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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
71

The Effect of Harmonics on the Electrical Grid due to Electric Vehicle Chargers

Solander Araúz, Ingemar January 2020 (has links)
In this thesis the effect of harmonics on the electrical grid from electric car chargers, specifically the effect on distribution transformers, is analyzed. The study was performed on the electrical grid of two areas provided by the electrical company Dala Energi. Electric car chargers are added to each customer connected to the electrical grid in both areas to examine the effects of harmonics on the distribution transformers. A model of the electrical grid of each area was recreated and simulated with the open source program OpenDSS. The effects of the added harmonic load on the electrical grid was evaluated in a range from 10% to a 100% of the consumers connected to the grid.  The results of this study show an increase in losses due to harmonic distortion. However, the losses are less significant when the added electric car charger load is distributed between all three phases of the grid compared to one phase. All the added harmonics, except the 9th harmonic, maintain acceptable levels set by The Swedish Energy Market Inspectorate. The impact of the 9th harmonic can be reduced by installing filters. The main conclusion of this thesis is that to reduce the effects of harmonic on the grid the harmonic load should be distributed on all three phases. Also scheduling the charging time of the cars can be implemented to further even out the load variations on the electrical grid.
72

Designing a Wireless Charger for Smartphones / Trådlös laddare för smartphones.

Kureekkal, Tony Sabu January 2019 (has links)
The wireless charging market has seen exponential growth in recent years and wireless charging is quickly becoming the standard in consumer electronic devices to eliminate inconveniences of wired chargers. The adoption of wireless charging technology is most visible in the smartphone industry. This thesis report elicits the process involved in designing a Wireless charger that complies with the Qi- Wireless Standards set by the Wireless Power Consortium. The drawbacks of current product offerings and user needs are identified, and conceptual solutions that could strengthen the wireless charging experience are explored. The most promising solution is developed upon which results in a full-scale functional prototype.
73

Utilisation des transistors GaN dans les chargeurs de véhicule électrique / Use of GaN transistors in electric vehicles chargers

Taurou, Eléonore 26 October 2018 (has links)
Le but de cette thèse est de concevoirun chargeur de véhicule électrique avec une fortedensité de puissance car il doit être embarqué dansle véhicule. La thèse se focalise sur le deuxièmeétage du chargeur qui comporte un transformateur.Cet élément représente une part importante du volumetotal du convertisseur.Pour réaliser cela, une nouvelle technologie de transistorsest utilisée : les transistors GaN. Ces composantsinduisent des pertes par commutation plusfaibles que les transistors classiquement utilisés cequi permet d’augmenter la fréquence de découpage.Cette fréquence est un levier pour améliorer la densitéde puissance des convertisseurs. Cependant lafréquence est également responsable de pertes dansd’autres composants comme le transformateur et lesinductances. Pour augmenter efficacement cette densité, la topologie du convertisseur doit être conçuepour réduire les contraintes sur ces composants.La thèse comporte trois parties. Tout d’abord, lecomportement des transistors GaN est évalué etdifférentes topologies sont analysées pour en déduireune structure de chargeur qui minimise les pertesdans le transformateur. Ensuite, un dimensionnementcompact de transformateur est réalisé à l’aide d’uneétude paramétrique et des simulations par élémentsfinis. Enfin, un prototype de ce deuxième étage duchargeur est réalisé et testé pour évaluer ses performanceset son volume / Improvement of power density is a bigchallenge for embedded electric vehicle chargers.Goal of the study is to reduce the volume of the DCDCcharger which contains a bulky transformer. Thekey point is to use wide band gap transistors (GaN) toincrease the charger switching frequency. High switchingfrequency can improve power density but theinconvenient is the increase of switching and transformerlosses. The PhD dissertation is organized inthree steps. First step is the definition of a charger topology.This topology is optimized to reduce transformerlosses. Second part of the study is the theoreticaldesign of a high power density transformer. A completetransformer parametric model is presented withFinite Element Analysis. Third part present the prototypeand test results of the charger DC-DC. Electricalbehavior, volume and efficiency results are discussedin this part.Universit ´
74

