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PERANCANGAN SISTEM HOME AUTOMATION dalam RANGKA UPAYA KONSERVASI ENERGI RUMAH TANGGA Nurpulaela, Lela
JREC (Journal of Electrical and Electronics) Vol 2, No 1 (2014): JREC (Journal of Electrical and electronics)
Publisher : JREC (Journal of Electrical and Electronics)

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Abstract

Karya ilmiah ini bermaksud untuk mengidentifikasi konsep desain home automation sebagaisalah satu upaya untuk meningkatkan efisiensi energi dalam negeri akibat adanyapemborosan oleh kelalaian manusia dan budaya buruk. Metode penulisan menekankan padastudi literatur melalui internet, buku, jurnal dan diskusi kelompok. Hasil interpretasi datamenunjukkan bahwa home automation memberikan solusi yang efektif untuk konservasienergiKata kunci: Home Automation, Konservasi Energi, Sensor, Controller dan Actuator This essay intend to identify the concept of home automation design as one effort to improvethe efficiency in domestic energy that’s caused by human negligence and bad culture. Thewriting method emphasizes on study literature through internet, books, journals and focusgroup discussion. Interpreting data shows that home automation provide effective solutionsfor energy conservationKeywords : Home Automation, Energy Conservation, Sensor, Controller and Actuator
Implementasi Node MCU Sebagai Serial Komunikasi dengan Arduino Uno pada Smart Shopping Trolley Yuliani, Livia Ayudia; Nurpulaela, Lela; Latifa, Ulinnuha
Jurnal ELTIKOM : Jurnal Teknik Elektro, Teknologi Informasi dan Komputer Vol 5 No 1 (2021)
Publisher : P3M Politeknik Negeri Banjarmasin

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31961/eltikom.v5i1.282

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Saat ini, masih banyak pembeli yang menggunakan konsep penjualan offline, sehingga seringkali kita lihat antrian yang panjang di swalayan. Antrian tersebut dikarenakan lamanya seorang kasir untuk melakukan scan harga pada tiap-tiap produk yang terdapat pada keranjang belanjaan. Akan tetapi, masyarakat selalu mengeluh ketika melakukan proses pembelian di supermarket. Masyarakat menya-yangkan proses antrian yang begitu panjang ketika akan melakukan transaksi pembayaran di kasir. Hal ini mengakibatkan lamanya waktu menunggu semakin besar sesuai dengan panjangnya antrian tersebut. Sehingga, untuk dapat mengatasi permasalahan tersebut adalah dengan memanfaatkan internet of things yang bertujuan untuk mempermudah client dalam proses pembelian suatu produk. Perangkat atau kom-ponen internet of things sebagai modul internet adalah NodeMCU V2 AMICA. Metode pengukuran yang digunakan adalah Quality of Service dengan menggunakan bantuan aplikasi Wireshark. Nilai throughput, packet loss, latency, dan jitter yang didapatkan adalah 2229 bit/s, 0% packet, 25,284 detik, 0,05 ms dengan kategori indeks throughput nol (bad) dan indeks empat untuk packet loss, latency, dan jitter.
IMPLEMENTASI INTERNET OF THINGS SEBAGAI MONITORING SUHU PADA PEMANGGANG OTOMATIS BERBASIS ARDUINO UNO Andreanus Calvin Hugo; Rahmat Hidayat; Lela Nurpulaela
Electro Luceat Vol 6 No 2 (2020): Electro Luceat (JEC) - November 2020
Publisher : LPPM Poltek ST Paul

