DESAIN DAN IMPLEMENTASI HUMAN MACHINE INTERFACE (HMI) UNTUK SCADA PEMBANGKIT LISTRIK TENAGA MIKROHIDRO

Microhydro power plant is a green technology which can be an alternative solution in overcoming the world energy crisis. This technology is a non-depleting and nonpolluting energy source that has been proven be able to provide reliable power in the past and will still one of the most promising renew...

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Main Authors: , Alief Rakhman Mukhtar, , Dr.Eng. Suharyanto, S.T., M.Eng
Format: Thesis
Published: [Yogyakarta] : Universitas Gadjah Mada 2012
Subjects:
ETD
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author , Alief Rakhman Mukhtar
, Dr.Eng. Suharyanto, S.T., M.Eng
author_facet , Alief Rakhman Mukhtar
, Dr.Eng. Suharyanto, S.T., M.Eng
author_sort , Alief Rakhman Mukhtar
collection UGM
description Microhydro power plant is a green technology which can be an alternative solution in overcoming the world energy crisis. This technology is a non-depleting and nonpolluting energy source that has been proven be able to provide reliable power in the past and will still one of the most promising renewable energy source in the future. Some microhydro systems those have been implemented in Indonesia were equipped with Supervisory Control and Data Acquisition (SCADA). This additional feature gives benefit to the power plant supervision process. With SCADA, supervision of the Microhydro power system can be done continuously. Therefore, any problems those might be appear can be detected as soon as possible and then handled appropriately while also maintaining performance parameters of the power plant. The monitoring and controlling implementation is not away from interactive design of Human Machine Interface. It helps the operator in controlling the plant decision and making correct. In this way, the thesis presents an interface for SCADA to monitor and control parameters in the microhydro power plants and increasing quickens decision making by operator as well as minimizing human error. Evaluation test of HMI is done by survey method, use questioner which addressed to operator. The result of questioner calculated using validity and realibility test. The result of test in earning that value r account is 0,69. This value has high realibility because r account is bigger than value rt. Where value rt applied is 0,6. This concludes that HMI which in design have been applicable and capable to operated as the monitoring and controlling to SCADA system in microhydro power plant.
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spelling oai:generic.eprints.org:1009612016-03-04T08:45:34Z https://repository.ugm.ac.id/100961/ DESAIN DAN IMPLEMENTASI HUMAN MACHINE INTERFACE (HMI) UNTUK SCADA PEMBANGKIT LISTRIK TENAGA MIKROHIDRO , Alief Rakhman Mukhtar , Dr.Eng. Suharyanto, S.T., M.Eng ETD Microhydro power plant is a green technology which can be an alternative solution in overcoming the world energy crisis. This technology is a non-depleting and nonpolluting energy source that has been proven be able to provide reliable power in the past and will still one of the most promising renewable energy source in the future. Some microhydro systems those have been implemented in Indonesia were equipped with Supervisory Control and Data Acquisition (SCADA). This additional feature gives benefit to the power plant supervision process. With SCADA, supervision of the Microhydro power system can be done continuously. Therefore, any problems those might be appear can be detected as soon as possible and then handled appropriately while also maintaining performance parameters of the power plant. The monitoring and controlling implementation is not away from interactive design of Human Machine Interface. It helps the operator in controlling the plant decision and making correct. In this way, the thesis presents an interface for SCADA to monitor and control parameters in the microhydro power plants and increasing quickens decision making by operator as well as minimizing human error. Evaluation test of HMI is done by survey method, use questioner which addressed to operator. The result of questioner calculated using validity and realibility test. The result of test in earning that value r account is 0,69. This value has high realibility because r account is bigger than value rt. Where value rt applied is 0,6. This concludes that HMI which in design have been applicable and capable to operated as the monitoring and controlling to SCADA system in microhydro power plant. [Yogyakarta] : Universitas Gadjah Mada 2012 Thesis NonPeerReviewed , Alief Rakhman Mukhtar and , Dr.Eng. Suharyanto, S.T., M.Eng (2012) DESAIN DAN IMPLEMENTASI HUMAN MACHINE INTERFACE (HMI) UNTUK SCADA PEMBANGKIT LISTRIK TENAGA MIKROHIDRO. UNSPECIFIED thesis, UNSPECIFIED. http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=57226
spellingShingle ETD
, Alief Rakhman Mukhtar
, Dr.Eng. Suharyanto, S.T., M.Eng
DESAIN DAN IMPLEMENTASI HUMAN MACHINE INTERFACE (HMI) UNTUK SCADA PEMBANGKIT LISTRIK TENAGA MIKROHIDRO
title DESAIN DAN IMPLEMENTASI HUMAN MACHINE INTERFACE (HMI) UNTUK SCADA PEMBANGKIT LISTRIK TENAGA MIKROHIDRO
title_full DESAIN DAN IMPLEMENTASI HUMAN MACHINE INTERFACE (HMI) UNTUK SCADA PEMBANGKIT LISTRIK TENAGA MIKROHIDRO
title_fullStr DESAIN DAN IMPLEMENTASI HUMAN MACHINE INTERFACE (HMI) UNTUK SCADA PEMBANGKIT LISTRIK TENAGA MIKROHIDRO
title_full_unstemmed DESAIN DAN IMPLEMENTASI HUMAN MACHINE INTERFACE (HMI) UNTUK SCADA PEMBANGKIT LISTRIK TENAGA MIKROHIDRO
title_short DESAIN DAN IMPLEMENTASI HUMAN MACHINE INTERFACE (HMI) UNTUK SCADA PEMBANGKIT LISTRIK TENAGA MIKROHIDRO
title_sort desain dan implementasi human machine interface hmi untuk scada pembangkit listrik tenaga mikrohidro
topic ETD
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