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UPAYA PENGEMBANGAN E-LEARNING MELALUI SOSIALIASI DISEKOLAH DASAR NEGERI 2 DESA PENEBEL: Efforts To Develop E-Learning Through Socialization In Public Elementary Schools 2 Penebel Villages Pancane, I Wayan Dikse; Adrama, I Nyoman Gede; Asna, I Made; Sugarayasa, I Wayan
JAMAS : Jurnal Abdi Masyarakat Vol. 1 No. 3 (2023)
Publisher : Forind Press

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62085/jms.v1i3.43

Abstract

Pengabdian kepada masyarakat dilaksanakan di Desa Penebel Kecamatan Penebel, Kabupaten Tabanan , mulai dari 16 Januari s/d 11 Februari 2023. Banyak program kerja individu telah dilaksanakan, mulai dari program fisik maupun progam non fisik. Dimulai dari kegiatan penjajakan di lingkungan pelaksanaan, perencanaa program, konsultasi program dengan pihak desa, serta pelaksanaan program yang telah direncanakan. Program individu yang ambil itu mengembangkan ilmu teknologi informasi dikalangan sekolah dasar di desa penebel. Pengabdian ini bertujuan untuk membahas dan mengetahui peran Teknologi Informasi dalam proses kegiatan belajar mengajar disekolah tingkat dasar, berdasarkan konsep-konsep yang timbul dari data empiris data diperoleh dari data sekunder dan literatur yang sesuai dengan kajian serta sesuai kondisi lapangan. Hasil dari Pengabdian ini adalah peran dari teknologi informasi ini dalam kegiatan belajar mengajar (KBM) diantaranya: mempermudah dalam menyampaikan pelajaran, peserta didik dapat mudah memahami pelajaran yang disampaikan oleh guru, dan pembelajaran yang efektif bagi guru untuk mencapai proses belajar yang maksimal E-Learning berbasis web merupakan suatu alternatif media pembelajaran untuk menunjang dan melengkapi model pembelajaran konvensional, Sebuah e-Leraning yang di bangun menggunakan Framework CodeIgniter merupakan pengembangan web e-learning tanpa menggunakan framework sehingga dengan model framework akan mendapatkan sesuai aturan kependidikan dan lain sebagainya. Kita mensosialiasikan tentang pengunakan teknologi informasi yang baik dan benar untuk dikalangan SDN 2 penebel
DESAIN SISTEM PEMBANGKIT LISTRIK TENAGA SURYA (PLTS) ATAP ON GRID SYSTEM PADA PT. BALIFOAM NUSA MEGAH BALI Sukadana, I Wayan; Ade Pujana, I Gusti Ngurah; Yasa, I Wayan Sugara; Asna, I Made
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Publisher : RELE (Rekayasa Elektrikal dan Energi) : Jurnal Teknik Elektro

