CRIME: New Airport Shipping Security System Introduced
Credit: © Fraunhofer Fraunhofer IFF/Anna Mahler
Air freight being loaded. Researchers at the Fraunhofer IFF are working
with other partners on a digital fingerprint for security-sensitive air freight
in the project ESecLog. This is intended to make tampering with shipments
easily detectable in the future.
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You're writing crime fiction, or an adventure or spy novel, and a character is shipping something via airline or your story involves theft or tampering with an airline shipment. Then this is a report you should consider, the latest technology that will be introduced at a conference in October, 2014.
In the release, the authors state that this new system are, "Fingerprints for freight items." Something to consider as you develop your story.
Security is a top priority in air freight logistics but screening procedures can be very time consuming and costly. Researchers intend to boost efficiency with a new approach to digital logistics, without sacrificing the security of air freight operations.
Security is a top priority in air freight logistics but screening procedures can be very time consuming and costly. Fraunhofer researchers intend to boost efficiency with a new approach to digital logistics, without sacrificing the security of air freight operations.
Thousands of freight items are shipped by plane every day, around seventy percent of them in airliners. Stringent controls are supposed to prevent hazardous substances such as explosives from being smuggled on board. Screening procedures, such as x-ray scanning of freight, are time consuming and costly and have to be repeated in the event of suspicious circumstances. Easily verifiable features that verify that a freight item is "secure" have been lacking until now.
Researchers at the Fraunhofer Institute for Factory Operation and Automation IFF in Magdeburg are working with development partners and users such as Panalpina and Lufthansa Cargo in the joint project ESecLog to resolve the dilemma between security and efficiency: Using simple screening procedures, they aggregate features such as 3D contours or RFID identifiers into one central shipment profile for every freight item. "The trick is that we document and aggregate these features into one complete digital image. Thus, every freight item has one digital fingerprint. This delivers accurate information of freight's security status throughout the entire transport chain across operations and at any time," explains Olaf Poenicke, project manager at the Fraunhofer IFF.
Safety Wire Prevents Subsequent Tampering
The partners are working, for instance, on a marker that can be used to verify whether a freight item has already been x-rayed -- something that has not been traceable. The researchers are additionally developing an RFID seal in order to detect subsequent tampering with a shipment. To do so, they affix a transponder on a package's seal with an ultrafine safety wire. If it is opened, the wire breaks. The shipment continues to be identifiable but the screener is additionally notified that the wire has been damaged. "This technology makes it possible to even inspect entire pallets. If one of the freight items has a broken wire, the shipment concerned can be identified precisely by its ID," according to Poenicke. A pallet's contour can additionally be captured by means of a 3D scan. The pallet's contour changes if a package is subsequently placed on it.
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It will be a while, though, until the system is put to use: Now that the consortium has designed the individual systems, the technologies are in the development stage and should be operational by the end of the year. A test environment is supposed to be built in the coming year to optimize the interaction of the systems. The researchers from the Fraunhofer IFF will be presenting this project at the International Supply Chain Conference in Berlin from October 22 to 24. ESecLog is being funded by the Federal Ministry of Education and Research (BMBF).
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Story Source: Materials provided by Fraunhofer-Gesellschaft. Fraunhofer-Gesellschaft. "Fingerprints for freight items." ScienceDaily, 3 September 2014.
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