696 research outputs found

    Acoustic System Development for Neutrino Underwater Detectors

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    The main objective of this research is the design and development of two different underwater acoustic emitters aimed to the deep-sea KM3NeT neutrino telescope, more specifically for the Acoustic Positioning System (APS) and for the calibration of the acoustic neutrino detection technique. The KM3NeT project is a new optical-based deep-sea neutrino telescope, currently under construction. The main objectives of the KM3NeT telescope are the discovery and observation of high-energy neutrino sources in the Universe and the determination of the mass hierarchy of neutrinos. The KM3NeT detectors consist of three-dimensional arrays of light sensor modules distributed over large volumes of the transparent water in the deep Mediterranean Sea. The sensor modules register the time of arrival of the light and the brightness of the light to reconstruct the direction and energy of the neutrino. In order to achieve an accurate deployment of the mechanical structures and a precise reconstruction of neutrino induced events, the telescope includes an APS as mandatory sub-system that provides an accurate position of the mechanical structures in real time. Additionally, the APS could also be an excellent tool to study the feasibility of an acoustic neutrino detector and a possible correlation between acoustic and optical signals. The new detector KM3NeT is an excellent opportunity to continue with the study of the acoustic neutrino detection. The acoustic detection would allow the combination of the two neutrino detection techniques for a hybrid underwater neutrino telescope, especially considering that the optical based telescope needs acoustic sensors to monitor the position of the sensors. An Acoustic Beacon (AB) as part of the APS of KM3NeT has been developed in this thesis. Previously, the first emitter prototype was developed and it was installed in previous neutrino telescopes, such as ANTARES and NEMO, in order to be tested in situ. The analyses of the in situ test with the prototypes were performed as part of this thesis. The results obtained from the tests showed that the requirements for the positioning system are accomplished, just needing few improvements for the final version. The final version of the AB is composed by a piezo-ceramic transducer and an electronic board integrated in a single piece in a cylindrical hard-anodized aluminium vessel. The design and the work done for a precise laboratory test was performed achieving optimal results in all aspects As second main work performed in this thesis, a parametric transducer array able to mimic the acoustic signal generated by Ultra-High Energy (UHE) neutrino interaction in water was designed and developed. The first part was designing a single transducer able to emit parametrically the acoustic neutrino signal. Afterwards, the design of the complete array system composed of few units was performed in order to achieve a more energetic and directional bipolar pulse.El objetivo principal de esta investigación es el diseño y desarrollo de dos tipos de emisores acústicos diferentes para ser utilizados en el telescopio submarino de neutrinos KM3NeT, en concreto, uno como emisor en el sistema de posicionamiento acústico (APS) y otro para la calibración de la detección acústica de neutrinos. El proyecto KM3NeT es un telescopio óptico de neutrinos, que actualmente está en fase de construcción, y está ubicado en las profundidades del mar. Los objetivos principales del telescopio son el descubrimiento y la observación de las fuentes que originan los neutrinos de alta energía en el universo y la determinación de la jerarquía de masas de los neutrinos. Los detectores de KM3NeT consisten en conjuntos tridimensionales de módulos de sensores de luz distribuidos en grandes volúmenes de agua en las profundidades del mar Mediterráneo. Los módulos de sensores ópticos registran el tiempo de llegada de la luz y el brillo de la luz para reconstruir la dirección y la energía del neutrino. Con objeto de lograr una implementación correcta de las estructuras mecánicas y una reconstrucción precisa de los eventos del neutrino, el telescopio incluye el APS como subsistema necesario para proporcionar la posición exacta de las estructuras mecánicas en tiempo real. Además, el APS puede ser una herramienta excelente para estudiar la viabilidad de un detector de neutrinos acústico y de una posible correlación entre la señal acústica y óptica. El nuevo detector KM3NeT es una oportunidad para continuar con el estudio de detección acústica de neutrinos. La detección acústica permitiría la combinación de las dos técnicas de detección de neutrinos para un telescopio submarino de neutrinos híbrido, y más aún, teniendo en cuenta que el telescopio óptico necesita