工业燃气燃烧器气压回路的自动控制

P. Bhosale
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引用次数: 2

摘要

本文主要研究了用PID控制策略对工业燃气燃烧器的气压回路进行自动控制。工业气体燃烧器的燃烧是通过将液化石油气与空气混合来实现的。在工业燃气燃烧器中,液化气是由气缸和调节机构定压输送的,而空气是由周围环境直接吸入输送的。因此,空气压力随周围空气压力的变化而变化。由于工业气体燃烧器的燃烧受到影响,导致空气与液化石油气混合不当。为了避免这种不正当燃烧的情况,需要在工业燃气燃烧器上混合定压和定压液化气。这是通过对工业燃气燃烧器的空气压力回路实施PID控制来实现的。为了实现PID控制回路,建立了工业燃气燃烧器-空气压力段的一阶模型。然后对得到的过程模型实施PID控制策略,分析过程特性。这些过程控制策略的特性分析有助于识别和实现合适的PID控制机制。该PID控制机构用于工业燃气燃烧器的空气压力回路,有助于在燃烧过程中保持压力恒定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automatic control of air pressure loop in industrial gas burner
This paper is focuses automatic control of industrial gas burner using PID controller strategy at air pressure loop in industrial gas burner. Combustion at industrial gas burner is achieved by mixing L.P.G. (Liquefied Petroleum Gas) with air. In industrial gas burner, L.P.G. is transmitted with fixed pressure from cylinder & regulator mechanism but air is transmitted after direct suction from surrounding. Therefore air pressure is varying as per surrounding condition of air pressure. This is resulting into improper mixing of air with L.P.G., due to that combustion get affected at industrial gas burner. To avoid such condition of improper combustion, it is necessary to mix constant air pressure with fixed pressure L.P.G. at industrial gas burner. This is achieving with implementing PID control strategy for air pressure loop in industrial gas burner. To implement PID control loop, we identify first order model of industrial gas burner - air pressure section. Then implement PID control strategy on obtained process model and analyze process characteristics. These characteristic analyses of control strategy on process help to identify and implement proper PID control mechanism. This PID control mechanism for air pressure loop in industrial gas burner is help to maintain constant pressure during combustion.
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