<p align="center"><strong><em>Abstract</em></strong><strong> </strong></p><p class="Default"><em>Manual parking systems in mall parking lot services requires a more complex management and development system, not to mention its inefficiency. The information acquired from the parking manager about the the parking space conditions in the field is lacking every day. The purpose of this research is to design and develop a parking system prototype. The development method and system design for this research is the Waterfall method. The results obtained is that this system is able to detect the presence of a vehicle on a designated parking space, with the help of an Intel Galileo Board Gen 2 as the controller, an LDR (Light Dependent Resistor) sensor, and an ultransonic sensor (PING) as an auxiliary. The system is able to display parking activity on a web application, such as empty parking space conditions, occupied parking spaces, time of arrival, parking period, parking space capacity, and also able to display a graphic image of the parking space utilization. It can be concluded that the design and development of the system is successfully implemented.</em></p><p class="Default"><strong><em>Key Word:</em></strong><em> </em><em>Parking system, waterfall, Intel Galileo Board Gen 2, LDR (light dependent resistor) sensor, ultrasonic sensor</em></p><p><em> </em></p><p align="center"><strong><em>Abstrak</em></strong><strong> </strong></p><p><em>Sistem parkir manual pada pelayanan parkir mall memerlukan pengelolaan dan pengembangan sistem yang lebih rumit dan jauh dari kata efisien. Informasi yang didapatkan pengelola parkir terkait kondisi parkir di lapangan setiap harinya </em><em>masih kurang</em><em>. </em><em>Tujuan dari penelitian ini adalah</em><em> merancang dan mengembangkan prototype sistem parkir</em><em>.</em><em> </em><em>Metode pengembangan </em><em>dan perancangan sistem pada penelitian ini adalah metode Waterfall. Hasil yang didapatkan adalah sistem ini dapat mendeteksi keberadaan mobil pada slot parkir yang tersedia dengan bantuan Intel Galileo Board Gen 2 sebagai kontroler, sensor LDR (Light Dependent Resistor) dan sensor ultrasonik (PING) sebagai alat bantu pendeteksi keberadaan mobil. Sistem dapat menampilkan aktifitas parkir pada aplikasi web seperti kondisi lahan parkir kosong, lahan terisi, waktu masuk, waktu keluar, lama parkir dan kapasitas parkir yang tersedia serta grafik pemakaian lahan parkir</em><em>. </em><em>Dapat disimpulkan bahwa perancangan dan pengembangan sistem berhasil diimplementasikan.</em></p><p><strong><em>Kata Kunci </em></strong><em>: </em><em>Sistem parkir, waterfall, Intel Galileo Board Gen 2,sensor LDR (Light Dependent Resistor), sensor ultrasonik</em></p>
Dodon Turianto Nugrahadi*1, Muhammad Itqan Mazdadi 2, Triando Hamonangan S3, Totok Wianto41,2,3,4 Universitas Lambung Mangkurat1,2,3Program Studi Ilmu Komputer, FMIPA, Universitas Lambung Mangkurat4Program Studi Fisika, FMIPA, Universitas Lambung Mangkurat*e-mail: dodonturianto@ulm.ac.id1, mazdadi@ulm.ac.id2,triando.saragih@ulm.ac.id3, totokwianto@ulm.ac.id4Received: 25 Mei 2021/ Accepted: 16 Juni 2021 AbstractPeople on the side river of the Kemuning river in the North Loktabat sub-district have not utilized the river water as a source of fisheries business. With river water sources for use as fisheries, it can provide alternative livelihoods for people on the side river of the Kemuning river. However, if they use fishery media such as keramba, the water source of the Kemuning river will overflow in the rainy season, besides that if you use a pond, you need a land medium that is less possible.The use of a kolam terpal is one solution to this problem. This pool is made based on the need for a portable pool because it has a radius of 1.5m and a height of 1.5m. Kolam terpal are fish farming using tarpaulin materials as an alternative to soil or concrete ponds. The pool with the base and the sides of the walls is made of tarpaulin. The tarpaulin needed to make this pool is a type of tarpaulin with a material that is pressed so that no leakage occurs. The implementation of this tarpaulin pool using biofloc techniques and by using solar power makes this pool easier to adapt. This tool is equipped with solar panels and an automatic control system. The use of solar panels by utilizing the abundance of solar power and minimizing the expenses of fish farmers without electricity bills to activate pumps for water needs and pond air aerators. In addition, with the biofloc technique, the fish farming mechanism becomes more efficient.The targets and outputs generated from this program, especially for partners, are: the fulfillment of alternative livelihoods with fish farming, and an increase in income of approximately 80%, there is a biofloc kolam terpal equipment with solar panel technology. Keywords: Tarpaulin pool, solar power, bioflok AbstrakWarga di pesisir aliran anak sungai kemuning daerah Kelurahan Loktabat Utara belum memanfaatkan aliran anak sungai sebagai sumber usaha perikanan. Dengan sumber air sungai untuk pemanfaatan sebagai usaha perikanan dapat memberikan alternatif mata pencaharian bagi warga di pesisir aliran anak sungai kemuning. Akan tetapi jika menggunakan media perikanan seperti keramba, sumber air anak sungai kemuning dapat terjadi luapan jika dimusim hujan, selain itu jika menggunakan kolam tambak membutuhkan media lahan yang kurang memungkinkan. Penggunaan kolam terpal menjadi salah satu solusi untuk mengatasi masalah tersebut, kolam ini dibuat berdasarkan kebutuhan akan kolam yang portabel karena ukuranya jari-jari 1,5m dan tinggi 1,5m. Kolam terpal merupakan budidaya ikan dengan menggunakan bahan terpal sebagai alternative kolam tanah atau beton. Kolam yang dasarnya maupun sisi-sisi dindingnya dibuat dari terpal. Terpal yang dibutuhkan untuk membuat kolam ini adalah jenis terpal dengan bahan dipres sehingga tidak terjadi kebocoran. Implementasi kolam terpal ini dengan menggunakan teknik bioflok serta dengan menggunakan tenaga surya maka kolam ini dapat lebih mudah diadaptasikan. Alat ini dilengkapi dengan panel surya dan sistem kontrol otomatis. Penggunaan panel surya dengan memanfaatkan limpahan tenaga surya dan meminimalkan pengeluaran para pembudidaya ikan tanpa adanya tagihan listrik untuk mengaktifkan pompa untuk kebutuhan air dan aerator udara kolam. Selain itu dengan teknik bioflok, mekanisme pembudidayaan ikan menjadi lebih efisien.Target dan luaran yang dihasilkan dari program ini khususnya untuk pihak mitra adalah: terpenuhinya alternatif mata pencaharian dengan budidaya ikan, dan meningkatkan pendapat kurang lebih 80%, terdapat peralatan kolam terpal bioflok dengan teknologi panel surya. Kata kunci: Kolam terpal, tenaga surya, bioflok
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