de sensores acústicos para monitorizar la posición de los sensores. En esta tesis, por un lado, se ha desarrollado un emisor acústico (AB) como parte del APS de KM3NeT. Previamente, se desarrolló el primer prototipo del emisor acústico, el cual se instaló en anteriores telescopios de neutrinos, concretamente en ANTARES y NEMO, con el fin de comprobar su funcionamiento in situ. Como parte de la tesis, se realizaron los análisis de las pruebas in situ y los resultados obtenidos mostraron que cumplía los requisitos del sistema de posicionamiento, únicamente se necesitaron algunas mejoras para la versión final. La versión final del AB está compuesta por un transductor piezo-cerámico y una placa electrónica integrado en una sola pieza en un recipiente cilíndrico de aluminio anodizado. El diseño y el trabajo realizado para una calibración precisa de laboratorio se llevó a cabo, logrando resultados óptimos en todos los aspectos requeridos. El segundo trabajo principal desarrollado en esta tesis consistió en el diseño de un array paramétrico de transductores capaz de imitar la señal acústica generada por la interacción del neutrino de ultra-alta energía (UHE) en el agua. La primera parte de su diseño se centró en el desarrollo de un transductor individual capaz de emitir paramétricamente la señal acústica del neutrino. Posteriormente, se realizó el diseño del array completo compuesto por varias unidades del transductor diseñado, con el objeto de lograr un pulso bipolar más enérgico y directivo.L'objectiu principal d'esta investigació és el disseny i desenvolupament de dos tipus d'emissors acústics diferents per a ser utilitzats en el telescopi submarí de neutrins KM3NET, en concret, ú com emissor en el sistema de posicionament acústic (APS) i altre per a la calibració de la detecció acústica de neutrins. El projecte KM3NET és un telescopi òptic de neutrins, que actualment està en fase de construcció, i està ubicat en les profunditats del mar. Els objectius principals del telescopi són el descobriment i l'observació de les fonts que originen els neutrins d'alta energia en l'univers i la determinació de la jerarquia de masses dels neutrins. Els detectors de KM3NET consisteixen en conjunts tridimensionals de mòduls de sensors de llum distribuïts en gran volums d'aigua en el Mediterrani. Els mòduls de sensors òptics registren el temps d'aplegada de la llum i la intensitat de la llum per a reconstruir la direcció i l'energia del neutrí. Com objectiu d'aconseguir una implementació correcta de les estructures mecàniques i una reconstrucció precisa dels events del neutrí, el telescopi inclou l'APS com subsistema necessari per a proporcionar la posició exacta de les estructures mecàniques en temps real. A mes, l'APS pot ser una ferramenta excel¿lent per a estudiar la viabilitat d'un detector de neutrins acústic i d'una possible correlació entre el senyal acústic i òptic. El nou detector KM3NET és una oportunitat per a continuar en l'estudi de detecció acústica del neutrí. La detecció acústica permetria la combinació de les dos tècniques de detecció de neutrins per a un telescopi submarí de neutrins híbrid, i més encara, tenint en compte que el telescopi òptic necessita de sensors acústics per a monitoritzar la posició dels sensors. En aquesta tesis, per un costat, s'ha dissenyat un emissor acústic (AB) com part de l'APS de KM3NET. Prèviament, se desenvolupà el primer prototip de l'emissor acústic, el qual s'instal¿là en anteriors telescopis de neutrins, concretament en ANTARES i NEMO, amb el fi de comprovar-se el seu funcionament in situ. Com part de la tesis, es realitzaren els anàlisis de les proves in situ i els resultats obtinguts mostraren que complia els requisits del sistema de posicionament, únicament necessitant-se d'algunes millores per a la versió final. La versió final de l'AB està composta per un transductor piezo-ceràmic i una placa electrònica integrats en una sola peça en un recipient cilíndric d'alumini anoditzat. El disseny i el treball realitzat per a una calibració precisa de laboratori es va dur a terme, aconseguint resultats òptims en tots els aspectes requerits. Com segon treball principal desenvolupat en esta tesis, s'ha dissenyat un array paramètric de transductors capaç d'imitar el senyal acústic generat per l'interacció del neutrí d'ultra-alta energia (UHE) en l'aigua. La primera part de disseny es centrà en el desenvolupament d'un transductor individual capaç d'emetre paramètricament el senyal acústic del neutrí. Posteriorment, es va realitzar el disseny de l'array complet compost per varies unitats del transductor dissenyat, amb l'objectiu d'aconseguir un pols bipolar més energètic i directiu.Saldaña Coscollar, M. (2017). Acoustic System Development for Neutrino Underwater Detectors [Tesis doctoral no publicada]. Universitat Politècnica de València. https://doi.org/10.4995/Thesis/10251/85981TESI

