American Nuclear Society
Home

Home / Publications / Journals / Nuclear Technology / Volume 140 / Number 2

A Robust Multivariable Feedforward/Feedback Controller Design for Integrated Power Control of Boiling Water Reactor Power Plants

Shian-Shing Shyu, Robert M. Edwards

Nuclear Technology / Volume 140 / Number 2 / November 2002 / Pages 129-146

Technical Paper / Nuclear Plant Instrumentation, Control, and Human-Machine Interface Technologies / dx.doi.org/10.13182/NT02-A3328

In this paper, a methodology for synthesizing a robust multivariable feedforward/feedback control (FF/FBC) strategy is proposed for an integrated control of turbine power, throttle pressure, and reactor water level in a nuclear power plant. In the proposed method, the FBC is synthesized by the robust control approach. The feedforward control, which is generated via nonlinear programming, is added to the robust FBC system to further improve the control performance. The plant uncertainties, including unmodeled dynamics, linearization, and model reduction, are characterized and estimated. The comparisons of simulation responses based on a nonlinear reactor model demonstrate the achievement of the proposed controller with specified performance and endurance under uncertainty. It is also important to note that all input variables are manipulated in an orchestrated manner in response to a single output's setpoint change.