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0H0 8*Seminar on Heat Transfer of Turbine Enginem)Yli28m8XP? 0H ȩ /ɰ 0 \ 8 `D X \ ݴ, 8  1X ȜY
\T0 0$Ĭ 8.Seminar on Optimization Technique based DesignC? \T0 0 P$Ĭ 8 `D X \ ݴ, 8  1X ȜLSOPT User's Manual йĳY 8Seminar on Terminal Ballistics=? й ĳY  8 `D X \ ݴ, 8  1X ȜImpact Dynamics
1mՕ0 8*Seminar on Satellite Navigation Technology8? 1mՕ¤\X \ ٳD EX, 1mՕ XX 8̬֘ 0 \ pȬ X ŌYĬ!0 86Seminar on Optical Measurement of Combustion PhenomenaP? Ō D t YD tǩ\ Ĭ!0 t 8 `D X \ ݴ, 8  1X ȜPLIF User's Manual 4`Seminar on Armament General? Weaponeering PL h X Ȕ platformX 4 \ D pȬ \ X? Armanents of the main platformsare investigated and discussed including the concept of weaponeering.
Xt 8(Seminar on Advanced Numerical SimulationF? й ĳY  Ȱt 8 `D X \ ݴ, 8  1X ȜAFinite Element Procedures for ContactImpact Problems
Procedures8ѵ¤\Digital Communications System3
(ųX)E? 8 ¤\ t`X 0, scalar/vector communication problem, tǄ 0 , 8 8̬֘, D 1 ɷ, \ 0 $Ĭ, 8 p 8X 1, 0 1 L H LX 8 , d T) t Yյ\. ? Introduction to digital communications system such as information theory, scalar/vector communication problem, diversity techniques, digital signal processing, channel characteristics and capacity, optimal receiver design, characteristics of digitally modulated signals, performance analysis of a receiver and digital communication over interference and Gaussian noise and random coding theory are covered.p!Seminar on Military Power Sources1? \Xֽ \ 䲑\ \ 40Ĭ ȩ )H, 0 pȬ X P Process(Seminar on Warhead Developmental Process'? P DՔ\ D X X ļ D ݴh0 8Seminar on Fuzing Technology%? 0 ( \X Y l ٳ ĬX li ݴ ĳ400 8(Seminar on Missile Propulsion Technology= ĳ40 0 ( \ lٳ ) \ pȬ/ 8 Y YՌ8D \ l Y pDմlp0 82Seminar on Military Aircraft Structural Technologypm0 lp0 X \ٳ ) 8 Y, mxY \Ԍ, 0 D X ݴX, Y xļ l \ D X  \ 8 ttX D . 8 tX 8 2 tX xļ \, 8 \ }  ȜXՔ D 0<\ h.
ĳpȅ0 85Seminar on Missile Guidance and AutoPilot Technology9 ĳpȅ0 ( \ lٳ ) \ pȬ/ 8 Y YՌ8D \ lmՕQǩ 8!Seminar on Navigation ApplicationmՕQǩ ( \X l/ٳ 1 8 Y, mxY \Ԍ, 0 D X ݴX, Y xļ l \ D X  \ 8 ttX D . 8 tX 8 2 tX xļ \, 8 \ }  ȜXՔ D 0<\ h.40Ĭ@ Y0 t`5Seminar on Modern Weapon Systems with Related Science+? X ȵ QXՔ 40Ĭ@ Ĭ Y0 X pȬ X pt0l¤\Data Link SystemD? 0x ɵ ¤\D < , pt0 l ¤\X P, lp, 8 u 0 , ) t Yյ\X P/}$Ĭ0 Warhead Ammunition Design? P/}X D \ 0 $Ĭ D Yյh0Y Fuzing Technologies for Warheads]? 0 t t` 0 D . ? Basic knowledge acquisition about Fuzing theory and Technology.p0 Military Power Sources? X p \ 0 P lp DՔ\ 0 D Yյ\. pX 0t`, $Ĭ 0 \ 0 t`D Yյ\ ? In this lecture, fundamental concepts, structures and required techniques on militarypower sources are covered. Basic theories to get design, test and evaluation in military . ĳ40¤\ Guided Missile Propulsion SystemF? t ĳ40 ȩ ¤\ \ 0t`, $Ĭ, ȑ x 0 D Yյ\. ĳ40x ¬tX&Guided Missile Modeling and Simulation? ĳDմX PȨ D \ x ¬tX 0 D Yյh.? Study on modeling and simulation techniqeus for the analysis of guided vehicle performance. ĳ40 ĳȴMissile Guidance? Dմ ĳȴX 0, ĳY 0 t, ¬tX ) t Yյh.? Study on the fundamentals of missile guidance including the various guidance laws, analysis of the guidance loop, and simulation techniques.
