296 resultados para Vibrazioni accelerazioni Arduino servomotori stepper


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Il lavoro presentato ha avuto l’obiettivo, attraverso lo studio dei più comuni servomotori stepper, di replicare profili di accelerazione registrati o definiti con l’utilizzo di una piattaforma hardware Arduino in grado di salvare ed elaborare dati. Per raggiungere tale risultato è stato realizzato un braccio meccanico in grado di replicare l’accelerazione su un singolo asse di interesse. L’intento del progetto è fungere da base per l’elaborazione di un dispositivo a tre assi utilizzabile in maniera estesa nei diversi campi in cui i fenomeni vibrazionali possono essere di rilievo.

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Il TinyMachineLearning (TinyML) è un campo di ricerca nato recentemente che si inserisce nel contesto dell’Internet delle cose (IoT). Mentre l’idea tradizionale dell’IoT era che i dati venissero inviati da un dispositivo locale a delle infrastrutture cloud per l’elaborazione, il paradigma TinyML d’altra parte, propone di integrare meccanismi basati sul Machine Learning direttamente all’interno di piccoli oggetti alimentati da microcontrollori (MCU ). Ciò apre la strada allo sviluppo di nuove applicazioni e servizi che non richiedono quindi l’onnipresente supporto di elaborazione dal cloud, che, come comporta nella maggior parte dei casi, consumi elevati di energia e rischi legati alla sicurezza dei dati e alla privacy. In questo lavoro sono stati svolti diversi esperimenti cercando di identificare le sfide e le opportunità correlate al TinyML. Nello specifico, vengono valutate e analizzate le prestazioni di alcuni algoritmi di ML integrati in una scheda Arduino Nano 33 BLE Sense, attraverso un framework TinyML. Queste valutazioni sono state effettuate conducendo cinque diversi macro esperimenti, ovvero riconoscimento di Colori, di Frequenze, di Vibrazioni, di Parole chiave e di Gesti. In ogni esperimento, oltre a valutare le metriche relative alla bontà dei classificatori, sono stati analizzati l’occupazione di memoria e il tasso di inferenza (tempo di predizione). I dati utilizzati per addestrare i classificatori sono stati raccolti direttamente con i sensori di Arduino Nano. I risultati mostrano che il TinyML può essere assolutamente utilizzato per discriminare correttamente tra diverse gamme di suoni, colori, modelli di vibrazioni, parole chiave e gesti aprendo la strada allo sviluppo di nuove promettenti applicazioni sostenibili.

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El objetivo de este proyecto es el de realizar la fabricación de una alarma la cual se puede controlar desde cualquier dispositivo Android, ya que la comunicación se realiza a través de la conexión Bluetooth entre una aplicación Android y una placa Arduino que realiza el control del mecanismo Hardware. A través de la aplicación que se instala en el dispositivo móvil, se puede realitzar el control del prototipo, como la validación del usuario, activación y desactivación de la alarma y enlazar con el módulo Bluetooth.

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El trabajo expuesto en la presente memoria tiene como objetivo la creación de un prototipo de avisos para gente sorda. El sistema se encargará de facilitar la interactuación entre una persona con problemas auditivos y los señales sonoros que pueden hallarse en una casa. El prototipo se ha desarrollado a partir de la plataforma hardware Arduino, un Smartphone con sistema operativo Android y la tecnología de comunicaciones inalámbricas Bluetooth y ZigBee.

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Aplicació Android per a la supervisió, control i adquisició de dades d'una placa Arduino que disposi de comuninació Ethernet i/o Wi-Fi. Creació d'interfícies dinàmiques amb diferents modalitats d'interacció: tàctil, reconeixement de veu i síntesi de veu.

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This paper describes the use of the open source hardware platform, denominated "Arduino", for controlling solenoid valves for solutions handling in flow analysis systems. System assessment was carried out by spectrophotometric determination of iron (II) in natural water. The sampling rate was estimated as 45 determinations per hour and the coefficient of variation was lower than 3%. Per determination, 208 µg of 1-10-phenanthroline and ascorbic acid were consumed, generating 1.3 mL of waste. "Arduino" proved a reliable microcontroller with low cost and simple interfacing, allowing USB communication for solenoid device switching in flow systems.

