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An Application design thinking in the internal quality audit system Diah Aryani; Habibullah Akbar; Syahrizal Dwi Putra; Muhamad Bahrul Ulum
Journal of Information System, Applied, Management, Accounting and Research Vol 6 No 1 (2022): JISAMAR: February 2022
Publisher : Sekolah Tinggi Manajemen Informatika dan Komputer Jayakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.52362/jisamar.v6i1.705

Abstract

Referring to Permenristekdikti No 62 of 2016, that every university must have an Internal Quality Assurance Standard (SPMI) policy and the implementation of an autonomous (independent) Internal Quality Assurance System. The quality of education with the process of building the culture required by higher education institutions, either through consistent implementation of the document, requires a standard on the guidelines for managing SPMI documents. This study aims to design a Higher Education Internal Quality Audit system using the Design Thinking method in computer science at Esa Unggul University. So that the results of this study can make a concrete contribution to information technology to assist the implementation of SPMI Internal Quality Audits which are carried out regularly. systemically and sustainably through PPEPP Standards of Higher Education.
Designing Fuzzy Expert System to Identify Child Intelligence Muhamad Bahrul Ulum; Vitri Tundjungsari
TELKOMNIKA (Telecommunication Computing Electronics and Control) Vol 16, No 4: August 2018
Publisher : Universitas Ahmad Dahlan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.12928/telkomnika.v16i4.7779

Abstract

Every child is special and has her/his own unique potential. Identifying child’s potential in early age is important for teaching purpose since every child has difference intelligence and interest. Therefore children’s teaching and learning process should be delivered based on child’s interest and intelligence, instead of forcing children to excel in every subject. We propose our research to identify child’s intelligence by designing fuzzy expert system. The system works based on several input data of children’s multiple intelligences. The fuzzy expert system is developed using 25 input variables and resulted in 9 output variables. The system classifies the result based on 9 types of intelligence in human, where each exhibits different level. We produce 81 rules with fuzzy set of three different levels value (high, moderate, or low) for every kind of intelligence. The result of this research is very useful to help parents and teachers for determining their method of teaching based on children’s potential.
Expert System for Diagnosis of Uterine Myomas using the Certainty Factor Method Syahrizal Dwi Putra; M Bahrul Ulum; Diah Aryani
International Journal of Engineering, Science and Information Technology Vol 1, No 4 (2021)
Publisher : Master Program of Information Technology, Universitas Malikussaleh, Aceh Utara, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (645.887 KB) | DOI: 10.52088/ijesty.v1i4.177

Abstract

An expert system which is part of artificial intelligence is a computer system that is able to imitate the reasoning of an expert with certain expertise. An expert system in the form of software can replace the role of an expert (human) in the decision-making process based on the symptoms given to a certain level of certainty. This study raises the problem that many women experience, namely not understanding that they have uterine myomas. Many women do not understand and are not aware that there are already symptoms that are felt and these symptoms are symptoms of the presence of uterine myomas in their bodies. Therefore, it is necessary for women to be able to diagnose independently so that they can take treatment as quickly as possible. In this study, the expert will first provide the expert CF values. Then the user / respondent gives an assessment of his condition with the CF User values. In the end, the values obtained from these two factors will be processed using the certainty factor formula. Users must provide answers to all questions given by the system in accordance with their current conditions. After all the conditions asked are answered, the system will display the results to identify that the user is suffering from uterine myoma disease or not. The Expert System with the certainty factor method was tested with a patient who entered the symptoms experienced and got the percentage of confidence in uterine myomas/fibroids of 98.70%. These results indicate that an expert system with the certainty factor method can be used to assist in diagnosing uterine myomas as early as possible.
Aplikasi Monitoring Penderita Kardiovaskular dan Obesitas Berbasis Mobile Internet of Things (MIoT) Muhamad Bahrul Ulum; Nizirwan Anwar; Riya Widayanti; Alivia Yulfitri; Hendra Bratanata
Jurnal Komputasi Vol 8, No 2 (2020)
Publisher : Universitas Lampung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23960/komputasi.v8i2.2648