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30596/rele.v6i2.18489

Abstract

Indonesia menetapkan bauran EBT setidaknya 23% ditahun 2025 dan 31% ditahun 2050 melalui PERPRES No. 79/2014. PEMPROV Bali menerbitkan PERGUB No. 45/2019 untuk meningkatkan penggunaan EBT dengan menetapkan bangunan dengan luas lantai lebih dari 500m2 harus menyediakan setidaknya 25% luas atap untuk Panel Surya. Gedung B PT. Balifoam Nusa Megah memiliki luas atap 1.572 m2. Dilakukan perancangan PLTS Atap On-Grid dengan 3 skenario. Skenario-1 dengan kapasitas 10-15% daya tersambung PLN, Skenario-2 berdasarkan beban puncak, Skenario-3 dengan kapasitas 100% daya tersambung PLN. Seluruh skenario dianalisis dari segi tekno-ekonomi untuk diperoleh skenario yang paling layak dan efisien. Melalui simulasi software PVSyst diperoleh bahwa Skenario-2 memiliki potensi yang paling baik. Kapasitas Skenario-2 ditentukan berdasarkan beban puncak yaitu 45,78 kWp dan mengacu PERMEN ESDM No. 49/2018. Penggunaan energi sebelum terpasang PLTS Atap periode 1 tahun 182.041,47 kWh, dengan Skenario-2 menjadi 123.398,01 kWh dan total energi yang diekspor 22.522,54 kWh. Tagihan listrik periode 1 tahun sebelum terpasang PLTS Atap Rp.262.995.316, dengan Skenario-2 penghematan pada tahun pertama Rp.105.872.112 dan investasi yang dibutuhkan Rp.757.721.000. Keuntungan yang diperoleh dengan Skenario-2 paling tinggi dibandingkan skenario lainnya yaitu Rp.1.322.889.547. Melalui metode NPV, PI, dan DPP untuk Skenario-2 layak dijalankan dengan keuntungan 175% dan waktu pengembalian biaya investasi pada tahun ke-9.
PROYEKSI KONSUMSI BAHAN BAKAR MINYAK (BBM) PADA PELAKSANAAN HARI RAYA NYEPI DI BALI TERHADAP EFISENSI PENGGUNAAN BBM DI INDONESIA DARI TAHUN 2015-2030 Asna, I Made; Sutama, I Wayan; Sugarayasa, I Wayan
Jurnal Ilmiah Telsinas Vol 1 No 2 (2018)
Publisher : Universitas Pendidikan Nasional

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Abstract

Nyepi Day celebration is a local wisdom of Hindu community in Bali, where theyappliedCatur Brata Penyepiaan for 24 hours. Streets in Bali are free from vehicle emmision, street lights, centraloffices lights and house resident lights, local television broadcasting is turned off, airports and sea portswere also closed. Besides the spiritual meaning, Catur Brata Penyepiaan on Nyepiday is a wise actionin order to efficient use of fuel oil (BBM), mean while the government thinking of fuel subsidies,Balinese Hindu community has been able to save on fuel usage since long time ago.Liputan6.com data showed Indonesia's oil production reached 798 000 barrels per day in 2014,while the fuel consumption soared Indonesia reaches approximately 1.9 million barrels per day in 2014.There was a difference of approximately 1.1 million barrels per day. The supply shortages are derivedfrom imports.In this study calculated the projected fuel consumption in Bali and Indonesia in terms ofpopulation growth from 2015 to 2030 and the efficient use of fuel on Nyepi Day against national fuelconsumption in liters / day and per year from 2015 until 2030.From the calculation of contributions efficiency of fuel consumption per day during Nyepi Dayto fuel consumption nationally with an average contribution of 1.6129%, while the contribution ofefficiency in fuel consumption per year during Nyepi Day to national fuel consumption with an averagecontribution of 0 , 00 448%.
PERENCANAAN LANSKAP PERMUKIMAN BERBASIS MITIGASI BENCANA LONGSOR DI KECAMATAN KINTAMANI KABUPATEN BANGLI Ardi Utami, Dewa Ayu Nyoman; Asna, I Made
Jurnal Ilmiah Telsinas Vol 2 No 2 (2019)
Publisher : Universitas Pendidikan Nasional

