626 resultados para digger-inverter


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A cascaded DC-DC boost converter is one of the ways to integrate hybrid battery types within a grid-tie inverter. Due to the presence of different battery parameters within the system such as, state-of-charge and/or capacity, a module based distributed power sharing strategy may be used. To implement this sharing strategy, the desired control reference for each module voltage/current control loop needs to be dynamically varied according to these battery parameters. This can cause stability problem within the cascaded converters due to relative battery parameter variations when using the conventional PI control approach. This paper proposes a new control method based on Lyapunov Functions to eliminate this issue. The proposed solution provides a global asymptotic stability at a module level avoiding any instability issue due to parameter variations. A detailed analysis and design of the nonlinear control structure are presented under the distributed sharing control. At last thorough experimental investigations are shown to prove the effectiveness of the proposed control under grid-tie conditions.

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This study describes an optimised modulation strategy based on switching state sequences for the hybrid-clamped multilevel converter. Two key control variables defined as 'phase shift angle' and 'switching state change' for a five-level hybrid-clamped inverter are proposed to improve all switches' operation, and by changing their values, different control methods can be obtained for modulation optimisation purposes. Two example methods can solve the voltage imbalance problem of the dc-link capacitors and furthermore avoid two switches' simultaneous switching transitions and improve the inverter's performance as compared with the traditional phase disposition pulse-width modulation strategy. A 6 kW prototype inverter is developed and a range of simulation and experiments are carried out for validation. It is found that simulation and experimental results are in a good agreement and the proposed modulation strategy is verified in terms of low-order harmonic reduction.

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In this paper, a new open-winding control strategy is proposed for a brushless doubly fed reluctance generator (BDFRG) used for stand-alone wind turbine or ship generators. The BDFRG is characterized with two windings on the stator: a power winding and a control winding. The control winding is fed with dual two-level three-phase converters, and a vector control scheme based on space vector pulsewidth modulation is designed. Compared with traditional three-level inverter systems, the dc-link voltage and the voltage rating of power devices in the proposed system are reduced by 50% while still greatly improving the reliability, redundancy, and fault tolerance of the proposed system by increasing the switching modes. Its performance is evaluated by simulation in MATLAB/Simulink and an experimental study on a 42-kW prototype machine.

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A high frequency physical phase variable electric machine model was developed using FE analysis. The model was implemented in a machine drive environment with hardware-in-the-loop. The novelty of the proposed model is that it is derived based on the actual geometrical and other physical information of the motor, considering each individual turn in the winding. This is the first attempt to develop such a model to obtain high frequency machine parameters without resorting to expensive experimental procedures currently in use. The model was used in a dynamic simulation environment to predict inverter-motor interaction. This includes motor terminal overvoltage, current spikes, as well as switching effects. In addition, a complete drive model was developed for electromagnetic interference (EMI) analysis and evaluation. This consists of the lumped parameter models of different system components, such as cable, inverter, and motor. The lumped parameter models enable faster simulations. The results obtained were verified by experimental measurements and excellent agreements were obtained. A change in the winding arrangement and its influence on the motor high frequency behavior has also been investigated. This was shown to have a little effect on the parameter values and in the motor high frequency behavior for equal number of turns. An accurate prediction of overvoltage and EMI in the design stages of the drive system would reduce the time required for the design modifications as well as for the evaluation of EMC compliance issues. The model can be utilized in the design optimization and insulation selection for motors. Use of this procedure could prove economical, as it would help designers develop and test new motor designs for the evaluation of operational impacts in various motor drive applications.

