PERMODELAN ARSITEKTUR ENTERPRISE SISTEM INFORMASI MENGGUNAKAN ENTERPRISE ARCHITECTURE PLANNING

Authors

  • OVEL RINEL Jurusan Manajemen Informatika IAIN Batusangkar

DOI:

https://doi.org/10.31958/js.v4i1.58

Abstract

STAIN Batusangkar is oldest and require the support of information and communication technology tools in large quantities. It is necessary for procurement planning and management systems are integral and better. This study aimed to examine the overall architecture for business processes that exist in STAIN Batusangkar using enterprise modeling systems. The steps of modeling using EAP architecture is divided into two phases, namely the identification of enterprise and enterprise architecture development. Identification entreprise by defining the organization as an object to describe the vision and mission of the organization associated with the vision of information systems planning. This is done for the development of the campus architecture tailored to the business objectives. The results showed that the necessary framework of policy, strategic planning, organizational development concept of unit information and communications technology management, user management, network infrastructure and integrated information systems. Thus, we can conclude enterprise architecture modeling using enterprise information systems architecture planning can be used to assess the overall architecture of the existing business processes in STAIN Batusangkar using enterprise modeling systems.

 

Key words: model enterprise architecture planning, STAIN Batusangkar

Author Biography

OVEL RINEL, Jurusan Manajemen Informatika IAIN Batusangkar

Jurusan Manajemen Informatika IAIN Batusangkar

References

Buzug TM. 2008. Computed Tomography From Photon Statistics to Modern Cone-Beam CT, springer-Verlag Berlin Heidelberg: Germany.

John HE and Cunningham JR. 2004. The Physics of Radiology Fourth Edition. Charles C Thomas Publisher : Spring-field Illinois 62717 USA.

Cahyono HA. 2003. Inspeksi Keramik dengan Radiografi Sinar-X. Skripsi S-1, FMIPA UGM, Yogyakarta.

Pasolang G. 2003. Inspeksi Pipa Berbasis Radiografi Sinar-X Digital. Skripsi S-1, FMIPA, UGM, Yogyakarta.

Fidiani E. 2008. Studi Awal Inspeksi Kandungan Logam dalam Cat de-ngan Teknik Computed Radiography. Skripsi S-1, FMIPA UGM, Yogyakarta.

Setiawan SA. 2002. Interpretasi Radiograf Digital pada Industri Pengelasan Pipa. Skipsi S-1, FMIPA UGM, Yog-yakarta.

Wahyuningsih M. 2009. Perbandingan Kualitas Citra Computed Radiography dengan Citra Hasil Digitisasi Film Radiograf. Skripsi-S1. FMIPA UGM.

Beiser A. 1987. Concepts of Modern Physics, 4th Edition, McGraw-Hill, Inc., Diterjemahkan oleh The hauw Lion, 1992, Konsep Fisika Modern, Erlangga, Bandung.

Suyatno F. 2008. Aplikasi Radiasi Sinar-X di Bidang Kedokteran Untuk Menunjang Kesehatan Masyarakat, Seminar Na-sional IV SDM Teknologi Nuklir, Yogyakarta.

Trikasjono T, Marjanto D dan Nugroho A. 2007. Perancangan Ruang Pengujian Kebocoran Pesawat Sinar X Rigaku 250 KV di STTN Batan Yogyakarta, Seminar Nasional III SDM Teknologi Nuklir, Yogyakarta.

Muhtadan. 2008. Pengembangan aplikasi untuk perbaikan Citra digital film radiografi. Dalam http://www.jur-nal.sttn-batan.ac.id/wp-content/up-loads/2008/12/49_muhtadan467-478.pdf- , (Diakses tanggal 1 Mei 2009)

Muhtadan 2009. Subscriber_Identity_Module. Dalamhttp://en.wikipedia.org/wiki/Subs-criber_Identity_Module.htm, (Diakses tanggal 2 Mei 2009).

Published

2016-09-22

Issue

Section

Artikel