Show/Hide Menu
Hide/Show Apps
Logout
Türkçe
Türkçe
Search
Search
Login
Login
OpenMETU
OpenMETU
About
About
Open Science Policy
Open Science Policy
Open Access Guideline
Open Access Guideline
Postgraduate Thesis Guideline
Postgraduate Thesis Guideline
Communities & Collections
Communities & Collections
Help
Help
Frequently Asked Questions
Frequently Asked Questions
Guides
Guides
Thesis submission
Thesis submission
MS without thesis term project submission
MS without thesis term project submission
Publication submission with DOI
Publication submission with DOI
Publication submission
Publication submission
Supporting Information
Supporting Information
General Information
General Information
Copyright, Embargo and License
Copyright, Embargo and License
Contact us
Contact us
Gain-Scheduling H∞ Control of a Smart Beam with Parameter Varying
Date
2017-06-06
Author
Yaman, Yavuz
Onat, Cem
Metadata
Show full item record
Item Usage Stats
51
views
0
downloads
Cite This
URI
https://hdl.handle.net/11511/75906
Collections
Unverified, Conference / Seminar
Suggestions
OpenMETU
Core
GAIN-SCHEDULING H∞ CONTROL OF A SMART BEAM WITH PARAMETER VARYING
Onat, Cem; Şahin, Melin; Yaman, Yavuz (2017-05-08)
Gain scheduled inverse optimal control for fine pointing of a spacecraft camera
Tekinalp, Ozan; ÖZGÖREN, KEMAL; NADJİM, HORRİ (2011-06-11)
Influence wave mode computations of multi-passage cascade flows
Tuncer, İsmail Hakkı (2000-01-01)
Copyright © 2000 by ASME.A Navier-Stokes solution method with overset grids is employed to compute the Influence Wave Modes of a compressor cascade in transonic flow conditions. The computed predictions are compared against the experimental data and the predictions based on Traveling Wave Mode computations performed using a different Navier-Stokes solver. In the present method, a five-passage flow domain is discretized with O-type subgrids around each blade and a rectangular background subgrid, A simple, ro...
Compensation methos for quasi-static acceleration sensitivity of MEMS gyroscopes /
Gavcar, Hasan Doğan; Azgın, Kıvanç; Department of Electrical and Electronics Engineering (2014)
This thesis presents the quasi-static acceleration compensation methods for a fully decoupled MEMS gyroscope. These methods are based on the utilization of the amplitude difference information between the residual quadrature signals on the differential sense mode electrodes to sense the static acceleration acting on the sense mode of the gyroscope. There are three different quasi-static acceleration compensation methods presented in this thesis. In the first method, the static acceleration is measured by co...
Profit-oriented disassembly line balancing with stochastic task times in hybrid lines
Gümüşkaya, Volkan; Bayındır, Zeynep Pelin; Altekin, Tevhide; Department of Industrial Engineering (2013)
We offer a solution approach for profit-oriented disassembly line balancing problem in hybrid lines with stochastic task times. When task times are stochastic, there is a probability that some of the tasks are not completed within the predefined cycle time. For task incompletions, the most commonly used remedial actions are stopping the line or offline repairs. Stopping the line is to stop the line until the incomplete tasks are completed, while in offline repair, incomplete tasks are completed in an offlin...
Citation Formats
IEEE
ACM
APA
CHICAGO
MLA
BibTeX
Y. Yaman and C. Onat, “Gain-Scheduling H∞ Control of a Smart Beam with Parameter Varying,” 2017, Accessed: 00, 2021. [Online]. Available: https://hdl.handle.net/11511/75906.