949 resultados para Embedded processor
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A manutenção, durante vários anos, traduziu-se num conceito paliativo de instalações e equipamentos, o que se veio a revelar como uma atitude negligente perante o Homem e o Ambiente. As preocupações ambientais estão na ordem do dia e têm sido muitas as vozes que se têm levantado para que o consumo de energia seja mais equilibrado e para que as emissões de CO2 diminuam de forma a preservar o Planeta. De acordo com a resolução do Conselho Europeu, em 2007 (1), foi apresentado um pacote de propostas que visam a sustentabilidade e estimulam a Eficiência Energética (EE), com o objectivo de reduzir os consumos energéticos dos edifícios, quer estes sejam novos ou reabilitados. Segundo a Direcção Geral de Energia e Geologia os edifícios são responsáveis por 60% dos consumos de energia eléctrica, consumo esse que pode ser reduzido em mais de 50%, através de medidas de EE, traduzindo-se numa redução de 400 milhões de toneladas de CO2 por ano. (2) Para além de medidas de EE, também as práticas de manutenção preventiva podem contribuir para a diminuição dos consumos energéticos e de emissões de CO2. Segundo o Institute for Building Efficiency práticas de manutenção preventiva em equipamentos de Aquecimento Ventilação e Ar Condicionado (AVAC) reduzem os consumos energéticos de 10 a 20% e, em contrapartida, a negligência na execução da manutenção pode aumentar os consumos energéticos de 30 a 60%. (3) Uma outra análise de valores a ter em conta, é a Intensidade Energética (IE). Leia-se IE como sendo o valor global da energia consumida num país a dividir pelo seu produto interno bruto. A contribuição do sector dos serviços para a IE nacional era de 17% no ano de 2005. (4) Se a estes dados acrescentarmos que 70% dessa energia é consumida por equipamentos AVAC (5) e que práticas de manutenção reduzem esses valores entre 10 a 20%, pode concluir-se que a redução de custos energéticos associada à manutenção preventiva é efectiva e significativa. Apresentando um cenário ideal e hipotético, se ao contributo do sector dos serviços, para a IE nacional, se isolar o valor referente a equipamentos de AVAC, obtem-se uma IE de aproximadamente 12%. Se adicionalmente se considerar uma taxa de redução, relativa à execução da manutenção, entre 10 e 20%, Portugal obteria uma IE, relativamente aos consumos energéticos em edificios de serviços, não de 17% mas sim entre 14,6% e 15,8%. Neste trabalho pretende-se comprovar que um plano de actividades de manutenção equilibrado, monitorizado, e gerido de forma eficaz e funcional, é uma ferramenta fundamental no cumprimento de objectivos e metas europeias traçadas, que se reúnem num objectivo comum de preservação do planeta. A adopção deste tipo de medidas contribuirá para a racionalização dos consumos energéticos e para o aumento da vida útil dos equipamentos, bem como para a melhoria do desempenho económico e financeiro das organizações, tal como se poderá ler mais à frente neste trabalho. Será também analisado um caso prático, verificando a eficácia das medidas tomadas durante as intervenções preventivas de manutenção, sendo que para isso será estudado o comportamento de um equipamento, antes e após a realização de tarefas de manutenção preventiva. Tentar-se-á, junto de gestores de edifícios, recolher a opinião que têm sobre a importância da manutenção. Ao longo de toda a pesquisa foi possível consolidar a hipótese formulada inicialmente no que concerne ao contributo da manutenção para a sustentabilidade, quer através da revisão da literatura, quer nos testes efectuados a equipamentos. Foi possível confirmar que um plano de manutenção ajustado, monitorizado e cumprido é uma ferramenta na diminuição dos consumos energéticos, aumento da vida útil de equipamentos e por sua vez na diminuição de emissões de CO2. Verificou-se também que o controlo de poluentes e ventilação adequada dos edifícios são uma ferramenta essencial para a qualidade do ar interior, parâmetros facilmente controlados nas actividades de manutenção. O contributo das opiniões recolhidas entre os gestores de edifícios, para este estudo, foi também bastante importante, uma vez que todos eles reconhecem o papel importante da manutenção, mas nem todos estão sensibilizados para o seu papel na sustentabilidade do planeta. Nesta dissertação é deixado um alerta: o crescimento da população mundial e a consequente utilização de recursos naturais que são finitos, não sendo controlado de uma forma sustentada, pode resultar na destruição de um planeta único. O papel negativo do Homem nas alterações climáticas é inequívoco e é necessário melhorar a sua relação com o Ambiente. Cada ser humano está inserido na sua comunidade e dentro dela tem a sua função, cabe a cada um exercer esta responsabilidade nas suas actividades do dia-a-dia.
