This paper presents a case study of interdisciplinary subjects, more precisely the AGILE SCRUM specific to software development applied in agricultural processes to increase the productivity, maximize the profit and to emphasize the benefits of AGILE methodology which is suitable in every field of industry. Starting with theoretical aspects about Agile project management approach and philosophy, including values and principles, continuing with SCRUM framework, is emphasized the applicability of the method in various fields of industry, including agriculture.
The goal of this paper is to present the benefits of digitalization and Internet of Things applied in various fields of industry, including in cereal reception bases. Using Waterfall Methodology, this article widely describes the project plan of a web-based application which has the role of monitorization the grain storage sheds from perspective of temperature, humidity, pressure, and motion. Using microprocessor-based systems and distinct types of sensors such as temperature, humidity, pressure and motion, the information collected from the grain storage hall is displayed on a web-based application so that operators of the base easily can monitor these parameters.
The goal of this paper is to be an incipient case study of interdisciplinarity between AGILE SCRUM Methodology and food processing industry. The purposes of interdisciplinarity are profit maximization, productivity increasing and customer satisfaction. This paper starts with a short introduction in theoretical aspects about Agile, including SCRUM framework, emphasizing the applicability of SCRUM Methodology in many fields, including biotechnologies and food processing industry.
This paper presents a preliminary version of case study for propagation process using Matrix of Partial Derivatives of the State Vector (Mpdx) Method associated to second order Partial Differential Equations with two Independent Variables and Approximating Solutions. Considering a thermally insulated layer of a specific thickness exposed on the upper part to a constant overtemperature with a uniform distribution over the entire heat transfer surface, using numerical modeling are emphasized some interpretation variants for evolution of processed signals for possible applications.
This paper presents a simplified version of analog modeling for humidity of an agricultural soil, both isolated and included in a simple control scheme, being emphasized the application aspects for such a system. This article also includes preliminaries for agricultural soil model included in a simple humidity control scheme with some interpretation variants for evolution of processed signals for possible applications.
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