scholarly journals Implementasi Algoritma TOPSIS dan Metode EUCS untuk Pengujian Sistem Penilaian Kinerja Pegawai pada Laboran Fakultas Teknologi Informasi UKSW Salatiga

2020 ◽  
Vol 7 (6) ◽  
pp. 1137
Author(s):  
Andreas Arga Rinjani Saputro ◽  
Kristoko Dwi Hartomo

<p>Pegawai laboratorium merupakan tenaga kerja kependidikan yang membantu proses pembelajaran mahasiswa dalam bagian vokasi dan akademik. Dalam menjalankan pekerjaannya, pegawai laboratorium terkadang masih belum maksimal. Sehingga kepala sarana &amp; prasarana dan supervisor harus mengontrol pegawai untuk memastikan pegawai berkerja dengan baik. Untuk mengatasi permasalahan dalam pegawai laboratorium serta membantu dalam memanajemen kinerja, dibuatlah sistem informasi berbasis <em>website</em> yang berisi implementasi algoritma TOPSIS pada penilaian kinerja pegawai laboratorium. Terdapat enam kriteria penilaian pegawai laboratorium yang terdiri dari kedisiplinan, tanggung jawab, kerja tim, <em>skill</em>, akademik, dan komunikasi. Hasil akhir penelitian berupa nilai preferensi (Vi) setiap alternatif, dimana terdapat nilai preferensi tertinggi yaitu 1 yang diperoleh 3 dari 12 orang pegawai pada pengujian algoritma TOPSIS. Penyajian sistem informasi dilakukan dengan <em>database</em> yang ditampilkan menggunakan desain <em>dashboard</em> yang tepat digunakan untuk manajemen data. Pengujian EUCS pada <em>website </em>sistem informasi adalah 3.41 dari total nilai kepuasan (4) yang tergolong dalam kategori puas, sehingga dianggap layak dan diterima oleh <em>user</em>.  </p><p> </p><p><em><strong>Abstract</strong></em></p><p><em>Laboratory employee is a education labor which help process learning college student within part of vocational and academic. In carrying out his work, laboratory employee sometimes it's still not optimal. So that the head of facilities &amp; infrastructure and supervisor must control the employee to make sure employees are working well. For counter the problem in laboratory employee and help in performance management, made information system based on website which contain implementation of the TOPSIS algorithm on performance rating of the laboratory employee. There are six laboratory employee rating criteria which consisting of dicipline, responsible, team work, skill, academic, and communication. Last result of the research is the form of preference values (Vi) every alternatif, where there is highest preference value is 1 which is obtained 3 out of 12 employee of the TOPSIS algorithm testing. Presentment of the information system perform with database and displayed using dashboard design which exact used for present data management. EUCS testing on information system website is 3.41 from total</em> <em>satisfaction value (4) which classified of satisfied categori, so that good considered and accepting by user.</em></p>

2011 ◽  
Vol 8 (2) ◽  
pp. 85-94
Author(s):  
Hendrik Mehlhorn ◽  
Falk Schreiber

Summary DBE2 is an information system for the management of biological experiment data from different data domains in a unified and simple way. It provides persistent data storage, worldwide accessibility of the data and the opportunity to load, save, modify, and annotate the data. It is seamlessly integrated in the VANTED system as an add-on, thereby extending the VANTED platform towards data management. DBE2 also utilizes controlled vocabulary from the Ontology Lookup Service to allow the management of terms such as substance names, species names, and measurement units, aiming at an eased data integration.


2017 ◽  
Vol 47 (1) ◽  
pp. 46-55 ◽  
Author(s):  
S Aqif Mukhtar ◽  
Debbie A Smith ◽  
Maureen A Phillips ◽  
Maire C Kelly ◽  
Renate R Zilkens ◽  
...  

Background: The Sexual Assault Resource Center (SARC) in Perth, Western Australia provides free 24-hour medical, forensic, and counseling services to persons aged over 13 years following sexual assault. Objective: The aim of this research was to design a data management system that maintains accurate quality information on all sexual assault cases referred to SARC, facilitating audit and peer-reviewed research. Methods: The work to develop SARC Medical Services Clinical Information System (SARC-MSCIS) took place during 2007–2009 as a collaboration between SARC and Curtin University, Perth, Western Australia. Patient demographics, assault details, including injury documentation, and counseling sessions were identified as core data sections. A user authentication system was set up for data security. Data quality checks were incorporated to ensure high-quality data. Results: An SARC-MSCIS was developed containing three core data sections having 427 data elements to capture patient’s data. Development of the SARC-MSCIS has resulted in comprehensive capacity to support sexual assault research. Four additional projects are underway to explore both the public health and criminal justice considerations in responding to sexual violence. The data showed that 1,933 sexual assault episodes had occurred among 1881 patients between January 1, 2009 and December 31, 2015. Sexual assault patients knew the assailant as a friend, carer, acquaintance, relative, partner, or ex-partner in 70% of cases, with 16% assailants being a stranger to the patient. Conclusion: This project has resulted in the development of a high-quality data management system to maintain information for medical and forensic services offered by SARC. This system has also proven to be a reliable resource enabling research in the area of sexual violence.


