997 resultados para Automação com CLP


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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Agronomia (Energia na Agricultura) - FCA

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A atual configuração do mundo do trabalho caracteriza-se pela complexidade e intensificação dos riscos à saúde do trabalhador. A presente tese aborda trabalho e saúde a partir do referencial da psicodinâmica de Dejours, privilegiando a categoria prazer-sofrimento, no contexto do trabalho com automação no Pólo Industrial de Manaus - PIM. Visando situar os aspectos macroeconômicos, apresenta-se a condição sócio-econômica dos operadores e o contexto da reestruturação produtiva do PIM, que se caracterizou por intensificação da automação. O objetivo dessa pesquisa foi analisar a organização de trabalho com automação e seus desdobramentos sobre a saúde dos operadores e das operadoras de máquina de inserção automática, focalizando o prazer-sofrimento e seus reflexos sobre o processo de saúde-adoecimento. Elegeu-se a abordagem qualitativa, em consonância com a fundamentação teórico-metodológica de Dejours. A pesquisa empírica foi realizada na área de inserção automática das duas empresas de origem japonesa, de grande porte, do segmento eletroeletrônico do PIM. Participaram como sujeitos 21 operadores de máquinas (dez de uma e onze de outra empresa). A principal fonte de dados foi a fala dos sujeitos, que responderam a uma entrevista individual semi-estruturada. Para a análise de dados foi realizada uma articulação da sistemática da Grounded Theory à base psicodinâmica, como opção de técnica qualitatativa adequada a entrevistas individuais. A preocupação com a “qualidade” se destacou como categoria central, mostrando-se presente em todas as esferas da organização de trabalho e modulando a vivência de prazer-sofrimento: dentre as principais fontes de prazer, realizar o trabalho com perfeição foi reiteradamente mencionado; em contrapartida, o medo de errar é uma das principais fontes de sofrimento, causa permanente de tensão, agravante do risco de adoecimento. O prazer provém da identificação com a tarefa de operar máquinas, de alta tecnologia, sem cometer erros; aprender mais e dominar a “tecnologia de ponta” é uma fonte de mobilização subjetiva. O sofrimento decorre da sobrecarga de trabalho, mal remunerado, sob intensa pressão por “qualidade”. Para suportar o sofrimento, os trabalhadores constroem estratégias coletivas de defesa: usam gracejos direcionados aos colegas que cometem erros, interpretados como recurso para reduzir o sofrimento originário do medo de falhar. Utilizam ainda grande diversidade de estratégias individuais de defesa, reflexo do individualismo. O reconhecimento, considerado na psicodinâmica como via privilegiada para a ressignificação do sofrimento, é pouco presente: menos de metade dos operadores se considera devidamente reconhecido por seu trabalho; mencionam os baixos salários como evidência da falta de reconhecimento. Em uma das empresas também falta o reconhecimento simbólico, agravando o sofrimento. O predomínio do sofrimento sobre o prazer no trabalho conduz a um desequilíbrio que resulta no uso exacerbado de defesas: manifestam-se as patologias sociais do trabalho, dentre as quais foi identificada a patologia da sobrecarga, relacionada à carga excessiva de trabalho que é importa aos operadores e às operadoras, pois à aquisição de máquinas corresponde a redução de pessoas. O sofrimento no trabalho, no PIM, está sendo intensificado com a automação, inserida no contexto de super-exploração do trabalho, integrante da organização flexível do capital.

