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INDONESIA
MAESTRO
ISSN : -     EISSN : 26553430     DOI : -
Core Subject : Engineering,
MAESTRO merupakan jurnal yang ditujukan untuk menyebarluaskan hasil penelitian ilmiah yang dilakukan oleh mahasiswa Fakultas Teknik agar dapat diketahui secara khalayak. MAESTRO dimaksudkan untuk menjadi jurnal yang menerbitkan hasil penelitian mahasiswa berupa skripsi dan tugas akhir dalam bidang: Arsitektur Teknik Elektro: Telekomunikasi dan Kontrol Sasaran utama dalam melakukan publikasi adalah MAESTRO artikel dalam bidang Teknik pada umumnya dan Arsitektur dan Teknik Elektro pada khususnya, setiap artikel yang diterbikan pada MAESTRO telah memenuhi standar metode penelitian. MAESTRO terbit 2 kali dalam satu tahun (April dan Oktober)
Articles 280 Documents
Perencanaan Dan Perancangan Tempat Wisata Pengolahan Susu Sapi Di Wilayah Boyolali Jawa Tengah Veronica Amalia Samputri; Putri Suryandari
MAESTRO Vol 2 No 1 (2019): Edisi April 2019
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Planning and Design of Cow Milk Processing Places in Boyolali is a facility that provides tourist attractions as well as educational sites for visitors. This place offers a variety of facilities such as diary cow milk farms, visitors here can see directly the process of milking cow until when sterilizing cow's milk, the process of making cow's milk is processed into foods such as dodol milk, tofu milk, etc. Store a place where food is mostly made from milk. Planning and Designing of Cow Milk Processing Tourism Site is located in the Boyolali region of Central Java, precisely in the village of Cepogo. With the concept of Modern Traditional Architecture visitors can experience first hand the process of milking cows and try to untie climate conditions in Indonesia with their application to land and buildings.
PERANCANGAN SEKOLAH LUAR BIASA (SLB) A/B SWASTA DI CILENGGANG, SERPONG TANGERANG SELATAN DENGAN PENDEKATAN ARSITEKTUR PERILAKU Desy Nungky Pratiwi; Putri Suryandari
MAESTRO Vol 1 No 2 (2018): Oktober 2018
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Sekolah luar biasa (SLB) A/B adalah sekolah khusus untuk anak-anak tunanetra dan tunarungu. Sekolah luar biasa (SLB) A/B ini di bangun di Tangerang Selatan untuk memberikan fasilitas sekolah khusus untuk anak-anak tunanetra dan tunarungu agar mendapatkan pendidikan yang sama seperti anak-anak lainnya. Sekolah luar biasa (SLB) yang berlokasi di Tangerang Selatan ini telah diambil sintesa berupa konsep perencanaan dan perancangan. Perencanaan pembangunan sekoah ini berupaya untuk menyediakan sebuah fungsi bangunan sekolah yang mewadahi kegiatan belajar mengajar dengan pendekatan arsitektur perilaku. Konsep arsitektur ini berupaya menerapkan perilaku manusia atau pengguna bangunan yang membentuk sebuah ruang atau bentuk yang sesuai dengan fungsi dan kebutuhan pengguna bangunan tersebut.
PERANCANGAN PENGENDALIAN SUHU DAN SALINITAS AIR PADA AQUARIUM IKAN BOTANA BIRU Abdul Haris Kadafi; Sujono Sujono
MAESTRO Vol 3 No 1 (2020): Edisi April 2020
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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In this final project has been designed a device to control temperature and salinity of sea water in the aquarium blue botana (Acanthurus leucosternon). This designed system consists of a temperature sensor, salinity sensor, microcontroller, chiller, heater, LCD, DC pump, and Aquarium. The controller in the system consists of 2 types, namely the on / off controller that is used to turn on the chiller when the sensor signals to the controller algorithm that the temperature is above 28 ̊C and will be off at 26 ̊C, the two on / off controllers are used to turn on the heater when the temperature is below 25 ̊ C until the temperature reaches 26 ̊ C, the heater will turn off, and the third fuzzy logic controller to start the saltwater pump when salinity is below 29 ppt and start the fresh water pump when the salinity is above 30 ppt. In the fuzzy controller the fuzzy controller input is error and delta error while the output is pulse width modulation. Each input and output variable is classified in 5 membership functions. The defuzzification method used is the centroid method. The results obtained are the control system response has 15% overshoot and 0.5 ppt steady state error, with range of 26-32 ppt with a setpoint of 29 ppt.