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Heterogeneous multicore platforms are becoming an interesting alternative for embedded computing systems with limited power supply as they can execute specific tasks in an efficient manner. Nonetheless, one of the main challenges of such platforms consists of optimising the energy consumption in the presence of temporal constraints. This paper addresses the problem of task-to-core allocation onto heterogeneous multicore platforms such that the overall energy consumption of the system is minimised. To this end, we propose a two-phase approach that considers both dynamic and leakage energy consumption: (i) the first phase allocates tasks to the cores such that the dynamic energy consumption is reduced; (ii) the second phase refines the allocation performed in the first phase in order to achieve better sleep states by trading off the dynamic energy consumption with the reduction in leakage energy consumption. This hybrid approach considers core frequency set-points, tasks energy consumption and sleep states of the cores to reduce the energy consumption of the system. Major value has been placed on a realistic power model which increases the practical relevance of the proposed approach. Finally, extensive simulations have been carried out to demonstrate the effectiveness of the proposed algorithm. In the best-case, savings up to 18% of energy are reached over the first fit algorithm, which has shown, in previous works, to perform better than other bin-packing heuristics for the target heterogeneous multicore platform.
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Many-core platforms are an emerging technology in the real-time embedded domain. These devices offer various options for power savings, cost reductions and contribute to the overall system flexibility, however, issues such as unpredictability, scalability and analysis pessimism are serious challenges to their integration into the aforementioned area. The focus of this work is on many-core platforms using a limited migrative model (LMM). LMM is an approach based on the fundamental concepts of the multi-kernel paradigm, which is a promising step towards scalable and predictable many-cores. In this work, we formulate the problem of real-time application mapping on a many-core platform using LMM, and propose a three-stage method to solve it. An extended version of the existing analysis is used to assure that derived mappings (i) guarantee the fulfilment of timing constraints posed on worst-case communication delays of individual applications, and (ii) provide an environment to perform load balancing for e.g. energy/thermal management, fault tolerance and/or performance reasons.
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Maintaining a high level of data security with a low impact on system performance is more challenging in wireless multimedia applications. Protocols that are used for wireless local area network (WLAN) security are known to significantly degrade performance. In this paper, we propose an enhanced security system for a WLAN. Our new design aims to decrease the processing delay and increase both the speed and throughput of the system, thereby making it more efficient for multimedia applications. Our design is based on the idea of offloading computationally intensive encryption and authentication services to the end systems’ CPUs. The security operations are performed by the hosts’ central processor (which is usually a powerful processor) before delivering the data to a wireless card (which usually has a low-performance processor). By adopting this design, we show that both the delay and the jitter are significantly reduced. At the access point, we improve the performance of network processing hardware for real-time cryptographic processing by using a specialized processor implemented with field-programmable gate array technology. Furthermore, we use enhanced techniques to implement the Counter (CTR) Mode with Cipher Block Chaining Message Authentication Code Protocol (CCMP) and the CTR protocol. Our experiments show that it requires timing in the range of 20–40 μs to perform data encryption and authentication on different end-host CPUs (e.g., Intel Core i5, i7, and AMD 6-Core) as compared with 10–50 ms when performed using the wireless card. Furthermore, when compared with the standard WiFi protected access II (WPA2), results show that our proposed security system improved the speed to up to 3.7 times.
