7,196 research outputs found

    Space shuttle search and rescue experiment using synthetic aperture radar

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    The feasibility of a synthetic aperture radar for search and rescue applications was demonstrated with aircraft experiments. One experiment was conducted using the ERIM four-channel radar and several test sites in the Michigan area. In this test simple corner-reflector targets were successfully imaged. Results from this investigation were positive and indicate that the concept can be used to investigate new approaches focused on the development of a global search and rescue system. An orbital experiment to demonstrate the application of synthetic aperture radar to search and rescue is proposed using the space shuttle

    Technical Workshop: Advanced Helicopter Cockpit Design

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    Information processing demands on both civilian and military aircrews have increased enormously as rotorcraft have come to be used for adverse weather, day/night, and remote area missions. Applied psychology, engineering, or operational research for future helicopter cockpit design criteria were identified. Three areas were addressed: (1) operational requirements, (2) advanced avionics, and (3) man-system integration

    Remote Sensing Application in the Maritime Search and Rescue

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    Improvement of the maritime traffic control in Chile

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    Gap filling of the CALYPSO HF radar sea surface current data through past measurements and satellite wind observations

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    High frequency (HF) radar installations are becoming essential components of operational real-time marine monitoring systems. The underlying technology is being further enhanced to fully exploit the potential of mapping sea surface currents and wave fields over wide areas with high spatial and temporal resolution, even in adverse meteo-marine conditions. Data applications are opening to many different sectors, reaching out beyond research and monitoring, targeting downstream services in support to key national and regional stakeholders. In the CALYPSO project, the HF radar system composed of CODAR SeaSonde stations installed in the Malta Channel is specifically serving to assist in the response against marine oil spills and to support search and rescue at sea. One key drawback concerns the sporadic inconsistency in the spatial coverage of radar data which is dictated by the sea state as well as by interference from unknown sources that may be competing with transmissions in the same frequency band. This work investigates the use of Machine Learning techniques to fill in missing data in a high resolution grid. Past radar data and wind vectors obtained from satellites are used to predict missing information and provide a more consistent dataset.peer-reviewe

    Threat expert system technology advisor

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    A prototype expert system was developed to determine the feasibility of using expert system technology to enhance the performance and survivability of helicopter pilots in a combat threat environment while flying NOE (Nap of the Earth) missions. The basis for the concept is the potential of using an Expert System Advisor to reduce the extreme overloading of the pilot who flies NOE mission below treetop level at approximately 40 knots while performing several other functions. The ultimate goal is to develop a Threat Expert System Advisor which provides threat information and advice that are better than even a highly experienced copilot. The results clearly show that the NOE pilot needs all the help in decision aiding and threat situation awareness that he can get. It clearly shows that heuristics are important and that an expert system for combat NOE helicopter missions can be of great help to the pilot in complex threat situations and in making decisions

    Vessel Traffic Services, towards e-Navigation : the role of Oceanic VTS in global maritime surveillance

