EP2290482A2

Model predictive control of air pollution control processes

Abstract

A controller (610) for directing operation of an air pollution control system (620) performing a process to control emissions of a pollutant has multiple process parameters (MPPs) (625). One or more of the MPPs (625) is a controllable process parameter (CTPP) (615) and one of the MPPs (625) is an amount of the pollutant (AOP) (640) emitted by the system (620). A defined AOP (640) value (AOPV) represents an objective or limit on an actual value (AV) of the emitted AOP (640). The controller (610) includes either a neural network process model or a non-neural network process model representing a relationship between each CTPP (615) and the emitted AOP (640). A control processor (630) has the logic to predict, based on the model, how changes to the current value of each CTPP (615) will affect a future AV of emitted AOP (640), to select one of the changes in one CTPP (615) based on the predicted affect of that change and on the AOPV, and to direct control of the one CTPP (615) in accordance with the selected change for the CTPP (615).

EP2290482A2, drawing sheet 1
Sheet 1 of 26

Term

Term ended

Projected expiry passed 3 August 2025, 1.1 years ago.

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21 claims: 2 independent, 19 dependent

  1. 1
    A parameter value estimator for a process primarily performed to control emission of a particular non-particulate pollutant into the air, the process having multiple process parameters (MPPs) including a parameter representing an amount of the particular non-particulate pollutant emitted, comprising:one of a neural network process model and a non-neural network process model representing a relationship between one of the MPPs, other than the parameter representing the amount of the emitted particular non-particulate pollutant, and one or more of the other MPPs;and a processor configured with the logic to estimate a value of the one MPP based on a value of each of the one or more other MPPs and the one model;wherein the one MPP is either (i) a pH level of matter applied in the process to absorb the particular non-particulate pollutant and thereby control its emission into the air, (ii) a purity of a by-product produced in performing the process, (iii) an amount of oxygen dissolved in matter applied in the process to absorb the particular non-particulate pollutant and thereby control its emission into the air, (iv) an amount of ammonia applied in the process to absorb the particular non-particulate pollutant that is emitted into the air with the particular non-particulate pollutant that is not absorbed, or (v) an amount of applied ammonia in exhausted reduced NO x flue gas, the particular non-particulate pollutant being NO x , and the one or more other MPPs include an amount of the applied ammonia.
  2. 7
    The parameter value estimator according to claim 7, wherein the updating includes updating the represented relationship between the one MPP and the one or more other MPPs based on the determined estimated value of the one MPP.
  3. 12
    An article of manufacture for estimating a parameter value for a process performed primarily to control emission of a particular non-particulate pollutant into the air, the process having multiple process parameters (MPPs) including a parameter representing an amount of the particular non-particulate pollutant emitted, comprising:computer readable storage media;and logic stored on the storage media, wherein the stored logic is configured to be readable by one or more computers and thereby cause the one or more computers to operate so as to: determine a value of each of one or more of the MPPs;and estimate a value of another one of the MPPs, other than the parameter representing the amount of the emitted particular non-particulate pollutant, based on (i) the determined value of each of the one or more MPPs and (ii) one of a neural network process model and a non-neural network process model representing a relationship between the one other MPP and the one or more MPPs;wherein the one other MPP is either (i) a pH level of matter applied in the process to absorb the particular non-particulate pollutant and thereby control its emission into the air, (ii) a purity of a by-product produced in performing the process, (iii) and amount of oxygen dissolved in matter applied in the process to absorb the particular non-particulate pollutant and thereby control its emission into the air, (iv) an amount of ammonia applied in the process to absorb the particular non-particulate pollutant that is emitted into the air with the particular non-particulate pollutant that is not absorbed, or (v) an amount of applied ammonia in exhausted reduced NO x flue gas, the particular non-particulate pollutant being NO x , and the one or more MPPs include an amount of the applied ammonia.
  4. 13
    The article of manufacture according to claim 13, wherein the value of each of the one or more MPPs is determined by either (i) measuring the value during the performance of the process or (ii) estimating the value based on one or more other values of the multiple MPPs measured during the performance of the process.