A Geo-Decisional Tool for the Management of the Agricultural Development Fund Under the Green Morocco Plan

Author(s):  
Fatima Ezzahra Adous ◽  
Mohammed Abdelwafi El Ghouat ◽  
Fatiha Ibannain

Within the agricultural strategy called Green Morocco Plan launched by the Moroccan government, the funds are allocated by the agricultural development fund to encourage investments. In this context, to manage the grant requests, the agricultural department uses an information system, which processes the files from their submission until the payment of the farmers. However, this system does not take into account the spatial data. This research aims to develop a geospatial model to study the distribution and dynamics of the allocated fund. Through this approach, policymakers will have a strategic key to survey the behavior of the spatial component, to manage funding applications, and to better manage allowed funds. The methodological approach adopted consists of carrying out a mapping of the real world identifying the needs of the future system and modeling the process of the geo-spatial tool. The result of the model will be used to develop and implement a spatial tool for policymakers to improve land information management related to the funded agricultural project.

Author(s):  
Y. Yongling

Geographical information system (GIS) is one kind of information system that handles spatial data. It is difficult to give one definitive definition about GIS (Heywood, Cornelius, & Carver, 2002; Maguire, Goodchild, & Rhind, 2001). This variety of definitions can be explained by the fact that any definition of GIS will depend on who is giving it, and their background and viewpoint (Pinkles, 2002). The complete definition of GIS is selected here as: “a set of tools for collecting, storing, retrieving at will, transforming, and displaying spatial data from the real world for a particular set of purposes”(Burrough, 1986, p. 6). As an important part of e-government, is that it has functions of cartography, manages spatial data and spatial analysis.


2014 ◽  
Vol 926-930 ◽  
pp. 721-724
Author(s):  
Zhao Zhong Gao ◽  
Hai Xia Wei

With the digital development of city construction, the construction of three-dimensional Geographic Information System plays an important role for the urban construction planning and decision-making. 3D urban planning geographic information management systems need to be able to put different spatial data, information of urban construction, urban planning information into the same platform. The integration of information resources whick provids a variety of spatial information based on the intelligent application services is the core. This article puts urban planning geographic information management related to business needs in-depth analysis, and put forward a three-dimensional geographic information model which is used for integrated management of data and can be dynamically adjusted for urban planning and management of business processes.


2019 ◽  
Vol 9 (1) ◽  
pp. 545-553 ◽  
Author(s):  
Ford Lumban Gaol ◽  
Jonathan Danny ◽  
Tokuro Matsuo

AbstractThe implementation of an information system that supports company goals is the main strategy of an organization. But aligning business strategies with information system(IS) and information technology(IT) is not as easy as it seems, because there are several gaps of strategies between upper level and practical level. Often the focus in system development is only on the architecture of the future system, even though the study says that the engineering model of needs is the most important thing in the process of developing the company’s system. PT. SBS is a distributor and supplier company. Along with the development of its business, business processes also become more complex. The information system that was originally felt to be sufficient is considered to be no longer optimal so that it often results in delays in delivery with a fairly large percentage. Therefore, an Enterprise Resources Planning(ERP) system will be developed but it must be ensured that the business processes used are oriented towards organizational goals. The purpose of this study is to introduce and explain the stages of the Organization Goal-Oriented Requirement Engineering (OGORE) method as a requirement engineering method in a company’s business processes that focuses on organizational goals. The research method was done by collecting business process data and defining key performance indicators(KPIs) in a small discussion group with stakeholders in the company. The results of this method were Goal Tree Model (GTM) diagrams which was then used as a reference in describing new business processes and in preparing the requirements specification documents. The conclusion obtained that the stages of the OGORE method are able to eliminate needs according to the organization’s goals. It is also recommended to use the OGORE method as one of the requirements management steps in the Enterprise Architecture method to create new method as an agenda for the future.


2011 ◽  
pp. 340-348
Author(s):  
Yao Yongling ◽  
Wang Junsong

Geographical information system (GIS) is one kind of information system that handles spatial data. It is difficult to give one definitive definition about GIS (Heywood, Cornelius, & Carver, 2002; Maguire, Goodchild, & Rhind, 2001). This variety of definitions can be explained by the fact that any definition of GIS will depend on who is giving it, and their background and viewpoint (Pinkles, 2002). The complete definition of GIS is selected here as: “a set of tools for collecting, storing, retrieving at will, transforming, and displaying spatial data from the real world for a particular set of purposes”(Burrough, 1986, p. 6). As an important part of e-government, is that it has functions of cartography, manages spatial data and spatial analysis.


2018 ◽  
Vol 3 (1) ◽  
pp. 008
Author(s):  
Melladia Melladia

Geographic Information System (GIS) is computer-based information that provides information through object recognition to process spatial data in the form of detail, facts, conditions related to the real world. Generally, the benefits of GIS provide information that is close to the real world and strategic planning predictions. Along with the changing times, science is also increasing in technology information side rapidly. By building this Geographic Information System, it is hoped that it can help the general public and the outside community know the alternative track to Bukittinggi City. Its goal is road users can avoid congestion and shorten the time to certain destinations.