PERANCANGAN JARINGAN INDOOR 4G LTE MENGGUNAKAN RADIOWAVE PROPAGATION SIMULATOR STUDI KASUS STUDENT CENTRE UNIVERSITAS BUDI LUHUR Isdian Saputra; Suwasti Broto
MAESTRO Vol 1 No 2 (2018): Oktober 2018
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Dalam tugas akhir ini dibahas tentang merancang jaringan indoor 4G LTE di gedung Student Centre Universitas Budi Luhur Jakarta mengunakan femtocell. Dengan memperhitungkan nilai total loss yang disebabkan oleh material-material didalam gedung, dengan bantuan model propagasi COST 231 Multi-Wall maka akan didapatkan prediksi cakupan yang efektif untuk tiap FAP (Femtocell Access Point). Setelah diperoleh prediksi cakupan efektif tiap FAP-nya maka akan diperoleh jumlah FAP yang diperlukan untuk men-cover seluruh area didalam gedung dan kemudian akan disimulasikan dengan software Radiowave Propagation Simulator (RPS) untuk memprediksi hasil rancangan yang telah dibuat dari sisi perhitungan secara coverage. Hasil yang diharapkan dari perencanaan Jaringan indoor 4G LTE di gedung Student Center Universitas Budi Luhur Jakarta adalah agar nilai Reference Signal Received Power (RSRP) dan Signal to Interference Ratio (SIR) jaringan LTE di dalam gedung Student Centre berada dalam range yang baik sesuai dengan standar Key Performance Indicator (KPI) 3GPP, yaitu >-80dBm (RSRP) dan > 5dB (SIR). Serta dapat membandingkan hasil simulasi dari 3 skenario yang telah dibuat dengan nilai mean RSRP dan SIR dari setiap skenario, sehingga didapatkan skenario penempatan femtocell yang paling baik.
SIMULASI DAN ANALISIS QOS PADA JARINGAN MPLS IPV4 DAN IPV6 BERBASIS ROUTING OSPF.docx Ahmad Kahfi; Peby Wahyu Purnawan
MAESTRO Vol 1 No 1 (2018): APRIL 2018
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Teknologi Internet Protocol (IP) dengan konsep routing yang diterapkan pada jaringan komputer di Universitas Budi Luhur memiliki beberapa kelemahan dalam pengiriman paket data salah satunya waktu pengiriman paket data. Dimana konsep routing yang diterapkan di Universitas Budi Luhur, pada tiap router yang terhubung satu sama lain harus membaca dan memeriksa alamat tujuan yang sesuai dengan informasi pada tabel routing yang terdapat dalam pengiriman paket data sehingga waktu untuk pengiriman paket data terhambat. Teknologi berbasis Multiprotocol Label Switching (MPLS) menawarkan metode yang dikembangkan dari teknologi IP karena mekanisme pengiriman paket data akan dilakukan secara sederhana dengan memberikan label pada paket data yang akan dikirim sesuai dengan alamat tujuan. Pada tugas akhir ini dilakukan perbandingan kinerja antara jaringan yang ada (existing) di Universitas Budi Luhur, jaringan MPLS pada IPv4 serta kinerja dari IPv6 6PE over MPLS. Selanjutnya akan disimulasikan dan diuji performansinya pada layanan File Transfer Protocol (FTP) berupa pengiriman file serta Real Transport Protocol (RTP) berupa audio dan video secara live dengan pencarian quality of service (QoS) berupa parameter delay, jitter, packet loss, dan throughput.Dalam hasil simulasi serta analisis dengan menggunakan GNS3 (Graphic Network Simulator 3) dan wireshark didapat bahwa berdasarkan standarisasi Tiphon pada pengujian performansi jaringan MPLS IPv4 lebih baik dari jaringan non-MPLS dan IPv6 PE over MPLS ketika melakukan pengiriman paket ICMP, paket FTP dan RTP.