    Diseño y desarrollo de la electrónica de los emisores acústicos para los sistemas de posicionamiento y calibración de telescopios submarinos de neutrinos

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    Tesis por compendioNeutrino telescopes are a new way of looking at the Universe. For more than a decade these structures are being designed to study the Universe from a new point of view, that is, from the particles generated in the cosmic accelerators of particles. These infrastructures are not only useful to study the Universe, but they can also be used in the field of Particle Physics and even in the study of underwater life. Most of these telescopes are based on the detection of the so-called Cherenkov light using photomultipliers, the difference between them lies in the medium in which they are located (ice or water) and in the infrastructure used. Specifically, European telescopes mount these photomultipliers in an underwater vertical structure anchored at great depth, which is under the influence of sea currents. For this reason they suffer displacements that affect the location of the photomultipliers and it becomes necessary to implement a positioning system for the telescope to be functional. For this, an acoustic system consisting of emitters anchored to the sea floor and receivers located at the different levels of the vertical structure is used. One of the objectives of the present thesis is the development of these acoustic emitters. For this purpose we have developed different laboratory prototypes with different features until obtaining an improved prototype that was installed and tested in ANTARES and NEMO telescopes. This showed that the prototype worked perfectly within the established requirements and then, we proceed to design a final version of the much more powerful and functional emitter, acoustic beacon, to be mounted inside aluminum vessels together with an omnidirectional acoustic transducer, which will be located in anchored positions of the new KM3NeT neutrino telescope. In collaboration with the MSM Company, 18 acoustic beacons were developed for KM3NeT-ARCA being two of them installed in the first marine campaign at the end of 2015, and being able then to verify their correct operation. On the other hand, interaction of ultraenergetic neutrinos with matter also produces a thermoacoustic pulse with bipolar form, axial symmetry and highly directive. The feasibility of the acoustic detection technique and the possibility of implementing it in these telescopes have been under study for years. In order to test and calibrate this technique, it is necessary to have an acoustic emitter system able of generating a signal similar to the neutrino signature. This has been the second objective developed in this thesis. To achieve this objective, a compact and versatile calibrator based on an array of acoustic transducers using parametric generation has been designed. Given the complexity of the pulse to emulate and the novelty of the technique to be used, it has been necessary to carry out different laboratory tests in order to obtain suitable transducers and electronics able of making them to work at the required power and efficiency. The positive results obtained in this line suggest that we will be able to obtain a full functional neutrino acoustic calibrator soon. Finally, I would like to mention that I have participated in the different research and activities described in the thesis, putting especial emphasis in the development of the electronics and the software/firmware of the developed acoustic emitters.Los telescopios de neutrinos son una nueva forma de observar el Universo. Desde hace más de una década se están diseñando este tipo de estructuras con el propósito de estudiar el Universo desde un nuevo punto de vista, el de las partículas que se generan en los aceleradores de partículas cósmicos. Estas infraestructuras no solo se limitan al estudio del Universo, sino que también pueden ser utilizadas en el campo de la Física de partículas e incluso en el estudio de la vida submarina. La mayoría de estos telescopios se basan en la detección de la llamada luz de Cherenkov mediante fotomultiplicadores, la diferencia entre ellos radica en el medio en que se ubican (hielo o agua) y en la infraestructura utilizada. Concretamente, los telescopios europeos montan dichos fotomultiplicadores en una estructura vertical submarina anclada a gran profundidad, la cual está sometida a la influencia de las corrientes marinas. Por este motivo sufren desplazamientos que afectan a la localización de los fotomultiplicadores y se hace necesaria la implementación de un sistema de posicionamiento para que el telescopio sea funcional. Para ello se utiliza un sistema acústico consistente en unos emisores anclados al suelo marino y unos receptores situados en los diferentes niveles de la estructura vertical. Uno de los objetivos de la presente tesis es el desarrollo de estos emisores acústicos. Con este fin se han desarrollado diferentes prototipos de laboratorio con los que se han ido escalando prestaciones hasta obtener un prototipo que ha sido instalado y testeado en los telescopios ANTARES y NEMO. Así se demostró que el prototipo funcionaba perfectamente dentro de los requisitos establecidos, pasándose a diseñar una versión final del emisor acústico mucho más potente y funcional para ser montada dentro de