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H-Infinity Loop-Shaped Model Predictive Control With HVAC Application

delete2022-09-01
delete10
PRE
AI
S
Scott A. Bortoff *
P
Paul Schwerdtner
C
Claus Danielson
S
Stefano Di Cairano
D
Daniel J. Burns
DOI:10.1109/TCST.2022.3141937delete
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Abstract

Abstract

En 中文
We formulate a model predictive control (MPC) for linear time-invariant systems based on H-infinity loop-shaping. The design results in a closed-loop system that includes a state estimator and attains an optimized stability margin. Input and output weights are designed in the frequency domain to satisfy steady-state and transient performance requirements, in lieu of standard MPC plant model augmentations. The H-infinity loop-shaping synthesis results in an observer-based state feedback structure. An inverse optimal control problem is solved to construct the MPC cost function, so that the control input computed by MPC is equal to the H-infinity control input when the constraints are inactive. The MPC inherits the closed-loop performance and stability margin of the loop-shaped design when constraints are inactive. We apply the methodology to a multizone heat pump, and validate the results in simulations and laboratory experiments. The design rejects constant unmeasured disturbances, tracks constant references with zero steady-state error, meets transient performance requirements, provides an excellent stability margin, and enforces input and output constraints.
Keywords:
Buildings
HVAC
Heat pumps
Standards
Mathematical models
Cost function
Control systems
Cooling
heating
predictive control
robust control

Journal

IEEE Transactions on Control Systems Technology cover
IEEE Transactions on Control Systems Technology
IF:
3.9
Papers:
4.9K
Citations:
1.7W

Organization

T
Technical University of Berlin
Scholars:
1.3W
Papers: 1.1W
Citations: 18
U
university of new mexico
Scholars:
1.6W
Papers: 1.3W
Citations: 25