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The last decade has witnessed a major shift towards the deployment of embedded applications on multi-core platforms. However, real-time applications have not been able to fully benefit from this transition, as the computational gains offered by multi-cores are often offset by performance degradation due to shared resources, such as main memory. To efficiently use multi-core platforms for real-time systems, it is hence essential to tightly bound the interference when accessing shared resources. Although there has been much recent work in this area, a remaining key problem is to address the diversity of memory arbiters in the analysis to make it applicable to a wide range of systems. This work handles diverse arbiters by proposing a general framework to compute the maximum interference caused by the shared memory bus and its impact on the execution time of the tasks running on the cores, considering different bus arbiters. Our novel approach clearly demarcates the arbiter-dependent and independent stages in the analysis of these upper bounds. The arbiter-dependent phase takes the arbiter and the task memory-traffic pattern as inputs and produces a model of the availability of the bus to a given task. Then, based on the availability of the bus, the arbiter-independent phase determines the worst-case request-release scenario that maximizes the interference experienced by the tasks due to the contention for the bus. We show that the framework addresses the diversity problem by applying it to a memory bus shared by a fixed-priority arbiter, a time-division multiplexing (TDM) arbiter, and an unspecified work-conserving arbiter using applications from the MediaBench test suite. We also experimentally evaluate the quality of the analysis by comparison with a state-of-the-art TDM analysis approach and consistently showing a considerable reduction in maximum interference.
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Accepted in 13th IEEE Symposium on Embedded Systems for Real-Time Multimedia (ESTIMedia 2015), Amsterdam, Netherlands.
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This work describes a novel use for the polymeric film, poly(o-aminophenol) (PAP) that was made responsive to a specific protein. This was achieved through templated electropolymerization of aminophenol (AP) in the presence of protein. The procedure involved adsorbing protein on the electrode surface and thereafter electroploymerizing the aminophenol. Proteins embedded at the outer surface of the polymeric film were digested by proteinase K and then washed away thereby creating vacant sites. The capacity of the template film to specifically rebind protein was tested with myoglobin (Myo), a cardiac biomarker for ischemia. The films acted as biomimetic artificial antibodies and were produced on a gold (Au) screen printed electrode (SPE), as a step towards disposable sensors to enable point-of-care applications. Raman spectroscopy was used to follow the surface modification of the Au-SPE. The ability of the material to rebind Myo was measured by electrochemical techniques, namely electrochemical impedance spectroscopy (EIS) and square wave voltammetry (SWV). The devices displayed linear responses to Myo in EIS and SWV assays down to 4.0 and 3.5 μg/mL, respectively, with detection limits of 1.5 and 0.8 μg/mL. Good selectivity was observed in the presence of troponin T (TnT) and creatine kinase (CKMB) in SWV assays, and accurate results were obtained in applications to spiked serum. The sensor described in this work is a potential tool for screening Myo in point-of-care due to the simplicity of fabrication, disposability, short time response, low cost, good sensitivity and selectivity.