Abstract

According to the World Health Organization (WHO), coronary heart disease is the biggest cause of death in Indonesia. In 2016, the death rate from heart disease was 122 people per 100,000 population. This figure is higher than other causes, such as stroke, tuberculosis, and diabetes. The number is increasing every year due to changes in lifestyle of Indonesian people who like to eat high-fat foods and lifestyle factors that affect the risk of cardiovascular disease, including lack of physical activity, smoking, unhealthy diet, and alcohol consumption habits. This study aims to monitor the heart rate of cardiovascular sufferers with the mobile internet of things (MIoT) approach. Using the ESP8266 Wifi module for communication to the database server and heart rate sensor to detect heart rate then convert it to Bit per Minute (BPM). Every patient with cardiovascular disease can be monitored using a sensor connected to a smartphone to record any changes that occur. The research method consists of several stages, namely: Prepare, Plan, Design, Implement, Operate and Optimize (PPDIOO). The results obtained in the form of a aplication heart rate monitoring for patients with cardiovascular for healthcare services.
Aplikasi DonasiKu Berbasis Android Muhamad Bahrul Ulum; Habibullah Akbar; Anik Hanifatul Azizah
Jurnal Komputasi Vol 10, No 1 (2022)
Publisher : Universitas Lampung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23960/komputasi.v10i1.2933

Abstract

Used goods suitable for use are old goods that have been used once or more than once and are still reasonable to be reused. Most of these used goods are no longer used because they already have other, better substitutes. The current management system for these items is usually only collected and stored in the warehouse or even many are left scattered in the corner of the house until the items become a pile. Rather than being left alone, it is better to reuse these items. For example, by donating items that are still reasonable to be reused to people who need it more. Donations in the form of used goods are still poorly managed, information on donation activities that are held is less spread out and if there is, it is not necessarily reliable. So far, the management of the existing donation system is only for donations in the form of money, so the idea of a solution emerged in the form of developing an Android-based donation system application. To analyze the problem used causal analysis based on the data to be collected. The method used for software development is extreme programming. This application can be a solution to the problem of managing the used goods donation system so that people can make donations in the form of goods that are faster, easier to collect and distribute.
RANCANG BANGUN SISTEM MONITORING KUALITAS AIR PADA BUDIDAYA IKAN HIAS AIR TAWAR BERBASIS IOT (INTERNET OF THINGS) WAHYU DEWANTORO; Muhamad Bahrul Ulum
Jurnal Komputasi Vol 9, No 2 (2021)
Publisher : Universitas Lampung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23960/komputasi.v9i2.2858

Abstract

Ikan hias adalah hasil budidaya yang sangat diminati oleh berbagai lapisan masyarakat baik di dalam maupun di mancanegara. Di Indonesia pada tahun 2012 berkembang sebesar 115,16 persen. Ikan hias memiliki kapasitas dalam berbagai kondisi yang sangat dipengaruhi oleh nilai batas alami, misalnya, keadaan air, suhu, dan tingkat.keasaman (pH/ Potensial of Hidrogen), kekeruhan air. Batasan-batasan ini harus secara konsisten diamati untuk kelangsungan hidupnya. Karena permasalahan tersebut diperlukan sistem untuk mengawasi kualitas air dan dapat diakses di mana saja dengan menggunakan IoT (Internet of Things). Dalam membangun sistem pemeriksaan kualitas air untuk pengembangan ikan hias air tawar berbasis IoT menggunakan PIECES dan metode prototype pengembangan dan perencanaan dengan diagram Unified Modelling Language. Sensor yang digunakan adalah sensor pH-4502C untuk mengukur tingkat pH/tinggat keasaman pada air kolam atau aquarium, sensor DS18B20 untuk mengukur suhu pada air kolam atau aquarium, sensor turbidity SENO189 untuk mengukur tingkat kekeruhan pada air kolam atau aquarium, buzzer yang berfungsi sebagai aksi sistem ketika air pada kolam keruh, dan juga relay berfungsi sebagai aksi untuk menyalakan pompa pH naik atau pH turun ketika nilai pH di kurang baik, serta mikrokontroler ESP32 yang digunakan untuk mengolah data sensor dan mengirim data sensor melalui jaringan wireless, data yang dikirim oleh ESP32 dapat di monitoring melalui aplikasi android.
Perancangan Sistem Monitoring Detak Jantung Bagi Penderita Kardiovaskular Berbasis Internet of Things Muhamad Bahrul Ulum; Masmur Tarigan
Jurnal Komputasi Vol 8, No 1 (2020)
Publisher : Universitas Lampung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23960/komputasi.v8i1.2419

