105 resultados para Optical multi-channel analyzer
Resumo:
Characteristics of tunable wavelength pi'n/pin filters based on a-SiC:H multilayered stacked cells are studied both experimental and theoretically. Results show that the device combines the demultiplexing operation with the simultaneous photodetection and self amplification of the signal. An algorithm to decode the multiplex signal is established. A capacitive active band-pass filter model is presented and supported by an electrical simulation of the state variable filter circuit. Experimental and simulated results show that the device acts as a state variable filter. It combines the properties of active high-pass and low-pass filter sections into a capacitive active band-pass filter using a changing photo capacitance to control the power delivered to the load.
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Thin films of TiO2 were doped with Au by ion implantation and in situ during the deposition. The films were grown by reactive magnetron sputtering and deposited in silicon and glass substrates at a temperature around 150 degrees C. The undoped films were implanted with Au fiuences in the range of 5 x 10(15) Au/cm(2)-1 x 10(17) Au/cm(2) with a energy of 150 keV. At a fluence of 5 x 10(16) Au/cm(2) the formation of Au nanoclusters in the films is observed during the implantation at room temperature. The clustering process starts to occur during the implantation where XRD estimates the presence of 3-5 nm precipitates. After annealing in a reducing atmosphere, the small precipitates coalesce into larger ones following an Ostwald ripening mechanism. In situ XRD studies reveal that Au atoms start to coalesce at 350 degrees C, reaching the precipitates dimensions larger than 40 nm at 600 degrees C. Annealing above 700 degrees C promotes drastic changes in the Au profile of in situ doped films with the formation of two Au rich regions at the interface and surface respectively. The optical properties reveal the presence of a broad band centered at 550 nm related to the plasmon resonance of gold particles visible in AFM maps. (C) 2011 Elsevier B.V. All rights reserved.
Resumo:
As recentes e crescentes modificações no sector eléctrico, tanto nacional como mundial, tornam actualmente os mercados de electricidade um caso de estudo singular e interessante. De facto, o desenvolvimento de ferramentas de análise que permitem avaliar a evolução dos comportamentos que estes mercados adoptam face à dinâmica das suas constantes transformações é, à partida, uma mais valia para as suas principais entidades. Muitas vezes os negociadores deste sector ficam satisfeitos com o resultado final. Contudo, se investigarmos mais minuciosamente, dinheiro e recursos são desperdiçados e potenciais ganhos permanecem por descobrir. Uma negociação automática, que utilize agentes computacionais autónomos, promete um elevado nível de eficiência e acordos de maior qualidade. Muitos modelos de mercado actuais são simulados através de ferramentas computacionais, algumas das quais baseadas em tecnologia multi-agente. Esta dissertação apresenta um simulador que permite ajudar a resolver vários problemas inerentes à contratação bilateral de energia. O simulador envolve dois agentes do mercado de retalho, um comprador e um vendedor de energia eléctrica, e suporta a negociação bilateral multidimensional. Cada agente tem no seu portefólio um conjunto de opções que modelam o seu comportamento individual. A essas opções dá-se o nome de estratégias de negociação. O simulador é composto por estratégias de concessão e imitativas. As estratégias de concessão ditam a velocidade de cedência que cada agente terá, enquanto que as estratégias imitativas têm em conta o comportamento passado do oponente, antes da formulação de uma nova oferta. A validação experimental do simulador foi efectuada através da realização de uma experiência computacional. O método experimental consistiu na experimentação controlada. A experiência teve como principal objectivo validar as estratégias através da verificação, em computador, de um conjunto de hipóteses formuladas através de diversas observações e conclusões da negociação real. Os resultados confirmaram as hipóteses, permitindo concluir que a estratégia de concessão baseada no volume de energia conduz a um melhor benefício para ambos os negociadores, enquanto que a estratégia de concessão baseada na prioridade dos itens conduz à troca de um maior número de propostas negociais.
