OBJECTIVE
SUMMARY
AREA OF STRENGTH
WORK EXPERIENCE
EDUCATION
Alhambra, CA-91801
*******.****@*****.***
JIGNESH BHAGAT
To gain experience through maintaining an active and innovative role in
Control Dynamics and Design industries of Mechanical Engineering for
the rest of my life.
Expertise in Mechanical design software package like SolidWorks with
COSMOS. Comprehensive knowledge in Machine Design-1, 2, &3 as well as in
Control System Engineering of time domain & frequency domain systems. Key
strengths include ability to work independently, as a team leader/ member,
mentoring staff, dependability and enthusiasm.
. Design mechanical enclosures using 3D solid modeling CAD software and
Documentation of 2D designed parts; layouts, assembly drawings using
Solidworks
. Firm understanding with GD&T standards and able to read blueprints as
per ASME Y14.5M
. Optimal Control of Mechanical System
. Dynamic Analysis of System
. Mechanical Engineering Analysis like FEA & CFD using Solidworks
COSMOS.
. Design of Mechanical System & Products (Kinematics of Mechanisms)
. Advanced Mechanics of Particles & Rigid Bodies
. Introduction to Robotics
. Knowledgeable in aspect of electrical and PLC programming
. Metal forming Science & Applications
. Excellent academic background in Engineering Math & able to solve
the numerical problems of Static and Dynamic with the help of
MATHCAD & MATLAB softwares as well as by hand.
ELECON Engineering
JUN 2005 - JUN 2007
Anand, Gujarat, India
Internship Experience as a drafter:
. Under the guidance of seniors, drew 2D and 3D drawings for the
designed parts and assembly of various gear boxes like helical & bevel-
helical gear box, high speed gear box, worm gear box, wind mill gear
box and planetary gear box using Solidworks in a Gear design
department as well as I learned how to read ASME GD & T.
. Completed concept, layout and detail mechanical design of automated
assembly equipment, fixtures and gages.
. Prototyped parts and assemblies for performance, life testing and
field studies, set up and provided test data for evaluation and
verification of design.
California State University, Los Angeles
Present
Degree: Master of Mechanical Engineering
Graduation Date: JUN 2010
GPA: 3.52
Relevant Coursework: Optimal Control of Mechanical Engineering->
1. Lyapunov Stability Criteria
2. Pole Placement for SISO system in controller form.
3. Full order Observer (Estimator) design.
4. State feedback control for a non-zero constant output.
5. Formulation and derivations of finite & infinite time interval LQ
optimal controller via Hamiltonian and Langragian approach
respectively.
6. Prescribed degree of stability of LQR.
7. Formulation and derivations of the optimal Tracking linear LQ
controller.
8. Formulation and derivations of the Minimum-Time optimal controller
for linear systems (bang-bang principle)
9. Kalman filter
10. H2 & Hinfinite optimal control.
PROJECT WORK
TECHNICAL SKILLS
INTERESTS
Sardar Patel University, India - G.H.Patel College of E & T.
JUN 2006
Degree: B.E. in Mechatronics Engineering
Concentration GPA: 4.00
Cumulative GPA: 2.95
Projects related to Control & Dynamics System Using MATLAB & SIMULINK:
1. Active Suspension with Optimal LQ controller. (THOMSON,1976) [Solved
Riccati Differential Equation and X*(t) using MATLAB routine]
2. Performance Loss when the Constant Optimal LQ Feedback Gain is used
for Finite Time Interval Optimization.
3. Design state feedback controller for the inverted pendulum and using
this feedback, control Non Linear inverted pendulum.
4. Designing a cruise control of a car when it is running on a ramp.
Kinematic Analysis of 4-Bar Linkages using MATLAB: This module must be
capable of generating plot of a coupler-point for a given link
dimensions and coupler-point location for any 4-bar linkage.
Design of a 4-Bar Linkage for Function-Generation using MATLAB:
Design 4- bar linkage that will generate the function up to 4-
approximation point for a given Y=x1/2, where 1.0 ? x ? 5.0. Compare the
error curve plots by choosing 4 random points within the range and
another by choosing 4 points using Chebyshev Spacing.
Structure Finite Element-Static stress Analysis: Design the rib
structure such as that will support the shelf and to minimize the
total weight of structure using COSMOSworks of Solidworks.
Computational Fluid Dynamics (CFD)-Aerodynamic Analysis: Shape the body of
a car with the given specifications using COSMOSworks of Solidworks such
that it will minimize the drag force and increase the mileage of a car.
Computer:- C & C++ languages, CNC programming.
Software: - 3300 hours of MATLAB-SIMULINK, 3500 hrs of Solidworks with
COSMOS, MATHCAD and MS office.
Tennis, listening music, dancing, Volleyball, coursework, photography,
membership in ASME.