Fast on-board integrated chargers for electric vehicles / Chargeur rapide intégré pour véhicule électrique

Sakr, Nadim 27 May 2016 (has links)
L'autonomie moyenne des voitures électriques commercialisées actuellement reste limitée par rapport aux véhicules thermiques. Pour pallier ce problème, la capacité de la batterie peut être augmentée ou bien la charge peut être facilitée en réduisant le temps de charge et ceci en augmentant la puissance de charge.L'infrastructure de charge rapide de type DC étant encore limitée, un progrès considérable consiste à embarquer le chargeur dans le véhicule en réutilisant tout, ou une partie de l'électronique de puissance déjà disponible pour propulser le véhicule. Le chargeur est alors nommé chargeur intégré.Au cours des dernières années, plusieurs chargeurs intégrés ont été proposés, mais peu d'entre eux ont été industrialisés vue qu'ils présentent des inconvénients que l'on cherchera à surmonter ou réduire.Dans le cadre de cette thèse notre objectif principal est donc de concevoir une nouvelle topologie de convertisseur permettant la charge de la batterie à moindre coût.Plusieurs idées permettant l'innovation sont proposées et une solution répondant au mieux au cahier de charges est retenue. Cette topologie est étudiée en détails (contrôle, dimensionnement, harmoniques, CEM, etc.). Finalement un prototype est réalisé pour valider le concept proposé. / To date, the range autonomy of most electric vehicles is still lower than conventional fuel based vehicles and charging times are significantly longer. To overcome this problem, battery capacity could be increased but more importantly high power fast charging should be accessible everywhere.The widespread deployment of public DC fast charging stations is still difficult to achieve. So, in order to have a better spreading of the charge spots and a better coverage, it is also necessary for the vehicle to be charged from an on-board charger that could be plugged into three-phase AC power outlets.Furthermore, because the battery is charged only when the car is parked -except for regeneration at braking-, using the on-board traction system components to form an integrated charging device is possible. This kind of topology is called an integrated charger which allows designing a charger small enough to be embedded in a vehicle at an affordable cost.Several non-isolated on-board integrated charging topologies are proposed in this thesis and the one that best meets some predefined specifications is selected. This topology is studied in details and validated by simulation software. A laboratory prototype is also built to verify the performance of this multi-purpose traction/charger converter.
75

Phase Shift Modulation Techniques for Bidirectional Onboard Chargers in Electric Vehicles

Yuan, Jiaqi January 2023 (has links)
Bidirectional onboard chargers (OBCs) are becoming mainstream commercial charging equipment for electric vehicles (EVs) because of their compactness, flexibility, and demand-response capabilities for power backup. This thesis focuses on the novel phase shift (PS) modulation techniques for efficiency improvement for bidirectional OBCs, including two-stage onboard chargers (TSOBCs) and single-stage onboard chargers (SSOBCs). A comprehensive overview and investigation of the state-of-the-art solutions of bidirectional OBCs are presented. It reviews the current industrial status, industrial applications, and future trends and challenges. A detailed overview of the promising topologies for bidirectional OBCs, including two-stage and single-stage structures, is also discussed in this thesis. Traditional PS modulation has been widely used in the back-end DC/DC converters of the TSOBCs because of its simple implementation. However, it is challenging to keep high efficiency at boundary operating points within wide specifications. Therefore, to improve efficiency at the boundary point for TSOBCs, the hybrid multiple phase shift (HMPS) modulation technique with minimal peak current optimization is presented to maximize the zero-voltage switching (ZVS) range. Compared to traditional single phase shift (SPS) modulation, the experimental results verify that the presented HMPS modulation strategy provides 1%-2% higher efficiency at the boundary points. On the other hand, an improved compact SSOBC topology and novel PS modulation techniques are proposed. Since the traditional PS modulation is challenging for AC/DC converters to keep a unity power factor (PF), novel PS modulation techniques are presented for the proposed SSOBC. Firstly, a sinusoidal single phase shift (SSPS) modulation introduces a sinusoidal phase shift to maintain a high PF and high efficiency within a wide operating point. However, due to the high current at the zero-crossing point of the grid voltage of the SSPS modulation, the novel adaptive sinusoidal single phase shift (ASSPS) modulation is presented to address this issue, which reduces conduction loss and increases efficiency. Secondly, based on the ASSPS modulation, the adaptive sinusoidal extended phase shift (ASEPS) modulation with minimal peak current optimization is presented to introduce one more degree of freedom to extend the ZVS flexibility, which reduces switching loss. Moreover, the minimal peak current optimization reduces transformer current, further decreasing conduction losses. Therefore, the power loss is minimized. Finally, this thesis presents the general design guideline of a 6 kW Silicon Carbide (SiC)-based bidirectional SSOBC, contributing to the further development of bidirectional SSOBC application. Experimental results verify the operating principle and high PF of the proposed SSPS, ASSPS, and ASEPS modulation. 1 kW experimental testing has validated that the peak efficiency is 95.3% with ASSPS modulation and 95.9% with ASEPS modulation. Compared to the existing pulse width modulation (PWM), the ASSPS modulation increased efficiency by 1.1%, and ASEPS modulation further increased by 1.7%. / Thesis / Doctor of Philosophy (PhD)
76

