public security was added in 2006, when the company first started to look for cooperation partners. The mail scanner project was launched four years later, based on previous joint development projects. In the meantime, the company has brought its T-COGNITION solution onto the market.

This is how the mail scanner works. Suspicious envelopes and packages are fed into the scanner on a retractable tray. They are then exposed to terahertz waves which are absorbed at different frequencies within the spectral range depending on the substance they travel through (characteristic absorption properties). Detectors at the output of the scanner record the transmitted wavelengths. "Within a few seconds, T-COGNITION produces a spectroscopic fingerprint that allows the detected hazardous material to be compared with database samples and definitively identified," says Thorsten Sprenger.
The system triggers an alarm if the consignment contains explosives or .The system is capable of examining the content of postal items up to C4 format with a thickness of up to two centimeters. Sprenger says: "It is the ideal mailroom solution for prisons, customs offices, government agencies, company headquarters, and embassies or consulates, because it helps to improve security and protect human lives."
T-COGNITION recently received the PrismAward, the equivalent of an Oscar in the photonics world, at the Photonics West 2014 international congress in San Francisco.

Award-winning Letter Bomb Detector



SOURCE HUEBNER GmbH & Co. KG