804 resultados para arduino risparmio energetico wireless sensor network


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La tesi ha lo scopo di illustrare come sia possibile l’applicazione del metodo biodinamico prendendo come caso studio Tenuta Mara, un’azienda situata nelle colline riminesi. Dapprima viene analizzato il pensiero di Rudolf Steiner, ideatore della teoria che, attraverso le otto conferenze tenute nel 1924 a Koberwitz, rende noti i risultati delle sue ricerche sperimentali avviate nel 1922, derivate da una visione del mondo dove le forze cosmiche, i pianeti e le costellazioni creano un equilibrio tra loro, dove l’uomo si integra pienamente rispettando i voleri della terra. Viene anche affrontata una parte relativa al quadro normativo, facendo un excursus dal marchio Demeter del 1927, al primo Regolamento CEE 2092/ 91 relativo al biologico, fino alla recente legge n. 23 del 9 Marzo 2022 in Italia. Si passa così da una prima parte teorica alla seconda, dove questa viene messa in pratica. Tenuta Mara ha fatto dell’attenzione verso la sostenibilità, riguardante i materiali ecologici utilizzati nella struttura, del risparmio energetico su tutto il processo produttivo e della gestione delle acque consapevoli i propri punti cardine. Le pratiche della viticoltura biodinamica si fondono con la passione per il vino, per l’arte e la musica, con la decisione di ridurre al minimo l’intervento dell’uomo durante tutto il processo enologico, dando alla natura il potere di sceglierne il percorso. Attraverso il supporto dell’enologo viene compreso appieno lo spirito della Tenuta, ponendo particolare attenzione sul processo di vinificazione in bianco per la produzione del Maramato, un vino color del rame, derivato dalle uve di Sangiovese.

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Negli ultimi anni la competitività nei mercati è notevolmente cresciuta, la complessità dei prodotti industriali è considerevolmente aumentata e quest’ultimi devono ora essere accuratamente ottimizzati sotto ogni aspetto. I prodotti, oltre ad avere dei cicli di vita più brevi, sono soggetti a un’alta personalizzazione e a una domanda variabile. Per rimanere competitive, le aziende manifatturiere devono possedere nuovi tipi di sistemi di produzione che siano convenienti e molto reattivi a tutti questi cambiamenti del mercato, quali i Sistemi di produzione riconfigurabili (Reconfigurable Manufacturing System - RMS). La particolarità di tali sistemi risiede nella capacità di cambiare rapidamente le loro strutture hardware e software, aspetto che li renda idonei a soddisfare la produzione moderna. Oltre agli aspetti produttivi, l’attenzione odierna è incentrata anche sulle tematiche ambientali legate al risparmio energetico durante i processi produttivi, alla riduzione delle quantità di CO2 emesse e alla sostenibilità ambientale. L’obiettivo di questa tesi è quello di proporre un modello di ottimizzazione multi-obiettivo che tenga conto sia della minimizzazione del tempo complessivo necessario alla movimentazione dei prodotti e alla riconfigurazione delle macchine, e sia della minimizzazione del consumo energetico. Tale modello è stato applicato ad un caso studio realistico che ha permesso di individuare un trade-off tecnico-ambientale individuando la frontiera di Pareto con punto di ottimo (134.6 min; 9346.3 kWh) che si discosta del 57% dal valore trovato ottimizzando la funzione tempo, e dello 0.76% dal valore ottenuto ottimizzando la funzione energia.

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L'elaborato analizza concretamente le possibilità di implementazione di un sistema di accumulo di energia elettrica prodotta da FER all'interno del terminal portuale della ditta Sapir. Vengono analizzate le tecnologie disponibili attualmente sul mercato valutandone l'efficienza e soprattutto la capacità di produrre un riscontro economico positivo per l'azienda in un tempo contenuto. Sono state infine valutate le varie proposte di miglioramento, considerando di implementare una gru elettrica alimentata almeno in parte dal sistema di accumulo.

