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Publications

2000

Bringing the World Wide Web to agricultural systems based on the Java environment

Authors
Serodio, C; Cunha, JB; Couto, C;

Publication
PROCEEDINGS OF THE INTERNATIONAL CONFERENCE AND BRITISH-ISRAELI WORKSHOP ON GREENHOUSE TECHNIQUES TOWARDS THE 3RD MILLENNIUM

Abstract
In the recent past, the distance between the sensing and processing points imposed critical constraints on the application of most PC-based data acquisition and control systems. Nowadays, it is possible to access the control systems installed in remote sites over the Internet. The World Wide Web has revolutionised the Internet by providing a medium for the dissemination of information, and the use of this technology can have a great impact on Agricultural Systems as well. These technologies allow almost any PC with a browser and a communication link to the Greenhouses to be used as an operator workstation, which gives benefits to the users who need remote access to greenhouses. Besides this, modern systems for agricultural applications are based on interconnection and integration of several Local Area Network (LAN) technologies combining data connectivity with user mobility. With a browser, the user is able to download a set of web pages, review information about the status of the system in real time, by running Java Applets, and display it in a browser window. Also, in this way it is possible to remotely configure any network node.

2000

Agritronics: A distributed data acquisition and control network for agriculture environments

Authors
Morais, R; Cunha, JB;

Publication
PROCEEDINGS OF THE INTERNATIONAL CONFERENCE AND BRITISH-ISRAELI WORKSHOP ON GREENHOUSE TECHNIQUES TOWARDS THE 3RD MILLENNIUM

Abstract
Improvement of crop quality and yields is a demand in modern greenhouse production systems. Also, production costs must be kept as low as possible to guarantee market competitiveness. The achievement of these goals implies the use of complex management and control systems to regulate, in an efficient way, a large amount of interactive physical variables. Recent developments in hardware and software tools, namely microprocessors and microcontrollers, lead to the integration of complex control and management tasks in agricultural exploitations. In this paper is presented a data acquisition and control network that was implemented with the aim of being applied to any agricultural environment. The network has three main operating levels. At the lower level, a set of remote microcontroller stations perform data acquisition and radio frequency transmission to a collecting and control station. The control station, which generates actuating signals, is linked to a higher-level network based on PC's. The management and supervision of the entire greenhouse system is performed at this lever. Also, the results achieved with its application to the environmental control of a set of greenhouses located in the north of Portugal are described. The proposed architecture is now being installed in several commercial exploitations in order to evaluate its performance and introduce any improvements required by the growers. After this phase, the network will be available commercially through a joint Venture between UTAD University and a Portuguese greenhouse constructor.

2000

Fiber optic intensity sensors based on a michelson head configuration with self-referentiation

Authors
Baptista, JM; Santos, JL; Lage, AS;

Publication
LEOS 2000 - IEEE ANNUAL MEETING CONFERENCE PROCEEDINGS, VOLS. 1 & 2

Abstract
Two self-referenced intensity based optical fiber sensors supported on a Michelson sensing head configuration with and without optical feedback are described. Theoretical and experimental studies that demonstrate both sensors are discussed.

2000

A greenhouse climate multivariable predictive controller

Authors
Cunha, JB; Couto, C; Ruano, AEB;

Publication
PROCEEDINGS OF THE INTERNATIONAL CONFERENCE AND BRITISH-ISRAELI WORKSHOP ON GREENHOUSE TECHNIQUES TOWARDS THE 3RD MILLENNIUM

Abstract
A multivariable predictive controller was implemented to regulate the air temperature, humidity and CO(2) concentration for a greenhouse located in the north of Portugal. The controller outputs are computed in order to optimise the future behaviour of the greenhouse environment, concerning the set-point accuracy and the minimisation of energy inputs. This is accomplished by using an optimisation module that minimises a cost function proportional to the sum of the squared errors between the simulated and desired outputs plus the square of the incremental and absolute energy inputs over a prediction horizon of one hour. Since the controller must be able to predict the greenhouse environmental conditions over the specified time interval, it is necessary to use mathematical models that describe the greenhouse climate, as well as to predict the outside weather. The experiments showed that second order ARX and tenth order ARMA models are well suited to simulate the inside and outside climate conditions, respectively. Since the model parameters are time-varying, recursive identification techniques were applied to estimate in real-time their values. The models employ data from the air temperature and humidity, inside and outside the greenhouse, solar radiation, wind speed and control inputs. To minimise the cost function a sequential quadratic programming method was used to solve the constrained optimisation problem. The results achieved with the proposed controller proved to be suitable for this application. Moreover, the controller performance, when compared to other control techniques such as commercially available PID controllers, was greatly improved.

2000

Temperature and strain insensitive bend measurements with D-type fibre Bragg gratings

Authors
Ferreira, LA; Araujo, FM; Santos, JL; Farahi, F;

Publication
14TH INTERNATIONAL CONFERENCE ON OPTICAL FIBER SENSORS

Abstract
We present a new sensor configuration based on the intrinsic bend sensitivity of Bragg gratings written in D-type fibres. This sensor can be embedded in any layer of a composite material to evaluate curvature in a way independent of axial strain or temperature. It can also be used to measure other parameters such as acceleration, angle or acoustic pressure.

2000

Investigation of a self-referenced fibre optic intensity sensor supported by a multiple beam Sagnac topology

Authors
Baptista, JM; Santos, JL; Lage, AS;

Publication
14TH INTERNATIONAL CONFERENCE ON OPTICAL FIBER SENSORS

Abstract
A self-referenced fibre optic intensity sensor supported by a multiple beam Sagnac configuration is investigated. Sensor linearity and sensitivity are analysed. Theoretical and experimental results are compared, being considered the sensor design and its optimisation.

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