PROTOTYPE HYBRID SOLAR POWER SYSTEM DENGAN GENERATOR SET MENGGUNAKAN AUTOMATIC TRANSFER SWITCH SYSTEM

TAUFIQURRACHMAN, FARIZ and Sariman, Sariman (2021) PROTOTYPE HYBRID SOLAR POWER SYSTEM DENGAN GENERATOR SET MENGGUNAKAN AUTOMATIC TRANSFER SWITCH SYSTEM. Undergraduate thesis, Sriwijaya University.

[thumbnail of RAMA_20201_03041181621025.pdf] Text
RAMA_20201_03041181621025.pdf - Accepted Version
Restricted to Repository staff only
Available under License Creative Commons Public Domain Dedication.

Download (1MB) | Request a copy
[thumbnail of RAMA_20201_03041181621025_0007075802_01_front_ref.pdf]
Preview
Text
RAMA_20201_03041181621025_0007075802_01_front_ref.pdf - Accepted Version
Available under License Creative Commons Public Domain Dedication.

Download (647kB) | Preview
[thumbnail of RAMA_20201_03041181621025_0007075802_02.pdf] Text
RAMA_20201_03041181621025_0007075802_02.pdf - Accepted Version
Restricted to Repository staff only
Available under License Creative Commons Public Domain Dedication.

Download (292kB) | Request a copy
[thumbnail of RAMA_20201_03041181621025_0007075802_03.pdf] Text
RAMA_20201_03041181621025_0007075802_03.pdf - Accepted Version
Restricted to Repository staff only
Available under License Creative Commons Public Domain Dedication.

Download (312kB) | Request a copy
[thumbnail of RAMA_20201_03041181621025_0007075802_04.pdf] Text
RAMA_20201_03041181621025_0007075802_04.pdf - Accepted Version
Restricted to Repository staff only
Available under License Creative Commons Public Domain Dedication.

Download (512kB) | Request a copy
[thumbnail of RAMA_20201_03041181621025_0007075802_05.pdf] Text
RAMA_20201_03041181621025_0007075802_05.pdf - Accepted Version
Restricted to Repository staff only
Available under License Creative Commons Public Domain Dedication.

Download (192kB) | Request a copy
[thumbnail of RAMA_20201_03041181621025_0007075802_06_ref.pdf] Text
RAMA_20201_03041181621025_0007075802_06_ref.pdf - Bibliography
Restricted to Repository staff only
Available under License Creative Commons Public Domain Dedication.

Download (292kB) | Request a copy
[thumbnail of RAMA_20201_03041181621025_0007075802_07_lamp.pdf] Text
RAMA_20201_03041181621025_0007075802_07_lamp.pdf - Accepted Version
Restricted to Repository staff only
Available under License Creative Commons Public Domain Dedication.

Download (367kB) | Request a copy
[thumbnail of RAMA_20201_03041181621025_TURNITIN.pdf] Text
RAMA_20201_03041181621025_TURNITIN.pdf - Accepted Version
Restricted to Repository staff only
Available under License Creative Commons Public Domain Dedication.

Download (3MB) | Request a copy

Abstract

Research on a prototype hybrid solar power system with a generator set aims to reduce the dependence of people in rural areas who are not reached by PLN electricity so that the use of solar energy is an alternative that can be used to reduce the dependence of rural communities on the use of fuel oil which is getting longer. exhausted and of course the costs to be incurred will be even greater. The prototype will use an automatic transfer switch system as a switching system from the generator set to the solar power system. The data collection process was carried out for 7 days with 6 hours per day for the generator set and solar power system when charging the battery. As for battery usage, it depends on the weather when charging the battery. Retrieval of data in the form of voltage, current and power. The results of the data obtained after the research are the average voltage value of the generator set per day is 220.48 V. For 6 hours of use it requires 3 liters of fuel. The average voltage value for the solar power system when charging the battery per day is 20.709 V. The measurement of the voltage value on the battery using a 500 W inverter with a lamp load of 400 W is carried out for 7 days for 2 hours. However, on the 2nd day to the 7th day, it is not possible to measure the voltage value for 2 full hours. This is due to the influence of unfavorable weather. The value of the total average voltage on the battery using a 500 W inverter with a 400 W lamp load is 11.743 V.

Item Type: Thesis (Undergraduate)
Uncontrolled Keywords: Hibrid, solar power system, generator set.
Subjects: T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK2896-2985 Production of electricity by direct energy conversion > TK2960.B87 Photovoltaic power generation. Photovoltaic power systems
Divisions: 03-Faculty of Engineering > 20201-Electrical Engineering (S1)
Depositing User: FARIZ TAUFIQURRACHMAN
Date Deposited: 28 Sep 2021 06:56
Last Modified: 28 Sep 2021 06:56
URI: http://repository.unsri.ac.id/id/eprint/54199

Actions (login required)

View Item View Item