Author(s):  
Niall Conroy

Music information system design is aided through attention to real-world user behaviours. However, further work is necessary to understand and accommodate the subjective and emotional qualities people ascribe to music, the social component of music search, and the tools necessary to facilitate information management practices associated with large personal collections. Some design proposals are discussed as they related to three broad challenges facing system design.L’attention aux comportements des utilisateurs entrent dans la conception de systèmes d’information musicale. Cependant, plus de recherche est nécessaire pour comprendre et accommoder les qualités subjectives et émotionnelles que les gens attribuent à la musique, la composante sociale de la recherche de musique et les outils nécessaires pour faciliter les pratiques de gestion de l’information associées aux vastes collections personnelles. Certaines propositions de conception en lien avec les trois grands défis auxquels font face ces systèmes seront discutées.


Author(s):  
Ivan J. Jureta ◽  
Stephane Faulkner ◽  
Manuel Kolp

This chapter introduces an agent-oriented enterprise model for conducting enterprise modeling during the early stages of information system requirements engineering. The enterprise model integrates a set of concepts and relationships that the analyst instantiates when building a model of the part of the organization in which the future information system will operate. The aim is to allow the analyst to produce an enterprise model which captures knowledge about an organization and its business processes, and which can be used to build an agent-oriented requirements specification of the future system and of its organizational environment. Compared to similar models, the present one integrates concepts and relationships allowing the analyst to capture the relevant intrinsic characteristics, such as autonomy and intentionality of human and software agents that are to participate in the future system.


2020 ◽  
Vol 42 (3) ◽  
pp. 355-368
Author(s):  
YEVGENIY ALEKSANDROV

The aim of the article is to recall the fi steps of comprehension by the scientific community of possibilities of a newly born means of the reality reflection. The means was initially oriented for obtaining reliable information and supposing a delayed reaction of the spectator in the process of communication. Recollection and understanding become more important under the distance education condition. Pre-revolutionary Russia lived anticipating changes, and the filmmaking was considered by the society as one of those progressive phenomena evidencing the coming of a new age. The scientists’ activity during the development of scientific fi in pre-revolutionary Russia was long hushed up and wasn’t considered as forming a basis for the future system of educational audio-visual communication. In this process there participated striking, creative personalities, mostly belonged to the community of Imperial Moscow University, which activity was during the age of changes. The significant contribution of pleiad of eminent scientists’ activity to the new direction formation was a reason to unify in one paper both their whole professional life data and information about their time-limited period of scientific fi In the future a more profound study of their achievements are considered to be promising. In the introduction the anterior period of the Russian fi appearance, where the scientific and education community of Russia was exploring the possibilities of a new means of information transfer for education purposes, is considered. Two main units are dedicated to the role of scientists in the development of scientific filmmaking for research and popularization of biomedical and physical problems.


Author(s):  
М.Р.  Вагизов ◽  
Д.А. Дубов

Рассматривается необходимость разработки специализированной геоинформационной системы для отрасли охотничьего хозяйства. Указаны основные принципы проектирования и разработки приложения. Определены необходимые требования к проектируемой ГИС и задачи, которые способна решать система. Проведено описание организационной структуры геоинформационной системы и функции, подлежащие визуализации. Составлено схемотехнические решение и визуализация графического интерфейса взаимодействия пользователя с системой. В соответствии со Стратегией развития охотничьего хозяйства РФ до 2030 года, требуется повышать программно-информационное обеспечение охотпользователей. Обоснованием разработки является отсутствие единой системы сбора, хранения и систематизации данных о состоянии охотхозяйств, численности популяций и проведении необходимых мероприятий. Разработка специальной ГИС способна обеспечить поддержку в системе принятия решений человеком в интересах управления территориями охотхозяйств. Разработка продуманного интерактивного интерфейса позволит вывести ГИС на наиболее качественный уровень взаимодействия. Общеизвестно, что пространственные данные являются основой информационного обеспечения геоинформационных систем, в том числе локальных ГИС. Для непрерывного обновления геоданных требуется своевременная актуализация информации на сервере, в которой данная система развернута. Поэтому в качестве технологической основы выбрано проектирование именно веб-приложения, работающего через предустановленный браузер пользователя. Реализация функций данной ГИС, продуманный человеко-машинный интерфейс, включенный в ее состав, позволит использовать данную систему не только охотпользователям, но и заинтересованным специалистам в смежных отраслях: лесное хозяйство, картография, геоинформатика, зоогегография, охотоведение. Разработанная система может использоваться в учебном процессе при подготовке студентов по различным направлениям в высших образовательных учреждениях. Discusses the necessity of developing a specialized geographic information system for hunting groung. Carried out a description of the organizational structure of geoinformation systems and functions to be rendering. Determined necessary requirements for the design of the GIS and the tasks which the system are able to solve. The organizational structure of the geographic information system and the functions to be visualized are described. Compiled technical scheme and visualization GUI. In accordance with the strategy of development of the hunting industry of the Russian Federation until 2030, it is required to increase the software and information support for hunting users. The basis for development is the lack of a unified system of collection, storage and systematization of data on the state of hunting, population and carry out the necessary measures. The development of a special GIS is able to provide support in the system of decision-making by a person in the interests of managing the territories of hunting farms. The development of a thoughtful interactive interface will bring the GIS to the most high-quality level of interaction. It is well known that the spatial data are the basis for information support of geographic information systems, including local GIS. For continuous updates of the geodata requires a timely update information on the server in which the system is deployed. Therefore, as the technological base of the selected design it is the web application running through a preset user's browser. The implementation of the functions of this GIS, intelligent man-machine interface, included in its composition, will allow you to use this system not only hunters, but also to interested professionals in related industries, forestry, cartography, geoinformatics, zoogeography, and hunting. The developed system can be used in educational process for training students in various areas in higher educational institutions.


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