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    This thesis presents the study and analysis of the Vessel Traffic Services (VTS), from its origins to the present, with further evaluation of future trends. Examining the current trend in terms of technologies that are being applied in the maritime sector, the dissertation focuses on the future to draw a new paradigm. This envisages a scenario at a planetary level, following a single global traffic management system, which would create a model of the global VTS Operator. A new assignment is proposed, according to this third dimension, with Port VTS being the first level, the Coastal VTS second, and with the Oceanic VTS projected into the future, which is a substantial proposal. The foundation is based on EU projects, the most ambitious of which, currently underway, being Sea Traffic Management (STM), with a scope greater than Europe, and also on IALA VTS and ENAV Committee Working Groups, concerning the future of VTS. The study includes the reference documentation from the IMO, in resolution format, and that of the IALA, under Standards, Recommendations and Guidelines. From the first recognition of the IMO to the present, the guidelines for VTS have undergone three updates, which are analysed and compared. VTS are considered aids to navigation, AtoN, which contribute to safety of life at sea, safety and efficiency of navigation and protection of the marine environment, and are linked to ship traffic activity. Both their attributions and the implementation of VTS centres have increased over time. In addition to this, the evolution of the tools used by the VTS is examined, from its earliest stages with only two pieces of equipment, the VHF radio, and the radar. The VTS system began by looking at the air traffic model but, later, the maritime nature created necessary differentiation in terms of management and procedures. Digital technologies applied to the maritime sector take air traffic controllers’ models as a reference, and the current VTS Operator profession will acquire analogies, such as sharing route plans and checking digital inputs. This highly specialised profession is facing the challenges of satellite technology, global interconnection, and the arrival of Maritime Autonomous Surface Ships (MASS). New technologies bring the possibility of sharing information and controlling traffic on a global scale, beyond the territorial sea, and this scenario will make standardisation increasingly necessary throughout the maritime sector. The identification of various models of traffic management, examination of systems operating specifically in the Spanish State and reflection on the diversity that prevails is also included. Based on fieldwork, the thesis determines that the future complexities that will emerge from maritime traffic will require exhaustive risk assessment and analysis. The challenges to be faced involve maritime communications via satellite and digital technology, in the context of ‘e-Navigation’ (coined by the IMO), which will provide emerging tools, such as VDES (next generation of AIS), and a planetary-scale information exchange framework for VTS worldwide.Aquesta tesi presenta l'estudi i l'anàlisi dels Serveis de Tràfic Marítim (VTS) des dels seus orígens fins al present, avaluant tendències futures. Examinant el corrent actual en referència a les tecnologies que s'estan aplicant al sector marítim, la tesi s’orienta al futur per delinear un nou paradigma. Un escenari a nivell planetari, que segueix un únic sistema de gestió de tràfic global, i que crearà un model d'operador VTS global. Es proposa una nova assignació acord a aquesta tercera dimensió, sent el VTS Port, el primer, el VTS Costaner, el segon, i es projecta a futur el VTS Oceànic, que és la proposta substancial. La fundació es basa en projectes de la UE, on és el més ambiciós i actualment en marxa el Sea Traffic Management (STM), amb un abast superior a l'europeu i amb els grups de treball del Comitè VTS i ENAV de la IALA sobre l’esdevenidor del VTS. L’estudi inclou documentació de referència procedent de la IMO, en format resolucions; i la procedent de la IALA, sota estàndards, recomanacions i directrius. Des del primer reconeixement de la IMO fins ara, les directrius per als VTS han passat per tres actualitzacions, que s'analitzen i es comparen. Els VTS es consideren ajuts a la navegació, AtoN, que contribueixen a la seguretat de la vida humana al mar, la seguretat i l'eficiència de la navegació i la protecció del medi marí i estan vinculats a l'activitat del trànsit de vaixells, i tant les seves atribucions com la implantació de centres VTS han augmentat al llarg de temps. A més a més d'això, s'examina l'evolució de les eines utilitzades pel VTS, des de les seves primeres etapes amb només dos equips, la ràdio VHF i el radar. El sistema VTS es va iniciar fixant-se en el model aeri, però posteriorment la naturalesa marítima els va diferenciar pel que fa a gestió i procediments. Les tecnologies digitals aplicades al sector marítim prenen com a referència models similars als controladors aeris, i l'actual professió d'Operador VTS assolirà analogies com ara compartir plans de ruta amb els vaixells i comprovació d'inputs digitals. Una professió altament especialitzada que s'enfronta als reptes de la tecnologia satel·litària, la interconnexió mundial i l'arribada dels vaixells marítims autònoms de superfície (MASS). Les noves tecnologies porten la possibilitat de compartir informació i controlar el tràfic a escala global, més enllà del mar territorial, i aquest escenari farà que l'estandardització sigui cada cop més necessària a tot el sector marítim. Es considera la identificació de diversos models de gestió del tràfic, els sistemes que operen específicament a l'Estat espanyol i la reflexió sobre la diversitat que preval. A partir d'un treball de camp, la tesi determina que les complexitats que emergiran del tràfic marítim requeriran avaluació i anàlisi de riscos exhaustius. Els reptes que cal afrontar són aquells que inclouen les comunicacions marítimes via satèl·lit i la tecnologia digital en el context de l'e-Navegació, encunyat per la IMO, que proporcionaran eines emergents, com els VDES (propera generació de l’AIS), i un marc d’intercanvi d’informació a escala planetària per als VTS de tot el món.Postprint (published version

    Remote sensing in the coastal and marine environment. Proceedings of the US North Atlantic Regional Workshop

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    Presentations were grouped in the following categories: (1) a technical orientation of Earth resources remote sensing including data sources and processing; (2) a review of the present status of remote sensing technology applicable to the coastal and marine environment; (3) a description of data and information needs of selected coastal and marine activities; and (4) an outline of plans for marine monitoring systems for the east coast and a concept for an east coast remote sensing facility. Also discussed were user needs and remote sensing potentials in the areas of coastal processes and management, commercial and recreational fisheries, and marine physical processes

    Interaction of marine geodesy, satellite technology and ocean physics

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    The possible applications of satellite technology in marine geodesy and geodetic related ocean physics were investigated. Four major problems were identified in the areas of geodesy and ocean physics: (1) geodetic positioning and control establishment; (2) sea surface topography and geoid determination; (3) geodetic applications to ocean physics; and (4) ground truth establishment. It was found that satellite technology can play a major role in their solution. For solution of the first problem, the use of satellite geodetic techniques, such as Doppler and C-band radar ranging, is demonstrated to fix the three-dimensional coordinates of marine geodetic control if multi-satellite passes are used. The second problem is shown to require the use of satellite altimetry, along with accurate knowledge of ocean-dynamics parameters such as sea state, ocean tides, and mean sea level. The use of both conventional and advanced satellite techniques appeared to be necessary to solve the third and fourth problems
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