Sistem Kontrol Gerak Kaki Robot Dengan Memperhatikan Kondisi Suhu Motor Servo Pada Bagian Lutut Robot Humanoid Aris Prihatin; Akhmad Musafa
MAESTRO Vol 2 No 2 (2019): Edisi Oktober 2019
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ABSTRACT In this final task is discussed system is designed using an innate Bioloid Type-A robot with 18 servo dynamixel AX-12 A. With the dimensions of the humanoid robot range of arms has a length of 22 cm and a height of 56 cm robot. Each joint is moved by one servo motor. The electronic system consists of a CM-530 controller, AX-12A dynamixel servo motor, temperature sensor on the dynamixel ID13 and ID14 servo motor. In testing the motion of the walking robot does not pay attention to the temperature condition of the servo motor, the robot managed to walk straight with a distance of 180 cm, but at a distance of 180 cm fell with the results of reading serial monitors ID13& 4 = 47°C and 42°C. At a distance of 20 cm, servo temperatures ID13&14 = 32°C and 31°C. At a distance of 40 cm, servo temperatures ID 13 & 14 = 34°C and 32°C. At a distance of 60 cm, servo temperatures ID 13&14 = 37°C and 34°C. At a distance of 80 cm, servo temperatures ID 13&14 = 38°C and 36°C. At a distance of 100 cm, servo temperatures ID 13&14 = 40°C and 37°C. At a distance of 120 cm, servo temperatures ID 13&14 = 41°C and 37°C. At a distance of 140 cm, the temperatures ID 13&14 = 44°C and 40°C. At a distance of 160cm, the temperatures ID 13&14 = 46°C and 41°C. At a distance of 200 cm, temperatures ID 13&14 = 49°C and 44°C. the robot motion test runs by observing the temperature condition of the servo motor, the robot manages to walk straight with a distance of 60 cm, the temperature of the serial monitor reading ID 13 & 14 = 41°C and 47°C, but at a distance of 60 cm the robot turns right toward a distance of 100 cm , servo temperatures ID13&14 = 44°C and 52°C. The robot goes straight back a distance of 100 cm to 200 cm. At a distance of 20 cm the robot runs, servo temperatures ID 13&14 = 37°C and 42°C. At a distance of 40 cm, servo temperatures ID 13&14 = 39°C and 44°C. At a distance of 60 cm, servo temperatures ID 13&14 = 41°C and 47°C. At a distance of 80 cm, with servo temperatures ID 13&14 = 42°C and 49°C. At a distance of 120 cm, servo temperatures ID 13&14 = 44°C and 52°C. At a distance of 140 cm, servo temperatures ID 13&14 = 45°C and 52°C. At a distance of 180 cm, servo temperatures ID 13&14 = 47°C and 54°C. At a distance of 200 cm, servo temperatures ID 13&14 = 48°C and 55°C.
