cover
Contact Name
Harfa Iskandaria
Contact Email
harfa.iskandaria@budiluhur.ac.id
Phone
-
Journal Mail Official
redaksi.jom.ft@budiluhur.ac.id
Editorial Address
-
Location
Kota adm. jakarta selatan,
Dki jakarta
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 29 Documents
Search results for , issue "Vol 2 No 2 (2019): Edisi Oktober 2019" : 29 Documents clear
ANALISA MANAGEMENT BANDWIDTH MENGGUNAKAN QUEUE TREE SEBAGAI TRAFFIC CONTROL DENGAN METODE PFIFO Ahmad Syahlan Danu Terto; Eka Purwa Laksana
MAESTRO Vol 2 No 2 (2019): Edisi Oktober 2019
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Abstract

In this research conducted the research of bandwidth Management which is a technique of setting the amount of bandwidth in uploading and downloading data. Bandwidth Management is done using the queue tree algorithm on the OS Router. In this research method used is the method Pfifo, where the method is applied to the Router OS so that it can be done a comparison to the parameter-Paramer Quality of Service (QoS) before and after applied to the Router OS. The values of the Quality of Service (QoS) parameters are obtained by uploading a data to a website and then downloading the data. In this research, traffic control separates upload and download traffic, while applying packet queues through the OS Router. Results obtained in the form of Internet traffic changes that have exceeded the size of 22MB are moved on heavy traffic.
PENERAPAN ARSITEKTUR JENGKI PADA PERANCANGAN HOTEL RESORT DI KAWASAN WISATA ALAM JATINEGARA, TEGAL Kurnia Nur Prita Sari; Putri Suryandari
MAESTRO Vol 2 No 2 (2019): Edisi Oktober 2019
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Abstract

The Jengki architecture as the original style of the Indonesian architectural style and has been forgotten as the ages evolved, was applied in the design of a five star class (*****) Resort Hotel in the Jatinegara Nature Tourism Area, Tegal. The number of tourist areas developed in Jatinegara Subdistrict has increased the number of local and non-local visitors who need accommodation facilities. The increasing number of tourists was also targeted to reintroduce Jengki Architecture.
PENGENDALIAN SUHU DENGAN METODE PID PADA ALAT PENETAS TELUR Zacky Yarfa'ul Ahla; Akhmad Musafa
MAESTRO Vol 2 No 2 (2019): Edisi Oktober 2019
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Control becomes important as a deciding success in a process. One of which is a system that controls the temperature of the egg hatch using a mega Arduino 2560. The purpose of this system is to reduce failure during hatching of chicken eggs. At this final task will be discussed about temperature control by using the PID on the egg hatch tool. In the design of the tool this time using the LCD 20 x 4, sensor DHT2, Driver motor IBT-2, PTC Ceramic Air Heater with a power of 170 watts and a 12-volt, Fan 12 VDC with a size 12 cm x 12 cm. Component PTC Ceramic Air Heater and DC fan will be assembled into a A range of controls using the PID algorithm with a programming language using the language C. The automation done is by measuring the temperature in the egg hatching room with a setpoint value of 36 ° C-39 ° C. Temperature measurements are carried out using the DHT22 sensor, then tunning the PID with a heuristic method so that the overall test is obtained by the result of a comparison system response between normal temperature and AIR conditioned room temperature. The process Indicates the performance of the system works well in accordance with the value of the temperature that can be maintained at SetPoint, where the temperature value is estimated to hatch eggs. Keywords: Arduino Mega 2560, LCD 20 x 4, DHT22, PTC Ceramic Air Heater, Fan DC, Motor Driver IBT-2, PID.
MERANCANG INTERNATIONAL ISLAMIC BOARDING SCHOOL DI JAKARTA BARAT DENGAN PENERAPAN ARSITEKTUR ISLAM Andy Ismawan Arsyad; Sri Kurniasih
MAESTRO Vol 2 No 2 (2019): Edisi Oktober 2019
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Abstract

The Application of Islamic Architecture in the Design of the International Islamic Boarding School in West Jakarta can be interpreted as a place or building that serves to accommodate and serve the priority needs of Education for the West Jakarta area by applying the concept of Islamic Architecture where buildings, sites and education systems are made following the concept of Islamic Architecture. The design of the International Islamic Boarding School in West Jakarta is a place that functions as a place of education for learning for children, not only for general learning, but also for studying Islamic religion.
Perancangan Pusat Latihan Cabang Olahraga Beladiri Di Kota Tangerang Dengan Penerapan Metafora Arsitektur farhan khairillah zein; Harfa Iskandaria
MAESTRO Vol 2 No 2 (2019): Edisi Oktober 2019
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Abstract

