
San Jorge Tecnológicas S.L.
San Jorge Tecnológicas S.L.
4 Projects, page 1 of 1
Open Access Mandate for Publications assignment_turned_in Project2016 - 2019Partners:CIEMAT, DETECTION TECHNOLOGY SAS, BPE EK, ADANI, CEA +8 partnersCIEMAT,DETECTION TECHNOLOGY SAS,BPE EK,ADANI,CEA,University of Alcalá,Ministry of the Interior,TOLLREGION OSLO OG AKERSHUS,HO,San Jorge Tecnológicas S.L.,INTA,DJUG,MULTIX SAFunder: European Commission Project Code: 700399Overall Budget: 4,999,790 EURFunder Contribution: 4,999,790 EURMESMERISE will develop and test a High-resolution non-intrusive scanner up to TRL 5 able to automatically detect and identify both internal and external concealed commodities being entirely independent of human operator interpretation and training and based on two complementary technologies: ultra-low-dose Multispectral Xray transmission and Infrasonic interrogation. A novel x-ray detector, in addition to a higher imaging resolution, captures 256 channels of spectroscopic information, allowing a step change in material identification. Crucially, this level of resolution has the potential to enhance the detection of narcotics and explosives concealed in the body -a highly complex problem with currently available equipment. A second subsystem for detecting externally concealed items based on a novel, intrinsically safe, technology (infrasound near-field acoustic holography) is entirely new to security screening. Low-fq MEM Micro-technology shall also be exploited to provide an automated version of non-contact pat-down. Both sub-systems will be able to work independently, or together to provide complementary information and improve the detection of externally concealed objects. Automated algorithms for both subsystems and, through data fusion techniques, for the combined system will identify chemical substances, recognise pattern and detect anomalies with100g threshold in any part of the body, including prosthetic elements or plasters. A big manufacturer of body scanners, SMEs, Univs, R&D centres, end-users and a diverse and high quality external advisory board, with a broad international contribution and connection to US counterparts provides a straightforward exploitation route. Acceptance by society will be promoted by communication activities highlighting its non-contact nature, non divest condition and the absence of the requirement for operators to view explicit images through automated detection making MESMERISE intrinsically respectful of dignity and privacy.
more_vert Open Access Mandate for Publications and Research data assignment_turned_in Project2022 - 2026Partners:COUNTERFOG, IRD, INCARLOPSA, San Jorge Tecnológicas S.L., CSIC +7 partnersCOUNTERFOG,IRD,INCARLOPSA,San Jorge Tecnológicas S.L.,CSIC,NOVAPTECH,ROMANIAN STANDARDS ASSOCIATIONASRO,CAT.AL,University of Alcalá,CENTRALNY INSTYTUT OCHRONY PRACY - PANSTWOWY INSTYTUT BADAWCZY,University of Veterinary Medicine,Institut PasteurFunder: European Commission Project Code: 101084097Overall Budget: 4,999,860 EURFunder Contribution: 4,999,860 EURIn spite of the huge number of pathogens and diseases, the number of “transmission channels” or “transport routes” for microorganisms to enter in a farm or any other Farm2Fork facility is indeed limited to just nine. Tracing or monitoring transport of a single or a few microorganisms using a particular channel will provide valuable information on the channel itself and therefore on the transport effectiveness for the whole set of microorganisms using that particular channel. HE-FARM will develop and validate a methodology -based on experimental assays and tests in lab & operational env- to assess and predict transport-channel resolved biosecurity and simultaneously increase maturity of several disruptive novel techs. A software/APP will be created to help with these procedures and proposed as a draft for a future EN standard. Prototypes of novel technologies for biosecurity will additionally be developed and validated in operational environment -including extensive and intensive cow, pig, chicken, turkey, sheep and snail farms, a slaughter and meat preparation plant and trucks: Fast Integrated air-borne virus smart detector (PRRS and Avian Flue but easily extendable to other virus with an enormous like African Swine Fever whose early detection in air in minutes will have an enormous impact) Sanitization by low-toxicity biocides & dynamic aggregation. Low-toxicity insecticides & repellents & dynamic aggregation application & Env-Friendly Insect and Arachnids barrier and prevention techs. Rapid Vehicle decon. station. Biosecure & Env-Friendly Hall & Heat Venting and Cooling. Portable Low-cost test-device for fast measuring microbiological metabolism. Cold plasma farm water sanitization. Usage and training procedures and manuals & assessment of performance method. Finally at least other 3 biosecure techs externally provided selected in an open call will be experimentally tested. Comm. & dissemination include liaising with authorities like EFSA and OIE.
