Articles
Implementasi Internet Of Things Dalam Pemantauan Optimal Kerja Panel Surya
Abdullah, Abdullah;
Haq, Moh Zainul;
Cholish, Cholish;
Putri, Maharani;
Ramadhan, Andri
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Publisher : RELE (Rekayasa Elektrikal dan Energi) : Jurnal Teknik Elektro
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DOI: 10.30596/rele.v4i2.9565
Kebutuhan terhadap energi semangkin meningkat, sehingga energi_alternatif menjadi solusi terhadap peningkatan energi tersebut, salah satunya pemanfaatan energi matahari menggunakan panel_surya sebagai pengkonversi energi_matahari menjadi energi_listrik. Untuk pengoptimalan kerja panel surya tersebut harus dibuat sistem monitoring dengan mengimplementasikan Internet of Things agar variabel penting dalam panel surya dapat dipantau secara real time. Internet of Things dalam penelitian ini merupakan komunikasi jarak jauh yang memanfaatkan jaringan internet untuk difungsikan sebagai sistem monitoring optimal kerja panel surya. Variabel yang dimonitoring dari penelitian ini yaitu varibel pergerakan dual_axis panel surya yang terdiri dari nilai tegangan analog empat buah sensor cahaya LDR dalam membaca intensitas cahaya matahari, sudut pergerakan dual_axis, posisi dan kondisi cuaca panel surya, tegangan, arus dan daya yang dihasilkan/dibangkitkan oleh panel surya. Untuk melakukan proses monitoring tersebut, sistem dilengkapi dengan komponen utama seperti kontroler Arduino, modul WiFi ESP8266, empat buah sensor cahaya LDR sebagai pendeteksi intensitas cahaya matahari, modul INA219 sebagai pengukur arus dan tegangan pada panel surya dan motor servo untuk mengerakan panel surya sesuai intruksi sensor cahaya. Dari pengujian yang telah dilakukan sistem telah bekerja dengan baik dan efektif dalam implementasi Internet of Things dalam pemantauan optimal kerja dari panel surya.
Development of SADS (Soil and Air Detector System) to Support Palm Oil Industries in Indonesia
Lubis, Faisal;
Sundawa, Bakti Viyata;
Cholish, Cholish;
Abdullah, Abdullah
Journal of Computer Networks, Architecture and High Performance Computing Vol. 6 No. 3 (2024): Articles Research Volume 6 Issue 3, July 2024
Publisher : Information Technology and Science (ITScience)
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DOI: 10.47709/cnahpc.v6i4.4558
The issue of environmental damage due to the expansion of palm oil plantations in Indonesia has become a global issue. It has often hampered the development of the downstream palm oil industries in Indonesia. The European market was once closed to palm oil and derivative products from Indonesia. In fact, this industry has become a source of income and employment for millions of Indonesians. Therefore, palm oil industry must be supported with sustainable efforts. One of them is developing SADS (Soil and Air Detector System) model. Which is a tool for detecting soil and air environmental conditions around palm oil plantations. The parameters are soil PH, CO2 levels, temperature and humidity, and sunlight. The measurement results from this tool can be accessed and displayed in real-time via the internet. This is research aims to build a smart system as a solution to environmental problems around palm oil plantations. This is useful for knowing and observing the condition of palm oil plantations and as a basis for taking mitigation actions if the condition is in a critical state
Penerapan Teknologi Pengering Sepatu Pada Usaha Laundry Sepatu Upkeep di Kecamatan Medan Tuntungan Kota Medan
Iriani, Juli;
Gunoro, Gunoro;
Abdullah, Abdullah;
Hutabarat, Nicodemus Firman River;
Cholish, Cholish;
Sitorus, Nobert;
Pardede, Morlan;
Syahruddin, M.;
Siagian, Sinta Marito;
Indah, Sarah Karima;
Fikri, Akbar
Jurnal Pengabdian Masyarakat Bangsa Vol. 2 No. 8 (2024): Oktober
Publisher : Amirul Bangun Bangsa
