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Journal : jurnal media computer science

Rainfall Prediction In Bengkulu City Fuzzy Logic-Based Yessi Mardiana; Toibah Umi Kalsum; Yoli Andi Rozzi
Jurnal Media Computer Science Vol 1 No 2 (2022): Juli
Publisher : Fakultas Ilmu Komputer Universitas Dehasen Bengkulu

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37676/jmcs.v1i2.2853

Abstract

The purpose of this study is to predict the rainfall in the city of Bengkulu using fuzzy logic . The boundary problem in this research is a fuzzy method used is Fuzzy Method Sugeno , testing was conducted using the software Matlab version 2013a , the data used in this study is the rainfall data from October to December 2015 were taken from the Meteorology , Climatology and Geophysics , the Center for Meteorology , Climatology and Geophysics ( BMKG ) Bengkulu. Of a series of studies conducted with reference to the design of the block diagram of the results obtained in the form of cuara on the day or the future (tomorrow) with Sugeno mentode this is to conduct experiments for 7 days with accuracy levels of over 60%. From 7 days forecasting error occurred as much as 2 days
Designing A Computer Network At Sman 10 Kota Bengkulu With Bandwidth Management Web-Based Computer Network And Hybrid Topology Poppy Septea Utami; Toibah Umi Kalsum; Yessi Mardiana
Jurnal Media Computer Science Vol 5 No 1 (2026): Januari
Publisher : LPPJPHKI Universitas Dehasen Bengkulu

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37676/jmcs.v5i1.9077

Abstract

The computer network at SMAN 10 Kota Bengkulu is currently connected to the internet network, the utilization of the LAN network, especially the internet at SMAN 10 Kota Bengkulu has not been maximized, because there are still frequent network disruptions such as slow networks that cause many sites that cannot be opened when many users. This study aims to conduct web-based bandwidth management using Mikrotik at SMAN 10 Kota Bengkulu. The study used an experimental method. With the existence of Mikrotik-based network management, it is expected to smooth the network. So that the benefits of the network can be felt by users of SMAN 10 Kota Bengkulu. Bandwidth management at SMA N 04 Kota Bengkulu can be done via the web, with one user name only being able to access the network on one device, bandwidth management with this web will produce an account according to the account profile, bandwidth management is done using the web. After managing bandwidth using a Mikrotik-based web at SMAN 10 Bengkulu City, the network can run stably and well, namely with throughput results = 4.06, Average delay = 0.648, jitter = 0.018 and Packet Lost = 0%.
IoT-Based Monitoring And Control Of Water Turbidity And Automatic Fish Feeding Nanda Eka Juniawan; Riska Riska; Yessi Mardiana
Jurnal Media Computer Science Vol 5 No 1 (2026): Januari
Publisher : LPPJPHKI Universitas Dehasen Bengkulu

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37676/jmcs.v5i1.9633

Abstract

The development of Internet of Things (IoT) technology has had a significant impact in various fields, including the fisheries sector. In fish farming, water quality and feeding efficiency are important factors that affect fish health and growth. This study aims to design and implement IoT-based automatic fish feed and water turbidity monitoring system. This system uses an ESP32 microcontroller connected to a turbidity sensor to monitor water turbidity levels, an ultrasonic sensor to detect feed levels, and actuator devices in the form of servos and water pumps. Turbidity data and device status are transmitted in real-time via MQTT protocol to web-based monitoring application and an Android app. Test results indicate that the system can accurately monitor water turbidity levels and activate feeding according to a schedule or manually via the user interface. The testing was conducted in a 40x12x15 cm aquarium containing five guppy ornamental fish, and on the seventh day, an increase of 1 NTU was recorded. The implementation of this technology is expected to improve operational efficiency, reduce feed waste, and maintain aquarium environmental quality sustainably..