Anggi Mardiyono
Politeknik Negeri Jakarta

Published : 5 Documents Claim Missing Document
Claim Missing Document
Check
Articles

Found 5 Documents
Search

Log Event Management Server Menggunakan Elastic Search Logstash Kibana (ELK Stack) Walidatush Sholihah; Sangga Pripambudi; Anggi Mardiyono
JTIM : Jurnal Teknologi Informasi dan Multimedia Vol 2 No 1 (2020): May
Publisher : Puslitbang Sekawan Institute Nusa Tenggara

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35746/jtim.v2i1.79

Abstract

This study aims to build an Event Management Server Log using ELK Stack (Elastic searchLogstash Kibana) which can make it easier to read and analyze log services on the server. TheEvent Management Server log in this study uses CentOS 7 as the Central Server and CentOS7 as a client-server with ssh services installed. This research consists of five stages. The stagesare analysis, network design, server configuration, client configuration, and testing. Theexperimental results show that all ssh log services that occur on the client-server sent inrealtime to the central server. Even though the contents of the log file on the client-server hasdeleted. In This study, in addition to sending logs, it can also display a percentage of successreferences.
ESVISIGN: Tanda Tangan Digital Sekolah Vokasi IPB Walidatush Sholihah; Sofiyanti Indriasari; Inna Noviyanti; Anggi Mardiyono; Nur Aziezah
JTIM : Jurnal Teknologi Informasi dan Multimedia Vol 3 No 4 (2022): February
Publisher : Puslitbang Sekawan Institute Nusa Tenggara

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35746/jtim.v3i4.188

Abstract

All activities have been online since the Covid-19 pandemic broke out in Indonesia. IPB also supports government policy by partially locking down the campus area. Administrative activities are also in online mode. Online correspondence activities still require a signature as a form of validity and authentication of the letter. The scanned signature is different from the digital signature. Thus an application was made to create digital signatures. This application is named eSVi sign. This web-based application was made by using Prototype method. Prototype method consists of communication, planning and modeling quickly, making prototypes, submitting the system to users and feedback. This app uses a hash function with SHA256. Each signed document is assigned a hash value which is stored in storage. When the document is verified, the system will look for a hash value that matches the document in the database. The method to test this application was black box testing. This application can be accessed on the https://ipb.link/esvisign. This digital signature is only used within the College of Vocational Studies IPB University.
Sistem Peringatan Kualitas Air dengan Teknologi IoT Berbasis Cloud pada Akuarium Air Tawar Anggi Mardiyono; Andi Ariawan Suhandana; Muhammad Yusuf Bagus Rasyiidin
Jurnal Teknologi Informatika dan Komputer Vol 8, No 1 (2022): Jurnal Teknologi Informatika dan Komputer
Publisher : Universitas Mohammad Husni Thamrin

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37012/jtik.v8i1.743

Abstract

Makalah ini menjelaskan tentang pengembangan IoT untuk memonitor kualitas air pada akuarium air tawar. Hobi memelihara ikan hias masih menjadi komoditi yang disenangi orang-orang sebagai suatu hobi yang dapat mengurangi rasa jenuh. Kualitas air akuarium dapat dijaga dengan rutin memeriksa tingkat kekeruhan dan pH air pada akuarium ikan hias. Pemantauan kualitas air harus rutin dilakukan tiap hari agar tidak terjadi kelalaian yang berakibat pada kesehatan dari ikan hias menjadi menurun atau bahkan dalam kondisi terburuk dapat membuat ikan hias tidak dapat bertahan hidup. Pemilik ikan hias dapat tetap memantaunya ketika pemilik dalam kondisi sibuk bekerja atau pada saat tidak berada di rumah. Penelitian ini mengembangkan teknologi IoT dengan menghasilkan suatu Hardware yang dapat dimonitor melalui aplikasi berbasis web. Metode yang digunakan dalam pengembangan aplikasi ini adalah Metode Software Development Life Cycle (SDLC) dengan Model Waterfall.
Integrasi QRIS pada Aplikasi Donasi Elektronik Berbasis Web di Masa Pandemi Covid-19 anggi mardiyono; Ariawan Andi Suhandana; Rahmanita Vidyasari
Jurnal Teknologi Informatika dan Komputer Vol 7, No 1 (2021): Jurnal Teknologi Informatika dan Komputer
Publisher : Universitas Mohammad Husni Thamrin

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37012/jtik.v7i1.526

Abstract

Penelitian ini bertujuan untuk mengembangkan sistem infak elektronik yang terintegrasi dengan Quick Response Code Indonesian Standard (QRIS) sebagai alat transaksi infak dalam lingkup masjid binaan Dewan Masjid Indonesia (DMI) kota Depok. Pandemi COVID-19 ini secara tidak langsung berpengaruh terhadap pemasukan masjid di Kota Depok dan para Kiyai yang sering berdakwah di lingkungan masjid. Sistem ini dikembangkan guna memfasilitasi masyarakat yang akan berdonasi atau berinfak melalui masjid tanpa harus bertemu langsung dengan pihak penanggung jawab masjid di kota Depok. Sistem ini memfasilitasi pembayaran dengan mengintegrasikan pembayaran dalam bentuk QRIS yang akan dipindai oleh masyarakat yang ingin berinfak ke masjid. Hasil dari pindai ini akan membaca rekening nomor tujuan dari pengelola masjid di wilayah kota Depok. Sistem ini dikembangkan dengan metode Software Development Life Cycle (SDLC).
Sipekernik: Sistem Pemantau Kekeruhan Air dan Pengairan pada Akuaponik Menggunakan Sensor Turbidity, LDR dan Water Level Nur Aziezah; Walidatush Sholihah; Inna Novianty; Mega Romadhona; Anggi Mardiyono
JTIM : Jurnal Teknologi Informasi dan Multimedia Vol 4 No 4 (2023): February
Publisher : Puslitbang Sekawan Institute Nusa Tenggara

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35746/jtim.v4i4.324

Abstract

Aquaponics is an alternative to cultivating plants and fish in one place. This technique integrates fish farming with plants. In this case, aquaponic plants utilize nutrients from fish waste. Plants in aquaponics function as a biofilter, which will reduce these toxic substances into substances that are not harmful to fish and supply oxygen to fish-keeping ponds. With this technique, there will be a symbiosis of mutualism or a mutually beneficial cycle. The advantages obtained are the efficiency of water use and the reduction of waste contamination resulting from disposal into public waters. The water recirculation period affects the quality and quantity of fish and plants produced. Turbidity for cultivation should be no more than 25 NTU. Therefore, this tool is designed to detect the turbidity value of fish pond water in order to know the time to drain the pond using a turbidity sensor and regulate water irrigation in aquaponic installations based on light intensity values so that water does not stagnate in the installation pipe. The manufacture of this tool uses several components, such as an Arduino as a microcontroller, LDR (Light Dependent Resistor) sensor functions to turn on and off the pump, turbidity sensor functions to determine the turbidity value of pool water, and water level sensor functions to adjust the water level when draining and filling. pond water. At pump 1, the water will turn on if the intensity value of the LDR sensor is 650. If the turbidity sensor value is 25 NTU, then pump 2 will turn on and dump pool water into the shelter. After the pond water is drained to the specified height level, pump 3 will turn on to fill the fish pond with water. Pump 3 will stop when the water level is > 665.