2019 ◽  
Vol 2 ◽  
pp. 1-8
Author(s):  
Chih-Wei Chen ◽  
Ching-Yi Lin ◽  
Chine-Hung Tung ◽  
Hsiung-Ming Liao ◽  
Jr-Jie Jang ◽  
...  

<p><strong>Abstract.</strong> Since UN announced 17 SDGs in 2015, many countries around the world have been endeavouring to promote SDGs towards building a sustainable future. Given the disparity of the regional development, national government is suggested to establish localised sustainable vision. Drawing on UN SDGs with targets and corresponding indicators, meanwhile considering local circumstances and sustainable vision, government further seeks to establish localised SDGs with related targets and indicators. Meanwhile, under the digital era, digital technologies have been extensively employed as the smart tool in many fields nowadays, and Geographic Information System (GIS) has been developed as the platform to visualise the SDGs progress in UN and many countries. On the above basis, this paper further demonstrates Taiwan’s efforts to establish localised SDGs, and develop National Geographic Information System (NGIS) to implement the sustainable development in Taiwan, monitor the SDGs progress, and provide feedback to policymakers to further make strategic policies in a top-down approach, meanwhile develop Community Geographic Information System (CGIS) to encourage stakeholders and citizens to harness the concept of CGIS to proactively create and tell their own stories and promote Regional Revitalisation policy in a bottom-up approach. Moreover, GIS could not function well without appropriate data management including massive data and open data policy, well-built digital infrastructure, as well as the selected “right data” and cyber security. Hence, with appropriate data management, GIS as a smart tool could facilitate the promotion and implementation of SDGs in an intuitive manner towards shaping a smart and sustainable future.</p>


2018 ◽  
Vol 4 (1) ◽  
Author(s):  
Dewa Made Andika Dwi Prawiradirjo ◽  
Bambang Hadi Kartiko ◽  
Gerson Feoh

ABSTRACT<br />The medical record officer at Bright Smiles Bali Clinic is still having difficulty in the process of<br />managing the data of outpatients because the clinic still using manual system that has not been<br />computerized. So it is necessary to design a web-based electronic medical record information system<br />that can help medical record officer in patient data management process. The method used in the<br />design of this system is the system development life cycle (SDLC) which consists of the planning,<br />analysis, design, implementation, and usage phases. The purpose and benefits of this information<br />system design is to produce a web based outpatient medical record information system at Bright<br />Smiles Bali Clinic.This information system facilitate medical record officer in carrying out patient<br />data management covering patient registration process, recording of patient medical record, doctors<br />data recording, code search on ICD 9 CM, code search on ICD 10. Besides, this information system<br />produces various reports as well as patient medical record information that management needs for<br />decision making.<br />Keywords: Information System, Electronic Medical Record, Outpatient, Web.<br />ABSTRAK<br />Petugas rekam medis di Klinik Gigi Bright Smiles Bali masih kesulitan dalam proses pengelolaan data<br />pasien rawat jalan karena masih menggunakan sistem manual yang belum terkomputerisasi. Maka<br />diperlukan sebuah sistem informasi rekam medis elektronik berbasis web yang dapat membantu<br />petugas rekam medis dalam proses pengelolaan data pasien tersebut. Metode perancangan sistem ini<br />menggunakan siklus hidup pengembangan sistem (Systems Development Life Cycle-SDLC) yang<br />terdiri dari tahap perencanaan, analisis, desain, implementasi, dan penggunaan. Sedangkan tujuan dan<br />manfaat dari perancangan sistem informasi ini yaitu menghasilkan sistem informasi rekam medis<br />elektronik rawat jalan berbasis web di Klinik Gigi Bright Smiles Bali. Dengan adanya sistem informasi<br />ini, dapat memudahkan petugas rekam medis dalam pengelolaan data pasien yang meliputi proses<br />pendaftaran pasien, pencatatan rekam medis pasien rawat jalan, pencatatan data dokter, pencarian kode<br />ICD 9 CM, pencarian kode ICD 10. Selain itu sistem informasi ini menghasilkan berbagai laporanlaporan<br />serta informasi rekam medis pasien yang dibutuhkan pihak manajemen untuk pengambilan<br />keputusan.<br />Kata Kunci : Sistem Informasi, Rekam Medis Elektronik, Rawat Jalan, Web.


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