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Including management and security of supply constraints for designing stand-alone electrification systems in developing countries

机译:包括在发展中国家设计独立电气化系统的供应限制的管理和安全性

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摘要

Hybrid wind-photovoltaic stand-alone systems have proven to be suitable to electrify isolated communities autonomously. Moreover, the use of a combination of microgrids and individual systems has been demonstrated to be very adequate. There are a few tools to assist their design but they only consider economical and technical characteristics. However, the management of the system and the security of supply, both at a community level, are key aspects to design appropriate electrification systems for end-users, thus ensuring projects' long-term sustainability, especially in rural areas of developing countries. In this context, this paper develops a mathematical model to optimise the design of wind-photovoltaic projects combining microgrids and individual systems, and including the aforesaid key issues as constraints. Thus, the aim is to minimise the cost while meeting the technical but also the management and the security of supply constraints. Finally a validation is carried out in the real community of Alto Peru (Peru), proving that the two studied aspects allow obtaining electrification solutions with some benefits that strongly compensate the obtained slight cost increases.
机译:事实证明,混合型风光光伏独立系统适合于自动为孤立的社区通电。而且,已经证明结合使用微电网和单个系统是非常合适的。有一些工具可以辅助其设计,但它们仅考虑经济和技术特征。但是,在社区一级的系统管理和供应安全是为最终用户设计合适的电气化系统的关键方面,从而确保了项目的长期可持续性,特别是在发展中国家的农村地区。在此背景下,本文建立了一个数学模型来优化微电网和单个系统的风光发电项目设计,并将上述关键问题作为约束条件。因此,目的是使成本最小化,同时满足技术以及供应方面的管理和安全约束。最后,在秘鲁上高地(Peru)的真实社区中进行了一次验证,证明这两个方面的研究可以使电气化解决方案获得一些收益,这些收益可以强有力地补偿所获得的轻微成本增长。

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