Studi performa panel surya 100 wp menggunakan software homer di universitas pamulang. Studi performa panel surya 100 WP menggunakan software Homer untuk optimasi energi terbarukan di Universitas Pamulang. Analisis produksi daya, konsumsi beban, dan konfigurasi sistem.
Studies on designs and systems for solar panels are currently continuing to be developed. One application is to design a Homer-based solar power generation system (PLTS) with a solar panel capacity of 100 Wp and analyze the system performance at different loads. This research was conducted to determine the amount of power that solar panels can produce, load consumption, and determine a suitable system configuration to meet electricity needs at different loads. The method used is design, determining parameters on the homer and creating a simulation with loading. The research results show that the amount of power that can be produced by solar panels is 75,2kWh/year and can meet electricity needs at different loads. It is hoped that this research can be a solution to optimize the use of solar energy on a small scale and support renewable energy programs in Indonesia.
The submitted abstract, "Studi Performa Panel Surya 100 WP Menggunakan Software Homer Di Universitas Pamulang," presents a timely and relevant study on the design and performance analysis of a small-scale solar photovoltaic (PV) system. The research aligns with current efforts to develop and optimize renewable energy solutions, specifically highlighting its contribution to Indonesia's renewable energy programs. The objective to quantify power generation, analyze load consumption, and identify appropriate system configurations for a 100 Wp solar panel at varying loads is clearly stated and holds practical significance for local energy applications. The methodology, which involves system design, parameter definition within HOMER software, and subsequent simulation with different loading conditions, is a suitable and widely accepted approach for this type of system performance evaluation. The reported finding of 75.2 kWh/year in power production, capable of meeting diverse electricity needs, is a key result demonstrating the system's technical feasibility. This outcome supports the paper's aim to provide a solution for optimizing small-scale solar energy use and contributes positively to the ongoing dialogue surrounding sustainable energy deployment. To further enhance the impact and comprehensiveness of the full paper, several areas could be expanded upon. Greater detail on the specific "different loads" considered (e.g., their profiles, magnitudes, and duration) would provide richer context for the system's performance. Additionally, a more explicit description of the "suitable system configuration" — beyond just the 100 Wp panel (e.g., battery sizing, inverter specifications, control strategies) — would be beneficial. Given HOMER's capabilities, incorporating an economic analysis (such as Net Present Cost, Levelized Cost of Energy, or simple payback period) alongside the technical performance would significantly strengthen the study by offering a more holistic view of the system's viability and making the proposed "optimization" more concrete and actionable.
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