Pusat Latihan Cabang Olahraga Beladiri di Kota Tangerang merupakan tempat pemusatan latihan bagi para atlet beladiri Kota Tangerang khususnya dalam beladiri Taekwondo, Karate, Pencak Silat dan Wushu, yang menjadi wadah pengembangan diri baik dari segi keahlian maupun pendidikan sebagai atlet beladiri yang memiliki fasilitas arena latihan yang sesuai dengan standar arena pertandingan dari federasi masing masing cabang olahraga beladiri yang tercakup di dalam pusat latihan cabang olahraga beladiri, sehingga para atlet dapat menyesuaikan diri dengan arena pertandingan sesuai standar masing masing cabang olahraga. Konsep arsitektur metafora yang di gunakan adalah metafora konkrit. Metafora konkrit di pilih karena pembentukan massa dan sirkulasi tapak yang di rancang menggambarkan karakteristik beladiri dari setiap cabang beladiri ke dalam struktur bangunan. Hal itu membuat tampilan bangunan lebih ekspresif dan berkarakter sesuai dengan fungsi bangunan sebagai gedung pelatihan beladiri. Pemilihan tema ini memunculkan karakter dari sebuah simbol dan aktivitas beladiri dalam sebuah tampilan gelanggang olahraga. Pada akhirnya, penyediaan fasilitas latihan cabang olahraga beladiri ini diharapkan dapat memberikan semangat untuk mencapai prestasi dengan penyediaan fasilitas yang dibutuhkan atlet beladiri.
Perancangan Sistem Mppt Untuk Dua Turbin Angin Kapasitas 300 Watt Pada Kondisi Kecepatan Angin Rendah Menggunakan Metode Perturb & Observe (P&O) Muhammad Fadli Arief; Akhmad Musafa
MAESTRO Vol 2 No 2 (2019): Edisi Oktober 2019
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Abstract

In this research modeled design MPPT system for two wind turbines at low wind speed conditions using the method Perturb & Observe. This method is used to find the maximum power value of the system of two wind turbines that have been designed. The design has been created in simulation using the MATLAB software by utilizing the Simulink facility, consisting of modelling two wind turbines with a Permanent Magnet Synchronous Generator (PMSG), rectifier, Buck boost converter, and two Wind turbine with MPPT P&O. The simulation is done with the varying wind speeds gained at the time of testing the wind energy potential at the Universitas Budi Luhur area Rooftop Unit 7 floor 6, with varying resistive loads. Simulated results show that testing two wind turbines without MPPT can produce an output power of 1.05 watts and for a system of two wind turbines with MPPT generating a output power of 7.17 watts. In the condition of wind speed of 5.4 m/s for the load value varies from 5 ohm to 30 ohm, average difference in voltage, current and power between systems without MPPT and system with MPPT is 6.28 volts, 0.45 ampere and 5.22 watt.
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
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Abstract

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.
PERANCANGAN TERMINAL TIPE A DI BOGOR DENGAN PENDEKATAN ARSITEKTUR NEO-VERNAKULAR Melati Cyntia Utami; Sri Kurniasih
MAESTRO Vol 2 No 2 (2019): Edisi Oktober 2019
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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The application of Neo-Vernacular Architecture to the Design of Type A Terminals in Bogor can be interpreted as a place or building that serves to accommodate and serve the transportation needs of passengers from one place to another that applies the Neo-Vernacular building concept where buildings are made following local concepts but packaged modern. The design of Type A. Terminals in Bogor has been synthesized in the form of a design concept. This building plan seeks to provide a function of building public transportation facilities that are capable of serving passengers especially in the Bogor area. This terminal is designed with a Neo-Vernacular architecture approach that still has the image of the local area but the material used is able to adapt to its time.
Navigasi Robot Quadruped Menggunakan Kamera Muhammad Notonugroho; Sujono Sujono
MAESTRO Vol 2 No 2 (2019): Edisi Oktober 2019
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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In a 4-legged robot designer in a simulation following a line that has been made in such a way using a camera and avoiding furniture. But in this simulation arena add a red line as a robot reference to follow the line and the arena has obstacles turning right, turning left and crossroad. In this arena furniture will also be added as a robot challenge to avoid it. This robot consists of 12 servo motors of each foot using 3 servo, 4 ultrasonic sensors, CMUcam5, line sensors, Arduino Mega 2560. CMUcam is used to read the midpoint of the red line that will be the path of the robot while to read furniture that is by using an ultrsonic sensor . When the robot has found the midpoint of the coordinate, with the X-axis of the line being in the middle of the robot, if the X-coordinate is greater than 180 then the robot's position is on the line and if the X-coordinate is less than 180 then the robot's position is on the line. The speed of the robot once rotating around the track is 0.017 m / s with a length of 5.72 meters. The results obtained are robots can navigate using the camera properly and succeed in avoiding furniture.
Peningkatan Terminal Rawa Buaya Menjadi Tipe A Dengan Arsitektur Perilaku di Jakarta Barat Anwar Sanusi; Sri Kurniasih
MAESTRO Vol 2 No 2 (2019): Edisi Oktober 2019
Publisher : FAKULTAS TEKNIK UNIVERSITAS BUDI LUHUR

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Abstract

Rawa Buaya Terminal is a cross-land transportation terminal to accommodate public transport vehicles which act as a place for regulating, monitoring and operating traffic to facilitate the flow of passengers. Rawa Buaya Terminal is also a city facility that uses behavioral architecture by considering comfort and paying attention to user needs to facilitate activities. At present the Rawa Buaya terminal will be prepared to become a type A bus terminal replacing the Kalideres terminal which is considered no longer feasible to function as a type A terminal in West Jakarta. Architecture Behavior is often used in designing a building to create a built environment by paying attention to aspects of psychology. Using the theory of Carol Simon Weisten and Thomas G. David in implementing the terminal design of Rawa Buaya pay attention to 4 points: the existence of human and environmental communication, accommodating the activities of its inhabitants, fulfilling aesthetic values, composition and form, paying attention to the conditions and behavior of building users, so that the terminal is expected to accommodate all user activities in the terminal area.

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