Velocity Control of a Mobile Charger in a Wireless Rechargeable Sensor Network / Hastighetsreglering av en Mobil Laddare i ett Trådlöst Laddningsbart Sensornätverk

Haltorp, Emilia January 2023 (has links)
Wireless sensor networks (WSN) are one of the most rapidly evolving technical areas right now. They can be used in a lot of different applications, environmental monitoring and health applications being two examples. The sensors can be placed in hazardous and remote environments since there is no need for cabling or manual maintenance. One of the biggest problems and constraints of today's WSNs is the limited energy capacity of the sensor nodes. Eventually they will be power-depleted, and the network will be dead. A solution to this can be wireless energy transfer technology which makes it possible to recharge sensor nodes with the help of a mobile charger and prolong the lifetime of networks.  This thesis aims to investigate how the charging completion time can be reduced by considering that the charger can charge while moving and by controlling its velocity. The charging completion time is the time from when the charger starts charging the first node until it returns to that starting point.  For this, a two-dimensional WSN was defined that contains sensor nodes and a mobile charger. Anchor nodes, which the charger travels between were defined by choosing the nodes with most neighbors within a defined charging radius. The traveling salesman problem were used to find a path that the charger travels along. A simulation environment was developed in Python to execute tests.  The results show that the charging while moving approach with controlled velocity could reduce the charging completion time with up to 20%. It was also ascertained that this approach works better in dense networks than in sparse. / Trådlösa sensornätverk är ett av de snabbast växande tekniska områdena just nu. De har många olika användningsområden, miljöövervakning och olika hälsotillämpningar är två exempel. Sensorerna kan placeras i farliga och avlägsna miljöer eftersom det inte finns något behov av kablar eller manuellt underhåll. Ett av de största problemen och begränsningarna på dagens trådlösa nätverk är den begränsade energikapaciteten hos sensornoderna. Slutligen kommer de att bli tömda på ström och nätverket kommer att dö. En lösning på detta kan vara trådlös strömöverföring vilket gör det möjligt att ladda sensorerna med hjälp av en mobil laddare och därmed förlänga livstiden på nätverket.  Syftet med detta examensarbete är att undersöka hur slutförandetiden för laddningen kan reduceras i betraktande av att laddaren kan ladda när den rör sig samt att reglera laddaren hastighet. Slutförandetiden för laddningen är den tid det tar från att laddaren börjar ladda den första sensor-noden tills att den kommer tillbaka till punkten den startade på.  För att göra detta definierades ett två-dimensionellt trådlöst sensornätverk som bestod av sensornoder och en mobil laddare. Ankarnoder, vilka laddaren rörde sig emellan, definierades genom att hitta de noder med flest antal grannar inom en bestämd laddningsradie. Handelsresandeproblemet användes för att bestämma rutten som laddaren färdas längs. En simuleringsmiljö utvecklades i Python för att utföra testerna i.  Resultaten visar att med laddaren som laddade när den rörde på sig samt hade reglerad hastighet kunde slutförande-tiden för laddning reduceras med upp till 20%. Det kunde även konstateras att detta tillvägagångssätt fungerar bättre i täta nätverk än i glesa.
77

