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Implementasi Modul Penyimpanan Energi Ganda untuk Solar Home System

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Pemanfaatan Sistem Photovoltaic untuk Catu Daya Repeater Radio PLN

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Implementasi Modul Penyimpanan Energi Ganda untuk Solar Home System

Journal article

Pemanfaatan Sistem Photovoltaic untuk Catu Daya Repeater Radio PLN

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Potensi Pemanfaatan Biomassa Sekam Padi Untuk Pembangkit Listrik Melalui Teknologi Gasifikasi

Energy consumption in Indonesia from year to year has increased significantly and this must be realized by the whole community. While the national energy reserves will be increasingly thinner so must be found new energy reserves. One of the most potential energy in Indonesia is biomass. Therefore, it is necessary to make various breakthrough in utilizing biomass, one of potency of biomass utilization is gasification. Therefore, it is necessary to make various breakthrough in utilizing biomass, one of potency of biomass utilization is gasification. As an agricultural country, Indonesia produces large quantities of biomass. One of the agricultural waste is rice husk, the weight of husk produced is 22% from the weight of dry milled grain. The availability of rural biomass has the potential to be used in power generation in areas not covered by electricity services.
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Implementasi Logika Fuzzy Untuk Sistem Otomatisasi Pengaturan Pengisian Batere Pembangkit Listrik Tenaga Surya

Solar power plants (PLTS) as power plants that use solar rays to generate electrical energy have a big role in reducing the burden of reducing CO2 emissions. Electrical energy generated by solar panels in the form of direct current (DC / direct current) low voltage. This electrical energy will be collected and stored in a battery (accumulator / battery) through a battery charging controller or so-called solar charge controller that serves as a controller charging process so that the voltage and current are filled to the battery does not exceed the ability batteries or overcharge. This research will make the model of charging the batteries in the Solar Charger Controler by using Mamdani's fuzzy inference logic which is used to adjust the direct current that is charged to the battery and transmitted to the load on the PLTS system. This simulation is expected to be applied to a device that acts as a set of excess filling that is streamed from the solar panel to a fuzzy-based battery. Solar Charger based Fuzzy logic controller can be applied to automatically stop the activity if the voltage in the battery by adjusting the charging function and exemption of current from battery to load.
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Efisiensi Motor Sinkron Linier dengan Magnet Permanen sebagai Penggerak KRL Terbaru

The latest electric train at this time has begun to be widely used linear synchronous motors with permanent magnets as driving locomotives.  This  permanent  magnet  has  the  same  function  as  a conventional synchronous motor which is to produce a magnetic field so that the motor can move linearly. This  linear  synchronous  motor  does  not  have  a  gear  (gear)  and  axis,  but  the  mechanical motion of this linear motor is synchronous with the magnetic field running. This running magnetic field is produced by the entanglement of the three phases and the arrangement of magnetic poles U, S, U, S. Because the motor is linear synchronous is a high-speed motor, the mechanical speed is the same as the speed of the magnetic field running. So that this motor is capable of producing large thrust compared to the use of conventional motors (DC motors and induction motors) to drive electric rail trains. If the conventional synchronous motor uses a frequency of 50 Hz, then the linear high-speed synchronous motor uses a frequency of 5-50 Hz in changing its speed and this research the efficiency, electromagnetic power (thrust) and thrust force of a synchronous motor will be analyzed. linear according to the frequency selection from 5-50 Hz, to drive the electric train locomotive.
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