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With a wide range of applications benefiting from dense network air temperature observations but with limitations of costs, existing siting guidelines and risk of damage to sensors, new methods are required to gain a high resolution understanding of the spatio-temporal patterns of urban meteorological phenomena such as the urban heat island or precision farming needs. With the launch of a new generation of low cost sensors it is possible to deploy a network to monitor air temperature at finer spatial resolutions. Here we investigate the Aginova Sentinel Micro (ASM) sensor with a bespoke radiation shield (together < US$150) which can provide secure near-real-time air temperature data to a server utilising existing (or user deployed) Wireless Fidelity (Wi-Fi) networks. This makes it ideally suited for deployment where wireless communications readily exist, notably urban areas. Assessment of the performance of the ASM relative to traceable standards in a water bath and atmospheric chamber show it to have good measurement accuracy with mean errors < ± 0.22 °C between -25 and 30 °C, with a time constant in ambient air of 110 ± 15 s. Subsequent field tests of it within the bespoke shield also had excellent performance (root-mean-square error = 0.13 °C) over a range of meteorological conditions relative to a traceable operational UK Met Office platinum resistance thermometer. These results indicate that the ASM and bespoke shield are more than fit-for-purpose for dense network deployment in urban areas at relatively low cost compared to existing observation techniques.

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Wireless Body Area Networks (WBANs) consist of a number of miniaturized wearable or implanted sensor nodes that are employed to monitor vital parameters of a patient over long duration of time. These sensors capture physiological data and wirelessly transfer the collected data to a local base station in order to be further processed. Almost all of these body sensors are expected to have low data-rate and to run on a battery. Since recharging or replacing the battery is not a simple task specifically in the case of implanted devices such as pacemakers, extending the lifetime of sensor nodes in WBANs is one of the greatest challenges. To achieve this goal, WBAN systems employ low-power communication transceivers and low duty cycle Medium Access Control (MAC) protocols. Although, currently used MAC protocols are able to reduce the energy consumption of devices for transmission and reception, yet they are still unable to offer an ultimate energy self-sustaining solution for low-power MAC protocols. This paper proposes to utilize energy harvesting technologies in low-power MAC protocols. This novel approach can further reduce energy consumption of devices in WBAN systems.

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The proliferation of multimedia content and the demand for new audio or video services have fostered the development of a new era based on multimedia information, which allowed the evolution of Wireless Multimedia Sensor Networks (WMSNs) and also Flying Ad-Hoc Networks (FANETs). In this way, live multimedia services require realtime video transmissions with a low frame loss rate, tolerable end-to-end delay, and jitter to support video dissemination with Quality of Experience (QoE) support. Hence, a key principle in a QoE-aware approach is the transmission of high priority frames (protect them) with a minimum packet loss ratio, as well as network overhead. Moreover, multimedia content must be transmitted from a given source to the destination via intermediate nodes with high reliability in a large scale scenario. The routing service must cope with dynamic topologies caused by node failure or mobility, as well as wireless channel changes, in order to continue to operate despite dynamic topologies during multimedia transmission. Finally, understanding user satisfaction on watching a video sequence is becoming a key requirement for delivery of multimedia content with QoE support. With this goal in mind, solutions involving multimedia transmissions must take into account the video characteristics to improve video quality delivery. The main research contributions of this thesis are driven by the research question how to provide multimedia distribution with high energy-efficiency, reliability, robustness, scalability, and QoE support over wireless ad hoc networks. The thesis addresses several problem domains with contributions on different layers of the communication stack. At the application layer, we introduce a QoE-aware packet redundancy mechanism to reduce the impact of the unreliable and lossy nature of wireless environment to disseminate live multimedia content. At the network layer, we introduce two routing protocols, namely video-aware Multi-hop and multi-path hierarchical routing protocol for Efficient VIdeo transmission for static WMSN scenarios (MEVI), and cross-layer link quality and geographical-aware beaconless OR protocol for multimedia FANET scenarios (XLinGO). Both protocols enable multimedia dissemination with energy-efficiency, reliability and QoE support. This is achieved by combining multiple cross-layer metrics for routing decision in order to establish reliable routes.

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For smart applications, nodes in wireless multimedia sensor networks (MWSNs) have to take decisions based on sensed scalar physical measurements. A routing protocol must provide the multimedia delivery with quality level support and be energy-efficient for large-scale networks. With this goal in mind, this paper proposes a smart Multi-hop hierarchical routing protocol for Efficient VIdeo communication (MEVI). MEVI combines an opportunistic scheme to create clusters, a cross-layer solution to select routes based on network conditions, and a smart solution to trigger multimedia transmission according to sensed data. Simulations were conducted to show the benefits of MEVI compared with the well-known Low-Energy Adaptive Clustering Hierarchy (LEACH) protocol. This paper includes an analysis of the signaling overhead, energy-efficiency, and video quality.