Integração de filtro ativo de potência monofásico e bifásico ao sistema de propulsão de um veículo elétrico

Rodrigues, Márcio do Carmo Barbosa Poncilio 20 November 2014 (has links)
Submitted by Renata Lopes (renatasil82@gmail.com) on 2017-07-21T14:26:57Z No. of bitstreams: 1 marciodocarmobarbosaponciliorodrigues.pdf: 24085481 bytes, checksum: a2ce2552f002816f01354d228d257f85 (MD5) / Approved for entry into archive by Adriana Oliveira (adriana.oliveira@ufjf.edu.br) on 2017-08-09T13:18:07Z (GMT) No. of bitstreams: 1 marciodocarmobarbosaponciliorodrigues.pdf: 24085481 bytes, checksum: a2ce2552f002816f01354d228d257f85 (MD5) / Made available in DSpace on 2017-08-09T13:18:07Z (GMT). No. of bitstreams: 1 marciodocarmobarbosaponciliorodrigues.pdf: 24085481 bytes, checksum: a2ce2552f002816f01354d228d257f85 (MD5) Previous issue date: 2014-11-20 / A gradativa substituição da atual frota de veículos de motor de combustão interna por veículos elétricos (VEs) pode ser vista como um importante fator para a melhoria das condições ambientais nos centros urbanos, uma vez que possibilita a redução das emissões de poluentes atmosféricos nocivos à saúde humana. Os conversores estáticos existentes no sistema de propulsão de veículos puramente elétricos e híbridos "plug-in" podem ser utilizados para funções adicionais, diferentes da tração elétrica. Com poucas adaptações nos circuitos eletrônicos do VE é possível integrar funções como recarga de baterias, geração distribuída de energia elétrica e compensação de reativos. Este tipo de aplicação é particularmente interessante no contexto de redes inteligentes de energia elétrica (smart grids). Esta integração de funcionalidades ao VE, além de permitir a redução de custos e economia de recursos naturais, poderá resultar em retorno financeiro aos proprietários destes veículos pela prestação de serviços auxiliares ao sistema elétrico. Neste trabalho é proposta a utilização de veículos elétricos na compensação de harmônicos de corrente e de potência reativa em instalações elétricas residenciais e comerciais, utilizando o próprio sistema de propulsão do VE para operar como filtro ativo de potência, o que pode ser realizado de forma simultânea à recarga do banco de baterias do VE ou durante seu uso como unidade de geração distribuída de ener-gia elétrica (operação no modo V2G, vehicle-to-grid). Sendo o padrão de conexão de VEs à rede de energia elétrica atualmente adotado pela maior parte dos fabricantes de automóveis elétricos baseado em alimentação monofásica (com possibilidade de alimen-tação bifásica), é explorada, neste trabalho, a utilização de um VE na compensação de cargas monofásicas e bifásicas, em condições típicas de instalações elétricas residenciais e comerciais, de forma compatível a tal padrão. A inclusão desta funcionalidade aos VEs pode contribuir para a redução do impacto da eletrificação veicular no sistema elétrico, pois com a diminuição do fluxo de potência reativa e harmônica na rede elé-trica, torna-se maior a sua capacidade disponível para transporte de potência ativa, facilitando o suprimento de energia a novas cargas (que podem ser os próprios VEs). / The gradual replacement of the current internal combustion engine vehicles by elec-tric vehicles (EVs) comes up as being an important factor to the improvement of urban centers environmental conditions, since it enables reduction on the emissions of atmo-spheric pollutants harmful to human health. Additional tasks, apart from traction, can be performed by battery and plug-in hybrid electric vehicle powertrain on-board power electronic converters. It is possible to integrate functions such as battery charge, electric distributed power generation and reactive power compensation with few modifications on the EV electronics circuitry. This kind of application is especially interesting under the context of smart grids. The integration of these additional functions to an electric vehicle is a very desirable feature, since it can result on cost reduction (in comparison to the separated implementation of the integrated functions) and revenue to the owner of the vehicle by providing ancillary services to the electric power system. This work proposes the application of electric vehicles on the compensation of cur-rent harmonic components and reactive power in residential and commercial electricity networks by means of the integration of a shunt active power filter (APF) into their powertrain electronics circuitry, which can simultaneously operate with the EV bat-tery pack charging or during its use as an electric distributed power generator unit (vehicle-to-grid, V2G, operation mode). Since the EV grid connection standard cur-rently adopted by electric automobiles manufacturers is based on a single-phase power supply system (with a possible two-phase power supply connection), this work focuses on the application of an electric vehicle in the compensation of single-phase and two-phase loads under residential and commercial electricity networks typical conditions, in order to meet the compliance to the requirements of such standard. The inclusion of this functionality to EVs can contribute on the reduction of vehicular electrification impact on the electric power system, since the decrease of reactive and harmonic power flow into the grid results in higher available capacity of active power flow in the power conductors, which allows to supply electricity to new electric loads (that can be the EVs themselves).
78

