“…Untuk rancang bangun pembangkit tenaga surya maka diperlukan data performance dari pembangkit tenaga surya (photovoltaic dan sistemnya). Sehingga analisis performance pembangkit tenaga surya bisa dimanfaatkan untuk rancang bangun pembangkit tenaga surya yang baik pada masa depan di Indonesia [1][2][3].…”
Section: Pendahuluanunclassified
“…System photovoltaic ini langsung terhubung ke jaringan seperti PLN atau jaringan listrik non-pemerintah. Ketika energi listrik dibangkitkan maka energi listrik dari photovoltaic diubah menjadi tegangan ac kemudian dihubungkan langsung ke jaringan listrik [2][3][4][5].…”
Renewable energy power generation technology continues to develop every year and energy demand continues toincrease. Reducing carbon emissions in accordance with international carbon emission policies (including Indonesia). The renewable energy target is targeted to increase every year in accordance with the national renewable energy mix policy. Renewable energy has characteristics that fluctuate over time, so continuous measurement data is needed. This data is used for the design of renewable energy in Indonesia in the future. To analyze the performance of a solar power plant, measurement variables are needed. Photovoltaic analysis requires measurement of variable voltage, current, power and energy. Measurement variables are measurement variables from photovoltaic and measurement variables from solar energy. The measurement of solar energy is measured in Watts per square meter. The measurement method is a direct measurement in the territory of Indonesia. The measurement method is the measurement at sunrise to sunset. The measurement results are used for performance analysis. The measurements result are used for photovoltaic efficiency analysis.
“…Untuk rancang bangun pembangkit tenaga surya maka diperlukan data performance dari pembangkit tenaga surya (photovoltaic dan sistemnya). Sehingga analisis performance pembangkit tenaga surya bisa dimanfaatkan untuk rancang bangun pembangkit tenaga surya yang baik pada masa depan di Indonesia [1][2][3].…”
Section: Pendahuluanunclassified
“…System photovoltaic ini langsung terhubung ke jaringan seperti PLN atau jaringan listrik non-pemerintah. Ketika energi listrik dibangkitkan maka energi listrik dari photovoltaic diubah menjadi tegangan ac kemudian dihubungkan langsung ke jaringan listrik [2][3][4][5].…”
Renewable energy power generation technology continues to develop every year and energy demand continues toincrease. Reducing carbon emissions in accordance with international carbon emission policies (including Indonesia). The renewable energy target is targeted to increase every year in accordance with the national renewable energy mix policy. Renewable energy has characteristics that fluctuate over time, so continuous measurement data is needed. This data is used for the design of renewable energy in Indonesia in the future. To analyze the performance of a solar power plant, measurement variables are needed. Photovoltaic analysis requires measurement of variable voltage, current, power and energy. Measurement variables are measurement variables from photovoltaic and measurement variables from solar energy. The measurement of solar energy is measured in Watts per square meter. The measurement method is a direct measurement in the territory of Indonesia. The measurement method is the measurement at sunrise to sunset. The measurement results are used for performance analysis. The measurements result are used for photovoltaic efficiency analysis.
“…Di Bali terdapat PLTS dan sudah dilakukan penelitian diantaranya penelitian yang membahas mengenai unjuk kerja inverter dan pengaruh string array terhadap produksi energi PLTS dengan hasil seluruh inverter di PLTS Kayubihi dapat memproduksi energi listrik lebih besar atau sama dengan 75% [15] Kemudian, penelitian yang membahas tentang kinerja sistem PV dalam iklim tropis [11]. Kemudian, penelitian yang membahas tentang analisa teknis dan biaya untuk mengetahui kelayakan sistem PJU-TS [16].…”
Smart Microgrid System of Udayana University is collaboration project between Ministry of Energy and Mineral Resources with Udayana University. The system consist of 26.4 kWp Solar Power Plant, 5 kWp Wind Turbine, 20 kWp Diesel Generator, 192 kVAh battery and connected with a low voltage distribution network 220/380 V. This paper discusses performance of the solar power plant with HelioScope. The simulation results will be compared with the real energy production from solar power plant The simulation results is 43,055.4 kWh per year. Whereas the real production is 3,948.28 kWh, lower by 4,107.4 kWh or 9.53% than the simulation. Factors that influence the difference are shade, the cleanliness of solar modules and orientation of the solar modules.
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