pDմlpt1Ȳ05Structural Health Monitoring for Military Air VehicleȨ?p Dմ lp ȩ lp t1 Ȳ0 0 t` \ 0 D Yյ. ?The basic theories and cuttingedge technologies of structural health monitoring for military air behicle are studied. \Health Monitoring of Aerospace Structures:
Smart Sensor Technologies and Signal ProcessingReport
pDմlpt`8Introduction to Military Air Vehicle Structural Analysis?p Dմ lptD \ 0 <\ \Քƌ 0t` 0x Dմ lpt )D Yյ. ?As the basic knowledge of the structural analysis of military air vehicle, the basic theory of finite element method < and the basic methods of air behicle structural analysis are studied.Finite Element
Procedures
pDմlp$Ĭ`6Introduction to Military Air Vehicle Structural Design?p Dմ lp$Ĭ \ 0 <\ p Dմ D \ 0 lĳ@ x lp$Ĭ )D Yյ.?As the basic knowledge of the structural design of military air vehicle, the basic requirements and traditional methods of structural design for developing military air vehicle are studied.2Analysis and
Design of Flight Vehicle Structures1mՕ¤\Satellite Navigation SystemA1mՕ¤\ \ 0t` ٳƬ, $(̨x D X, ¤\ \ 4x %D 0hͩ/ 8%Seminar on Shock/Detonation Phenomena? ͩ/ 8 8, 8 `D X \ ݴ
T}8 8#Graduate Seminar on High Explosives~? T}0 ( \X Y l ٳ ĬX iD ݴ\. (X 8 ͭX \ 0 D 0 l \֩Ơ] \. \ X lD \X l) l%D и ĳ] \. p0 8,Technical Seminar on Military CommunicationsJ? p Ȑ 0 \ \X lٳ 1 8 ͭ, mx Y \Ԍ, 0 D X ݴX, Y xļ l \ D X  \ 8 ttX D . 8 tX 8 1 tX xļ \, 8 \ } ȜD 0<\ \. ? Students need to study and survey0recent research trends and results related to the military ECCM communications by participating in technical seminars, domestic or overseas conferences or technical lectures. In this seminar, students must be present over 8 times at those seminars and give a presentation related to their research topics. Final reports summarizing their presentation must be submitted. T}0 `*Introduction to High Explosives Technologya? T}0 t 0x t` 0 D . \ <, T}p1X , p, , 40Ĭ ȩ \ 0x D hU` d\8 Probability and Random Processes? ȐYX 8tX 0x <\ U` Ĭt`, dX X Ĭ ̬, d \8X t ) t Yյ\. ¤\ d8t Ż ٳXՔ t Yյ\. ? As the knowledge of random variables is an essential in electrical engineering, a number of concepts regarding probability, statistics and random variables are introduced as well as the analysis of the random signals. Analysis of random signal response to the linear systems are also studied.
tٳ/p¤\(Commercial/Military Communication System? t 38 48 ¤\, p µݹ, p 1ݹ, C3I/C4I ¤\, p i´Ĭ, tp ٳTִĬ(KNTDS), p MCRC ݹl/Ʃ/$Ĭ0 D Yյ\. ? Third and fourth generation commercial communication systems, military tactical communication network, military satellite communication system, C3/4I systems, military tactical information and communication network(TICN) system, Korean naval tactical data system(KNTDS), air force MCRC network establishment/operation/design are introduced and studied.
