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Journal : Energi

Pembangunan Repeater Radio di Daerah Terpencil untuk Koordinasi Sistem Tenaga Listrik Suhardhika Sih Sudewanto
Energi & Kelistrikan Vol 12 No 2 (2020): Energi dan Kelistrikan: Jurnal Ilmiah
Publisher : Sekolah Tinggi Teknik PLN

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33322/energi.v12i2.1177

Abstract

Expansion of the electrical network and substation makes a demand for better electricity system coordination. A radio communication system is one of many ways that fulfill such demand. The range of radio communication systems is limited by geographical location. Establishing a series of radio links to cover a wide area can not be considered as a solution to have good quality and reliable radio communication system anymore. Therefore, It needs one optimal location for radio repeater to cover all sites that have a crucial role in electricity system coordination. The optimal location for the mountainous geographical region is usually located in a remote area, far from civilization. It will need more effort on engineering to establish a radio repeater site. The selection method of location and development phase will be done by software simulation and actual survey to conduct testing, to determine the equipment needed to build radio repeater, and for administrative purposes. With the average fade margin of 25 dB, the location of the radio repeater is considered optimal enough to maximize electricity system coordination.
Pemanfaatan Sistem Photovoltaic untuk Catu Daya Repeater Radio PLN Suhardhika Sih Sudewanto; Erwin Kalatiku
Energi & Kelistrikan Vol 13 No 2 (2021): Energi dan Kelistrikan: Jurnal Ilmiah
Publisher : Sekolah Tinggi Teknik PLN

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33322/energi.v13i2.1543

Abstract

The utilization of radio communication is one of several means to carry out electricity network coordination. The establishment of radio repeater is mandatory to cover vast areas of electricity system nodes. The radiation of a radio system is generally restricted by the contour of the terrain. The optimal location for radio repeater is usually situated in an isolated area, away from society. This will cause a problem in acquiring power supply from the local grid. This problem can be solved by harnessing solar power to energize the photovoltaic system. The implementation of the photovoltaic system will be done by performing load calculations of radio repeater equipment, determining the components needed, and executing site installation. With calculation result of 6,3 Days of Autonomy, the photovoltaic system is believed to be robust enough to increase the effectiveness of radio repeater operation.