vasijas de aluminio junto con un traductor omnidireccional en las anclas del nuevo telescopio de neutrinos KM3NeT. Conjuntamente con la empresa MSM se elaboraron 18 equipos para KM3NeT-ARCA, dos de los cuales fueron instalados en la primera campaña marina a finales de 2015 comprobándose su correcto funcionamiento. Por otro lado, la interacción de los neutrinos ultraenergéticos con la materia también produce un pulso termoacústico con forma bipolar, simetría axial y altamente directivo. Desde hace años se está estudiando la viabilidad de la técnica de detección acústica y la posibilidad de implementarla en dichos telescopios. Para poder poner a prueba y calibrar dicha técnica es necesario disponer de un sistema emisor acústico que sea capaz de generar una señal similar a la descrita. Este ha sido el segundo objetivo desarrollado en esta tesis. Para ello se ha diseñado un calibrador compacto y versátil basado en un array de transductores acústicos usando generación paramétrica. Dada la complejidad del pulso a emular y lo novedoso de la técnica a utilizar, se ha requerido la realización de numerosas pruebas de laboratorio con el fin de conseguir unos transductores adecuados y la electrónica capaz de hacerlos funcionar a la potencia y eficiencia requerida. Los positivos resultados obtenidos en esta línea hacen prever que, en breve, podremos obtener un calibrador acústico de neutrinos funcional. Finalmente, cabe reseñar que he participado en las diferentes investigaciones y actividades que se describen en la tesis, siendo mi cometido principal el desarrollo tanto de la electrónica como de los diferentes softwares/firmwares implicados en los emisores acústicos desarrollados.Els telescopis de neutrins són una nova forma d'observar l'Univers. Des de fa més d'una dècada s'estan dissenyant aquest tipus d'estructures amb el propòsit d'estudiar l'Univers des d'un nou punt de vista, el de les partícules que es generen en els acceleradors de partícules còsmics. Estes infraestructures no sols es limiten a l'estudi de l'Univers, sinó que també poden ser utilitzades en el camp de la Física de partícules i fins i tot en l'estudi de la vida submarina. La majoria d'aquests telescopis es basen en la detecció de l'anomenada llum de Cherenkov per mitjà de fotomultiplicadors, la diferència entre ells radica en el mig en què s'ubiquen (gel o aigua) i en la infraestructura utilitzada. Concretament, els telescopis europeus munten dits fotomultiplicadors en una estructura vertical submarina ancorada a gran profunditat, la qual està sotmesa a la influència dels corrents marins. Per este motiu pateixen desplaçaments que afecten a la localització dels fotomultiplicadors i es fa necessària la implementació d'un sistema de posicionament per a què el telescopi siga funcional. Per a això s'utilitza un sistema acústic consistent en uns emissors ancorats al sòl marí i uns receptors situats en els diferents nivells de l'estructura vertical. Un dels objectius de la present tesi és el desenvolupament d'aquests emissors acústics. Amb este fi s'han desenvolupat diferents prototips de laboratori amb els quals s'han anat escalant prestacions fins a obtindre un prototip que ha sigut instal·lat i testeat en els telescopis ANTARES i NEMO. Així es va demostrar que el prototip funcionava perfectament dins dels requisits establerts, passant-se a dissenyar una versió final de l'emissor acústic molt més potent i funcional per a ser muntada dins d'atuells d'alumini junt amb un traductor omnidireccional en les àncores del nou telescopi de neutrins KM3NeT. Conjuntament amb l'empresa MSM es van elaborar 18 equips per a KM3NeT-ARCA, dos dels quals van ser instal·lats en la primera campanya marina a finals de 2015 comprovant-se el seu correcte funcionament. D'altra banda, la interacció dels neutrins ultraenergètics amb la matèria també produeix un pols termoacústic amb forma bipolar, simetria axial i altament directiu. Des de fa anys s'està estudiant la viabilitat de la tècnica de detecció acústica i la possibilitat d'implementar-la en els esmentats telescopis. Per a poder posar a prova i calibrar esta tècnica és necessari disposar d'un sistema emissor acústic que siga capaç de generar un senyal semblant al descrit. Aquest ha sigut el segon objectiu desenvolupat en aquesta tesi. Per a això s'ha dissenyat un calibrador compacte i versàtil basat en un array de transductores acústics utilitzant generació paramètrica. Donada la complexitat del pols a emular i la novetat de la tècnica a utilitzar, s'ha requerit la realització de nombroses proves de laboratori a fi d'aconseguir uns transductors adequats i l'electrònica capaç de fer-los funcionar a la potència i eficiència requerida. Els positius resultats obtinguts en esta línia fan preveure que, en breu, podrem obtindre un calibrador acústic de neutrins funcional. Finalment, cal ressenyar que he participat en les diferents investigacions i activitats que es descriuen en la tesi, sent la meua comesa principal el desenvolupament tant de l'electrònica com dels diferents softwares/firmwares implicats en els emissors acústics desenvolupats.Llorens Alvarez, CD. (2017). Diseño y desarrollo de la electrónica de los emisores acústicos para los sistemas de posicionamiento y calibración de telescopios submarinos de neutrinos [Tesis doctoral no publicada]. Universitat Politècnica de València. https://doi.org/10.4995/Thesis/10251/88401TESISCompendi

