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Performance-related dependability evaluation of multi-source renewable energy systems using deterministic and stochastic Petri nets

机译:使用确定性和随机Petri网的多源可再生能源系统性能相关的可靠性评估

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摘要

On a global scale, the energy demand continues to increase. The costs of fossil fuels are uncertain. The liberalization of the electricity market and an environmental conscience are the levers for the development of renewable energies. They have reached a technical maturity that allows them to become an important segment of the energy industry. Their insertion in the energy mix poses new challenges compared to traditional energy sources. With abundant potential still under-exploited, wind and solar (photovoltaic) energy are economically and environmentally beneficial. However, their intermittent nature decreases their energy efficiency when used individually. The use of multi-source systems to combine these renewable energy sources is considered a reliable solution. In this context, we are interested in determining the performances of multi-source renewable energy systems, related to their dependability. Our approach is based on the use of deterministic and stochastic Petri nets for analyzing the dynamic behavior of these systems. By using the developed model for analyzing functional and dysfunctional behavior, we determine the instants of passage from functioning state to breakdown state of multi-source renewable energy systems for calculating their reliability. After that, the overall production time, for these systems, is defined by developing mathematical models to calculate duration of failure and waiting time of each component, according to the architecture of the system to be studied.
机译:在全球范围内,能源需求持续增长。化石燃料的成本不确定。电力市场的自由化和环境意识是发展可再生能源的杠杆。它们已经达到了技术成熟度,使它们成为能源行业的重要组成部分。与传统能源相比,将它们插入能源组合构成了新的挑战。风能和太阳能(光伏)在仍未得到充分利用的情况下,在经济和环境方面都是有益的。但是,当它们单独使用时,它们的间歇性会降低其能量效率。使用多源系统组合这些可再生能源被认为是可靠的解决方案。在这种情况下,我们有兴趣确定与多源可再生能源系统的性能相关的性能。我们的方法是基于确定性和随机Petri网的使用来分析这些系统的动态行为。通过使用开发的模型来分析功能和功能异常行为,我们确定了多源可再生能源系统从功能状态转变为故障状态的瞬间,以计算其可靠性。之后,根据要研究的系统的体系结构,通过开发数学模型来计算每个组件的故障持续时间和等待时间,来定义这些系统的总体生产时间。

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