COCOMO Method for Planning Human Resources in Software Development

Szerzők

  • Nátz Katalin Doctoral School of Economics and Regional Sciences, Hungarian University of Agriculture and Life Sciences, H-2100 Gödöllő, Hungary https://orcid.org/0000-0002-5116-6639
  • Szergej Vinovgradov Institute of Agricultural and Food Economics, Hungarian University of Agriculture and Life Sciences, H-2100 Gödöllő, Hungary
  • Szalay Zsigmond Gábor Institute of Rural Development and Sustainable Economy, Hungarian University of Agriculture and Life Sciences, H-2100 Gödöllő, Hungary https://orcid.org/0000-0001-6301-3237

DOI:

https://doi.org/10.33032/acr.4425

Kulcsszavak:

function point, COCOMO, effort estimation

Absztrakt

Over the past decades, software development has been a priority project for business leaders. Compared to the production or purchase of a productive asset, IT development could be carried out at a lower cost, and controlling always found a hidden reserve that could be used for this purpose.

But this process is in transition at the beginning of the 21st century. IT projects should be examined early in the development phase to determine the functional size of a software application and to determine the business value and expenditure that the application represents for a particular segment of the business. However, process analysis and productivity and cost analysis of these developments are more challenging than average for business analysts.

Enterprise information systems are evolving very rapidly, and their user base is growing. These applications handle so much data and are so complex that it is difficult for the average user to understand how they work. New coding tools are now enabling software developers to meet growing and increasingly complex customer needs more efficiently and quickly. A comprehensible, comparable, and clear method for interpreting, estimating, and verifying projects is needed.

Szerző életrajzok

  • Nátz Katalin, Doctoral School of Economics and Regional Sciences, Hungarian University of Agriculture and Life Sciences, H-2100 Gödöllő, Hungary

    PhD student
    natz.katalin@phd.uni-mate.hu

  • Szergej Vinovgradov , Institute of Agricultural and Food Economics, Hungarian University of Agriculture and Life Sciences, H-2100 Gödöllő, Hungary

    Associate professor, PhD
    vinogradov.szergej@uni-mate.hu

  • Szalay Zsigmond Gábor, Institute of Rural Development and Sustainable Economy, Hungarian University of Agriculture and Life Sciences, H-2100 Gödöllő, Hungary

    Associate professor, PhD
    szalay.zsigmond.gabor@uni-mate.hu

Hivatkozások

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Krasner, H. (2022): The Cost of Poor Software Quality in the US: A 2022 Report. Consortium for information & Software Quality (CISQ), 59–61. https://www.it-cisq.org/wp-content/uploads/sites/6/2022/11/CPSQ-Report-Nov-22-2.pdf

Longstreet, D. (2005): Fundamentals of Function Point Analysis. Total Metrics, Software Development Magazine. http://jodypaul.net/SWE/FunctionPointAnalysisFundamentals.pdf

Nátz, K. – Orosz, G.T. (2018): Function point analysis by an SAP application. in AIS 2018: 13th International Symposium on Applied Informatics and Related Areas, 81–85. http://ais.amk.uni-obuda.hu/proceedings/2018/AIS2018_Abstract_Book.pdf

Nátz, K. – Orosz G.T. – Szalay, Zs.G. (2020): Methods of functional measurement of software. in AIS 2020: 15th International Symposium on Applied Informatics and Related Areas, 112–116. http://ais.amk.uni-obuda.hu/proceedings/2020/AIS2020_Proceedings.pdf

Pönsgen, B. (2012): Function-Point Analyse. Ein Praxishandbuch. 2nd edn. Dpunkt.verlag, Heidelberg.

Letöltések

Megjelent

2023-06-30

Hogyan kell idézni

COCOMO Method for Planning Human Resources in Software Development. (2023). Acta Carolus Robertus, 13(1), 145-156. https://doi.org/10.33032/acr.4425

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