Enhanced PV Network Controller for Optimizing Performance of LFC Power Systems

计算机科学 控制器(灌溉) 电力系统 光伏系统 功率(物理) 汽车工程 可靠性工程 控制工程 电气工程 工程类 物理 量子力学 农学 生物
作者
Zainab Ali Abbood
标识
DOI:10.58496/bjn/2025/001
摘要

Turkey has made national energy accessibility the top of its priorities. Less than 90% of the nation's 82 million citizens can access electricity today. Workers use solar power and wind energy to provide more electricity across the nation. Solar power wind power and power electronics help Turkey save money as it works to fix its energy issues. Load Frequency Control inveters help Turkey as a developing country reduce solar power costs through advanced power electronics technologies. IC-based electronics improvements let us make energy components work better at less cost compared to previous expensive hardware. LFC inverters help add renewable energy to existing grids according to latest research and can solve energy problems worldwide. The analysis sees solar power providing 35% of Turkey's power output by 2050. Wind energy stands out for its unmatched marginal fuel cost advantage. Utility-scale solar power beats other generation sources because it costs no fuel to produce power while releasing minimal greenhouse gases which supports global decarbonization efforts. The analysis shows that our updated energy model matches actual LFC metering data through similar energy output numbers and trends. Our predicted numbers using the standard Load Flow Control system proved less precise than actual measurements. Our simulation produced 3.9% additional renewable energy estimates than actual meter readings whereas the basic model showed 52% less output. Our revised energy model in MATLAB shows good precision when it uses 10% solar power and 9.90% wind power input. Our hybrid scheme produced precise predictions when combining both solar and wind systems with 57.16% solar and 57.20% wind percentages.
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