    HYPERSPECTRAL LINE-SCANNING MICROSCOPY FOR HIGH-SPEED MULTICOLOR QUANTUM DOT TRACKING

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    One of the challenges in studying protein interactions in live cells lies in the capacity to obtain both spatial and temporal information that is sufficient to extend existing knowledge of the dynamics and interactions, especially when tracking proteins at high density. Here we introduce a high-speed laser line-scanning hyperspectral microscope that is designed to track quantum dot labeled proteins at 27 frames/sec over an area of 28 um2 using 128 spectral channels spanning the range from 500 to 750 nm. This instrument simultaneously excites 8 species of quantum dots and employs a custom prism spectrometer and high speed EMCCD to obtain spectral information that is then used to distinguish and track individual probes at high density. These emitters are localized to within 10s of nm in each frame and reconstructed trajectories yield information of the protein dynamics and interactions. This manuscript describes the design, implementation, characterization, and application of a high-speed laser line-scanning hyperspectral microscope (HSM). The intended primary application is that of investigating the dynamics of transmembrane antibody receptors using quantum dot labeled immunoglobulin E (QD-IgE). Several additional examples demonstrate other advantages and applications of this method, including 3D hyperspectral imaging of live cells and hyperspectral superresolution imaging

    Signal Subspace Processing in the Beam Space of a True Time Delay Beamformer Bank

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    A number of techniques for Radio Frequency (RF) source location for wide bandwidth signals have been described that utilize coherent signal subspace processing, but often suffer from limitations such as the requirement for preliminary source location estimation, the need to apply the technique iteratively, computational expense or others. This dissertation examines a method that performs subspace processing of the data from a bank of true time delay beamformers. The spatial diversity of the beamformer bank alleviates the need for a preliminary estimate while simultaneously reducing the dimensionality of subsequent signal subspace processing resulting in computational efficiency. The pointing direction of the true time delay beams is independent of frequency, which results in a mapping from element space to beam space that is wide bandwidth in nature. This dissertation reviews previous methods, introduces the present method, presents simulation results that demonstrate the assertions, discusses an analysis of performance in relation to the Cramer-Rao Lower Bound (CRLB) with various levels of noise in the system, and discusses computational efficiency. One limitation of the method is that in practice it may be appropriate for systems that can tolerate a limited field of view. The application of Electronic Intelligence is one such application. This application is discussed as one that is appropriate for a method exhibiting high resolution of very wide bandwidth closely spaced sources and often does not require a wide field of view. In relation to system applications, this dissertation also discusses practical employment of the novel method in terms of antenna elements, arrays, platforms, engagement geometries, and other parameters. The true time delay beam space method is shown through modeling and simulation to be capable of resolving closely spaced very wideband sources over a relevant field of view in a single algorithmic pass, requiring no course preliminary estimation, and exhibiting low computational expense superior to many previous wideband coherent integration techniques

