Sistem Pengujian Tegangan Boost Converter Pada Pembangkit ListrikTenaga Air (PLTH) Picohydro Kapasitas Rendah
Abstract
Voltage testing, on hybrid power plants (PLTH), uses two sources that are solar/solar power plants and waterwheel power plants. Supporting components to produce electric energy conversion one of them is boostconverter which is the main subject. Therefore the author is interested in making and testing the voltage, on the boost converter with the aim to maximize the performance of the DC Genertator as a pensupplay Batterai/accu on PLTH Pico Hydro. The DC-voltage source of the DC-DC converter can be obtained from a generator, or an AC voltage source that is air-conditioned to DC. While Dc-DC converter is a power electronic circuit, to convert a DC to DC voltage input into the output voltage with a greater value. The test results of the voltage from the field data can be concluded as follows. The voltage boost converter test results, on the Pico Hydro Hybrid power plant can produce a voltage of 13 volts from the output DC Generator 8.39 Volt. The output voltage generated by the boost converter is 13.4 volts, can be stable although the output voltage of the generator is variable. With the addition of the tool boost converter on PLTH Pico Hydro, can help battery charging/ACCU to charge the required voltage of the battery is 12 volts, from the boos convevter 13.4 volt long time charging ACCU 5.3 hours.
Keywords
Full Text:
PDFReferences
. J. Dudrik, M. Pastor, M. Lacko, R. Zatkovic, “Zero-Voltage and Zero-Current Switching PWM DC–DC Converter Using Controlled Secondary Rectifier with One Active Switch and Nondissipative Turn-Off Snubber”, IEEE Transactions on Power Electronics, Vol. 33, No. 7, pp. 6012-6023, 2018.
. Saodah S, Sri Utami S., 2018.,”Perancangan Inverter Menggunakan Buck Bost Converter Dua Level” Prosiding Seminar Nasional Vokasi Indonesia, Vol 1, e.ISSN 2654-6493, pp.55-59.
. Fahmi Umarella, “Analisa Induktor Toroid Binokuler Pada Rangkaian Boost Converter”, Laporan Tugas Akhir Jurusan Teknik Elektro Universitas Indonesia Depok, Hal.1, 2014
. Hendi Matalata,Leily W Johar, 2018, Analisa Buck Converter Dan Boost Converter Pada Perubahan Duty Cycle Pwm Dengan Membandingkan Frekuensi Pwm 1,7 Khz Dan 3,3Khz, Jurnal Ilmiah Universitas Batanghari Jambi Vol.18, No.1
. Venny Y., 2018” Perancangan Bosst Konverter Sebagai Penguat Umpan Balik Charnger Control Baterai Pada Panel Surya” Jurrnal Civronlit Universitas Batanghari Vol.3 N0.2.pp.98-103, Oktober 2018.
. Venkateswra Rao, Ch., S.S.Tulasiram, B.Brahmaiah, 2015, “Digital ControlLED High Power Synchronous Boost Converter Based Mppt Charge Controller For Spv System”, International Journal of Innovations in Engineering and Technology (IJIET), Vol. 5 No. 1, pp. 104-110, April 2015.
. T.NageswaraRao., V.C. Veera Reddy, (2012)“A NovelEfficient Soft Switched Two Ports Dc-Dc BoostConverter With Open Loop And Closed Loop Control”.Indian Journal of Computer Science andEngineering,Volume: 3 Issue: 3 PP: 394-400
. Vikas Shrivastava, Seema Deshmukh “Analysis andStudy Between Two Soft Swiching Techniques Used inBoost Converter Implementattion” InternatioalConference onElectrical, Electronics, Communication,Mechanical, Coputing (EECCME)-2018, IEEE Madras.
. M.Z. Hossain, N.A. Rahim, J. Selvaraj, “Recent Progress and Development on Power DC-DC Converter Topology, Control, Design and Applications: A Review”, Renewable and Sustainable Energy Reviews, Vol. 81, pp. 205-230, 2018.
.K.I. Wu, B.T. Hwang, C.C.P. Chen, “Synchronous Double- Pumping Technique for Integrated Current-Mode PWM DC–DC Converters Demand on Fast-Transient Response”, IEEE Transactions on Power Electronics, Vol. 32, No. 1, pp. 849-865, 2017.
.C. Liu, J. Kan, Y. Zhi, W. Li, J. Sun, G. Cai, J. Wang, Reliable transformerless battery energy storage systems based on cascade dual-boost/buck converters, IET Power Electronics, Vol. 8, Iss. 9, pp. 1681–1689, 2015.
Syafriyudin, 2018, Early Analysis Of Jumping Water Effect On Breastshot Waterwheel For Microhydro Power Plant, Journal of Physics: Conf. Series19253; 012039.
DOI: http://dx.doi.org/10.33087/jepca.v3i1.33
Refbacks
- There are currently no refbacks.

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
Journal of Electrical Power Control and Automation (JEPCA) |