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DOI: 10.59837/jpmba.v2i8.1417
Usaha laundry sepatu saat ini banyak dijadikan pilihan pekerjaan bagi anak-anak muda dikarenakan sepatu merupakan alas kaki dan menjadi penunjang saat kita berpakaian. Hampir disemua aktifitas masyarakat lebih menyukai dan mengandalkan sepatu sebagai alas kaki sehingga kebersihannya juga harus diperhatikan. Kebersihan sepatu dilakukan dengan cara membersihkan dan mengeringkannya, dimana proses tersebut kebanyakan menggunakan jasa laundry sepatu. Adapun kendala yang sering terjadi pada usaha laundry sepatu khususnya pada Laundry Sepatu Upkeep di Kec. Medan Tuntungan yaitu pada saat terjadi musim hujan maka proses pengeringan akan terhambat, selain itu proses pengeringan yang dilakukan secara manual (dijemur) cukup memakan waktu beberapa hari serta membuat warna sepatu menjadi pudar sehingga kurang efisien. Oleh sebab itu maka dibutuhkan sebuah alat untuk mengeringkan sepatu secara cepat tanpa adanya sinar matahari, sehingga alat pengering sepatu dapat digunakan kapan saja dengan waktu yang relatif cepat, selain itu tidak membutuhkan tempat yang luas, dapat digunakan untuk semua jenis sepatu, hemat daya dan biaya. Alat pengering sepatu ini bekerja dengan cara menghantarkan panas melalui heater yang di hembuskan melalui blower, memiliki timer dan sinar UV yang mempercepat proses pengeringan. Metode yang dilakukan pada kegiatan ini berupa metode ceramah, diskusi dan demonstrasi alat serta dilanjutkan proses instalasi alat secara keseluruhan. Tahapan kegiatan dimulai dari survey lokasi mitra dan mencari informasi dari mitra berupa kendala apa saja yang terjadi pada usaha laundry sepatu ini. Tahapan berikutnya proses persiapan perancangan alat. Tahapan akhir pelaksanaan pendampingan pengoperasian dan perawatan alat pengeringan sepatu. Hasil kegiatan ini diharapkan mitra dapat menghasilkan proses pengeringan sepatu secara maksimal dilihat dari kuantitas dan kualitasnya.
Realtime Broiler Chicken Cage Control and Monitoring System
Juli Iriani;
Nobert Sitorus;
Gunoro;
Abdullah;
Cholish;
Wahyudi;
Michael Doanta Meliala;
Rani Dame Hasibuan
International Journal of Applied Research and Sustainable Sciences Vol. 2 No. 5 (2024): May 2024
Publisher : MultiTech Publisher
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DOI: 10.59890/ijarss.v2i5.1810
Control and monitoring systems in poultry farm cages are very necessary, especially for broiler farmers because the harvest process from growth to ready to harvest takes 30 to 35 days with a weight per tail between 1.5-2.0 kg. Important variables that are prioritized in broiler cages, namely temperature, humidity and lighting as well as the availability of feed and drinks on time, determine the quality and quantity of the broiler harvest. The solution to these problems requires a system that can work automatically with real-time monitoring features so that important variables in the chicken coop can be really well maintained. This research uses a combination of DHT11 temperature and humidity sensors, proximity sensors as sensors to check the availability of water and feed in containers, LDR light sensors and GY-302 Lux sensors, Real Time Clock timer modules to organize scheduling the availability of drinking water and chicken feed. These sensors will provide data to the ESP32 controller to control outputs such as heating and cooling and valves for opening and closing the stock of drinking water and feed. This system has also been integrated with the Internet of Things so that the condition of the chicken coop can be flexibly monitored remotely using a Smartphone or laptop utilizing the internet network. Based on the tests that have been carried out, it proves that the system has worked well in maintaining important variables in the chicken coop and has been well integrated based on the Internet of Things.
