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Design of Residual Oxygen Measurement System

机译:剩余氧气测量系统的设计

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As the problem of environmental degradation and energy scarcity rapidly worsened, the oxygen content of the flue gas in the industrial furnace can directly reflect the status of combustion in the furnace. The measurement of oxygen content has a great significance to improve the efficiency of fuel. In order to solve this problem, the paper proposes a design scheme, i.e. residual oxygen measurement system is based on zirconium oxide sensor and STM32F405RG is the core controller. The system is composed of a thermocouple temperature compensation circuit, a heating temperature control circuit and a residual oxygen concentration measurement circuit, which can realize real-time and effective measurement of residual oxygen content. In order to enhance the temperature control accuracy and stability of the sensor, the control algorithm is improved, and the segmented PID control algorithm is adopted. Through experiments, it proves that the detection system for the concentration of oxygen can be detected as low as$2imes 10^{-6}$.
机译:随着环境恶化和能源短缺的问题迅速恶化,工业炉中烟道气中的氧气含量可以直接反映出炉子中燃烧的状态。氧含量的测量对于提高燃料效率具有重要意义。为了解决这个问题,本文提出了一种设计方案,即残留氧测量系统基于氧化锆传感器,而STM32F405RG是核心控制器。该系统由热电偶温度补偿电路,加热温度控制电路和残余氧浓度测量电路组成,可实现对残余氧含量的实时,有效测量。为了提高传感器的温度控制精度和稳定性,对控制算法进行了改进,采用分段PID控制算法。通过实验证明,该氧气浓度检测系统可以检测到低至 $ 2 \ times 10 ^ {- 6} $

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