Amrita Sharad Mistry
**** ********* **, *** #***, Dallas, TX 75206
*******@***.***
Seeking a challenging full-time position in the field of wireless communications and
computer networking
EDUCATION Master of Science in Electrical Engineering (Major in May 2010
Communication and Networking)
Southern Methodist University, Dallas, Texas (G.P.A. 3.3/4.0)
Areas of Expertise: Wireless Communication, Embedded Wireless
Protocol Design, Optimization of Wireless Networks, Wireless
Networking, Digital Communication, Error Control Coding,
Probability and Random Process, Digital System Design, Digital
Computer Design
B.E. Electronics and Telecommunications Engineering June 2008
St. Francis Institute of Technology, University of Mumbai, India
(G.P.A. of 3.7/4.0)
Areas of Expertise: Mobile Communication Systems, Internet
Communication Engineering, Computer Communication Networks,
Fiber Optics, Microwave Devices and Circuits, Satellite
Communications, Microprocessors and Microcontrollers, Computer
Architecture
TECHNICAL Wireless/Network standards: GSM, GPRS/EDGE, CDMA, UMTS, TCP/IP
SKILLS Protocol stack, OSI model, ATM, SS7, VoIP, IEEE 802.11
standards, MAC protocols including CSMA/CA
Programming Languages: C, MATLAB and x86 Assembly
Mathematical Programming Languages: AMPL
Hardware Description Languages : Verilog
Tools: ADVANTAGE network planning and optimization tool (part of
AIRCOM ENTERPRISE suite), Commercial Channel Emulators and
Wi-Spy Spectrum Analyzers, Wireshark, Iperf, Altera, PSpice
Hardware: WARP (Wireless Open-access Research Platform), CISCO
routers and switches, 8085/8086 Processors, 8051/8951
PROJECTS Microcontrollers, Xilinx, Virtex-4 2010
Operating Systems: Windows 9x/2000/XP, UNIX
FPGA implementation of a MIMO multiplexing scheme with ASPIC:
Designed and implemented a real time 2x2 MIMO multiplexed system
to transmit streams of data on different antennas and improve the 2010
overall throughput of the MIMO system, in MATLAB and C, using
WARPLab as an interface between MATLAB and the WARP nodes
Embedded Wireless Protocol Design (WARP):
MAC Protocols: Implemented ALOHA, CSMA and CSMA/CA on WARP
boards in C
Rate Adaptation Protocol Design: Developed an algorithm to adapt
to different modulation rates based on the failures/success of 2009
packets or the threshold set up using the throughputs of each
modulation rate from BPSK, QPSK and 16QAM. Implemented on WARP
boards in C 2009
Sweeping Frequency Transmitter: Designed a sweeping transmitter
on WARP to sweep through all the channels in 2.4 GHz and 5 GHz
band and performed analysis with Wi-Spy spectrum analyzers
2009
Optimization of Wireless LAN : Designed a network topology for a
WLAN system operating in TDD mode for the SMU campus, that
provided service to all the mobiles in both uplink and downlink 2008
with a minimum SIR threshold and optimized the results using
MATLAB and AMPL
Multiuser CDMA System: Implemented and analyzed the performance
of a CDMA system with multiple users in MATLAB, with main focus 2009
PAPER on synchronization, channel estimation and multiuser detection
PRESENTATIO
N 3GPP Long Term Evolution (LTE): Detailed analysis and study of
'Physical Layer Performance of 3GPP Long Term Evolution (LTE)
Cellular Technology'
Digital Multiplier Circuit: Designed and implemented a multiplier
circuit for different latency, delays and initiation rate
constraints in Verilog. Mapping of the design to Altera Cyclone
EP1C3T100C6 and Altera MAXII EPM1270T144C3 devices for different
register-to-register delays was achieved
IEEE 802.11 standard: Performance analysis of the IEEE 802.11
distributed coordination function (DCF)