ͩt` Xt.Impact Phenomena Theory and Numerical Analysisp? ͩ t` Xt \ 0 ݴ ? Basic knowledge acquisition about impact phenomena theory and numerical analysis.Ȑ¤\Electronic Warfare Systemc? )t
0 , Ȑ 0̹0 , ) , \ Ȑ 0 Ȑ , Ȑ \ Ȑ 80 , , , ), ļ \ Ȑ 0 D 8D <\ Yյ\. ? Radar jamming and electronic deception techniques, electronic attack/support, electronic protection against EA, detection, interception, direction finding and electronic warfare against identifying are mainly focused.`ĳļ̸<1l*Material Properties at Various Strain Rate? ̸<1 ( ̸<1, ͩU<1 L ̸<1 ݴ) ? Material properties at various strain rate from static to shock material properties. p$ƹ0 0Networking Technology for Military Communication? t µݹ ݹ ȴ ¤\X 0x P, lp X DՔ\ 0 t Yյ\. ? In this lecture, fundamental concepts, structures and required techniques on Network Management and Control System in tactical communication system are covered. p1¤\(Military Satellite Communications System? 0x 1 ¤\D < , p 1X (uը, Antisatellite 40,
0̹X Ȑ 0 (ECM)) 0 (u), Antisatellite ), Ȑ 0 (ECCM), 1¤\), Ȑ 0 ĳ Ttǘ Q HLј ¤\, onboard ̬, Uְ ĳ} Uְ 0D Yյ\. ? First, basic satellite communication system is introduced. And then hostile measures against satellite communications and countermeasures are studied which are narrow beam, adaptive nulling of antenna system, DS and FH spread spectrum system are dealt. ͩ/`.Introduction to Shock and Detonation PhenomenaC? ̳ XՔ ͩ, T} XՔ ͩ/X Xt0 \ 0D h.imՕ`Hybrid Navigation Estimation3mmՕ¤\ t` \ 0t` ٳƬ ttX 4x %D 0h01. Aeros<7pace Avionics Systems, S. M. Siouris, 1993
2. Inertial Navigation Systems Analysis, K. R. Britting, 1971
3. Understanding GPS Principles and Applications, E. D. Kaplan, 1996
4. Optimal State Estimation, D. Simon, 2006
5. Applied Inertial Navigation : Problems and Solutions, O. Salychev, 20049 3) 16 X
 Term Project 2(Ĭ, ) \ Ȝ Term Project 40ĬY`*Introduction to Weapon Systems EngineeringL40ĬY $ Ȕ8 x ĳȐ, m) , P \ x 0t` \0 t hՈ1.Weaponeering
2. Tactcal missile warhead
3. p 40Ĭ(m)Dtp TP! P)
4. ´Ĭ ƩP, !p, 2014
5. p 1´̌(DŘ¤)P!Ǭ P, 201091. ĳ 0x X(@ P! Ѽ)
2.xļ 8 0x X1. DՔ < 1mՕ¤\Inertial Navigation SystemG1< 1mՕ¤\ \ 0t` ٳƬ, $(̨x D X, ¤\ \ 4x %D 0hK1. Aerospace Avionics Systems, G. M. Siouris, 1993
2. Inertial Navigation Systems Analysis, K. R. Britting, 1971
3. Inertial Navigation Systems with Geodetic Applications, C. Jekeli, 2001
4. Strapdown Inertial Navigation Systems, D. H. Tritterton, 1997
5. Applied Inertial Navigation : Problems and Solutions, O. Salychev, 2001Term Project mՕ0 8 Seminar on Navigation TechnologymՕ0 ( \X l/ٳ 1 8 Y, mxY \Ԍ, 0 D X ݴX, Y xļ l \ D X  \ 8 ttX D . 8 tX 8 2 tX xļ \, 8 \ }  ȜXՔ D 0<\ h.. Aerospace Avionics Systems, G. M. Siouris, 1993
. Strapdown Inertial Navigation Systems, D. H. Tritterton x, 1997
. Applied Inertial Navigation : Problems and Solutions, O Salychev, 2004
, Global Positioning System, P. Misra, 2001= xƀ 8 8 t 8
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 8 ɉi \/X& x 8 8/\ 8 \ } Ȝ88̬֘Digital Signal Processing? t`, tǰ xԬ X, ZX, LTI ¤\X , tǰ ¤\X lp, tǰ xԬ X, xԬ X, 8 D0 $Ĭ, Homomorphic 8̬֘ ( 8̬֘ t Yյ\. ? Sampling theory, discretetime Fourier transform, Ztransform, Transform analysis of LTI systems, Structures for discretetime system, Discrete Fourier transform, Fast Fourier transform, Digital filter design, Homomorphic signal processing and multidimensional signal processing are covered.DnB
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