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Inverters play key roles in connecting sustainable energy (SE) sources to the local loads and the ac grid. Although there has been a rapid expansion in the use of renewable sources in recent years, fundamental research, on the design of inverters that are specialized for use in these systems, is still needed. Recent advances in power electronics have led to proposing new topologies and switching patterns for single-stage power conversion, which are appropriate for SE sources and energy storage devices. The current source inverter (CSI) topology, along with a newly proposed switching pattern, is capable of converting the low dc voltage to the line ac in only one stage. Simple implementation and high reliability, together with the potential advantages of higher efficiency and lower cost, turns the so-called, single-stage boost inverter (SSBI), into a viable competitor to the existing SE-based power conversion technologies.^ The dynamic model is one of the most essential requirements for performance analysis and control design of any engineering system. Thus, in order to have satisfactory operation, it is necessary to derive a dynamic model for the SSBI system. However, because of the switching behavior and nonlinear elements involved, analysis of the SSBI is a complicated task.^ This research applies the state-space averaging technique to the SSBI to develop the state-space-averaged model of the SSBI under stand-alone and grid-connected modes of operation. Then, a small-signal model is derived by means of the perturbation and linearization method. An experimental hardware set-up, including a laboratory-scaled prototype SSBI, is built and the validity of the obtained models is verified through simulation and experiments. Finally, an eigenvalue sensitivity analysis is performed to investigate the stability and dynamic behavior of the SSBI system over a typical range of operation. ^

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Renewable or sustainable energy (SE) sources have attracted the attention of many countries because the power generated is environmentally friendly, and the sources are not subject to the instability of price and availability. This dissertation presents new trends in the DC-AC converters (inverters) used in renewable energy sources, particularly for photovoltaic (PV) energy systems. A review of the existing technologies is performed for both single-phase and three-phase systems, and the pros and cons of the best candidates are investigated. In many modern energy conversion systems, a DC voltage, which is provided from a SE source or energy storage device, must be boosted and converted to an AC voltage with a fixed amplitude and frequency. A novel switching pattern based on the concept of the conventional space-vector pulse-width-modulated (SVPWM) technique is developed for single-stage, boost-inverters using the topology of current source inverters (CSI). The six main switching states, and two zeros, with three switches conducting at any given instant in conventional SVPWM techniques are modified herein into three charging states and six discharging states with only two switches conducting at any given instant. The charging states are necessary in order to boost the DC input voltage. It is demonstrated that the CSI topology in conjunction with the developed switching pattern is capable of providing the required residential AC voltage from a low DC voltage of one PV panel at its rated power for both linear and nonlinear loads. In a micro-grid, the active and reactive power control and consequently voltage regulation is one of the main requirements. Therefore, the capability of the single-stage boost-inverter in controlling the active power and providing the reactive power is investigated. It is demonstrated that the injected active and reactive power can be independently controlled through two modulation indices introduced in the proposed switching algorithm. The system is capable of injecting a desirable level of reactive power, while the maximum power point tracking (MPPT) dictates the desirable active power. The developed switching pattern is experimentally verified through a laboratory scaled three-phase 200W boost-inverter for both grid-connected and stand-alone cases and the results are presented.

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The main objective for physics based modeling of the power converter components is to design the whole converter with respect to physical and operational constraints. Therefore, all the elements and components of the energy conversion system are modeled numerically and combined together to achieve the whole system behavioral model. Previously proposed high frequency (HF) models of power converters are based on circuit models that are only related to the parasitic inner parameters of the power devices and the connections between the components. This dissertation aims to obtain appropriate physics-based models for power conversion systems, which not only can represent the steady state behavior of the components, but also can predict their high frequency characteristics. The developed physics-based model would represent the physical device with a high level of accuracy in predicting its operating condition. The proposed physics-based model enables us to accurately develop components such as; effective EMI filters, switching algorithms and circuit topologies [7]. One of the applications of the developed modeling technique is design of new sets of topologies for high-frequency, high efficiency converters for variable speed drives. The main advantage of the modeling method, presented in this dissertation, is the practical design of an inverter for high power applications with the ability to overcome the blocking voltage limitations of available power semiconductor devices. Another advantage is selection of the best matching topology with inherent reduction of switching losses which can be utilized to improve the overall efficiency. The physics-based modeling approach, in this dissertation, makes it possible to design any power electronic conversion system to meet electromagnetic standards and design constraints. This includes physical characteristics such as; decreasing the size and weight of the package, optimized interactions with the neighboring components and higher power density. In addition, the electromagnetic behaviors and signatures can be evaluated including the study of conducted and radiated EMI interactions in addition to the design of attenuation measures and enclosures.