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Abstract

Bangli Regency is administratively located in Bali Province. The area of Bangli Regency is divided into 4 Subdistricts and 72 Villages: Susut, Bangli, Tembuku and Kintamani Subdistricts. Kintamani Subdistrict is one of the areas that has a high threat of landslides. Settlements that are still located in high risk landslide areas endanger occupants. Settlement landscape planning based on landslide mitigation needs to be done to prevent losses and casualties due to landslides. This study aims to identify legal aspects, physical, biophysical and social aspects in Kintamani Subdistrict, identify the threat of landslides in Kintamani District, and develop settlement landscape planning based on landslide mitigation in Kintamani District.The research method used refers to a modified planning process ranging from inventory, analysis, synthesis, and planning. The analysis carried out is land suitability analysis for settlement development with reference to the threat of landslide hazard. The mitigation concept is used for settlement planning which is further developed into spatial plans, activities, evacuation, facilities, facilities and infrastructure, circulation and vegetation plans.Settlement landscape planning based on landslide mitigation needs to be done to prevent the occurrence of losses and casualties if landslides also prevent the population from the threat of landslides through appropriate settlement zoning and not in the area of high-scale landslide threat.
Analisis Konstruksi Posisi Lightning Arrester Di Gardu Distribusi Km 0003 Penyulang Subagan Wilayah Kerja PT PLN (Persero) ULP Karangasem Asna, I Made; Suriana, I Wayan; Sugarayasa, I Wayan; Sutama, Wayan; Dikse Pancane, I Wayan; Adrama, I Nyoman Gede; Sariana, I Made
Jurnal Ilmiah Telsinas Vol 4 No 1 (2021)
Publisher : Universitas Pendidikan Nasional

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (621.361 KB) | DOI: 10.38043/telsinas.v4i1.2143

Abstract

Salah satu komponen dari sistem distribusi adalah gardu distribusi. Gardu distribusi berfungsi untuk menghubungkan jaringan ke konsumen Salah satu komponen terpenting dari gardu distribusi adalah transformator. Karena penempatannya di tempat terbuka, transformator sering mengalami gangguan akibat sambaran petir. Selama kurun waktu 2017-2019 pada Penyulang Subagan mengalami gangguan akibat impuls petir sebanyak 10 kali. Penelitian ini membahas cara kerja lightning arrester dalam memproteksi peralatan dengan konstruksi model lama dan setelah dilakukan perubahan posisi, jarak proteksi ideal lightning arrester dengan transformator, kinerja lightning arrester setelah dilakukan perubahan posisi pada konstruksi yang baru, dan dampak dari perbedaan konstruksi dalam pemasangan lightning arrester di ULP Karangasem. Dari hasil analisis, dengan kondisi iklim di wilayah Karangasem jarak proteksi maksimal lightning arrester dan transformator adalah 6,2245 meter. Jarak lightning arrester dan transformator dengan konstruksi lama yang ada di lapangan adalah 1,5 meter. Dimana jarak tersebut membuat arus puncak petir yang mampu diterima dari lightning arrester sebesar 178,3032 kA, sehingga dapat dikatakan jarak lightning arrester dan transformator dengan konstruksi lama masih dapat bekerja dengan maksimal. Setelah menggunakan konstruksi baru sesuai dengan SPLN D5.006. 2013, jarak lightning arrester dan transformator di KM 0003 menjadi 0,6 meter. Jarak tersebut membuat arus puncak petir yang mampu diterima dari lightning arrester menjadi lebih tinggi yaitu 655,008 kA, dan terjadi peningkatan kinerja lightning arrester sebesar 267,36 % akibat perubahan posisi.
Analisis Konstruksi Posisi Lightning Arrester di Gardu Distribusi Km 0003 Penyulang Subagan Wilayah Kerja PT PLN (Persero) ULP Karangasem Sariana, I Made; Asna, I Made; Sugarayasa, I Wayan
Jurnal Ilmiah Telsinas Vol 3 No 1 (2020)
Publisher : Universitas Pendidikan Nasional