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32531/jelekn.v6i2.278

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Internet of Things (IoT) is a structure where objects are provided with an exclusive identity and the ability to move data across a network without requiring two-way directions such as human to human, source to destination or human to computer interactions. IoT allows users and devices to be connected anytime, anywhere, and with anything. The purpose of this study is to determine how the IoT implementation works or the mechanism of the Arduino Uno based automatic grill using the Thermocouple sensor and the KY 026 Fire Sensor as the input. Based on the results of the research, it shows that NodeMCU can be connected with a distance of 60 meters from the source of the network source without any objects that can obstruct the internet connection and experience a delay of under one second at a distance of 35 meters.
IMPLEMENTASI SENSOR PHOTOCELL DAN PENANGKAL PETIR PADA PRODUK UMBRELLA ENERGY Arief Dwi Ramadhan; Rahmat Hidayat; Lela Nurpulaela
Electro Luceat Vol 6 No 2 (2020): Electro Luceat (JEC) - November 2020
Publisher : LPPM Poltek ST Paul

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32531/jelekn.v6i2.281

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In the use of multifunctional umbrellas using a Suya Panel with Photocell Sensor, or known by the term Umbrella Energy is one of the renewable energy by utilizing sunlight that produces an electrical energy, where solar panels and batteries can convert an electrical energy. The power of the battery can store energy by changing the DC or AC current, a multifunctional umbrella is given a solar panel to absorb solar energy as a center for mobile chargers handphone as well as a place to relax. This multifunctional umbrella has been designed and modified on the umbrella roof to absorb sunlight. In this study, 3 Solar Panels with a capacity of 30 WP are used, in which the energy produced by the Solar Panel is then stored in batteries (batteries) with a capacity of 12 volts 20 Ah. The inverter used in this study has a capacity of 300 watts as a DC 12 voltage converter volts to 220 volt AC, which will then be used as a source of electrical energy.
Implementasi Sistem Monitoring Risiko Peningkatan Kadar Glukosa Darah Secara Non-Invasive Menggunakan Photodioda dan LED Sarah Savira; Insani Abdi Bangsa; Lela Nurpulaela
Electro Luceat Vol 7 No 1 (2021): Electro Luceat (JEC) - July 2021
Publisher : LPPM Poltek ST Paul

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32531/jelekn.v7i1.343

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Diabetes Mellitus (DM) can be characterized by increasing levels of glucose in the blood. There are two types of methods that are often used to measure blood glucose levels, namely the invasive method and the non-invasive method. The invasive method is a method that requires a blood sample by making a cut on the finger and then the blood will be dripped on the blood strip, this tool is called a glucometer. Whereas in the non-invasive method, measuring glucose levels in the blood does not require a blood sample. In this study, blood glucose levels will be measured using a non-invasive method, using a photodiode as a light receiver and a red LED as a light emitter, so that blood glucose levels can be read through the measurement with the fingertip. The sensor readings will be processed in the Arduino Uno and then displayed on the LCD.
PERAMALAN PENJUALAN ENERGI LISTRIK DI INDONESIA (2013-2021) Lela Nurpulaela
Bahasa Indonesia Vol 1 No 1 (2014): Bina Insani ICT Journal (Maret 2014)
Publisher : Lembaga Penelitian dan Pengabdian Masyarakat Universitas Bina Insani

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (369.993 KB)

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AbstrakPenjualan Energi listrik di Indonesia untuk setiap sektor pelanggan listrik semakin meningkat tiap tahun.Berdasarkan penelitian yang diperoleh pada tahun 2021, energi listrik yang terjual ke semua sektorpelanggan listrik adalah 269,450 Gwh (26,9 Twh),Sedangkan berdasarkan RUPTLPT PLN (Persero)2012-2021 (Rencana Usaha Penyediaan Tenaga Listrik), pada tahun 2021 Indonesia akan memproduksienergi listrik sebesar 411,162 Gwh (41,1 Twh) artinya terdapat kehilangan (Losses) sebesar 141.712Gwh (14,1 Twh)atau 34,47% dari total produksi energi listrik dalam setahun atau rata-rata 11.809 Gwh(1,1 Twh) per Bulan, hal tersebut merupakan rugi-rugi yang seharusnya dapat diminimalisir PT.PLN(Persero) sehingga mengoptimalkan pendapatan perusahaan.Kata kunci : Penjualan listrik , peramalan , Analisis TrendElectricity sales for each Customer sector in Indonesia increase every year. Based on Researchobtained, in 2021 electrical energy that will be sold to all sectors of electricity customers will be about269.450 Gwh, while based on RUPTL PT PLN (Persero) 2012-2021 (Power Supply Business Plan), in2021 Indonesia will produce energy of electricity about 411.162 Gwh, that means there will be a lossabout 141.712 Gwh (14,1 Twh) from total production of electrical energy or in average will be about11.809 Gwh (1,1 Twh) per Month, that should be minimized by PT PLN (Persero) to optimize Revenue ofcompany.Keywords: Electricity sales, Forecasting, Trend Analysis
Rancang bangun kompor biomassa penghasil energi listrik untuk mengisi baterai 12 V Muhammad Fachrul Rosyidi; Dian Budhi Santoso; Lela Nurpulaela
Jurnal Teknika Vol 16, No 2 (2020): Edisi November 2020
Publisher : Faculty of Engineering, Universitas Sultan Ageng Tirtayasa