Développement d’un chargeur à décharge couronne pour la mesure à 10 Hz de la concentration d’un aérosol atmosphérique / Development of a corona discharge charger for 10 Hz measurements of an atmospheric aerosol concentration

Hamidi, Assia 12 December 2014 (has links)
Le but est de développer un chargeur d’aérosols submicroniques à décharge couronne pour la mesure de concentration atmosphérique (10^3-10^5 cm^-3) avec un temps de réponse de 100 ms.Deux sources d’ions, pointe-Trou et fil-Fente ont été caractérisées. L’augmentation du flux d’ions extrait en post-Décharge par confinement EHD des ions tant dans l’espace inter-Électrodes que dans l’extracteur a été mis en évidence.L’étude expérimentale de deux configurations de mélange, concentrique et face-À-Face, a d’abord permis de confirmer la loi de charge des aérosols par diffusion d’ions qui dépend du diamètre des particules et du produit Ni.t, avec Ni, la densité d’ions et t, le temps de charge. L’originalité de ce chargeur repose sur l’hétérogénéité des densités d’ions unipolaires (Ni0>10^9cm^-3) requises pour compenser le temps de charge inférieur à 50 ms. Dans ces conditions hétérogènes, nous avons montré que la taille et la dynamique de charge qui en dépend, contrôlent la trajectoire de l’aérosol.Les différents chargeurs ont ensuite été comparés selon les conditions de fonctionnement, principalement en termes de charge maximale et pertes minimales. Dans le chargeur retenu (source d’ions pointe-Trou et mélange concentrique), les relations charge/mobilité et les pertes en fonction du diamètre d’aérosol ont ensuite été caractérisées. Nous avons montré la linéarité du courant de particules chargées avec la concentration qui permet l’inversion de données. Le système préliminaire de mesure comprend le chargeur, le séparateur et la mesure du courant répond aux objectifs de l’étude en termes de limite de détection en concentration (<10^3 cm^-3) et de temps de réponse (< 100 ms). Nous avons donc démontré la faisabilité d’un système de mesure de concentration d’aérosol atmosphérique à 10 Hz, a l’aide d’un chargeur à décharge couronne, sous réserve d’améliorer le pouvoir de séparation. En outre, aux vues des pertes d’aérosol négligeables et de l’abaissement de la limite de charge partielle, le chargeur développé est compatible avec d’autres applications. / The goal is to develop an aerosol charger based on a corona discharge for atmospheric concentration measurements (10^3-10^5 cm^-3) within a response time of 100 ms.Two ion sources, point-To-Hole and wire-To-Slit have been characterized. The increase of the ion flow in the post-Discharge by EHD ion confinement in both the discharge gap and the hole has been shown.At first, using an experimental survey driven in two mixing configurations, concentric and face-To-Face, we have confirmed the aerosol diffusion charging law which depends on aerosol diameter and Ni.t product, with Ni, the ions concentration and t, the charging time. Thus, the originality of this charger relies on the very high heterogeneity of unipolar ion densities (Ni0 >10^9 cm^-3) required to compensate the charging time of 50 ms. In these conditions, we have shown that aerosol diameter and the charging dynamic (which depends also on the diameter) control the aerosol trajectory.The chargers have, next, been compared in different operating conditions, mainly in terms of the maximal charging and the minimal losses. In the chosen charger (point-To-Hole ion source and concentric mixing), the relations charge/mobility and losses according to diameter have been characterized. We have also shown the linearity of the charged particles current with the aerosol concentration which allows the current-Concentration data inversionThe preliminary measurement system composed by the charger, the separator and the particle current measurements, satisfies the objectives of the study in terms of the concentration detection limit (10^3 cm^-3) and the response time (100 ms). We have thus shown the feasibility of an atmospheric aerosol concentration measurement system at 10 Hz using a corona discharge charger provided that the separation power is improved. Furthermore, knowing that aerosol losses are negligible and the lower limit of the partial charging, the developed charger is adaptable with other applications.
79