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Kandidaatintyössä toteutetaan OBD2 (On-Board Diagnostics 2) -lukija ajoneuvon päästöjenhallintajärjestelmän diagnostiikkatiedoille yleiskäyttöisellä mikro-ohjaimella. Lukija tukee tiedonsiirtoprotokollana SAE J1850 VPW protokollaa. Mikro-ohjaimena on Atmel Corporationin AVR ATMega328. Työn tavoitteena on havainnoida vastaantulevia käytännön ongelmia ja haasteita mikro-ohjaimen käytöllä tiedonsiirtoprotokollan toteutukseen, ja verrata toteutettua järjestelmää kaupallisiin OBD2-lukijoihin. Työn johtopäätöksenä havaitaan mikro-ohjaimen suorituskyvyn rajoitteet ja sen tuomat toiminnan epävarmuustekijät. Työssä myös todetaan, että mikro-ohjain soveltuu tiedonsiirtoprotokollan toteutukseen kun rajoitteet otetaan huomioon. Kaupallisiin lukijoihin verrattuna yleiskäyttöiseen mikro-ohjaimeen perustuva toteutettu järjestelmä on kalliimpi ja toiminnoiltaan suppeampi. Mikro-ohjaimeen perustuva järjestelmä on kuitenkin muokattavissa ja laajennettavissa tarvittaessa, jolloin toteutukseen voidaan saada kaupallisista järjestelmistä mahdollisesti puuttuvia ominaisuuksia, kuten valmistajakohtaisia protokollia ja toimintoja, joita ei ole määritelty OBD2:ssa. Yhtenä esimerkkinä tällaisesta toiminnosta voi mainita ajoneuvoissa yleistyvän sähköisen käsijarrun säätöä ohjaavat komennot jarruhuoltoa varten.

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This paper presents the design and analysis of a 400-step hybrid stepper motor for spacecraft applications. The design of the hybrid stepper motor for achieving a specific performance requires the choice of appropriate tooth geometry. In this paper, a detailed account of the results of two-dimensional finite-element (FE) analysis conducted with different tooth shapes such as square and trapezoidal, is presented. The use of % more corresponding increase in detent torque and distorted static torque profile. For the requirements of maximum torque density, less-detent torque, and better positional accuracy and smooth static torque profile, different pitch slotting with equal tooth width has to be provided. From the various FE models subjected to analysis trapezoidal teeth configuration with unequal tooth pitch on the stator and rotor is found to be the best configuration and is selected for fabrication. The designed motor is fabricated and the experimental results is compared with the FE results

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The search for more reliable security systems and information management of these systems is leading to a growing progress in new technologies investments that allow the implementation of equipment with a high level of reliability, but also have an agile and practical operation. This led people to turn increasingly looking for home automation systems, enterprise and industry for the automation and integration of their systems. The identification by radio frequency is very widespread today for ensuring both agility in handling records data, the reliability of their identification systems, which are increasingly advanced and less susceptible to fraud. Attached to this technology, the use of the database is always very important for the storage of information collected, the area where the MySQL platform is widely used. Using the open source Arduino platform for programming and manipulation of RFID module and LabVIEW software for the union of all these technologies and to develop a user-friendly interface, you can create a highly reliable access control and agility places a high turnover of people. This project aims to prove the advantages of using all these technologies working together, thus improving a flawed system effectively safety, cheaper and quicker

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This paper presents a Project of an automatic feeder for pets using an Arduino Uno as the control center. Through studies on this driver was possible to create a device with an interface capable to receiving user input and then use it to activate the feeder in the defined hours. For mounting equipment were used steps motors, sensors, keyboard and display, which work together to instrument operation. The project goal was reached and the prototype developed indicating that the Arduino can be used for various applications that can simplify daily tasks