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The increase in the efficiency of photo-voltaic systems has been the object of various studies the past few years. One possible way to increase the power extracted by a photovoltaic panel is the solar tracking, performing its movement in order to follow the sun’s path. One way to activate the tracking system is using an electric induction motor, which should have sufficient torque and low speed, ensuring tracking accuracy. With the use of voltage source inverters and logic devices that generate the appropriate switching is possible to obtain the torque and speed required for the system to operate. This paper proposes the implementation of a angular position sensor and a driver to be applied in solar tracker built at a Power Electronics and Renewable Energies Laboratory, located in UFRN. The speed variation of the motor is performed via a voltage source inverter whose PWM command to actuate their keys will be implemented in an FPGA (Field Programmable Gate Array) device and a TM4C microcontroller. A platform test with an AC induction machine of 1.5 CV was assembled for the comparative testing. The angular position sensor of the panel is implemented in a ATMega328 microcontroller coupled to an accelerometer, commanded by an Arduino prototyping board. The solar position is also calculated by the microcontroller from the geographic coordinates of the site where it was placed, and the local time and date obtained from an RTC (Real-Time Clock) device. A prototype of a solar tracker polar axis moved by a DC motor was assembled to certify the operation of the sensor and to check the tracking efficiency.

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The Solid Oxide Fuel Cell (SOFC) is a class of fuel cells that is capable of generating very high levels of power at high temperatures. SOFCs are used for stationary power generation and as Combined Heat and Power (CHP) systems. In spite of all the beneficial features of the SOFC, the propagation of ripple currents, due to nonlinear loads, is a challenging problem, as it interferes with the physical operation of the fuel cell. The purpose of this thesis is to identify the cause of ripples and attempt to eliminate or reduce the ripple propagation through the use of Active Power Filters (APF). To this end, a systematic approach to modeling the fuel cell to account for its nonlinear behavior in the presence of current ripples is presented. A model of a small fuel cell power system which consists of a fuel cell, a DC-DC converter, a single-phase inverter and a nonlinear load is developed in MATLAB/Simulink environment. The extent of ripple propagation, due to variations in load magnitude and frequency, are identified using frequency spectrum analysis. In order to reduce the effects of ripple propagation, an APF is modeled to remove ripples from the DC fuel cell current. The emphasis of this thesis is based on the idea that small fuel cell systems cannot implement large passive filters to cancel the effects of ripple propagation and hence, the compact APF topology effectively protects the fuel cell from propagating ripples and improves its electrical performance.

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Con questa tesi di laurea si vogliono analizzare le possibili cause e motivazioni e le molteplici soluzioni di fenomeni presenti sia in ambito domestico sia in ambito industriale e riguardanti i sistemi di protezione per i guasti verso terra. Le problematiche analizzate, come si vedrà, sono sempre più tematiche di attualità e questo a causa del sempre maggiore utilizzo di elettronica di potenza, convertitori, inverter, computer e controlli elettronici in generale. Se da un lato questi carichi sono sempre più sensibili ad interruzioni o anomalie nella tensione ai loro capi, d’altro canto spesso essi stessi sono tra i colpevoli delle anomalie stesse. In un primo momento si vedrà un fenomeno molto comune e conosciuto che è lo scatto intempestivo del differenziale che può causare danni di una certa entità. In una seconda parte saranno poi analizzate altre problematicità legate all’interruttore differenziale ed ai sistemi di terra, in particolare per quanto riguarda il loro funzionamento nel caso di correnti di guasto non perfettamente sinusoidali o totalmente non sinusoidali. La non sinusoidalità, originata prevalentemente dai carichi non lineari, oltre a dare le problematiche ben conosciute sia a livello di rete sia a livello dei carichi collegati (aumenti delle perdite, malfunzionamenti, sovraccarico del conduttore di neutro) dà distorsione della corrente (in questo caso di quella di guasto a terra) modificando sia il comportamento del differenziale in caso di guasto (ad esempio mancato intervento dell’interruttore con i conseguenti pericoli per l’essere umano) sia le curve di sicurezza. Per procedere ad un’analisi più dettagliata delle non idealità nel funzionamento nell’interruttore automatico differenziale (sia per quanto riguarda lo scatto intempestivo sia per quanto riguarda altre problematiche) è necessario conoscerne in maniera adeguata sia la struttura sia il principio di funzionamento ed anche le diverse tipologie esistenti sul mercato.