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This paper aims to show practical and effectiveexperiencesfor lessons Industrial Automation Laboratory taught inundergraduate degreein ElectricalEngineering from the University Júlio MesquitaFilho - UNESP, Guaratinguetá. Experiments carriedsimulatecontrol and drive systems of electric three phase induction motors (MIT)widely usedinindustries. The experiments simulate a manufacturing environment where there isa need to control the activation and continuous operation ofelectricmotors. Seven experimentsthat simulatethe firing of electrical motors through a controlsystem, a driver along with asimulator loads coupled to the electric motor was developed. Experiments usinga Programmable Logic Controller (PLC) as acontroller,an inverter frequencyasdriver, and MagneticBrake, as simulatorengine loads . The experiments were divided accordingto the speed reference signal used fordrivingand operating the electric motor: digital and analog. The first five experiments performing the drive control and operation of the electric motor via digital signals. The sixth and seventh experiments using an analog signal as a reference speed for the electric motor

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The human social organization has undergone major changes in recent years. The technological and digital revolutions accelerated the process of dissemination and evolution of the knowledge in all sciences, from social studies to nanotechnology. This process led to many advances that have enabled the emergence of new markets. Among these new markets, residential automation shows to be a market of great potential, seeking to meet the needs of residents, in order to make their daily practice and as fast as the rhythm of present life requests. To perform this task the residence stops being a passive place and becomes an active and controllable system, where actions may occur without the need for direct human interaction. The aim of this work is designing the electrical installation of a residence seeking better use of energy and show the technology diversity involving intelligent houses

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In many movies of scientific fiction, machines were capable of speaking with humans. However mankind is still far away of getting those types of machines, like the famous character C3PO of Star Wars. During the last six decades the automatic speech recognition systems have been the target of many studies. Throughout these years many technics were developed to be used in applications of both software and hardware. There are many types of automatic speech recognition system, among which the one used in this work were the isolated word and independent of the speaker system, using Hidden Markov Models as the recognition system. The goals of this work is to project and synthesize the first two steps of the speech recognition system, the steps are: the speech signal acquisition and the pre-processing of the signal. Both steps were developed in a reprogrammable component named FPGA, using the VHDL hardware description language, owing to the high performance of this component and the flexibility of the language. In this work it is presented all the theory of digital signal processing, as Fast Fourier Transforms and digital filters and also all the theory of speech recognition using Hidden Markov Models and LPC processor. It is also presented all the results obtained for each one of the blocks synthesized e verified in hardware

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Bluetooth technology found in smartphones and tablets can add an interesting feature focused on home automation. Through the implementation of a wireless network communication between a mobile device and receiver modules located in different points, or even on a single centralized point in residence, you can manage many household items with just a few taps on smartphones. With such applicability, allow the user greater integration with your home, comfort, safety and economy. In this context, this work presents a system design of low cost Bluetooth communication between a smartphone and a receiver module with microcontroller interface development control from the Android platform

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Through awareness of new trends of consumption of the population with regard to housing, comfort, entertainment, security and sustainability, it was crafted a work that set out to study and develop the concept of home automation and how it will revolutionize the electrical installation projects and energy savings. A pre-wiring project, taking into account, basically, the installed load, is presented as a basis for comparison. The protocols for communication between intelligent devices in an automation environment, used in the work, are the X-10, LonWorks and UPnP. The home network is studied and divided into subsystems, for a better understanding, which are the lighting, audio, video and multimedia system, security, air conditioning and central vacuum system, and the idea of integrated design and system integrator is introduced, showing the change necessity in the design philosophy of electrical installations. The main means of energy savings in an automated home, such as dimerization, master off and smart meters are presented and, finally, it was concluded that there is a need to structure electrical installation projects more comprehensive with regard to home automation, in order to become more efficient and useful to users

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The present work develops a residential automation system controlled by PIC microcontroller connected to a domestic network using the TCP/IP protocol. This was motivated by the viability of building an automation system to control basic elements of a house with low cost, which cannot be found nowadays. Initially is presented a brief history of the automation systems and an introduction about PIC microcontrollers. Afterwards is presented an overview of the system to be implemented. Then it is shown a suggested circuit and the sensor and actuator elements as well as the software to manage the system, this was all build and test in the laboratory. In the end are the results obtained from the prototype, like the energy consumption, the cost, efficiency and reliability