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The education designed and planned in a clear and objective manner is of paramount importance for universities to prepare competent professionals for the labor market, and above all can serve the population with an efficient work. Specifically, in relation to engineering, conducting classes in the laboratories it is very important for the application of theory and development of the practical part of the student. The planning and preparation of laboratories, as well as laboratory equipment and activities should be developed in a succinct and clear way, showing to students how to apply in practice what has been learned in theory and often shows them why and where it can be used when they become engineers. This work uses the MATLAB together with the System Identification Toolbox and Arduino for the identification of linear systems in Linear Control Lab. MATLAB is a widely used program in the engineering area for numerical computation, signal processing, graphing, system identification, among other functions. Thus the introduction to MATLAB and consequently the identification of systems using the System Identification Toolbox becomes relevant in the formation of students to thereafter when necessary to identify a system the base and the concept has been seen. For this procedure the open source platform Arduino was used as a data acquisition board being the same also introduced to the student, offering them a range of software and hardware for learning, giving you every day more luggage to their training

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This paper presents a Project of an automatic feeder for pets using an Arduino Uno as the control center. Through studies on this driver was possible to create a device with an interface capable to receiving user input and then use it to activate the feeder in the defined hours. For mounting equipment were used steps motors, sensors, keyboard and display, which work together to instrument operation. The project goal was reached and the prototype developed indicating that the Arduino can be used for various applications that can simplify daily tasks

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The education designed and planned in a clear and objective manner is of paramount importance for universities to prepare competent professionals for the labor market, and above all can serve the population with an efficient work. Specifically, in relation to engineering, conducting classes in the laboratories it is very important for the application of theory and development of the practical part of the student. The planning and preparation of laboratories, as well as laboratory equipment and activities should be developed in a succinct and clear way, showing to students how to apply in practice what has been learned in theory and often shows them why and where it can be used when they become engineers. This work uses the MATLAB together with the System Identification Toolbox and Arduino for the identification of linear systems in Linear Control Lab. MATLAB is a widely used program in the engineering area for numerical computation, signal processing, graphing, system identification, among other functions. Thus the introduction to MATLAB and consequently the identification of systems using the System Identification Toolbox becomes relevant in the formation of students to thereafter when necessary to identify a system the base and the concept has been seen. For this procedure the open source platform Arduino was used as a data acquisition board being the same also introduced to the student, offering them a range of software and hardware for learning, giving you every day more luggage to their training

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[ES] Este trabajo detalla las diferentes etapas del desarrollo de construcción del prototipo Clever Socket, abarcando desde su análisis, a su diseño e implementación.
Clever Socket es un conjunto hardware y software que facilita el control del encendido y el apagado de los aparatos electrónicos conectados a él a través de redes de comunicación LAN y WAN. Para lograr este propósito, el artefacto se apoya en la placa de desarrollo electrónico Arduino UNO y la placa Arduino WiFi Shield –que posibilita su conexión inalámbrica a la red–.
El dispositivo cuenta con cuatro bases de enchufe controladas a través de relés, que permiten la gestión de hasta cuatro dispositivos electrónicos de manera simultánea.
 En el lado del software se presentan tres componentes:
Un servicio web de bajo nivel destinado a la gestión de la placa Arduino. Permite la comunicación con la placa, la lectura y escritura de sus pines.
 Un servicio web específico del dispositivo Clever Socket. Facilita la comunicación con el prototipo hardware, permitiendo así la gestión de diferentes operaciones que se llevan a cabo sobre los aparatos conectados a sus enchufes.
 Una aplicación web. Actúa como interfaz entre el usuario y el servicio web de Clever Socket, permitiendo la gestión del dispositivo. El diseño de la aplicación es responsive, lo que posibilita su correcta visualización en todo tipo de dispositivos, tanto móviles como de escritorio.

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Il lavoro svolto, in collaborazione con “Ducati Motor Holding”, si propone l’analisi, mediante l’applicazione di un software FEM (HyperWorks 9.0), delle strutture rappresentate dall’assieme paracoppa-parasassi e dal silenziatore. Il primo obiettivo consiste nell’ottenimento di un modello agli elementi finiti della struttura. Le simulazioni di calcolo consistono in analisi di tipo dinamico per determinare i modi di vibrare delle strutture. Sulla base di ulteriori simulazioni sulla risposta al transitorio del sistema si è studiato il loro comportamento nelle condizioni di funzionamento. La finalità del lavoro risiede dunque nella determinazione delle criticità strutturali che i componenti hanno manifestato durante prove sperimentali verificandole attraverso calcolo numerico e applicazione delle potenzialità del software applicato, per l’analisi degli aspetti sopra esposti.