Kiskindy, Sanynita and Prasetyo, Indra Insan (2015) Monitoring Pemakaian Daya PJU Pada Panel Meter. Diploma thesis, Institut Teknologi Sepuluh Nopember.
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Abstract
Pencatatan pemakaian daya pada panel meter Penerangan Jalan
Umum (PJU) oleh petugas catat meter (cater) masih dilakukan secara
manual. Petugas cater setiap bulannya datang ke lokasi panel meter PJU
untuk mencatat pemakaian daya yang terpakai. Pencatatan secara
manual ini tidaklah efisien karena seringkali petugas cater tidak datang
ke lokasi panel dan hanya memperkirakan data pemakaian daya dari
pemakaian sebelumnya.
Melihat permasalahan tersebut, maka dibuatlah alat monitoring
pemakaian daya PJU pada sebuah panel meter untuk meminimalisirnya.
Sensor arus dan sensor tegangan digunakan untuk mengukur arus dan
tegangan pada beban untuk mendapatkan nilai daya. Data hasil
pengukuran sensor akan diolah Arduino dan juga disimpan pada
microSD. Hasil olah data akan dikirim melalui media komunikasi WiFi
yang kemudian ditampilkan pada PC melalui software LabVIEW.
Software ini menampilkan data arus, tegangan, daya, pemakaian daya,
dan indikator beban. Semua data yang dikirimkan ke PC akan disimpan
secara otomatis pada database PC.
Alat ini mampu mengukur arus dan tegangan dengan hasil yang
linier dengan persentase kesalahan rata-rata baca sensor tegangan
sebesar 1,5% dan sensor arus sebesar 1,38%. Pembacaan sensor arus,
tegangan, dan nilai daya ditampilkan pada LCD dan LabVIEW.
Tampilan LabVIEW dilengkapi dengan kolom login khusus admin
untuk memonitor database pemakaian daya pelanggan PJU. ========== Nowadays, power consumption of road lighting (PJU) is
records manually. Every month, the “cater” officers come to the
location of road lighting panel meter for recording power consumption.
This method is not efficient because the officers did not come to panel
meters location and they are predicting the power consumption data
based on the previous data.
Based on these problems there was an idea of monitoring
power consumption of road lighting on panel meters to minimize the
problems. Current sensor and voltage sensor are placed on for measure
the value of current and voltage from the load to get the power value.
The measurements of sensors will be processed by Arduino and also will
be stored in microSD. The processed data will be transfer over Wi-Fi
communication media then the data will be displayed on the PC through
LabVIEW. It is displaying current, voltage, power, power consumption,
and indicator lamp. The results of reading data will be stored
automatically in PC database.
The prototype is capable to measure electric current and
voltage linearly with error percentage 1.5% for voltage sensor, 1.38%
for current sensor. The measurements data will be displayed on LCD
and LabVIEW. LabVIEW interface are added by login column for
admin to monitoring the database of PJU consumers.
Item Type: | Thesis (Diploma) |
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Additional Information: | RSE 621.310 285 Kis m 3100015060977 |
Uncontrolled Keywords: | Monitoring, Arus, Tegangan, Daya, PJU, Monitoring, Current, Voltage, Power |
Subjects: | T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK1010 Electric power system stability. Electric filters, Passive. T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK3226 Transients (Electricity). Electric power systems. Harmonics (Electric waves). |
Divisions: | Faculty of Industrial Technology > Electrical Engineering > 20401-(D3) Diploma 3 |
Depositing User: | - Davi Wah |
Date Deposited: | 06 Dec 2019 06:52 |
Last Modified: | 06 Dec 2019 06:52 |
URI: | http://repository.its.ac.id/id/eprint/72206 |
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