Optimierung des Motorbetriebsverhaltens und der Abgasemissionen beim Start und Warmlauf eines Ottomotors mit Sekundärluftlader / Optimization of Engine Performance and Exhaust Emissions During the Starting and Warm-Up of a Gasoline Engine with a Secondary Air Charger

Hergemöller, Thorsten 13 August 2004 (has links) (PDF)
Es werden Möglichkeiten untersucht, das Kaltstart- und Warmlaufverhalten von Ottomotoren mit Sekundärlufteinblasung zu optimieren. Das für die Untersuchungen eingesetzte, innovative Sekundärlufteinblasesystem mittels Sekundärluftlader weist aufgrund der Baugröße, des Gewichts, der Leistungsfähigkeit und insbesondere der einfachen, thermodynamischen Betätigung Potenziale auf, die bisher eingesetzte Sekundärluftpumpe zu ersetzen. Den experimentellen Untersuchungen wurde die Entwicklung der Abgasgesetzgebung sowie eine theoretische Betrachtung der Entstehungsmechanismen von Abgasemissionen vorangestellt. Mittels eines Simulationsmodells werden die Abhängigkeiten des Sekundärluftladers von den motorischen Randbedingungen abgebildet. Somit kann eine Vorauswahl für das Luftmassenförderverhalten des Sekundärluftladers bei unterschiedlichen Einsatzbereichen getroffen werden. Die im Start- und Warmlauf, ebenso im Lastwechsel, gemessenen Ergebnisse wurden zur Analyse der Emissionsverbesserungsmechanismen eingesetzt. Insbesondere der Einblasezeitpunkt der Sekundärluft und das Hochlaufverhalten des Sekundärluftsystems zeigen einen enormen Einfluss auf die Höhe der Rohemissionen. Eine Gegenüberstellung aller gemessenen Varianten mit Sekundärluftpumpe und Sekundärluftlader zeigt einen deutlichen Emissionsvorteil des Sekundärluftladersystems. Zusätzlich bewirkt der Sekundärluftlader, durch die Bordnetzentlastung eine Motorlastabsenkung bei verbessertem Ansprechverhalten und höherem Sekundärluftmassenstrom. Ergebnis ist eine Verringerung der HC-Rohemissionen zwischen 20% und 30%. Die Vorteile im Gewicht und Bauvolumen sowie der geringere Verkabelungsaufwand runden die deutlichen Vorteile des Sekundärluftladers gegenüber der Sekundärluftpumpe ab. Durchgeführte Untersuchungen bei Tieftemperatur (-7°C) und unter Höhenbedingungen haben ebenfalls Vorteile gegenüber der Sekundärluftpumpe ausgewiesen. Die theoretische Abschätzung des Einsatzfeldes für den Sekundärluftlader ist ab einem Hubraum von 1,2°l Hubraum durchgeführt und als positiv bewertet worden. / The paper investigates possible ways of optimizing the cold-start and warm-up performance of gasoline engines with secondary air injection. Due to its size, weight, performance capability, and especially its simple, thermodynamic operation the innovative secondary air injection system used for the investigations and featuring a secondary air charger has the potential to replace the secondary air pump used to date. The experimental investigations are preceded by the development of exhaust emission legislation and a theoretical analysis of the process leading to exhaust emissions. A simulation model is used to illustrate the dependencies of the secondary air charger on boundary engine conditions. Consequently it is possible to make a preselection for the air mass conducting properties of the secondary air charger in various fields of application. The results obtained by measurement in starting, warm-up, and in load changes, were used to analyze the emission improvement processes. The level of raw emissions is affected enormously by the time of injection of secondary air and the acceleration performance of the secondary air system. A comparison of all the measured variants with the secondary air pump and secondary air charger indicates that the secondary air charger system has a distinct emission advantage. In addition, by relieving the vehicle power supply the secondary air charger brings about a reduction in engine load, improved response, and higher secondary air mass flow. The result is a 20% to 30% reduction in raw HC emissions. The significant advantages over the secondary air pump are rounded off by benefits in terms of weight and bulk volume and a reduction in the amount of wiring. Tests conducted at low temperature (-7°C) and under high altitude conditions have also indicated advantages over the secondary air pump.
80