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36055/tjst.v16i2.9112

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Bahan bakar fosil sebagai sumber energi listrik sangat terbatas, sehingga dibutuhkan sumber energi alternatif dimana salah satunya adalah dengan memanfaatkan thermoelectric generator (TEG). Artikel ini membahas tentang perancangan kompor penghasil energi listrik menggunakan komponen TEG dengan memanfaatkan limbah biomassa dalam pembakarannya. Energi yang dihasilkan terhubung dengan baterai untuk penyimpanan energi listrik. Penelitian ini menggunakan 5 TEG yang tersusun secara seri dengan tipe TEG SP 1848–27145. Cara kerjanya adalah dengan menggunakan prinsip efek Seebeck yaitu memanfaatkan sistem perbedaan temperatur untuk menghasilkan energi listrik. Media pada bagian panas dihasilkan pada kompor dan pada bagian dingin menggunakan kipas DC 12 V. Pengujian untuk pengisian baterai telah dilakukan dengan waktu selama 60 menit. Hasil pengujian didapat bahwa selama pengisian baterai mengalami kenaikan tegangan sebesar 0,03 V. Fossil fuel as an electrical energy source is very limited so the alternative energy source is needed. One of the way to make it happen is by utilizing thermoelectric generator (TEG). This paper discussed about designing electrical energy-producer stove using TEG component by taking the advantage of biomass waste in the combustion. The produced energy was connected with a battery as a place to save electrical energy. This research was using 5 TEGs with serial arrangement in the type of TEG SP 1848 - 27145. Seebeck effect was used to know how this system works, in which the researcher took the advantage of temperature differences to produce energy. The heat media was produced on the stove and the cold side used DC 12 V fan. The test for battery charging had done in 60 minutes. The result showed that there is 0,03 V.
Perancangan Umbrella Energy Sebagai Charger Handphone Pada Cafe Wahyu Ferdiana Octavian; Rahmat Hidayat; Lela Nurpulaela
Jurnal Energi Dan Manufaktur Vol 13 No 2 (2020)
Publisher : Department of Mechanical Engineering, University of Udayana

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24843/JEM.2020.v13.i02.p07

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Batteries and solar panels are 2 device capable of converting sunlight into unidirectional electrical energy. The power of the energy stored from the battery can be converted into AC or DC current. A canopy umbrella covered with solar panel elements can be used as a mobile phone charger center as well as a place to relax. Umbrella which are a source of DC electrical energy are desaigned to follow existing products in the market with additional modifications in the form of new renewable energy (EBT) or by another nama environmentally friendly energy. This tool is named as umbrella energy, with the use of solar panels used at 90 Wp (Wattpeak), it can produce an average output power of 28.49 W hour. The system will generate maximum power for charging to the battery in 1 day of 227.99.
EDUKASI PROGRAM INOVASI DESAIN DAN PENGEMBANGAN PERANGKAT PENGENDALI ALAT PAKAN TERNAK OTOMATIS MENGGUNAKAN TEKNOLOGI INTERNET OF THINGS DI DESA KERTASARI, KECAMATAN RENGASDENGKLOK, KARAWANG, JAWA BARAT Lela Nurpulaela; Arnisa Stefanie; Dedi Pahroji; Susilawati Susilawati
SELAPARANG Jurnal Pengabdian Masyarakat Berkemajuan Vol 5, No 1 (2021): Desember
Publisher : Universitas Muhammadiyah Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31764/jpmb.v5i1.6059