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Nos últimos anos, o sector elétrico tem sofrido profundas alterações decorrentes do processo de reestruturação. Como consequência, surgiram diferentes estruturas de mercado, tais como em bolsa, contratos bilaterais e mistos, tendo como objectivo o aumento da competitividade. Nos mercados competitivos, os consumidores de electricidade podem escolher livremente os seus fornecedores de energia, em função de possíveis vantagens económicas e da qualidade do serviço. A comercialização de electricidade pode ser realizada em mercados organizados ou através de contratação bilateral entre comercializadores e consumidores. Actualmente, existem várias ferramentas de simulação baseadas em técnicas multiagente que permitem modelar, parcialmente ou na totalidade, os mercados de electricidade, possibilitando simulações de negociação de preços e volumes através de contratos bilaterais, transacções em bolsas de energia, etc. No entanto, estas ferramentas apresentam algumas limitações devido à complexidade dos sistemas elétricos. Neste contexto, esta dissertação tem como principal objectivo desenvolver um simulador de contratos bilaterais em mercados de energia elétrica, baseado na tecnologia multi-agente. O simulador inclui dois tipos de entidades: retalhistas e consumidores de electricidade com diferentes perfis de carga. Além disso, é composto por várias estratégias de negociação, que têm como objectivo maximizar o benefício dos agentes retalhistas e minimizar o custo dos consumidores finais de electricidade. Uma das estratégias, referente ao consumidor, é direccionada para a eficiência no consumo, sendo baseada na conhecida técnica de Participação Activa dos Consumidores (ou Demand Response). O teste do simulador foi efectuado através da resolução de dois casos práticos, baseados em dados do MIBEL. De forma sucinta, os resultados obtidos com as estratégias permitem concluir que os intervenientes no mercado apresentam um comportamento esperado na gestão de preços e volumes de energia, constatando-se que a ferramenta desenvolvida constitui um auxiliar importante à tomada de decisão inerente à negociação bilateral em mercados de electricidade.
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Neste trabalho são apresentados o dimensionamento e os resultados comparativos para um edifício de serviços (escritórios), na vertente económica de aquisição, instalação, exploração e manutenção, de um sistema de climatização a água, com um sistema de climatização a volume de refrigerante variável como alternativa. Utilizando um software de simulação dinâmica para determinar as cargas térmicas a que o edifício em estudo estará sujeito, de forma a dimensionar um sistema de climatização que respeite os regulamentos em vigor pelo actual sistema de certificação energética, foram dimensionados os dois sistemas de climatização dentro dos acima indicados, tento sido efectuados vários estudos comparativos, por forma a poderem ser futuramente utilizados como base de definição do sistema a adotar por parte dos projetistas do ramo.
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Amorphous Si/SiC photodiodes working as photo-sensing or wavelength sensitive devices have been widely studied. In this paper single and stacked a-SiC:H p-i-n devices, in different geometries and configurations, are reviewed. Several readout techniques, depending on the desired applications (image sensor, color sensor, wavelength division multiplexer/demultiplexer device) are proposed. Physical models are presented and supported by electrical and numerical simulations of the output characteristics of the sensors.
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In this paper we present results on the use of a multilayered a-SiC:H heterostructure as a wavelength-division demultiplexing device for the visible light spectrum. The proposed device is composed of two stacked p-i-n photodiodes with intrinsic absorber regions adjusted to short and long wavelength absorption and carrier collection. An optoelectronic characterisation of the device was performed in the visible spectrum. Demonstration of the device functionality for WDM applications was done with three different input channels covering the long, the medium and the short wavelengths in the visible range. The recovery of the input channels is explained using the photocurrent spectral dependence on the applied voltage. An electrical model of the WDM device is proposed and supported by the solution of the respective circuit equations. Short range optical communications constitute the major application field, however other applications are also foreseen.
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This paper reports on optical filters based on a-SiC:H tandem pi'n/pin heterostructures. The spectral sensitivity is analyzed. Steady state optical bias with different wavelengths are applied from each front and back sides and the photocurrent is measured. Results show that it is possible to control the sensitivity of the device and to tune a specific wavelength range by combining radiations with complementary light penetration depths. The transfer characteristics effects due to changes in the front and back optical bias wavelength are discussed. Depending on the wavelength of the external background and irradiation side, the device acts either as a short- or a long-pass band filter or as a band-stop filter. The output waveform presents a nonlinear amplitude-dependent response to the wavelengths of the input channels.
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WDM multilayered SiC/Si devices based on a-Si:H and a-SiC:H filter design are approached from a reconfigurable point of view. Results show that the devices, under appropriated optical bias, act as reconfigurable active filters that allow optical switching and optoelectronic logic functions development. Under front violet irradiation the magnitude of the red and green channels are amplified and the blue and violet reduced. Violet back irradiation cuts the red channel, slightly influences the magnitude of the green and blue ones and strongly amplifies de violet channel. This nonlinearity provides the possibility for selective removal of useless wavelengths. Particular attention is given to the amplification coefficient weights, which allow taking into account the wavelength background effects when a band needs to be filtered from a wider range of mixed signals, or when optical active filter gates are used to select and filter input signals to specific output ports in WDM communication systems. A truth table of an encoder that performs 8-to-1 multiplexer (MUX) function is presented.
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In this paper a solution to an highly constrained and non-convex economical dispatch (ED) problem with a meta-heuristic technique named Sensing Cloud Optimization (SCO) is presented. The proposed meta-heuristic is based on a cloud of particles whose central point represents the objective function value and the remaining particles act as sensors "to fill" the search space and "guide" the central particle so it moves into the best direction. To demonstrate its performance, a case study with multi-fuel units and valve- point effects is presented.