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This paper makes a comparative study of two Soft Single Switched Quadratic Boost Converters (SSS1 and SSS2) focused on Maximum Power Point Tracking (MPPT) of a PV array using Perturb and Observe (P&O) algorithm. The proposed converters maintain the static gain characteristics and dynamics of the original converter with the advantage of considerably reducing the switching losses and Electromagnetic Interference (EMI). It is displayed the input voltage Quadratic Boost converter modeling; qualitative and quantitative analysis of soft switching converters, defining the operation principles, main waveforms, time intervals and the state variables in each operation steps, phase planes of resonant elements, static voltage gain expressions, analysis of voltage and current efforts in semiconductors and the operational curves at 200 W to 800 W. There are presented project of PI, PID and PID + Notch compensators for MPPT closed-loop system and resonant elements design. In order to analyze the operation of a complete photovoltaic system connected to the grid, it was chosen to simulate a three-phase inverter using the P-Q control theory of three-phase instantaneous power. Finally, the simulation results and experimental with the necessary comparative analysis of the proposed converters will be presented.

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Due to the growing concerns associated with fossil fuels, emphasis has been placed on clean and sustainable energy generation. This has resulted in the increase in Photovoltaics (PV) units being integrated into the utility system. The integration of PV units has raised some concerns for utility power systems, including the consequences of failing to detect islanding. Numerous methods for islanding detection have been introduced in literature. They can be categorized into local methods and remote methods. The local methods are categorically divided into passive and active methods. Active methods generally have smaller Non-Detection Zone (NDZ) but the injecting disturbances will slightly degrade the power quality and reliability of the power system. Slip Mode Frequency Shift Islanding Detection Method (SMS IDM) is an active method that uses positive feedback for islanding detection. In this method, the phase angle of the converter is controlled to have a sinusoidal function of the deviation of the Point of Common Coupling (PCC) voltage frequency from the nominal grid frequency. This method has a non-detection zone which means it fails to detect islanding for specific local load conditions. If the SMS IDM employs a different function other than the sinusoidal function for drifting the phase angle of the inverter, its non-detection zone could be smaller. In addition, Advanced Slip Mode Frequency Shift Islanding Detection Method (Advanced SMS IDM), which has been introduced in this thesis, eliminates the non-detection zone of the SMS IDM. In this method the parameters of SMS IDM change based on the local load impedance value. Moreover, the stability of the system is investigated by developing the dynamical equations of the system for two operation modes; grid connected and islanded mode. It is mathematically proven that for some loading conditions the nominal frequency is an unstable point and the operation frequency slides to another stable point, while for other loading conditions the nominal frequency is the only stable point of the system upon islanding occurring. Simulation and experimental results show the accuracy of the proposed methods in detection of islanding and verify the validity of the mathematical analysis.

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Because of their extraordinary structural and electrical properties, two dimensional materials are currently being pursued for applications such as thin-film transistors and integrated circuit. One of the main challenges that still needs to be overcome for these applications is the fabrication of air-stable transistors with industry-compatible complementary metal oxide semiconductor (CMOS) technology. In this work, we experimentally demonstrate a novel high performance air-stable WSe2 CMOS technology with almost ideal voltage transfer characteristic, full logic swing and high noise margin with different supply voltages. More importantly, the inverter shows large voltage gain (~38) and small static power (Pico-Watts), paving the way for low power electronic system in 2D materials.