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Abstract

One of the system distribution components is the substation distribution. Distribution substation connects the network to consumers. The most important components of a distribution substation is the transformer . Transformers often experience interference due to lightning strikes since the position is in the open air. During the period of time 2017 -2019 on feeder Subagan suffered disruption due to the impulse of lightning for 10 times. The study aim to discuss how the work of lightning arresters in protecting equipment with the construction of the old model and after made changes in the position , distance protection ideal lightning arrester to the transformer , performance lightning arrester after changes in position on the new construction , and the impact of differences in the construction of the installation of lightning arresters in ULP Karangasem . From the analysis , through the climate condition in the region of Karangasem, the maximum lightning distance protection arrester and the transformer is 6.2245 meters. Distance lightning of the old construction existing arrester and transformer was 1,5 meters. The distance that makes the current peak of lightning that is capable received from lightning arrester amounted to 178.3032 kA, so it can be concluded that the distance lightning arrester and transformer with long construction can work with the maximum. The new construction, according to SPLN D5.006 2013, the distance of lightning arrester and transformer in KM 0003 was 0.6 meters. The distance that makes the current peak of lightning that is capable received from lightning arrester is higher, namely 655.008 kA, and increase the performance of lightning arresters for 267.36 % due to changes in position.
Rancang Bangun Alat Pendeteksi Kebocoran Gas LNG Menggunakan Sensor MQ-6 Pada Line Main Gas Header PLTDG Dengan Konektivitas ESP-8266 Berbasis Android Pangaribuan, Edwin Josafat; Asna, I Made
Jurnal Ilmiah Telsinas Vol 3 No 2 (2020)
Publisher : Universitas Pendidikan Nasional

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Abstract

To make electrical energy, a power plant is needed to produce it, in the current era where pollution is increasing which results in global warming, environmentally friendly power plants are being intensified, one of which is PLTDG where 99% of the fuel is LNG, which is one of the environmentally friendly energies that produces lowest emissions. In using LNG, it also needs to be supported by safety equipment to maintain the safety, security of workers and power plant, so a safety system is needed to monitor the condition of the gas distribution installation to remain safe from LNG gas leaks. This research aims to produce a design for detecting LNG gas leaks in gas installations such as gas connections and pipes using the MQ-6 sensor as a gas sensor, and the ESP 8266 as a module on the Arduino Uno microcontroller to connect Arduino to the internet via wifi. The way this tool works is, when the MQ-6 sensor detects LNG gas, the sensor will send data to Arduino Uno and display it on the LCD screen, in experiments that have been carried out the buzzer and led provide an alarm notification when the leakage measurement reaches the 400ppm set point, Average gas leakage value at 640ppm in experimental data, this tool sends information on gas leakage data to Thinkspeak and then sends data to Android smartphone with a response range of 6-9 seconds from the leakage value reading.
Audit Energi Listrik dan Air Serta Analisis Peluang Hemat Energi di Hotel Uma Ubud Bali Suryatmaja, I Nyoman Oka; Suriana , I Wayan; Asna, I Made; Sukadana, I Wayan
Jurnal Ilmiah Telsinas Vol 3 No 2 (2020)
Publisher : Universitas Pendidikan Nasional

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Abstract

The use of electrical energy and water is very critical in the hotel industry because of almost all operational equipment support are uses electrical energy and most of the hotel operation using water. However the use of electrical energy and water should be used efficiently. According to Government Regulation No. 70 year 2009 Article 10 (1), that individuals, business entities and permanent establishments in energy supply activities are obliged to carry out energy conservation. This process includes an Energy Audit, which is a method to calculating energy use in a building where the results obtained to be compared with the existing standards so that it can be seen whether the energy use in the building is efficient or not. The standard used is the USAID-ASEAN Energy Consumption Intensity (IKE), which is 300 kWh/m2/year for the electricity standard and for the water standard is using USAID|Indonesia Water Consumption Intensity (IKA) which the standard for Bali area is 3.48 m3/room occupied/year. The Energy Audit at hotel Uma Ubud Bali is obtained an IKE of 207.78 kWh/m2/year and an IKA is 2.58 m3/room occupied/year so that it can be said that the use of electricity and water at hotel Uma Ubud Bali is likely to be inefficient, so an analysis of Energy Saving Opportunities (PHE) is needed. Energy Saving Opportunities at the hotel Uma Ubud Bali can be implemented in periodic AC maintenance, the use of motion sensors, replacing conventional water heaters with heat pumps, reducing the pool water pump operating hours, replacing inefficient light bulbs into LED light and maximizing of using grey water from waste water treatment plant to watering plantation and irrigating fishpond. Keywords: Energy Audit, IKE, IKA and PHE