2008 · 88 citations · 20 references
EngineeringDiscrete-time SystemsNonmimimum-phase Zeros IgnoreStabilityNonminimum-phase Zero LocationsSystems EngineeringNonlinear ControlControl MethodNmp SystemsModel-based Control TechniqueMechatronicsComputer EngineeringInverse ProblemsControl EngineeringMotion ControlFeedforward ControlMechanical SystemsProcess ControlLinear ControlNmp Zero
Noncollocated sensors and actuators, and/or fast sample rates with plants having high relative degree, can lead to nonminimum-phase (NMP) discrete-time zero dynamics that complicate the control system design. In this paper, we examine three stable approximate model-inverse feedforward control techniques, the nonmimimum-phase zeros ignore (NPZ-Ignore), the zero-phase-error tracking controller (ZPETC) and the zero-magnitude-error tracking controller (ZMETC), which have frequently been used for NMP systems. We analyze how the discrete-time NMP zero locations in the z-plane affect the success of the NPZ-Ignore, ZPETC, and ZMETC model-inverse techniques. We also provide simulation examples using plants based on the system identification of an atomic force microscope and a hard disk drive, showing the tradeoffs in performance relative to NMP zero locations in these different application systems.
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Karl Johan Åström, Per Hagander, Jan Sternby · Automatica · 1984 · 890 citations
Discrete Dynamical System, Sampled Systems, Sampling (Signal Processing) +1