Design of A Monitoring System for the Implementation of Energy Management in the Electrical Engineering Study Program Workshop of the Medan State Polytechnic
Trahman Sitepu;
Suparmono;
Aulia Salman;
Faisal Fahmi Hasan;
Zul Fikri Sofyan;
Cholish;
Abdullah
International Journal of Applied Research and Sustainable Sciences Vol. 2 No. 8 (2024): August 2024
Publisher : MultiTech Publisher
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DOI: 10.59890/ijarss.v2i8.2207
The researcher wants to make a KWH meter monitoring tool with estimated usage costs so that the tools he makes can help the community to minimize costs in the electricity consumption area, especially in the workshop room located on the 1st floor of building C at Medan State Polytechnic. The long-term goal of this research is to develop an Internet of Things (IoT)--based KWH meter monitoring tool that can read current, voltage, frequency, power factor, and power consumption. This utilization shows the use of costs that have been incurred in real-time by displaying the results on the LCD and can also be from the user's mobile phone. In this study, the strategy used in the energy management framework was determined using SWOT analysis. From the results of the measurement and monitoring of electrical energy consumption obtained the results that, energy management is carried out by applying Standard Operating Procedures for the use of electrical energy in the electrical engineering workshop room in order to save more minimal energy consumption with a large error (Error) PZEM in measuring Voltage is 0.0198% in measuring Current is 0.612%. in measuring Cosphi is 0.01%. in measuring Frequency is 0.003%. in measuring Power is 0.183%. And the average measurement error rate is below 0.5%, namely 0.23%.
Comparative Analysis of Tilt And Illumination of Solar Panels in the Design of Solar Test Simulator
Cholish;
Ibnu Hajar;
Sharfina Faza;
Zumhari;
Abdul Azis;
Abdulah
International Journal of Applied Research and Sustainable Sciences Vol. 2 No. 8 (2024): August 2024
Publisher : MultiTech Publisher
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DOI: 10.59890/ijarss.v2i8.2209
In order for the designed tool to simulate solar panel measurements based on real-world conditions, the solar panel placement holder was arranged in a specific way during the design process. A monitor display that is mounted on the design will show the effectiveness of the solar panels and provide general solar panel information. Limitations in the positioning of solar panels will not provide a reference to conditions for measurement depending on the angle of incidence of the sun so further design needs to be done regarding the position of solar panels when measurements are taken. The development carried out in the design of this tool is in the form of adjusting the solar panel holder in the form of a solar panel holder tilt of 0°, 90°, 180°, and a distance of 30 cm halogen lamp as an energy source that is measured. Measurement results based on design, temperature 46°C, and 100% light.
Designing a Real-Time DataLogger Using the Internet of Things for a Basic Imple Home Kwh Meter Capable of 1300 VA
Suparmono;
Trahman Sitepu;
Aulia Salman;
Sutan Pardede;
Cholish;
Abdullah;
Irvan Nopri;
Joko Anti Setiawan
International Journal of Applied Research and Sustainable Sciences Vol. 2 No. 8 (2024): August 2024
Publisher : MultiTech Publisher
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DOI: 10.59890/ijarss.v2i8.2210
Researchers want to make a kWh meter monitoring tool with estimated usage costs so that the tools made can help people to minimize costs in electricity usage. The purpose of this research is the creation of an IoT-based kWh meter monitoring tool that has the ability to read current, voltage, frequency, power factor and power usage that flows and shows the use of costs that have been used in real time with the display results on the LCD and also on the user's smartphone. In the reading results of usage costs (Rp) on the tool and PLN there is also a difference of Rp. 12,000, where the reading results on the tool are also lower than the results of the payment slip provided by PLN. The cost reading error rate on the tool is 4.4% with a reading accuracy rate of 95.6%.