Abstract

The form of an archipelago and densely populated country of Indonesia has its own constraints in efforts to deal with health, especially health for patients with cardiovascular disease. This disease is one of the highest causes of death in Indonesia. Based on data from the Ministry of Health, cardiovascular disease since 2007 is the highest cause of death in Indonesia with more than 220,000 deaths each year. While the number of cases exceeds tuberculosis, which has a death toll of 127,000. The number is increasing every year due to changes in lifestyle of Indonesian people who like to eat high-fat foods and lifestyle factors that affect the risk of cardiovascular disease, including lack of physical activity, smoking, high-fat diets, and alcohol consumption habits. This study aims to monitor the heart rate of cardiovascular sufferers with the internet of things (IoT) approach. Every patient with cardiovascular disease can be monitored using a sensor connected to a PC to record any changes that occur. The research method consists of several stages, namely: Prepare, Plan, Design, Implement, Operate and Optimize (PPDIOO). The results obtained in the form of a prototype heart rate monitoring system for patients with cardiovascular. The patient's health can be monitored at any time by the hospital doctor without the patient having to come regularly to the hospital.
IMPLEMENTASI METODE FUZZY LOGIC PADA SISTEM PAKAR PENDETEKSI KECERDASAN ANAK Devira Asha; Muhamad Bahrul Ulum; Yuli Asmi Rozali
Jurnal Komputasi Vol 9, No 2 (2021)
Publisher : Universitas Lampung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23960/komputasi.v9i2.2861

Abstract

The multiple intelligences proposed by Dr. Howard Gardner in his book entitled Frame of Mind states that every child has unique and different characteristics and does not only focus on one intelligence. Parents who don't know how to improve their children's intelligence from all categories of intelligence, and only focus on language and logic intelligence, are considered as intelligent benchmarks for children. This expert system application aims to facilitate parents in knowing the level of intelligence of children so that children get the opportunity to develop at least from various dimensions such as musical, kinesthetic, intra and interpersonal, etc. This study applies calculations using the Mamdani fuzzy logic method. The results of this study are able to identify children's intelligence by designing a fuzzy expert system where input variables and output variables are generated from interviews with experts who produce 45 input variables and 9 outputs. For example, the calculation in this study uses 5 input variables and 1 output variable with the number of rules generated, namely 243 rules. The results obtained from the manual calculation of the fuzzy logic method are 50.68 with a fairly intelligent level of medium level. The system development method used in this research is the extreme programming method with the Laravel framework. This website-based expert system application is also a place for information on multiple intelligences where this information will be useful to find out how to improve children's intelligence from all categories of intelligence.
Sosialisasi Paten Aplikasi Online Bagi Inventor Dalam Pengusulan Patent Sederhana dengan Menggunakan Laman 4 Portal Global Sebagai Perlindungan Hak Kekayaan Intelektual di Universitas Esa Unggul Jakarta Nizirwan Anwar; Agung Mulyo Widodo; Bambang Irawan; Kundang Karsono Juman; Erry Yudhya Mulyani; Rian Adi Pamungkas; Ummanah Ummanah; Muhamad Bahrul Ulum; Budi Tjahjono; Yulhendri Yulhendri; Alivia Yufitri
Ilmu Komputer untuk Masyarakat Vol 2, No 1 (2021)
Publisher : Universitas Muslim Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (301.954 KB) | DOI: 10.33096/ilkomas.v2i1.889