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O propósito deste trabalho consistiu em elaborar uma análise aprofundada da música cabo-verdiana no contexto educativo enquanto expressão artística, identificando e valorizando o seu papel na identidade nacional e descrevendo os fatores que interferem na sua implementação e generalização a todos os níveis do ensino. Tendo como modelo de pesquisa uma investigação-ação e utilizando uma metodologia qualitativa e interpretativa, desenvolvida no contexto da Educação Artística em Cabo Verde a nível formal e informal, realizou-se um concerto pedagógico no Centro Cultural de Mindelo, ilha de São Vicente Cabo Verde. O projeto debruçou-se sobre a análise dos dois principais géneros musicais cabo-verdianos, a Morna e a Coladeira, os grandes compositores e intérpretes destes géneros, no sentido de provocar uma reflexão e inclusão do estudo da Expressão Musical no contexto educativo cabo-verdiano, como disciplina autónoma capaz de despertar o sentimento de identidade e valores que caracterizam uma Nação. A escolha do concerto através da avaliação dos espectadores permitiu concluir que o ensino aprendizagem da Música em Cabo Verde no contexto educativo requer uma outra abordagem, a elaboração de programas, assim como a contratação de docentes competentes para desenvolvimento dos conteúdos. Mindelo, como ilha tradicionalmente artística, está aquém desta referência e impõe a introdução de políticas educativas que possam inverter esta tendência e criar condições adequadas para que os alunos e a população se interiorizem da importância do ensino das Expressões Artísticas como vetores importantes na transmissão de identidade e valores. A prossecução de investigação nesta área e o incentivo ao desenvolvimento desta temática recomendam-se como forma de dar a conhecer os grandes artistas cabo-verdianos, as grandes composições e despertar o interesse no seio das crianças e dos jovens para a importância do estudo das Artes como uma forma lúdica de aprender e uma possibilidade de ser um artista como tantos que cantaram e cantam Cabo Verde.

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Este trabalho analisa as políticas de ação social escolar no ensino superior público a partir da década de 60, nomeadamente na atribuição de bolsas de estudo a estudantes da Universidade de Coimbra. Analisa ainda as alterações que estas políticas têm vindo a sofrer ao longo dos anos e a sua relação com o direito ao ensino e igualdade de oportunidades de acesso e êxito escolar consagrado na Constituição Portuguesa. O Serviço Social tem uma intervenção relevante nos Serviços de Ação Social da Universidade de Coimbra, em várias áreas, praticamente desde a sua criação. Neste trabalho, a análise das práticas do Serviço Social centra-se na atribuição de bolsas de estudo, nos últimos 10 anos. Trata-se de um estudo exploratório realizado com base em pesquisa bibliográfica e documental. Outra fonte de recolha de informação foi a entrevista, realizada à Assistente Social, e Responsável pelo Serviço de Bolsas entre 1978 e 2012, Dra. Elisa Decq Motta. As alterações às políticas de ação social no que se refere à atribuição de bolsas de estudo, relacionadas com o cálculo dos rendimentos ou com as condições de elegibilidade, têm vindo a pôr em causa o direito à igualdade de oportunidades dos estudantes, no acesso e na permanência no ensino superior. Muitos deles, economicamente carenciados, estão a ficar de fora do sistema de ação social no ensino superior em virtude destas alterações. É preocupação dos Serviços de Ação Social da Universidade de Coimbra a regressão a que se tem vindo a assistir, e as suas consequências para os estudantes do ensino superior, pelo que é urgente inverter este caminho. / This study analyses the academic social policies in the high-level educational institutions since the 60’s, namely in the allocation of scholarships to students from the University of Coimbra. Furthermore, the changes that such policies have been suffering over the last years, and their relationship with the right to education and equal opportunities to the access and scholar success that every citizen has, as stated by the Portuguese Constitution, are also examined. Since its establishment, the Social Service is a relevant area of the Social Services of the University of Coimbra, in several areas. The analyses present in this study will focus on the last 10 years, specifically on the scholarships allocation. This study is based on literature and documents research, as well as on an interview to the Social Worker responsible for the Scholarships Service from 1978 to 2012, Dra. Elisa Decq Motta. The social policies changes related with the scholarships assignment, especially those associated with the income assessment and eligibility conditions are serious hindrances to the right of equal admission opportunity and maintenance in higher education that all students have. Due to these changes, several students with financial issues are not supported by the social service in higher education. The observed changes, and its consequences for students are a matter of concern for the Social Services of University of Coimbra. It is imperative to revert the current situation.