A Hardware-in-Loop Digital Twin Approach for Intelligent Optimization of Municipal Solid Waste Incineration
AI and Its Application to Complex Industries
Wen Yu author Jiangjun Tang author Junfei Qiao author
Format:Hardback
Publisher:John Wiley & Sons Inc
Publishing:28th Dec '25
£111.00
This title is due to be published on 28th December, and will be despatched as soon as possible.

An expert discussion of intelligent optimization control in complex industrial processes
In A Hardware-in-Loop Digital Twin Approach to Intelligent Optimization of Municipal Solid Waste Incineration, a team of distinguished researchers delivers an innovative new approach to integrating virtual mechanism data generated through coupled numerical simulation and orthogonal experimental design with real historical data. The book explains how to create a heterogenous ensemble prediction model for carbon monoxide emissions in municipal solid waste incineration (MSWI) processes.
>The authors focus on intelligent optimization control of MSWI processes based on hardware-in-loop DT platforms. They demonstrate AI-driven modeling, control, optimization algorithms in real-world applications, including virtual-real data hybrid-driven deep modeling and intelligent optimal controls based on multiple objectives.
Additional topics include:
- A thorough introduction to numerical simulation modeling of whole industrial processes
- Comprehensive explorations of the design, implementation, and validation of hardware-in-loop digital twin platforms
- Practical discussions of AI-driven modeling, control, and optimization
- Fulsome descriptions of the skills required to address challenges posed by complex industrial processes
Perfect for environmental engineers and researchers, A Hardware-in-Loop Digital Twin Approach to Intelligent Optimization of Municipal Solid Waste Incineration will also benefit MSWI plant operators and managers, as well as AI and machine learning researchers and developers of environmental monitoring and control systems.
ISBN: 9781394354016
Dimensions: unknown
Weight: unknown
400 pages