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Monitoring organic environmental contaminants is of crucial importance to ensure public health. This requires simple, portable and robust devices to carry out on-site analysis. For this purpose, a low-temperature co-fired ceramics (LTCC) microfluidic potentiometric device (LTCC/μPOT) was developed for the first time for an organic compound: sulfamethoxazole (SMX). Sensory materials relied on newly designed plastic antibodies. Sol–gel, self-assembling monolayer and molecular-imprinting techniques were merged for this purpose. Silica beads were amine-modified and linked to SMX via glutaraldehyde modification. Condensation polymerization was conducted around SMX to fill the vacant spaces. SMX was removed after, leaving behind imprinted sites of complementary shape. The obtained particles were used as ionophores in plasticized PVC membranes. The most suitable membrane composition was selected in steady-state assays. Its suitability to flow analysis was verified in flow-injection studies with regular tubular electrodes. The LTCC/μPOT device integrated a bidimensional mixer, an embedded reference electrode based on Ag/AgCl and an Ag-based contact screen-printed under a micromachined cavity of 600 μm depth. The sensing membranes were deposited over this contact and acted as indicating electrodes. Under optimum conditions, the SMX sensor displayed slopes of about −58.7 mV/decade in a range from 12.7 to 250 μg/mL, providing a detection limit of 3.85 μg/mL and a sampling throughput of 36 samples/h with a reagent consumption of 3.3 mL per sample. The system was adjusted later to multiple analyte detection by including a second potentiometric cell on the LTCC/μPOT device. No additional reference electrode was required. This concept was applied to Trimethoprim (TMP), always administered concomitantly with sulphonamide drugs, and tested in fish-farming waters. The biparametric microanalyzer displayed Nernstian behaviour, with average slopes −54.7 (SMX) and +57.8 (TMP) mV/decade. To demonstrate the microanalyzer capabilities for real applications, it was successfully applied to single and simultaneous determination of SMX and TMP in aquaculture waters.
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Euromicro Conference on Digital System Design (DSD2015), EPDSD - 3rd European Projects in Digital System Design, Funchal, Portugal.
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Trabalho apresentado no âmbito do Mestrado em Engenharia Informática, como requisito parcial para obtenção do grau de Mestre em Engenharia Informática
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As of today, AUTOSAR is the de facto standard in the automotive industry, providing a common software architec- ture and development process for automotive applications. While this standard is originally written for singlecore operated Elec- tronic Control Units (ECU), new guidelines and recommendations have been added recently to provide support for multicore archi- tectures. This update came as a response to the steady increase of the number and complexity of the software functions embedded in modern vehicles, which call for the computing power of multicore execution environments. In this paper, we enumerate and analyze the design options and the challenges of porting AUTOSAR-based automotive applications onto multicore platforms. In particular, we investigate those options when considering the emerging many- core architectures that provide a more scalable environment than the traditional multicore systems. Such platforms are suitable to enable massive parallel execution, and their design is more suitable for partitioning and isolating the software components.
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Euromicro Conference on Digital System Design (DSD 2015), Funchal, Portugal.
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6th Real-Time Scheduling Open Problems Seminar (RTSOPS 2015), Lund, Sweden.
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Baseado nos pressupostos subjacentes às práticas pedagógicas centradas na criança, este estudo tem por objetivo analisar a perspetiva dos educadores de infância sobre a promoção de oportunidades de escolha em contextos de ensino pré-escolar, tendo por referência o processo de inclusão de crianças com necessidades adicionais de suporte, bem como examinar os efeitos de um programa de intervenção, centrado na expansão de oportunidades de escolha, na participação de uma criança em situação de incapacidade. A fim de responder ao primeiro objetivo foi auscultada a opinião de 71 educadores de infância, através de uma pesquisa por inquérito. Já para o escrutínio dos efeitos do programa de intervenção, foi desenvolvido um estudo de caso único, tipo AB, avaliando o seu impacte na participação de uma criança de 4 anos com Paralisia Cerebral, através do uso de grelhas de observação e de uma entrevista semiestruturada à educadora. Os resultados sugerem que existe uma diferença significativa na facilidade de implementação de oportunidades de escolha, quando consideradas crianças com desenvolvimento típico e com necessidades adicionais de suporte, que parece também variar em função das diferentes rotinas do contexto pré-escolar e correlacionar-se com o nível de severidade da incapacidade. As características das crianças e as exigências curriculares são entendidas como as principais barreiras à implementação destas práticas. Os resultados sugerem, ainda, que o programa de intervenção – baseado no planeamento de oportunidades de escolha embebidas nos diferentes momentos da rotina do contexto pré-escolar - teve impacte positivo na participação da criança, com expansão dos indicadores de envolvimento, interação/comunicação e satisfação
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The 30th ACM/SIGAPP Symposium On Applied Computing (SAC 2015). 13 to 17, Apr, 2015, Embedded Systems. Salamanca, Spain.