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ABSTRAKPandemi Covid-19 memiliki dampak yang sangat signifikan terhadap produktifitas peternakan unggas di Indonesia, khussusnya di Jawa Barat. Pembatasan gerak berskala besar menjadi salah satu penyebab yang menyebabkan terhambatnya distribusi pakan, produktifitas unggas menurun, penurunan minat konsumen. Sakah satu kendala yang dihadapi peterna pada skala mikro dan makro adalah manajemen pakan secara langsung di dalam kandang perwatan, yaitu proses pemberian dan penjadwalan pakan dan suplemen. Edukasi program inovasi desain dan pengembangan perangkat pengendali alat pakan ternak dengan teknologi IoT dapat menjadi akternatif perbaikan produktifitas peternakan unggas. Proses kerja yang efektif dengan otomatisasi penjadwalan dan pengaturan kuantitas pakan, serta pengguna akan mendapatkan data notifikasi dari aplikasi blynk tentang kondisi ketersediaan pakan dan nutrisi. Kata kunci: alat pakan otomatis; IoT; peternakan unggas ABSTRACTThe Covid-19 pandemic has a very significant impact on the productivity of poultry farming in Indonesia, especially in West Java. Large-scale movement restriction is one of the causes which causes the distribution of feed to be obstructed, poultry productivity decreases, and consumer interest decreases. One obstacle faced by peterna at the micro and macro scale is direct feed management in the care cage, namely the process of feeding and scheduling feed and supplements. Educational design innovation programs and development of animal feed control devices with IoT technology can be an alternative to improve the productivity of poultry farms. Effective work processes by automating the scheduling and setting of feed quantities, and users will get notification data from the Blynk application regarding conditions of feed availability and nutrition. Keywords: automatic feed equipment; Iot, poultry farming
IMPLEMENTASI ANTENA WAJANBOLIC SEBAGAI PENGUAT SINYAL UNTUK KONSEP PERTANIAN CERDAS DI PASAMAN SUMATERA BARAT Bella Nofrianti; Ridwan Satrio Hadikusuma; Lela Nurpulaela
Jurnal Elektro dan Telekomunikasi Terapan (e-Journal) Vol 8 No 2 (2021): JETT Desember 2021
Publisher : Direktorat Penelitian dan Pengabdian Masyarakat, Universitas Telkom

