Computer-supported information requirement analysis tool based on novel methodology for analysing CIM information requirements

2000 ◽  
Vol 16 (4) ◽  
pp. 211-224 ◽  
Author(s):  
Majid Hashemipour ◽  
Dervis Z. Deniz ◽  
Cem Topuz
Author(s):  
Majid Hashemipour ◽  
Dervis Z. Deniz ◽  
Cem Topuz ◽  
Omer Anlagan

Abstract A methodology is proposed which aims at covering informational and functional analysis besides decision making processes. It comprises of a set of well defined steps and novel tools. The proposed methodology makes extensive use of reference architectures available. The methodology aims at using limited expertise, limited staff, and expenditure as it is especially suited for introducing CIM in SME’s. A Computer Supported Information Requirement Analysis tool (COMSIRA) has been developed for the methodology, in order to capture and represent the approach of experienced analysts studying the enterprise-wide prospective CIM information requirements. This paper emphasizes the operational aspects of COMSIRA along with introducing the methodology. Some examples extracted from a real case implementation are also presented.


1993 ◽  
Vol 8 (2) ◽  
pp. 82-91 ◽  
Author(s):  
Theodora N. Ngosi ◽  
John O. Jenkins

This paper discusses research findings on information requirements for developing international Information Technology (IT) standards. Using the software standard development domain as a case study, the objective is to examine the standard development processes and the problems associated with IT standardization, and based upon the findings, an information requirement framework is provided.


Author(s):  
E. Demir Ozbek ◽  
S. Zlatanova ◽  
S. Ates Aydar ◽  
T. Yomralioglu

A conceptual approach is proposed to define 3D geo-information requirement for different types of disasters. This approach includes components such as Disaster Type-Sector-Actor-Process-Activity-Task-Data. According to disaster types processes, activities, tasks, sectors, and responsible and operational actors are derived. Based on the tasks, the needed level of detail for 3D geo-information model is determined. The levels of detail are compliant with the 3D international standard CityGML. After a brief introduction on the disaster phases and geo-information requirement for actors to perform the tasks, the paper discusses the current situation of disaster and emergency management in Turkey and elaborates on components of conceptual approach. This paper discusses the 3D geo-information requirements for the tasks to be used in the framework of 3D geo-information model for Disaster and Emergency Management System in Turkey. The framework is demonstrated for an industrial fire case in Turkey.


Author(s):  
E. Demir Ozbek ◽  
S. Zlatanova ◽  
S. Ates Aydar ◽  
T. Yomralioglu

A conceptual approach is proposed to define 3D geo-information requirement for different types of disasters. This approach includes components such as Disaster Type-Sector-Actor-Process-Activity-Task-Data. According to disaster types processes, activities, tasks, sectors, and responsible and operational actors are derived. Based on the tasks, the needed level of detail for 3D geo-information model is determined. The levels of detail are compliant with the 3D international standard CityGML. After a brief introduction on the disaster phases and geo-information requirement for actors to perform the tasks, the paper discusses the current situation of disaster and emergency management in Turkey and elaborates on components of conceptual approach. This paper discusses the 3D geo-information requirements for the tasks to be used in the framework of 3D geo-information model for Disaster and Emergency Management System in Turkey. The framework is demonstrated for an industrial fire case in Turkey.


2021 ◽  
Author(s):  
Marja Exalto-Sijbrands ◽  
◽  
Pascal Ravesteijn ◽  

Management of fashion (related) companies need to become convinced that circularity delivers positive financial results and incentives. This research aims to provide the first information requirement insights needed to enable the transition to a circular fashion industry. Due to easy access and abundant information ‘Jeans’ were selected as example item. Using the Design Science research approach the required information within in a closed loop supply chain (CLSC) in fashion was derived. Semi-structured interviews validated the CLSC information requirements derived from literature. Next, observations and additional literature findings supported the interview results. The outcomes show that information to support integration and collaboration of both: supply and recycle chain is necessary. Independently operating recycle organizations miss ‘central loop management’, ‘information integration’ and ‘a chain-common objective’ to successfully adopt circularity. The main bottlenecks found in relation to circularity are: ‘overlooking the customer as stakeholder’ and ‘a lack of chain integration’, this applies not only to jeans items. Therefore, the indicative study outcomes contribute to the body of knowledge of circular fashion value chain information requirements in general.


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