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      KCI등재 SCIE SCOPUS

      Proportional-Integral Controller for Stabilization of Second-Order Delay Processes

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      https://www.riss.kr/link?id=A104901203

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      다국어 초록 (Multilingual Abstract)

      This paper considers the problem of determining the complete stabilizing set of proportional-integral (PI) controllers for a second-order process with time delay by employing a version of the Hermite-Biehler theorem applicable to quasipolynomials. Wit...

      This paper considers the problem of determining the complete stabilizing set of proportional-integral (PI) controllers for a second-order process with time delay by employing a version of the Hermite-Biehler theorem applicable to quasipolynomials. With the poles of open-loop system being complex, we first provide the result to find the admissible range of the proportional gain. Then by choosing a fixed proportional gain in this range, we can ascertain the complete region of integral gain which can stabilize the second-order delay process. Similarly, the result for the case of open-loop real poles is also obtained. It is mentioned that the condition to obtain the parameter set for stabilizing the given plant is sufficient and necessary.

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      참고문헌 (Reference)

      1 D. J. Wang, "Synthesis of PID controllers for high-order plants with time-delay" 19 (19): 1763-1768, 2009

      2 C. Xiang, "Stabilization of second-order unstable delay processes by simple controllers" 17 (17): 675-682, 2007

      3 G. Martelli, "Stability of PID-controlled second-order time-delay feedback systems" 45 (45): 2718-2722, 2009

      4 R. Sipahi, "Stability and stabilization of systems with time delay" 31 (31): 38-65, 2011

      5 D. J. Wang, "Stabilising regions of PID controllers for n th-order all pole plants with dead-time" 52 (52): 1127-1132, 2007

      6 C. Huang, "Simulation for a class of networked cascade control systems by PID control" 11 : 458-463, 2010

      7 L. Ou, "Sets of stabilising PID controllers for second-order integrating processes with time delay" 153 (153): 607-614, 2006

      8 H. Zhang, "Robust static output feedback control and remote PID design for networked motor systems" 58 (58): 5396-5405, 2011

      9 S. Yi, "Proportional-integral control of first-order time-delay systems via eigenvalue assignment" 21 (21): 1586-1594, 2013

      10 A. Roy, "PID controller tuning for the first-order-plus-dead-time process model via Her-mite-Biehler theorem" 44 (44): 363-378, 2005

      1 D. J. Wang, "Synthesis of PID controllers for high-order plants with time-delay" 19 (19): 1763-1768, 2009

      2 C. Xiang, "Stabilization of second-order unstable delay processes by simple controllers" 17 (17): 675-682, 2007

      3 G. Martelli, "Stability of PID-controlled second-order time-delay feedback systems" 45 (45): 2718-2722, 2009

      4 R. Sipahi, "Stability and stabilization of systems with time delay" 31 (31): 38-65, 2011

      5 D. J. Wang, "Stabilising regions of PID controllers for n th-order all pole plants with dead-time" 52 (52): 1127-1132, 2007

      6 C. Huang, "Simulation for a class of networked cascade control systems by PID control" 11 : 458-463, 2010

      7 L. Ou, "Sets of stabilising PID controllers for second-order integrating processes with time delay" 153 (153): 607-614, 2006

      8 H. Zhang, "Robust static output feedback control and remote PID design for networked motor systems" 58 (58): 5396-5405, 2011

      9 S. Yi, "Proportional-integral control of first-order time-delay systems via eigenvalue assignment" 21 (21): 1586-1594, 2013

      10 A. Roy, "PID controller tuning for the first-order-plus-dead-time process model via Her-mite-Biehler theorem" 44 (44): 363-378, 2005

      11 E. Miklovičová, "PID controller design in networked control systems" 11 : 150-155, 2011

      12 E. Miklovičová, "PID control strategy for sensor random packet dropouts in net-worked control system" 6 (6): 154-162, 2012

      13 G. J. Silva, "PID Controllers for Time-Delay Systems" Birkhäuser 2005

      14 G. J. Silva, "PI stabilization of first-order systems with time delay" 37 (37): 2025-2031, 2001

      15 R. Farkh, "PI control for second order delay system with tuning parame-ter optimization" 3 (3): 1-7, 2009

      16 F. Padula, "On the stabilizing PID controllers for integral processes" 57 (57): 494-499, 2012

      17 G. -S. Park, "On stability of linear time-delay systems with multiple delays" 39 (39): 839-852, 2008

      18 S. Xu, "On equivalence and efficiency of certain stability criteria for time-delay systems" 52 (52): 95-101, 2007

      19 H. Shao, "New stability criteria for linear discrete-time systems with interval-like time-varying delays" 56 (56): 619-525, 2011

      20 G. J. Silva, "New results on the synthesis of PID controllers" 47 (47): 241-252, 2002

      21 V. M. Alfaro, "Model-reference robust tuning of 2DOF PI controllers for first-and second-order plus dead-time controlled processes" 22 (22): 359-374, 2012

      22 L. Ou, "Low-order stabilization of LTI systems with time delay" 54 (54): 774-787, 2009

      23 K. Saadaoui, "In PID Controller Design Approaches -Theory, Tuning and Application to Frontier Areas" In-Tech 141-158, 2012

      24 A. R. Neshasteriz, "Generalized predictive control and tuning of industrial processes with second order plus dead time models" 20 (20): 63-72, 2010

      25 D. J. Wang, "Further results on the synthesis of PID controllers" 52 (52): 1127-1132, 2007

      26 G. P. Rangaiah, "Estimat-ing second-order dead time parameters from under-damped process transients" 51 (51): 1149-1155, 1996

      27 M. Bozorg, "Domains of PID con-troller coefficients which guarantee stability and performance for LTI time-delay systems" 47 (47): 2122-2125, 2011

      28 R. Bellman, "Differential-Difference Equations" Academic Press Inc 1963

      29 H. P. Huang, "Control-system synthesis for open-loop unstable process with time delay" 144 (144): 334-346, 1997

      30 B. Wang, "Control of integral processes with dead time. Part IV : various issues about PI controllers" 153 (153): 302-306, 2006

      31 R. Farkh, "Computation of all stabilizing PID gain for second-order delay system" 1-17, 2009

      32 Nusret Tan, "Computation of Stabilizing PI-PD Controllers" 제어·로봇·시스템학회 7 (7): 175-184, 2009

      33 Ali Madady, "An Extended PID Type Iterative Learning Control" 제어·로봇·시스템학회 11 (11): 470-481, 2013

      34 Angel Cuenca, "An Approach Based on an Adaptive Multi-rate Smith Predictor and Gain Scheduling for a Networked Control System: Implementation over Profibus-DP" 제어·로봇·시스템학회 8 (8): 473-481, 2010

      35 K. J. Åström, "Advanced PID Control" ISA-The Instrumentation, Systems, and Automation Society 2006

      36 A. Sala, "A returnable PID multi-rate controller for a networked control sys-tem" 179 (179): 2390-2402, 2009

      37 K. Agarwal, "A paper on system stability(first order and second order)using PID controller" 3 (3): 2278-3075, 2013

      38 C. Lin, "A less conservative robust stability test for linear uncertain time-delay systems" 51 (51): 87-91, 2006

      39 Á. Cuenca, "A delay-dependent dual-rate PID controller over an ethernet network" 7 (7): 18-29, 2011

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