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The proliferation of multimedia content and the demand for new audio or video services have fostered the development of a new era based on multimedia information, which allowed the evolution of Wireless Multimedia Sensor Networks (WMSNs) and also Flying Ad-Hoc Networks (FANETs). In this way, live multimedia services require real-time video transmissions with a low frame loss rate, tolerable end-to-end delay, and jitter to support video dissemination with Quality of Experience (QoE) support. Hence, a key principle in a QoE-aware approach is the transmission of high priority frames (protect them) with a minimum packet loss ratio, as well as network overhead. Moreover, multimedia content must be transmitted from a given source to the destination via intermediate nodes with high reliability in a large scale scenario. The routing service must cope with dynamic topologies caused by node failure or mobility, as well as wireless channel changes, in order to continue to operate despite dynamic topologies during multimedia transmission. Finally, understanding user satisfaction on watching a video sequence is becoming a key requirement for delivery of multimedia content with QoE support. With this goal in mind, solutions involving multimedia transmissions must take into account the video characteristics to improve video quality delivery. The main research contributions of this thesis are driven by the research question how to provide multimedia distribution with high energy-efficiency, reliability, robustness, scalability, and QoE support over wireless ad hoc networks. The thesis addresses several problem domains with contributions on different layers of the communication stack. At the application layer, we introduce a QoE-aware packet redundancy mechanism to reduce the impact of the unreliable and lossy nature of wireless environment to disseminate live multimedia content. At the network layer, we introduce two routing protocols, namely video-aware Multi-hop and multi-path hierarchical routing protocol for Efficient VIdeo transmission for static WMSN scenarios (MEVI), and cross-layer link quality and geographical-aware beaconless OR protocol for multimedia FANET scenarios (XLinGO). Both protocols enable multimedia dissemination with energy-efficiency, reliability and QoE support. This is achieved by combining multiple cross-layer metrics for routing decision in order to establish reliable routes.

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This paper discusses the target localization problem in wireless visual sensor networks. Additive noises and measurement errors will affect the accuracy of target localization when the visual nodes are equipped with low-resolution cameras. In the goal of improving the accuracy of target localization without prior knowledge of the target, each node extracts multiple feature points from images to represent the target at the sensor node level. A statistical method is presented to match the most correlated feature point pair for merging the position information of different sensor nodes at the base station. Besides, in the case that more than one target exists in the field of interest, a scheme for locating multiple targets is provided. Simulation results show that, our proposed method has desirable performance in improving the accuracy of locating single target or multiple targets. Results also show that the proposed method has a better trade-off between camera node usage and localization accuracy.

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Aquest projecte es basa en l'estudi de l'oferiment de qualitat de servei en xarxes wireless i satel·litals. Per això l'estudi de les tècniques de cross-layer i del IEEE 802.11e ha sigut el punt clau per al desenvolupament teòric d’aquest estudi. Usant el simulador de xarxes network simulator, a la part de simulacions es plantegen tres situacions: l'estudi de la xarxa satel·lital, l'estudi del mètode d'accés HCCA i la interconnexió de la xarxa satel·lital amb la wireless. Encara que aquest últim punt, incomplet en aquest projecte, ha de ser la continuació per a futures investigacions.

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El treball realitzat en aquest projecte es basa en l'implementació d'un demostrador wireless, i més específicament, en l'estudi de les tècniques network coding i virtualització. Network coding és un nou mètode de transmissió de dades que es basa en la codificació de paquets per incrementar el rendiment fins ara obtingut als mètodes de transmissió convencionals. La virtualització és una tècnica que consisteix en compartir de forma més eficient els recursos d'un sistema. En el nostre cas s'utilitzarà la virtualització per dividir una interfície sense fils en diferents usuaris virtuals transmetent i rebent dades simultàniament. L'objectiu del projecte és realitzar un seguit de proves i estudis per veure els avantatges d'aquestes dues tècniques.