Penerapan Arsitektur Organik Pada Kawasan Agrowisata Kebun Teh Di Brebes, Jawa Tengah muhammad arif hidayat; Anggraeni Dyah Sulistiowati
MAESTRO Vol 2 No 1 (2019): Edisi April 2019
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Tea garden agro-tourism is an educational facility in Brebes, Central Java that accommodates natural tourism activities but teaches natural learning until the tea leaf picking process is educated and opened to all those who want to take a vacation and enjoy nature, in Agro tourism visitors are given the following knowledge: Learning to know nature further, practicing independence by understanding the community's interest in the culture of planting and caring for nature, especially tea plantations, can be generated by the existence of a forum to train and teach the community to care more about the surrounding environment. tours namely: Food court and caffetaria, tea galleries, libraries, guest houses, campgrounds, multipurpose halls, and. Recreational facilities: Services, shopping (tenants), ATM Center, and souvenir shops, landmarks or view towers, outbound zones, tea plantation zones / nurseries, home industries, green trees zones. Sports facilities: (Trampoline), pool, relaxing garden. Service Facilities: Mosque, laundry and house keeping. Supporting facilities: Mini trains and bicycles for tourist vehicles around the site. The tea garden agro-tourism located in Brebes, Central Java was taken into the form of the concept of implementation. The design of this development strives to provide a building function that accommodates teaching- learning activities with natural themes with an organic architecture approach. The concept of organic architecture is applied to an architectural philosophy that elevates harmony between human and natural dwelling.
PERENCANAAN CITY HOTEL BINTANG 5 DI BSD CITY, CISAUK KABUPATEN TANGERANG DENGAN PENERAPAN GREEN ARCHITECTURE Alya Mahdiyyah Wikarta; Sri Kurniasih
MAESTRO Vol 1 No 2 (2018): Oktober 2018
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Perencanaan City Hotel Bintang 5 di BSD City merupakan sebuah hotel bisnis dengan fasilitas bintang 5 seperti banyaknya ruang meeting dan ruang pertemuan berskala besar yang dapat menunjang kebutuhan para pelaku bisnis dikawasan tersebut. Banyaknya perkantoran dikawasan BSD City berdampak pada kebutuhan hotel di kawasan ini. BSD kini menjadi pusat perkembangan bisnis properti dan jasa yang professional. (Nata, 2017) Konsep Green Architecture pada bangunan City Hotel ini diterapkan dengan memanfaatkan air hujan yang diolah kembali dan dapat digunakan untuk menyiram tanaman, memanfaatkan sinar matahari dengan menggunakan solar panel untuk menghemat energi dan juga penerapan roof garden sebagai peneduh. Menerapkan Green Architecture kedalam bangunan mampu menghemat energi dan biaya serta tidak merusak lingkungan sekitar.
PERANCANGAN HOTEL RESORT DI PANTAI WIDURI PEMALANG JAWA TENGAH Chairul Mustakim; Karya Subagya
MAESTRO Vol 3 No 1 (2020): Edisi April 2020
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Tourism is an industrial sector that has been approved and promoted since the beginning of the Government of Indonesia, with the aim of bringing in foreign exchange and introducing the State of Indonesia to foreign countries through the tourism sector. One of the famous tourism objects in Pemalang is Widuri Beach. The beach that offers affordable tourism for the surrounding community. To meet the needs of tourism during the tour in need of development of the thistle beach tourism area, especially its 5-star resort hotel (five). Development planning with the concept of tropical architecture based on proliferation in Indonesia, especially Pemalang Thistle Coastal. Separation of climates that arise such as solar heat, air temperature, rainfall, humidity.
Sistem Kontrol Keseimbangan Robot Beroda Dua Pada Kondisi Bergerak Maju Silfani L. Tobing; Sujono Sujono
MAESTRO Vol 2 No 1 (2019): Edisi April 2019
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In this research designed a two-wheeled robot's balance using the Arduino Pro Mini 328P as controllers, sensors, ultrasonic distance sensor is used as well as ultrasonic sensor is used as slope detection robots, the driver of the motor and the dc motor L298 as mover of the robot. The robot system is designed to be able to avoid the existing wall before him who is regarded as a deterrent, and is able to detect the tilt which occurs on the robot. This testing is done in 4 different positions, as the robot moves forward from the start, the robot will detect the existing wall before him, and then the robot will turn to the right and back to move forward, and if the robot again to detect the robot's wall will move backwards and turn to the left. Of the system that has been created and fully tested, the robot would avoid the walls and not hit the wall.

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