920 resultados para Foundation fieldbus
Resumo:
The petrochemical industry has as objective obtain, from crude oil, some products with a higher commercial value and a bigger industrial utility for energy purposes. These industrial processes are complex, commonly operating with large production volume and in restricted operation conditions. The operation control in optimized and stable conditions is important to keep obtained products quality and the industrial plant safety. Currently, industrial network has been attained evidence when there is a need to make the process control in a distributed way. The Foundation Fieldbus protocol for industrial network, for its interoperability feature and its user interface organized in simple configuration blocks, has great notoriety among industrial automation network group. This present work puts together some benefits brought by industrial network technology to petrochemical industrial processes inherent complexity. For this, a dynamic reconfiguration system for intelligent strategies (artificial neural networks, for example) based on the protocol user application layer is proposed which might allow different applications use in a particular process, without operators intervention and with necessary guarantees for the proper plant functioning
Resumo:
The industrial automation is directly linked to the development of information tecnology. Better hardware solutions, as well as improvements in software development methodologies make possible the rapid growth of the productive process control. In this thesis, we propose an architecture that will allow the joining of two technologies in hardware (industrial network) and software field (multiagent systems). The objective of this proposal is to join those technologies in a multiagent architecture to allow control strategies implementations in to field devices. With this, we intend develop an agents architecture to detect and solve problems which may occur in the industrial network environment. Our work ally machine learning with industrial context, become proposed multiagent architecture adaptable to unfamiliar or unexpected production environment. We used neural networks and presented an allocation strategies of these networks in industrial network field devices. With this we intend to improve decision support at plant level and allow operations human intervention independent
Resumo:
Foundation Fieldbus Industrial networks are the high standard technology which allows users to create complex control logic and totally decentralized. Although being so advanced, they still have some limitations imposed by their own technology. Attempting to solve one of these limitations, this paper describes how to design a Fuzzy controller in a Foundation Fieldbus network using their basic elements of programming, the functional blocks, so that the network remains fully independent of other devices other than the same instruments that constitute it. Moreover, in this work was developed a tool that aids this process of building the Fuzzy controller, setting the internal parameters of functional blocks and informing how many and which blocks should be used for a given structure. The biggest challenge in creating this controller is exactly the choice of blocks and how to arrange them in order to effectuate the same functions of a Fuzzy controller implemented in other kind of environment. The methodology adopted was to divide each one of the phases of a traditional Fuzzy controller and then create simple structures with the functional blocks to implement them. At the end of the work, the developed controller is compared with a Fuzzy controller implemented in a mathematical program that it has a proper tool for the development and implementation of Fuzzy controllers, obtaining comparatives graphics of performance between both
Resumo:
The main purpose of this work is to develop an environment that allows HYSYS R chemical process simulator communication with sensors and actuators from a Foundation Fieldbus industrial network. The environment is considered a hybrid resource since it has a real portion (industrial network) and a simulated one (process) with all measurement and control signals also real. It is possible to reproduce different industrial process dynamics without being required any physical network modification, enabling simulation of some situations that exist in a real industrial environment. This feature testifies the environment flexibility. In this work, a distillation column is simulated through HYSYS R with all its variables measured and controlled by Foundation Fieldbus devices
Resumo:
Industrial automation networks is in focus and is gradually replacing older architectures of systems used in automation world. Among existing automation networks, most prominent standard is the Foundation Fieldbus (FF). This particular standard was chosen for the development of this work thanks to its complete application layer specification and its user interface, organized as function blocks and that allows interoperability among different vendors' devices. Nowadays, one of most seeked solutions on industrial automation are the indirect measurements, that consist in infering a value from measures of other sensors. This can be made through implementation of the so-called software sensors. One of the most used tools in this project and in sensor implementation are artificial neural networks. The absence of a standard solution to implement neural networks in FF environment makes impossible the development of a field-indirect-measurement project, besides other projects involving neural networks, unless a closed proprietary solution is used, which dos not guarantee interoperability among network devices, specially if those are from different vendors. In order to keep the interoperability, this work's goal is develop a solution that implements artificial neural networks in Foundation Fieldbus industrial network environment, based on standard function blocks. Along the work, some results of the solution's implementation are also presented
Resumo:
