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Control of multiplicative discrete-time systemsEl-Bialy, Ahmed Mohamed January 1990 (has links)
No description available.
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Functions annihilable by samplingHo, Joseph Ping-Liong. January 1961 (has links)
Call number: LD2668 .T4 1961 H62
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Statistical inference for capture-recapture studies in continuoustimeWang, Yan, 王艷 January 2001 (has links)
published_or_final_version / Statistics and Actuarial Science / Doctoral / Doctor of Philosophy
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The implementation of the DEVS hierarchical abstract simulator using 286/10 single board computersCheng, Tsaichin Daniel, 1959- January 1987 (has links)
The purpose of this experiment was to implement an alternative mapping realization of the hierarchical abstract simulator on the Intel Multibus 1 microprocessor system. Utilizing three 286/10 single board computers, integration of the M286 monitor with the hierarchical abstract simulator algorithm and execution of the distributed simulator system (DSS) was studied. Seven experiments were done on the DSS showing that the DSS correctly executes the algorithm of the hierarchical abstract simulator. An additional benefit is that parallelism is achieved even without external input: one simulator executes the internal transition function, with other executing the external transition function. This system has demonstrated that the hierarchical abstract simulator concept can be implemented on present-day, available hardware.
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Assessment of family planning outreach workers' contact and contraceptive use dynamics in rural Bangladesh using multilevel modellingHossain, Mian Bazle January 2001 (has links)
No description available.
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Totally-self-checking balance checkers and window comparatorsChee, Chong Hin January 1997 (has links)
No description available.
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Minimum time regulation of discrete linear systems.January 1980 (has links)
by Wong Yiu Kwong. / Thesis (M.Phil.)--Chinese University of Hong Kong, 1980. / Bibliography: leaves 82-83.
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Globally convergent and efficient methods for unconstrained discrete-time optimal controlNg, Chi Kong 01 January 1998 (has links)
No description available.
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Computer aided synthesis and design of PID controllersMitra, Sandipan 15 May 2009 (has links)
This thesis aims to cover some aspects of synthesis and design of Proportional-
Integral-Derivative (PID) controllers. The topics include computer aided design of
discrete time controllers, data-based design of discrete PID controllers and data-
robust design of PID controllers. These topics are of paramount in control systems
literature where a lot of stress is laid upon identification of plant and robust design.
The computer aided design of discrete time controllers introduces a Graphical User Interface (GUI) based software. The controllers are: Proportional (P),
Proportional-Derivative (PD),Proportional-Integral (PI) and Proportional-Integral-
Derivative (PID) controllers. Different performance based design methods with these
controllers have been introduced. The user can either explore the performance by
interactively choosing controllers one by one from the entire set and visualizing its
performance or specify some performance constraints and obtaining the resulting set.
In data-based design, the thesis presents a way of designing PID controllers
based on input-output data. Thus, the intermediate step of identification of model
from data is removed, saving considerable effort. Moreover, the data required is step
response data which is easier to obtain in case of discrete time system than frequency
response data. Further, a GUI developed for interactive design is also described.
In data-robust design, the problem of uncertainty in data is explored. The design
method developed finds the stabilizing set which can robustly stabilize the plant with
uncertainty. It has been put forward as an application to interval linear programming.
The main results of this research include a new way of designing discrete time PID controllers directly from the data. The simulations further confirm the results.
Robust design of PID controllers with data uncertainty has also been established.
Additionally, as a part of this research, a GUI based software has been developed
which is expected to be very beneficial to the designers in manufacturing, aerospace
and petrochemical industries.
PID controllers are widely used in the industry. Any progress in this field is well
acknowledged both in the industry and the academia alike. This thesis attempts a
small step further in this direction.
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Synthesis and design of PID controllersXu, Hao 17 February 2005 (has links)
controllers for discrete-time systems and time-delayed systems. By using bilinear
transformation and orthogonal transformation, earlier research results obtained in
the continuous-time case are extended to discrete-time situation. The complete set of
stabilizing PID controllers for the discrete-time systems is thus obtained. Moreover,
this set remains to be a union of convex sets when one particular parameter is fixed.
Thus a method to design robust and non-fragile digital PID controllers is proposed
by following a similar design procedure for the continuous-time systems. In order to
find the stabilizing controller set for systems with time-delays, the relationship between
the Nyquist Criterion and Pontryagins theory is investigated. The conditions
under which one can correctly apply the Nyquist Criterion to time-delayed systems
are derived. Then, the complete set of stabilizing PID controllers for arbitrary order
LTI systems with time-delay up to a given value is obtained. Furthermore, the stability
issue of a system with fixed-delay is also studied and a formula which provides
complete knowledge of the distribution of the closed-loop poles is presented. Based
on this formula, stabilizing P and PI controller sets for the system with fixed-delay
can be computed.
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