DESIGN OF A LOW POWER CARGO SECURITY DEVICE USING A MICROPOWER ULTRA-WIDEBAND IMPULSE RADAR

Each year, thousands of cargo containers are broken into during shipping, costing billions of dollars in lost and damaged goods. In addition to removing its contents, intruders can also add unwanted and dangerous materials to a container, posing a threat to National Security. The possibilities of ca...

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Main Author: Wihl, Brian M
Format: Others
Published: DigitalCommons@CalPoly 2013
Subjects:
Online Access:https://digitalcommons.calpoly.edu/theses/1132
https://digitalcommons.calpoly.edu/cgi/viewcontent.cgi?article=2200&context=theses
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spelling ndltd-CALPOLY-oai-digitalcommons.calpoly.edu-theses-22002021-09-14T05:01:36Z DESIGN OF A LOW POWER CARGO SECURITY DEVICE USING A MICROPOWER ULTRA-WIDEBAND IMPULSE RADAR Wihl, Brian M Each year, thousands of cargo containers are broken into during shipping, costing billions of dollars in lost and damaged goods. In addition to removing its contents, intruders can also add unwanted and dangerous materials to a container, posing a threat to National Security. The possibilities of cargo container break-ins require that the containers go through check points at which they are physically searched. These searches often require the opening of the container, unloading and inspecting all cargo, and then loading the container and resealing it. This is a long and costly process. Because of the high costs of break-ins and inspections, many security devices have been developed to ensure the safety and detect the tampering of cargo containers. Most of these mechanisms involve more intricate door locks and electronic seals that are able to add a degree of security to the containers. Other “smart” cargo security devices exist, which employ a variety of sensors to detect intrusion, however, none of the current solutions are reliable and practical enough to eliminate the necessity for frequent inspection of cargo containers. The shipping industry is in need of a reliable, unobtrusive, low-cost, low-effort cargo security device. Over the last two decades, Lawrence Livermore National Laboratory (LLNL) has been developing a micropower impulse radar capable of detecting objects and motion within a short to medium range. Due to its past uses for intrusion and motion detection, the LLNL micropower impulse radar is a top prospect for a sensor technology used in a cargo security device. This paper describes the design of a low-power, low-cost cargo security device which uses the LLNL micropower impulse radar for the detection of shipping container intrusions. With the evaluation of the impulse radar as well as various other sensors, a device was created which successfully detected intrusions over 98% of the time with the capability of lasting 5 to 6 months when powered by two AA batteries. 2013-12-01T08:00:00Z text application/pdf https://digitalcommons.calpoly.edu/theses/1132 https://digitalcommons.calpoly.edu/cgi/viewcontent.cgi?article=2200&context=theses Master's Theses DigitalCommons@CalPoly Ultra-wideband Cargo Security Device Impulse Radar Electrical and Electronics Hardware Systems
collection NDLTD
format Others
sources NDLTD
topic Ultra-wideband
Cargo Security Device
Impulse Radar
Electrical and Electronics
Hardware Systems
spellingShingle Ultra-wideband
Cargo Security Device
Impulse Radar
Electrical and Electronics
Hardware Systems
Wihl, Brian M
DESIGN OF A LOW POWER CARGO SECURITY DEVICE USING A MICROPOWER ULTRA-WIDEBAND IMPULSE RADAR
description Each year, thousands of cargo containers are broken into during shipping, costing billions of dollars in lost and damaged goods. In addition to removing its contents, intruders can also add unwanted and dangerous materials to a container, posing a threat to National Security. The possibilities of cargo container break-ins require that the containers go through check points at which they are physically searched. These searches often require the opening of the container, unloading and inspecting all cargo, and then loading the container and resealing it. This is a long and costly process. Because of the high costs of break-ins and inspections, many security devices have been developed to ensure the safety and detect the tampering of cargo containers. Most of these mechanisms involve more intricate door locks and electronic seals that are able to add a degree of security to the containers. Other “smart” cargo security devices exist, which employ a variety of sensors to detect intrusion, however, none of the current solutions are reliable and practical enough to eliminate the necessity for frequent inspection of cargo containers. The shipping industry is in need of a reliable, unobtrusive, low-cost, low-effort cargo security device. Over the last two decades, Lawrence Livermore National Laboratory (LLNL) has been developing a micropower impulse radar capable of detecting objects and motion within a short to medium range. Due to its past uses for intrusion and motion detection, the LLNL micropower impulse radar is a top prospect for a sensor technology used in a cargo security device. This paper describes the design of a low-power, low-cost cargo security device which uses the LLNL micropower impulse radar for the detection of shipping container intrusions. With the evaluation of the impulse radar as well as various other sensors, a device was created which successfully detected intrusions over 98% of the time with the capability of lasting 5 to 6 months when powered by two AA batteries.
author Wihl, Brian M
author_facet Wihl, Brian M
author_sort Wihl, Brian M
title DESIGN OF A LOW POWER CARGO SECURITY DEVICE USING A MICROPOWER ULTRA-WIDEBAND IMPULSE RADAR
title_short DESIGN OF A LOW POWER CARGO SECURITY DEVICE USING A MICROPOWER ULTRA-WIDEBAND IMPULSE RADAR
title_full DESIGN OF A LOW POWER CARGO SECURITY DEVICE USING A MICROPOWER ULTRA-WIDEBAND IMPULSE RADAR
title_fullStr DESIGN OF A LOW POWER CARGO SECURITY DEVICE USING A MICROPOWER ULTRA-WIDEBAND IMPULSE RADAR
title_full_unstemmed DESIGN OF A LOW POWER CARGO SECURITY DEVICE USING A MICROPOWER ULTRA-WIDEBAND IMPULSE RADAR
title_sort design of a low power cargo security device using a micropower ultra-wideband impulse radar
publisher DigitalCommons@CalPoly
publishDate 2013
url https://digitalcommons.calpoly.edu/theses/1132
https://digitalcommons.calpoly.edu/cgi/viewcontent.cgi?article=2200&context=theses
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