The main objective of work is to show procedures to implement intelligent control strategies. This strategies are based on fuzzy scheduling of PID controllers, by using only standard function blocks of this technology. Then, the standardization of Foundation Fieldbus is kept. It was developed an environment to do the necessary tests, it validates the propose. This environment is hybrid, it has a real module (the fieldbus) and a simulated module (the process), although the control signals and measurement are real. Then, it is possible to develop controllers projects. In this work, a fuzzy supervisor was developed to schedule a network of PID controller for a non-linear plant. Analyzing its performance results to the control and regulation problem
Resumo:
This work considers the development of a filtering system composed of an intelligent algorithm, that separates information and noise coming from sensors interconnected by Foundation Fieldbus (FF) network. The algorithm implementation will be made through FF standard function blocks, with on-line training through OPC (OLE for Process Control), and embedded technology in a DSP (Digital Signal Processor) that interacts with the fieldbus devices. The technique ICA (Independent Component Analysis), that explores the possibility of separating mixed signals based on the fact that they are statistically independent, was chosen to this Blind Source Separation (BSS) process. The algorithm and its implementations will be Presented, as well as the results
Resumo:
The petrochemical industry has as objective obtain, from crude oil, some products with a higher commercial value and a bigger industrial utility for energy purposes. These industrial processes are complex, commonly operating with large production volume and in restricted operation conditions. The operation control in optimized and stable conditions is important to keep obtained products quality and the industrial plant safety. Currently, industrial network has been attained evidence when there is a need to make the process control in a distributed way. The Foundation Fieldbus protocol for industrial network, for its interoperability feature and its user interface organized in simple configuration blocks, has great notoriety among industrial automation network group. This present work puts together some benefits brought by industrial network technology to petrochemical industrial processes inherent complexity. For this, a dynamic reconfiguration system for intelligent strategies (artificial neural networks, for example) based on the protocol user application layer is proposed which might allow different applications use in a particular process, without operators intervention and with necessary guarantees for the proper plant functioning
Resumo:
This work proposes the specification of a new function block according to Foundation Fieldbus standards. The new block implements an artificial neural network, which may be useful in process control applications. The specification includes the definition of a main algorithm, that implements a neural network, as well as the description of some accessory functions, which provide safety characteristics to the block operation. Besides, it also describes the block attributes emphasizing its parameters, which constitute the block interfaces. Some experimental results, obtained from an artificial neural network implementation using actual standard functional blocks on a laboratorial FF network, are also shown, in order to demonstrate the possibility and also the convenience of integrating a neural network to Fieldbus devices
Resumo:
本文介绍了 OPC技术和 FF( Foundation Fieldbus)基金会现场总线 ,及 OPC技术在现场总线控制系统 ( FCS)中的应用和实现
Resumo:
本文概要介绍了基金会现场总线的网络结构,主要讨论了基金会现场总线数据链路层的工作机理及其实现.
Resumo:
本文介绍了基金会现场总线实现互操作性的两种主要技术手段:对象字典技术和设备描述技术。
Resumo:
媒体结合单元(MAU)是现场总线仪表中的重要部件。介绍一种新型的媒体结合单元电路器件SIM1-2,该器件符合IEC61158-2数据链路层协议规范。在详细分析该器件的系统结构和主要功能的基础上,介绍其在总线仪表系统中的应用。并从资源需要,处理速度和功耗等方面分析单片机、通讯控制器、MAU电路的选择等关键问题。
Resumo:
Este trabalho descreve de uma fonna geral a proposta de uma estratégia para controle e supervisão de plantas industriais através da Internet. Tal proposta consiste na apresentação de três contextos distintos: o contexto planta industrial, o contexto servidor e o contexto cliente. O levantamento criterioso de requisitos para cada um dos contextos é apresentado. A união entre as tecnologias Web e os barramentos de campo resultam naturalmente no acesso remoto através da Internet a sistemas de automação industrial, sendo assim, surge uma nova tendência em tennos de supervisão e controle. A motivação para este trabalho surgiu através de alguns estudos de casos presentes na literatura, que disponibilizam laboratórios através da Internet. A maioria destes estudos de caso não possuía os requisitos considerados primordiais para a disponibilização de um processo através da Internet, como por exemplo, a independência de platafonna no lado cliente e um processo de escala industrial no contexto planta industrial. A estratégia proposta tem por objetivo suprir as carências apresentadas pela maioria dos centros de ensino e pesquisa que disponibilizam laboratórios através da Internet. Para validar a estratégia proposta, foi desenvolvido um sistema de acesso remoto no DELET da UFRGS que é constituído de uma Planta Piloto Foundation Fieldbus e sua posterior disponibilização para a Internet Neste trabalho é apresentada sua fundamentação teórica, sua aplicabilidade na área de automação industrial e controle, baseando-se no protocolo de comunicação industrial, o Foundation Fieldbus; descreve-se também como é feito o interfaceamento entre softwares de controle da Planta Piloto e o sistema de supervisão e controle indo até a estrutura de comunicação com a Internet para que se tome possível para o cliente da Internet visualizar e interagir com a Planta Piloto. Configuração de hardware e software e vários outros conceitos ligados às ferramentas utilizadas neste sistema também são abordados neste trabalho.
Resumo:
Sistemas de controle industriais precisam atender a requisitos temporais para garantir seu correto funcionamento, sendo por isto considerados sistemas tempo-real. Quando tais sistemas são distribuídos, tais como redes de sensores, atuadores e controladores interligados por barramentos de campo, a comunicação desempenha um papel importante no comportamento temporal. Este trabalho propõe uma ferramenta para validar o comportamento temporal da comunicação em um protocolo de barramento de campo, o Foundation Fieldbus. A proposta inclui a especificação de requisitos e a visualização da validação. Pretende-se auxiliar a compreensão do comportamento temporal e possibilitar a depuração de sistemas tempo-real distribuídos. O sistema desenvolvido encontra-se operacional e foi validado em diversos estudos de caso, os quais são descritos no presente trabalho.