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Diagnostic techniques for the monitoring and control of practical flames

机译:诊断和控制实际火焰的诊断技术

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The development of diagnostic methods suitable for the monitoring of practical flames is an important objective, which is receiving a growing attention and significant research efforts. This is motivated by the need to achieve a more precise description of the process and, ultimately, implement efficient and reliable control and optimisation methods as a key step towards the development of more efficient, flexible, reliable and clean combustion systems. Many and interesting attempts have been proposed, involving widely different approaches in terms of the instrumentation utilized and the concepts proposed to convert sensorial information into various meaningful parameters. This article intends to review the techniques proposed in the literature for the monitoring of flames, either applied to or conceived for the monitoring of practical combustion equipment It has been divided into four sections, dealing respectively with optical sensors, imaging techniques, pressure transducers and probing methods. A detailed analysis of the works published reveals that probably the main challenge in this field is the definition of the most representative flame signals and of their subsequent processing to derive the meaningful information required to diagnose the state of a flame or to drive a controller in an effective and safe manner. This together with the wide range of diagnostic needs and restrictions imposed by the different combustion situations probably explains the notable heterogeneity observed among the works published. In spite of the great efforts devoted, the techniques proposed for the advanced monitoring of practical flames are still at a development stage. However, significant advances in this field are expected in a near future, fostered by the urgent demands from the combustion industry and facilitated by the continuous progress in sensor technology, signal processing techniques and, not the least in the understanding of combustion processes.
机译:开发适用于监测实际火焰的诊断方法是一个重要的目标,正在受到越来越多的关注和大量的研究工作。这是由于需要对过程进行更精确的描述,并最终实施高效,可靠的控制和优化方法,将其作为开发更高效,灵活,可靠和清洁的燃烧系统的关键步骤。已经提出了许多有趣的尝试,包括在所使用的仪器和提出的将感官信息转换为各种有意义的参数的概念方面广泛不同的方法。本文旨在回顾文献中提出的用于监测火焰的技术,这些技术已应用于或设想用于监测实际燃烧设备。它已分为四个部分,分别涉及光学传感器,成像技术,压力传感器和探测方法。对已发表作品的详细分析表明,该领域的主要挑战可能是定义最具代表性的火焰信号及其后续处理,以得出诊断火焰状态或驱动控制器的必要信息。有效和安全的方式。加上各种诊断需求和不同燃烧情况带来的限制,可能解释了在已发表的著作中观察到的显着异质性。尽管付出了巨大的努力,但建议用于实际火焰高级监控的技术仍处于开发阶段。然而,在不久的将来,由于燃烧工业的迫切需求,并且传感器技术,信号处理技术的不断进步,尤其是对燃烧过程的理解不断进步,这些领域有望取得重大进展。

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