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Purpose: In vitro studies in porcine eyes have demonstrated a good correlation between induced intraocular pressure variations and corneal curvature changes, using a contact lens with an embedded microfabricated strain gauge. Continuous 24 hour-intraocular pressure (IOP) monitoring to detect large diurnal fluctuation is currently an unmet clinical need. The aims of this study is to evaluate precision of signal transmission and biocompatibility of 24 hour contact lens sensor wear (SENSIMED Triggerfish®) in humans. Methods: After full eye examination in 10 healthy volunteers, a 8.7 mm radius contact lens sensor and an orbital bandage containing a loop antenna were applied and connected to a portable recorder. Best corrected visual acuity and position, lubrication status and mobility of the sensor were assessed after 5 and 30 minutes, 4, 7 and 24 hours. Subjective comfort was scored and activities documented in a logbook. After sensor removal full eye examination was repeated, and the registration signal studied. Results: The comfort score was high and did not fluctuate significantly, except at the 7 hour-visit. The mobility of the contact lens was minimal but its lubrication remained good. Best corrected visual acuity was significantly reduced during the sensor wear and immediately after its removal. Three patients developed mild corneal staining. In all but one participant we obtained a registration IOP curve with visible ocular pulse amplitude. Conclusions: This 24 hour-trial confirmed the functionality and biocompatibility of SENSIMED Triggerfish® wireless contact lens sensor for IOP-fluctuation monitoring in volunteers. Further studies with a range of different contact lens sensor radii are indicated.

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Viimeaikainen langattomien teknologioiden kehitys ja evoluutio johtaa uusiin mahdollisuuksiin business-to-business-teollisuussovellusten laatimisessa. Tämän työn tavoite on tutkia teknisten puitteiden ja perustan sekä teknologisen ennustamisen prosessia innovatiivisten langattomien sovellusten kehitysprosessissa. Työ keskittyy langattomiin teknologioihin - verkkoihin ja päätelaitteisiin. Työssä selvitetään saatavilla olevia ja tulevia langattomia verkkoteknologioita ja mobiilipäätelaitteita, arvioidaan niiden päätyypit, ominaisuudet, rajoitteet ja kehitystrendit, sekä määritellään pääasialliset tekniset ominaisuudet, jotka on huomioitava luotaessa langatonta ratkaisua. Tämä tieto vedetään yhteen jatkokäyttöä varten langattomien sovellusten päätelaitetietokantaan rakentamisen aikana. Työ tarjoaa kuvauksen päätelaitetietokannan suunnittelusta ja rakentamisesta sekä tutkii tietokantaa innovatiivisen esimerkkisovelluksen - Reaaliaikaisen On-Line Asiakaspalvelun - avulla.

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We discuss the development and performance of a low-power sensor node (hardware, software and algorithms) that autonomously controls the sampling interval of a suite of sensors based on local state estimates and future predictions of water flow. The problem is motivated by the need to accurately reconstruct abrupt state changes in urban watersheds and stormwater systems. Presently, the detection of these events is limited by the temporal resolution of sensor data. It is often infeasible, however, to increase measurement frequency due to energy and sampling constraints. This is particularly true for real-time water quality measurements, where sampling frequency is limited by reagent availability, sensor power consumption, and, in the case of automated samplers, the number of available sample containers. These constraints pose a significant barrier to the ubiquitous and cost effective instrumentation of large hydraulic and hydrologic systems. Each of our sensor nodes is equipped with a low-power microcontroller and a wireless module to take advantage of urban cellular coverage. The node persistently updates a local, embedded model of flow conditions while IP-connectivity permits each node to continually query public weather servers for hourly precipitation forecasts. The sampling frequency is then adjusted to increase the likelihood of capturing abrupt changes in a sensor signal, such as the rise in the hydrograph – an event that is often difficult to capture through traditional sampling techniques. Our architecture forms an embedded processing chain, leveraging local computational resources to assess uncertainty by analyzing data as it is collected. A network is presently being deployed in an urban watershed in Michigan and initial results indicate that the system accurately reconstructs signals of interest while significantly reducing energy consumption and the use of sampling resources. We also expand our analysis by discussing the role of this approach for the efficient real-time measurement of stormwater systems.