    Signal Subspace Processing in the Beam Space of a True Time Delay Beamformer Bank

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    A number of techniques for Radio Frequency (RF) source location for wide bandwidth signals have been described that utilize coherent signal subspace processing, but often suffer from limitations such as the requirement for preliminary source location estimation, the need to apply the technique iteratively, computational expense or others. This dissertation examines a method that performs subspace processing of the data from a bank of true time delay beamformers. The spatial diversity of the beamformer bank alleviates the need for a preliminary estimate while simultaneously reducing the dimensionality of subsequent signal subspace processing resulting in computational efficiency. The pointing direction of the true time delay beams is independent of frequency, which results in a mapping from element space to beam space that is wide bandwidth in nature. This dissertation reviews previous methods, introduces the present method, presents simulation results that demonstrate the assertions, discusses an analysis of performance in relation to the Cramer-Rao Lower Bound (CRLB) with various levels of noise in the system, and discusses computational efficiency. One limitation of the method is that in practice it may be appropriate for systems that can tolerate a limited field of view. The application of Electronic Intelligence is one such application. This application is discussed as one that is appropriate for a method exhibiting high resolution of very wide bandwidth closely spaced sources and often does not require a wide field of view. In relation to system applications, this dissertation also discusses practical employment of the novel method in terms of antenna elements, arrays, platforms, engagement geometries, and other parameters. The true time delay beam space method is shown through modeling and simulation to be capable of resolving closely spaced very wideband sources over a relevant field of view in a single algorithmic pass, requiring no course preliminary estimation, and exhibiting low computational expense superior to many previous wideband coherent integration techniques

    Precise scatterer localization for ultrasound contrast imaging

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    This thesis is concerned with developing algorithms for the precise localization of ultrasound point scatterers with an eye to super-resolution ultrasound contrast imaging. In medical ultrasound, the conventional resolution is limited by diffraction and, in contrast to other sensing fields, point source imaging has not been extensively investigated. Here, two independent methods were proposed aiming to increase the lateral and the axial resolution respectively, by improving the localization accuracy of a single scatterer. The methods were examined with simulated and experimental data by using standard transmission protocols. Where a technique is applicable to imaging of more complicated structures than point sources, this was also examined. Further, a preliminary study was included with algorithm application to microbubbles that are currently used in contrast enhanced ultrasound. It was demonstrated that it is feasible to translate to ultrasonics, adaptive processes or techniques from optical imaging/astronomy. This way, it was possible to overcome the diffraction limit and achieve sub-wavelength localization. The accuracy gains are subject to many parameters but may reach up to two orders of magnitude, and are based exclusively on array signal processing. The latter is an important advantage since current attempts for super-resolution ultrasound are image-based which is generally undesired

    Opportunistic Angle of Arrival Estimation in Impaired Scenarios

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    This work if focused on the analysis and the development of Angle of Arrival (AoA) radio localization methods. The radio positioning system considered is constituted by a radio source and by a receiving array of antennas. The positioning algorithms treated in this work are designed to have a passive and opportunistic approach. The opportunistic attribute implies that the radio localization algorithms are designed to provide the AoA estimation with nearly-zero information on the transmitted signals. No training sequences or waveforms custom designed for localization are taken into account. The localization is termed passive since there is no collaboration between the transmitter and the receiver during the localization process. Then, the algorithms treated in this work are designed to eavesdrop already existing communication signals and to locate their radio source with nearly-zero knowledge of the signal and without the collaboration of the transmitting node. First of all, AoA radio localization algorithms can be classified in terms of involved signals (narrowband or broadband), antenna array pattern (L-shaped, circular, etc.), signal structure (sinusoidal, training sequences, etc.), Differential Time of Arrival (D-ToA) / Differential Phase of Arrival (D-PoA) and collaborative/non collaborative. Than, the most detrimental effects for radio communications are treated: the multipath (MP) channels and the impaired hardware. A geometric model for the MP is analysed and implemented to test the robustness of the proposed methods. The effects of MP on the received signals statistics from the AoA estimation point-of-view are discussed. The hardware impairments for the most common components are introduced and their effects in the AoA estimation process are analysed. Two novel algorithms that exploits the AoA from signal snapshots acquired sequentially with a time division approach are presented. The acquired signals are QAM waveforms eavesdropped from a pre-existing communication. The proposed methods, namely Constellation Statistical Pattern IDentification and Overlap (CSP-IDO) and Bidimensional CSP-IDO (BCID), exploit the probability density function (pdf) of the received signals to obtain the D-PoA. Both CSP-IDO and BCID use the statistical pattern of received signals exploiting the transmitter statistical signature. Since the presence of hardware impairments modify the statistical pattern of the received signals, CSP-IDO and BCID are able to exploit it to improve the performance with respect to (w.r.t.) the ideal case. Since the proposed methods can be used with a switched antenna architecture they are implementable with a reduced hardware contrariwise to synchronous methods like MUltiple SIgnal Classification (MUSIC) that are not applicable. Then, two iterative AoA estimation algorithms for the dynamic tracking of moving radio sources are implemented. Statistical methods, namely PF, are used to implement the iterative tracking of the AoA from D-PoA measures in two different scenarios: automotive and Unmanned Aerial Vehicle (UAV). The AoA tracking of an electric car signalling with a IEEE 802.11p-like standard is implemented using a test-bed and real measures elaborated with a the proposed Particle Swarm Adaptive Scattering (PSAS) algorithm. The tracking of a UAV moving in the 3D space is investigated emulating the UAV trajectory using the proposed Confined Area Random Aerial Trajectory Emulator (CARATE) algorithm

