墨西哥低功率风电场的经济可行性评估

IF 1.3 4区 工程技术 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS IEEE Latin America Transactions Pub Date : 2024-03-14 DOI:10.1109/TLA.2024.10472956
REYNALDO IRACHETA CORTEZ;Iridian Karime Angeles Pérez
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引用次数: 0

摘要

本文介绍了评估墨西哥低功率风电场经济可行性的方法。经济模型中的主要输入参数包括资本成本、运营和维护成本以及财务成本。风电场的年发电量是经济模型的另一个输入参数,它是通过评估特定地点的风力资源、风力涡轮机数量和风力涡轮机功率曲线计算得出的。小功率风电场的年收入是通过互联合同类型和能源销售价格估算出来的。建议的经济模型还包括根据墨西哥法律计算税收和激励措施。经济可行性评估适用于墨西哥瓦哈卡州 200 千瓦低功率风电场项目的规划。经济可行性评估包括两种配电互联合同的比较。
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Assessment of the Economic Viability of Low Power Wind Farms in Mexico
In this paper, it is presented the methodology for assessing the economic viability of low-power wind farms in Mexico. The main expanses considered as input parameters in the economic model are the capital costs, the operation and maintenance costs and the financial costs. The annual energy production of the wind farm is another input parameter of the economic model that is calculated with the evaluation of the wind resource at a given site, the number of wind turbines and the power curve of the wind turbine. The annual income of a low power wind farm is estimated through the type of interconnection contract and the energy sale price. The proposed economic model also includes the calculation of taxes and incentives based on Mexican laws. The assessment of economic viability is applied for planning a low-power wind farm project of 200-kW in the state of Oaxaca, Mexico. This assessment of economic viability includes the comparison of two types of interconnection contracts for distribution.
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来源期刊
IEEE Latin America Transactions
IEEE Latin America Transactions COMPUTER SCIENCE, INFORMATION SYSTEMS-ENGINEERING, ELECTRICAL & ELECTRONIC
CiteScore
3.50
自引率
7.70%
发文量
192
审稿时长
3-8 weeks
期刊介绍: IEEE Latin America Transactions (IEEE LATAM) is an interdisciplinary journal focused on the dissemination of original and quality research papers / review articles in Spanish and Portuguese of emerging topics in three main areas: Computing, Electric Energy and Electronics. Some of the sub-areas of the journal are, but not limited to: Automatic control, communications, instrumentation, artificial intelligence, power and industrial electronics, fault diagnosis and detection, transportation electrification, internet of things, electrical machines, circuits and systems, biomedicine and biomedical / haptic applications, secure communications, robotics, sensors and actuators, computer networks, smart grids, among others.
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