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25124/jett.v8i2.4210

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The use of Internet of Think(IoT) is widely used in the environment to increase production yields through intelligent agricultural decisions and obtaining crop information, measurement of temperature, humidity, and irrigation systems to the use of drones. However, the use of sensors in IoT has limited resources regarding restriction, energy, transmission, and memory capabilities which can negatively impact agricultural production. To transmit data from measurement results to sensors, fast internet network access is required. while on large farms it is not possible to install wifi in every corner of the farm. The purpose of this research is to strengthen the cellular signal through the application of wokbolic. Thus internet access in agricultural areas becomes easier and crop yields are increased by using the internet. The development of wokbolic uses a prototype model that is considered simple to be directly applied to rice fields. The results of the QoS test show that the throughput value at a distance of 50 m is 550 Kbps. The wokbolic captures the average signal times > 50 ms when using the internet. The application of a wireless router connected to a bolic wok can be accessed ± 50 meters from the wireless center. Keywords: IoT, agriculture, internet, transmission, wokbolic
Co-Authors AA Sudharmawan, AA Abie Pangestu Abilio Faizal, Rifky Achmadany, Fajar Gemilang Adam Robby Arifin Adinda Larasati, Putri Afta Wijaksana, Sevada Agustian, Agum Rizki Akbar*, Muhamad Rakadytia Akhmad Auliya Fatahilah Akmal Nugraha, Naufal Alsulaiman, Ramdhani Andreanus Calvin Hugo Andromeda, Safrian Arianto, Calvin Arief Dwi Ramadhan Ario Prima Arnisa Stefanie Aufar Ahmad, Syihan Bambang Kurniawan Bambang Sutejo, Bambang Bangsa, Insani Abdi Bayu Agustira Bayu Segara Bella Nofrianti Budhi Santoso, Dian Dedi Pahroji Despandri, Fajri Dian Budhi Santoso Dwijaksara, Ni Luh Bella Dwiputra, Andhika Rifqi Egi Sunardi Eka Maulana, Fajar Eka Putri, Nadira Fadhlurrahman, Rafi Fahrezi, Ari Faizal, Rifky Abilio FAJAR NUGRAHA, RIFKI Farradina Choria Suci Fathor Azhar, Muhammad Fauzan, Muhammad Raihan Fezky Muhamad Kemal Firman Rusandi Frinda Nisa Damayanti Gemilang, Bintang Hadikusuma, Ridwan Satrio Hanafi, Zikri Hanif, Ikhwan Hermawan, Sofyan Husna, Fitria Nurul Ibnu Prabowo, Farhan Ibrahim Ibrahim Ibrahim Ihsan Muttaqin, Muhammad Ikhlasul Amal Insani Abdi Bangsa Insani Abdi Bangsa Intan Putri Gemilang Iqbal Ardiyansah Jojo Sumarjo Julian, Rivaldi KISWORO, DIMAS Krisna Aditya Latifa, Ulinnuha Lela Nurpulaela Louhanapessy, Henokh Markiano Malik Ibrahim, Muhamad Marno Marno Marwan As Sadad Masyita, Nurani Maulana, Dava Aulia Meilany, Mauludy Miftahul Kudus*, Mufti Mingkamanad, Sultan Mohammad Yusuf Ridwan Mufti Miftahul Kudus* Muhamad Naufal Al Bachaj Muhamad Rakadytia Akbar* Muhammad Fachrul Rosyidi Muhammad Fadhel Satria Munandar Muhammad Reza Faleva Muhammad Wildan Syamsudin Syam Muhammad, Nauval Arkan Aunillah Nawawi, Haikal Engga Nugraha, Rifki Fajar Nurzamilah , Zulia Pambudi, Agung Priatama Pamuka, Salas Panji Perdana Putra, Meyko Ferdyansyah Permana, Dwi Bintang Pratama, Galuh Andika Putra, Habib Alhamdi Rahmat Hidayat Rahmat Hidayat Rahmat Hidayat Rahul Restu Bumi, Komesta Raka Andriawan Ramdhani Alsulaiman Reni Rahmadewi Reni Rahmadewi, Reni Reva Herlambang Ridwan Satrio Hadikusuma Rismayanti, Azizah Rivaldi Julian Riza Ibnu Adam, Riza Ibnu Riza Muhamad Zidan Rizka Adelia Robi Bagja Nugraha Safrian Andromeda Salas Panji Pamuka Sandi Santoso, Dian Budhi Saputra, Gilang Soebakti SAPUTRA, YOGI ALDI Sarah Savira Setya Nugraha Simanjuntak, Andrean Hosea Sukmawardani, Ramadhan Sulistio Nanda Reynara Sulistyo , Bagas Susilawati Susilawati Tyas Setyawati Ulinnuha Latifa UTOMO, ANANDA PUTRA Vierera Santi Vita Efelina Wahyu Ferdiana Octavian Wicaksani, Erani Wisnu Yusuf Prasetyo Yuliani, Livia Ayudia Yuliarman Saragih Zaki, Maimun Zeni Aprianti, Dede