    Abstracts on Radio Direction Finding (1899 - 1995)

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    The files on this record represent the various databases that originally composed the CD-ROM issue of "Abstracts on Radio Direction Finding" database, which is now part of the Dudley Knox Library's Abstracts and Selected Full Text Documents on Radio Direction Finding (1899 - 1995) Collection. (See Calhoun record https://calhoun.nps.edu/handle/10945/57364 for further information on this collection and the bibliography). Due to issues of technological obsolescence preventing current and future audiences from accessing the bibliography, DKL exported and converted into the three files on this record the various databases contained in the CD-ROM. The contents of these files are: 1) RDFA_CompleteBibliography_xls.zip [RDFA_CompleteBibliography.xls: Metadata for the complete bibliography, in Excel 97-2003 Workbook format; RDFA_Glossary.xls: Glossary of terms, in Excel 97-2003 Workbookformat; RDFA_Biographies.xls: Biographies of leading figures, in Excel 97-2003 Workbook format]; 2) RDFA_CompleteBibliography_csv.zip [RDFA_CompleteBibliography.TXT: Metadata for the complete bibliography, in CSV format; RDFA_Glossary.TXT: Glossary of terms, in CSV format; RDFA_Biographies.TXT: Biographies of leading figures, in CSV format]; 3) RDFA_CompleteBibliography.pdf: A human readable display of the bibliographic data, as a means of double-checking any possible deviations due to conversion

    A survey on acoustic positioning systems for location-based services

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    Positioning systems have become increasingly popular in the last decade for location-based services, such as navigation, and asset tracking and management. As opposed to outdoor positioning, where the global navigation satellite system became the standard technology, there is no consensus yet for indoor environments despite the availability of different technologies, such as radio frequency, magnetic field, visual light communications, or acoustics. Within these options, acoustics emerged as a promising alternative to obtain high-accuracy low-cost systems. Nevertheless, acoustic signals have to face very demanding propagation conditions, particularly in terms of multipath and Doppler effect. Therefore, even if many acoustic positioning systems have been proposed in the last decades, it remains an active and challenging topic. This article surveys the developed prototypes and commercial systems that have been presented since they first appeared around the 1980s to 2022. We classify these systems into different groups depending on the observable that they use to calculate the user position, such as the time-of-flight, the received signal strength, or the acoustic spectrum. Furthermore, we summarize the main properties of these systems in terms of accuracy, coverage area, and update rate, among others. Finally, we evaluate the limitations of these groups based on the link budget approach, which gives an overview of the system's coverage from parameters such as source and noise level, detection threshold, attenuation, and processing gain.Agencia Estatal de InvestigaciónResearch Council of Norwa

    Sensors and Systems for Indoor Positioning

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    This reprint is a reprint of the articles that appeared in Sensors' (MDPI) Special Issue on “Sensors and Systems for Indoor Positioning". The published original contributions focused on systems and technologies to enable indoor applications
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