Control and Monitoring System for Lighting Through Timing Based on The Internet of Things
Maharani Putri;
Abdullah;
Juli Iriani;
M. Syahruddin;
Cholish;
Putra Sawaluddin Guci;
Eme Aginta Br Sembiring;
Noorly Evalina
International Journal of Applied Research and Sustainable Sciences Vol. 2 No. 9 (2024): September 2024
Publisher : MultiTech Publisher
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DOI: 10.59890/ijarss.v2i9.2589
This study aims to develop and implement a time-based lighting control and monitoring system using the Internet of Things (IoT). In today's digitally connected environment, efficient lighting control is essential to improve user comfort and optimize energy use. The proposed approach leverages light sensors and IoT hardware to automatically adjust lighting levels based on time and user needs. The system is designed to provide users with the ability to control lighting remotely via a mobile application or web interface. In addition, the collected lighting data can be analyzed to understand lighting usage patterns and improve energy efficiency. The research methodology includes system design, hardware and software development, and implementation trials in a real environment. Testing was carried out by varying lighting scenarios and monitoring the system's response to these changes. The results showed that the system was able to optimize room lighting according to user preferences and environmental conditions efficiently. In addition, the remote monitoring and control capabilities provide greater flexibility for users to adjust lighting according to their needs. This study contributes to the field of time-based lighting control by utilizing the advantages of IoT as remote control and monitoring.
Power Usage Monitoring and Overload Protection System for Distribution Transformers
M. Syahruddin;
Abdullah;
Moh. Zainul Haq;
Maharani Putri;
Sarah Karima Indah;
Syahdika Kurnia Azhari;
Akbar Fiki;
Cholish;
Fahrul Roji
International Journal of Applied Research and Sustainable Sciences Vol. 2 No. 10 (2024): October 2024
Publisher : MultiTech Publisher
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DOI: 10.59890/ijarss.v2i10.2591
Efficient energy manitoring and overload protection on distribution transformers are very much needed. This study aims to develop a power usage management system and overload protection integrated with Internet of Things (IoT) technology, with a specific target to monitor and manage power usage on distribution transformers in real time, as well as provide automatic protection against overload conditions. The methodology used in this study involves the design and implementation of hardware and software that supports wireless communication and data analysis. This system is also equipped with a power reading and protection mechanism that can automatically cut off the electricity flow when an overload detection occurs, in order to prevent damage to the transformer, it is expected that this system can increase the efficiency of power usage management and provide a quick response to overload conditions. The implementation of this system is expected to reduce operational costs and increase the reliability of electricity supply on the distribution network. Based on the tests that have been carried out, it has been proven that the system has worked well in maintaining important variables in the power usage management system and overload protection on the Internet of Things integrated distribution transformer.
Automation System of Water Circulation and Fish Feeding in Tilapia Fish Pond with Solar Panel Source
Juli Iriani;
Surya Dharma;
Gunoro;
Nobert Sitorus;
Priansus Rhein Rumahorbo;
Ridho;
Cholish;
Wahyudi
International Journal of Applied Research and Sustainable Sciences Vol. 2 No. 10 (2024): October 2024
Publisher : MultiTech Publisher
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DOI: 10.59890/ijarss.v2i10.2592
Tilapia cultivation requires good management of water quality and proper feeding to ensure optimal fish growth. One of the main challenges in this process is maintaining the water pH level within ideal limits and providing feed according to the needs of the fish based on their size. In addition, limited access to electricity in some locations makes fish pond management less efficient. This study aims to design an automated water circulation system that is regulated based on the water pH level and automatic feeding according to the needs of the fish, by utilizing solar panels as a power source. This system uses a pH sensor to monitor water conditions in real time and regulate water circulation to maintain ideal pH levels. Feeding is regulated based on the size and number of fish to ensure optimal feed efficiency and fish growth. This system is powered by solar panel energy, so it can operate independently without relying on conventional electricity networks. Test results show that the system is able to maintain water pH stability and automate feeding with high accuracy, while utilizing renewable energy effectively. The use of solar panels not only reduces dependence on electricity, but also reduces operational costs and supports environmental sustainability. This system is expected to increase the efficiency and productivity of tilapia cultivation, especially in areas with limited access to electricity.