A graphic language for business applications ...user requirements specification

1989 ◽  
Vol 14 (6) ◽  
pp. 58-60
Author(s):  
H. D. Knoll ◽  
W. Suk
Author(s):  
Ajantha Dahanayake

Today, components and Component Based Development (CBD) is seen as one of the important events in the evolution of information technology. Components and CBD offer the promise of a software marketplace where components may be built, bought, or sold in a manner similar to components in other industries. In the light of the ongoing developments, in the manner and art of developing software systems, it is important to consider how the Computer Aided Systems Engineering (CASE) environment that supports building these systems can be produced on a CBD approach. In spite of the fact that CASE environments have been around since the ’70s, there are still many problems with these environments. Among the problems of CASE environments are the lack of conceptual models to help understand the technology, the poor state of user requirements specification, inflexible method, support and complicated integration facilities, which contribute to the dissatisfaction in CASE users.


Author(s):  
V. Monochristou ◽  
M. Vlachopoulou

Collecting and analyzing user requirements is undoubtedly a really complicated and often problematic process in software development projects. There are several approaches, which suggest ways of managing user’s requirements; some of the most well-known are IEEE 830 software requirements specification (SRS), use cases, interaction design scenarios, etc. Many software experts believe the real user requirements emerge during the development phase. By constantly viewing functional sub-systems of the whole system and participating, in fact, in all phases of system development, customers/users can revise their requirements by adding, deleting, or modifying them. However, in order for this to become possible, it is important to adopt a totally different approach than the traditional one (waterfall model approach), concerning not only the management of user’s requirements, but also the entire software development process in general. Agile methodologies represent this different approach since the iterative and incremental way of development they propose includes user requirements revision mechanisms and user active participation throughout the development of the system. The most famous approach concerning requirements specification among the supporters of the agile methodologies is probably user stories. User stories and their main characteristics are thoroughly demonstrated in this chapter. After reading this chapter, the authors hope that the reader may have gained all the basic understanding regarding the use of user stories.


2015 ◽  
Vol 2 (04) ◽  
pp. 59
Author(s):  
Amalia Syafitri ◽  
Rino Andias Anugraha ◽  
Haris Rachmat

PT Dharma Precision Parts merupakan perusahaan manufaktur yang memproduksi komponen yang terbuat dari logam melalui proses pemesinan, salah satu produknya adalah stopper valve. Karena meningkatnya persaingan dan permintaan, perusahaan harus mampu mengurangi waktu proses untuk memenuhi permintaan. Waktu proses pada sistem awal yaitu sekitar 9.92 detik/part. Perusahaan melakukan modifikasi mesin Bench Lathe SD-32A untuk mengurangi waktu proses dengan menerapkan teknologi otomasi. Menerapkan teknologi otomatisasi dalam perusahaan akan mendapatkan beberapa keuntungan seperti mengurangi waktu proses, meningkatkan kapasitas produksi dan kualitas produk. Penerapan sistem otomasi membutuhkan perencanaan yang baik dan pertimbangan untuk mendapatkan sistem baru sesuai dengan fungsi yang diharapkan dan untuk mencegah terjadinya perancangan ulang pada sistem. Penelitian ini fokus pada perancangan User Requirement Specification (URS) yang terdiri dari kumpulan informasi kebutuhan untuk perancangan sistem otomasi pada industri manufaktur. Perancangan URS terdiri dari process description, deskripsi aliran listrik pada setiap peralatan yang saling terhubung, dan control philosophy. Berdasarkan hasil penelitian maka dapat disimpulkan bahwa perancangan URS untuk stopper valve chamfering proses berhasil diimplementasikan dengan mendapatkan waktu proses baru yaitu sekitar 5 detik/part. Hasil dari penelitian ini adalah penjelasan mengenai deskripsi proses, electrical diagram, dan control philosophy.


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