Μέθοδοι εξοικονόμησης ενέργειας σε ηλεκτροκίνητα οχήματα / Methods of energy saving in electric vehicles

Ρίκος, Ευάγγελος 25 June 2007 (has links)
Σκοπός της παρούσας εργασίας είναι η μελέτη των βασικών τμημάτων που απαρτίζουν ένα ηλεκτρικό όχημα, με άμεσο στόχο τη μέγιστη δυνατή εξοικονόμηση ενέργειας. Προς την κατεύθυνση αυτή μελετάται αρχικά η βαθμίδα φόρτισης των συσσωρευτών. Παρουσιάζονται οι προδιαγραφές και προτείνεται ως βέλτιστη τοπολογία αυτή του Flyback η οποία αντιμετωπίζει λειτουργικές δυσκολίες. Έτσι προτείνεται μια ειδική μεθοδολογία σχεδιασμού βασιζόμενη στην επιλογή του λόγου του Μ/Τ. Επίσης προτείνεται ένα νέο κύκλωμα καταστολής των υπερτάσεων λόγω σκέδασης. Η αποτελεσματική λειτουργία επιβεβαιώνεται μέσω εξομοιώσεων και πειραματικών δοκιμών. Στο δεύτερο μέρος παρουσιάζεται ένα νέο κύκλωμα τροφοδοσίας. Πρόκειται για μετατροπέα μονής βαθμίδας με ένα τρανζίστορ κα αποτελεσματική καταστολή υπερτάσεων. Παράλληλα πραγματοποιεί βελτίωση του συντελεστή ισχύος του κυκλώματος. Στο τρίτο μέρος μελετάται το κινητήριο σύστημα και προτείνεται μια μέθοδος ελέγχου της μαγνητικής ροής και του λόγου μετάδοσης του κιβωτίου ταχυτήτων ώστε να επιτυγχάνεται η ελάχιστη δυνατή ενεργειακή κατανάλωση του οχήματος. Τα αποτελέσματα εξομοίωσης επιβεβαιώνουν την αποτελεσματικότητα της προτεινόμενης μεθόδου. / Basic aim of the present work is the analytical study of the basic part of an EV, in order to be obtained a good energy saving. For this purpose the charging unit of an EV is studied. The specifications which must fulfill this device are exhibited and the Flyback topology is suggested as the optimal. However it appears some important problems. For this purpose, a new strategy of design based on the transformer.

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