Abstract

Patent sebagai bentuk perlindungan Hak Kekayaan Intelektual (HKI) sebagai hasil karya eksklusif yang terlahir dari kreativitas, inovatif (invensi) dalam mengembangkan teknologi secara berkelanjutan dari insan akademik (civitas academica). Indonesia sebagai negara berkembang dengan indeks annual change 0.088, ranking asia (regional) 12.4 dan global (world) 66.4 sudah saat para dosen sebagai fasilitator dan inventor agar lebih banyak lagi dalam mengusulkan invensi dan dapat lebih bersaing di wilayah Asia. Dosen sebagai fasilitator mempunyai kewajiban dalam melaksanakan konsep tridharma perguruan tinggi khususnya pada bidang penelitian dan pengabdian kepada masyarakat, sosialisasi pengusulan patent diselenggarakan di lingkungan para dosen Universitas Esa Unggul Jakarta. Pada patent sederhana sesuai dengan regulasi mempunyai masa perlindungan 10 tahun (pasal 23 UU 13 tahun 2016) sedangkan paten mempunyai masa perlindungan 20 tahun (pasal 13 UU 13 tahun 2016). Inventor yang telah memperoleh sertifikat patent sederhana diharapkan dapat membagi informasi invensi yang telah dihasilkan, dan setiap invensi tidak bisa diusulkan sebagai patent bila invensi tidak mencakup kreasi estetika, skema, aturan dan metode untuk melakukan kegiatan (pasal 4 UU 13 tahun 2016).
DESAIN INTERNET OF THINGS (IoT) UNTUK OPTIMASI PRODUKSI PADA AGROINDUSTRI KARET Muhamad Bahrul Ulum
Sebatik Vol 22 No 2 (2018): DESEMBER 2018
Publisher : STMIK Widya Cipta Dharma

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (181.317 KB)

Abstract

Karet merupakan komoditas yang sangat penting di Indonesia, karena devisa negara yang dihasilkan dari komoditas karet ini cukup besar. Dalam MP3EI (Master Plan Percepatan dan Perluasan Pembangunan Ekonomi Indonesia) 2011 – 2025 (Kemenko Ekon 2011) dinyatakan bahwa perkebunan karet termasuk ke dalam kegiatan ekonomi utama di Indonesia dan difokuskan pada koridor ekonomi Sumatera sebagai daerah penghasil utama karet sebesar 63%. Indonesia seperti halnya Thailand dan Malaysia tergabung dalam International Tripartite Rubber Council (ITRC) karena ketiga negara tersebut pada saat pembentukannya pada tahun 2001 merupakan penghasil karet alam terbesar. Penelitian ini bertujuan mendesain internet of things (IoT) untuk optimasi produk pada agroindustri karet. Setiap produksi karet bisa dipantau menggunakan sensor yang terhubungan dengan PC untuk mencatat setiap jumlah produksi yang dihasilkan pohon karet. Dengan demikian terdapat pencatatan pada database secara cepat dan tepat untuk menentukan langkah-langkah produksi secara efektif sehingga dapat meningkatkan produksi karet. Hasil penelitian didapat rancangan awal berupa desain internet of things (IoT) untuk optimasi produksi pada agroindustri karet. Nantinya setiap produksi karet bisa dipantau menggunakan sensor yang terhubungan dengan PC untuk mencatat setiap jumlah produksi yang dihasilkan pohon karet. Dengan demikian terdapat pencatatan pada database secara cepat dan tepat untuk menentukan langkah-langkah produksi secara efektif sehingga dapat meningkatkan produksi karet.