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The transducer consists of a semiconductor device based on two stacked -i-n heterostructures that were designed to detect the emissions of the fluorescence resonance energy transfer between fluorophores in the cyan (470 nm) and yellow (588 nm) range of the spectrum. This research represents a preliminary study on the use of such wavelength-sensitive devices as photodetectors for this kind of application. The device was characterized through optoelectronic measurements concerning spectral response measurements under different electrical and optical biasing conditions. To simulate the fluorescence resonance energy transfer (FRET) pairs, a chromatic time-dependent combination of cyan and yellow wavelengths was applied to the device. The generated photocurrent was measured under reverse and forward bias to read out the output photocurrent signal. A different wavelength-biasing light was also superimposed. Results show that under reverse bias, the photocurrent signal presents four separate levels, each one assigned to the different wavelength combinations of the FRET pairs. If a blue background is superimposed, the yellow channel is enhanced and the cyan suppressed, while under red irradiation, the opposite behavior occurs. So, under suitable biasing light, the transducer is able to detect separately the cyan and yellow fluorescence pairs. An electrical model, supported by a numerical simulation, supports the transduction mechanism of the device.
Resumo:
Amorphous SiC tandem heterostructures are used to filter a specific band, in the visible range. Experimental and simulated results are compared to validate the use of SiC multilayered structures in applications where gain compensation is needed or to attenuate unwanted wavelengths. Spectral response data acquired under different frequencies, optical wavelength control and side irradiations are analyzed. Transfer function characteristics are discussed. Color pulsed communication channels are transmitted together and the output signal analyzed under different background conditions. Results show that under controlled wavelength backgrounds, the device sensitivity is enhanced in a precise wavelength range and quenched in the others, tuning or suppressing a specific band. Depending on the background wavelength and irradiation side, the device acts either as a long-, a short-, or a band-rejection pass filter. An optoelectronic model supports the experimental results and gives insight on the physics of the device.
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Optical fiber microwires (OFMs) are nonlinear optical waveguides that support several spatial modes. The multimodal generalized nonlinear Schrodinger equation (MM-GNLSE) is deduced taking into account the linear and nonlinear modal coupling. A detailed theoretical description of four-wave mixing (FWM) considering the modal coupling is developed. Both, the intramode and the intermode phase-matching conditions is calculated for an optical microwire in a strong guiding regime. Finally, the FWM dynamics is studied and the amplitude evolution of the pump beams, the signal and the idler are analyzed.
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Multilayered heterostructures based on embedded a-Si:H and a-SiC:H p-i-n filters are analyzed from differential voltage design perspective using short- and long-pass filters. The transfer functions characteristics are presented. A numerical simulation is presented to explain the filtering properties of the photonic devices. Several monochromatic pulsed lights, separately (input channels) or in a polychromatic mixture (multiplexed signal) at different bit rates, illuminated the device. Steady-state optical bias is superimposed from the front and the back side. Results show that depending on the wavelength of the external background and impinging side, the device acts either as a short- or a long-pass band filter or as a band-stop filter. Particular attention is given to the amplification coefficient weights, which allow to take into account the wavelength background effects when a band or frequency needs to be filtered or the gate switch, in which optical active filter gates are used to select and filter input signals to specific output ports in wavelength division multiplexing (WDM) communication systems. This nonlinearity provides the possibility for selective removal or addition of wavelengths. A truth table of an encoder that performs 8-to-1 MUX function exemplifies the optoelectronic conversion.
Resumo:
The application of a-SiC:H/a-Si:H pinpin photodiodes for optoelectronic applications as a WDM demultiplexer device has been demonstrated useful in optical communications that use the WDM technique to encode multiple signals in the visible light range. This is required in short range optical communication applications, where for costs reasons the link is provided by Plastic Optical Fibers. Characterization of these devices has shown the presence of large photocapacitive effects. By superimposing background illumination to the pulsed channel the device behaves as a filter, producing signal attenuation, or as an amplifier, producing signal gain, depending on the channel/background wavelength combination. We present here results, obtained by numerical simulations, about the internal electric configuration of a-SiC:H/a-Si:H pinpin photodiode. These results address the explanation of the device functioning in the frequency domain to a wavelength tunable photo-capacitance due to the accumulation of space charge localized at the bottom diode that, according to the Shockley-Read-Hall model, it is mainly due to defect trapping. Experimental result about measurement of the photodiode capacitance under different conditions of illumination and applied bias will be also presented. The combination of these analyses permits the description of a wavelength controlled photo-capacitance that combined with the series and parallel resistance of the diodes may result in the explicit definition of cut off frequencies for frequency capacitive filters activated by the light background or an oscillatory resonance of photogenerated carriers between the two diodes. (C) 2013 Elsevier B.V. All rights reserved.