more_vert Open Access Mandate for Publications and Research data assignment_turned_in Project2022 - 2025Partners:KEMEA, IGPF, San Jorge Tecnológicas S.L., MICAM LTD, CEA +9 partnersKEMEA,IGPF,San Jorge Tecnológicas S.L.,MICAM LTD,CEA,University of Oviedo,Ministry of the Interior,University of Alcalá,INTA,DJUG,Ministry of the Interior,HELLENIC POLICE,TUM,Microflown Technologies (Netherlands)Funder: European Commission Project Code: 101073899Overall Budget: 5,480,120 EURFunder Contribution: 4,999,240 EURThis project aims to improve substantially a novel technology for fast detection of drugs, explosives, weapons and illicit goods concealed on individuals and in critical cavities of the human body based on infrasound mechanical impedance interrogation, optionally complemented with other harmless and non-contact technologies. Mechanical Impedance interrogation was validated in lab -TRL4- in the multiply awarded H2020 MESMERISE Project, detecting items concealed on trunk under clothes -including critical cases like warm molded materials that remain undetected to other techologies-. The present Project aims to develop up to TRL7-8 blast-proof prototypes with detection capability extended to limbs and body cavities and improved sensitivity. Infrasound computer aided modelling, improved Artificial Intelligence, altogether with improved new infrasound generators and sensors will enable an improvement in realiability and sensitivity. Combination with other non-contact technologies like low-cost mm waves and THz point echo sensors with no image formation will be explored. Addtionally, compatibility and complementary combination of specific bioaerosols and chemical vapour detection novel tecnologies will be explored in the prototypes as well. Slight variations of the prototypes will be demonstrated in operational environments (TRL7) of customs and border authorities in EU external air, land and sea borders crossing points in Spain, Greece, Romania and Finland. Demonstrations in other operational environments like an arena or prisons will increase and broaden the impact on security of society. Additionally CE mark according to EU safety directives will be applied. Safety of the border staff will be drastically increased - not needing to touch inspected individuals-. Simultaneously, the traveller experience is totally improved. Respect to privacy and intimacy is absolute, as no contact is needed and no image is formed at any step and individuals do not have to undress at all
more_vert Open Access Mandate for Publications and Research data assignment_turned_in Project2023 - 2026Partners:ÚACH AV ČR, Joanneum Research, University of Alcalá, CSIC, ESDP +14 partnersÚACH AV ČR,Joanneum Research,University of Alcalá,CSIC,ESDP,UCG,VPF,San Jorge Tecnológicas S.L.,Pegase,Ministry of the Interior,Mirion Technologies (France),KEMEA,COUNTERFOG,WAT,AIT,SERGAS,VEPROIL KERESKEDELMI ES SZOLGALTATOKORLATOLT FELELOSSEGU TARSASAG,Mirion Technologies (United States),HELLENIC POLICEFunder: European Commission Project Code: 101121308Overall Budget: 6,718,800 EURFunder Contribution: 5,997,970 EUREmerging technologies on fast aerosol&vapour sensors and fast and massive decontamination -previously developed up to TRL5 by participants of this proposal- have demonstrated to be ideal candidates to provide universal fast and portable protection against CBRN. This project will mature these safe technologies and develop operational procedures for detection, protection, decontamination and assessment itself, and will measure their effectiveness in experimental tests and practical demonstrations in operational environment (TRL7): EX Intrinsically Safe CBRN-E aerial drone with sensors, semiautonomous navigation even in denied GNSS and automatic detection of victims. Technology and operating procedures for sheltering responders (including vehicles) against CBRN-E toxic clouds and aerosols Mass decontamination of infrastructures and vehicles tech & procedures based on aerosol dynamic aggregation. Sensors and procedures for reliable assessment of cleanliness. Mass decontamination of people (i.e. crowded arena…) Decontaminator of Respiratory System of a victim or “Lung cleaner”. Operating procedures for safe CBRN-E debris removal and excavation. Additionally, after analysis of CBRN-E associated risks in rescue and recovery operations it will develop and validate an AI modular tool for generating operating procedures for first responders operating under a CBRN-E event. These reliable useful tools and procedures at TRL7 will substantially increase safety for all first-responders (either CBRN specialized, non-specialized and even rescue-dogs) minimizing the need to enter in a contaminated area and exposure of first responder and providing smart advice and fused information. They haste a safe response and recovery reducing the number of victims and their severity as well as the environmental impact. Particularly, crowded events will be safer against CBRN episodes. Intrinsic Safety in Explosive atmospheres is key to prevent catastrophic explosions with a terrific impact.
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