Dr.-Ing. Payam Teimourzadeh Baboli

Senior Scientist

Contact

Dr.-Ing. Payam Teimourzadeh Baboli
E-6 Elektrische Energietechnik
  • Elektrische Energietechnik
Harburger Schloßstraße 22a,
21079 Hamburg
Building HS22a, Room 2.001
Phone: +49 40 42878 3013
Logo

CV

Work experience

Since Jan. 2024

Senior Scientist and Lecturer, Hamburg University of Technology (TUHH), Germany

Aug. 2019 – Dec.2023

Post-Doc, Senior Researcher and Project Manager, OFFIS – Institute for Information Technology, Oldenburg, Germany

Feb. 2015 – Jul. 2019

Assistant Professor in Electrical Engineering, University of Mazandaran (UMZ), Babolsar, Iran

Mar. 2007 – Jan. 2015

 

 

Iranian Power System Engineering Research Center (IPSERC), Tehran, Iran

  • Senior Researcher and Project Manager (Apr. 2014 – Jan. 2015, Full-time)
  • Researcher and Lab. Engineer (Mar. 2007 – Apr. 2014, Part-time)

 

Research Projects

KoLa
Optimized Load Management and Flexibility Coordination for Electrified Urban Public Transport

KoLa

Optimized Load Management and Flexibility Coordination for Electrified Urban Public Transport

Federal Ministry for Economic Affairs and Climate Action (BMWK); Duration: 2022 to 2026

DISEGO
Critical Components for Distributed and Secure Grid Operation

DISEGO

Critical Components for Distributed and Secure Grid Operation

Federal Ministry for Economic Affairs and Climate Action (BMWK); Duration: 2022 to 2025

EffiziEntEE
Efficient integration of high shares of renewable energies in technically and economically integrated energy systems

EffiziEntEE

Efficient integration of high shares of renewable energies in technically and economically integrated energy systems

Federal Ministry for Economic Affairs and Climate Action (BMWK); Duration: 2022 to 2025

iNeP
Integrated network planning for the electricity, gas and heat sectors

iNeP

Integrated network planning for the electricity, gas and heat sectors

Federal Ministry for Economic Affairs and Climate Action (BMWK); Duration: 2021 to 2026

VeN²uS
Networked grid protection systems - Adaptive and interconnected

VeN²uS

Networked grid protection systems - Adaptive and interconnected

Federal Ministry for Economic Affairs and Climate Action (BMWK); Duration: 2021 to 2024

DisrupSys
Disruptive functions and technology for angle-based integrated grid operation in converter-dominated power systems with predominantly renewable energy supply

DisrupSys

Disruptive functions and technology for angle-based integrated grid operation in converter-dominated power systems with predominantly renewable energy supply

Federal Ministry for Economic Affairs and Climate Action (BMWK); Duration: 2021 to 2024

Publications

TUHH Open Research (TORE)

2023

2022

2021

2020

Courses

Stud.IP
link to course in Stud.IP Studip_icon
Digital Communications (Digitale Nachrichtenübertragung) (M.Sc.)
Subtitle:
This course is part of the module: Digital Communications
Semester:
WiSe 23/24
Course type:
Lecture
Course number:
lv444_w23
Lecturer:
Gerhard Bauch, M. Sc Leonard Paul Schulz, PD Dr.-Ing. habil. Rainer Grünheid, David Jonas Kopyto
Description:
  • Repetition: Baseband Transmission
    • Pulseshaping: Non-return to zero (NRZ) rectangular pulses, raised-cosine pulses,square-root raised-cosine pulses
    • Powerspectral density (psd) of baseband signals
    • Intersymbolinterference (ISI)
    • Firstand second Nyquist criterion
    • AWGNchannel
    • Matchedfilter
    • Matched-filterreceiver and correlation receiver
    • Noisewhitening matched filter
    • Discrete-timeAWGN channel model
  • Representationof bandpass signals and systems in the equivalent baseband
    • Quadratureamplitude modulation (QAM)
    • Equivalentbaseband signal and system
    • Analyticalsignal
    • Equivalentbaseband random process, equivalent baseband white Gaussian noise process
    • Equivalentbaseband AWGN channel
    • Equivalentbaseband channel model with frequency-offset and phase noise
    • Equivalentbaseband Rayleigh fading and Rice fading channel models
    • Equivalentbaseband frequency-selective channel model
    • Discretememoryless channels (DMC)
  • Bandpasstransmission via carrier modulation
    • Amplitudemodulation, frequency modulation, phase modulation
    • Lineardigital modulation methods
      • On-offkeying, M-ary amplitude shift keying (M-ASK), M-ary phase shift keying (M-PSK),M-ary quadrature amplitude modulation (M-QAM), offset-QPSK
      • Signalspace representation of transmit signal constellations and signals
      • Energyof linear digital modulated signals, average energy per symbol
      • Powerspectral density of linear digital modulated signals
      • Bandwidthefficiency
      • Correlationcoefficient of elementary signals
      • Errorprobabilities of linear digital modulation methods
        • Error functions
        • Graymapping and natural mapping
        • Biterror probabilities, symbol error probabilities, pairwise symbol errorprobabilities
        • Euclideandistance and Hamming distance
        • Exactand approximate computation of error probabilities
        • Performancecomparison of modulation schemes in terms of per bit SNR vs. per symbol SNR
      • Hierarchicalmodulation, multilevel modulation
      • Effectsof carrier phase offset and carrier frequency offset
      • Differentialmodulation
        • M-arydifferential phase shift keying (M-PSK)
        • Coherentand non-coherent detection of DPSK
        • p/M-differential phaseshift keying (p/M-DPSK)
        • Differentialamplitude and phase shift keying (DAPSK)
    • Non-lineardigital modulation methods
      • Frequencyshift keying (FSK)
      • Modulationindex
      • Minimumshift keying (MSK)
        • Offset-QPSKrepresentation of MSK
        • MSKwith differential precoding and rotation
        • Biterror probabilities of MSK
        • Gaussianminimum shift keying (GMSK)
        • Powerspectral density of MSK and GMSK
      • Continuousphase modulation (CPM)
        • Generaldescription of CPM signals
        • Frequencypulses and phase pulses
      • Coherentand non-coherent detection of FSK
    • Performancecomparison of linear and non-linear digital modulation methods
  • Frequency-selectivechannels, ISI channels
    • Intersymbolinterference and frequency-selectivity
    • RMSdelay spread
    • Narrowbandand broadband channels
    • Equivalentbaseband transmission model for frequency-selective channels
    • Receivefilter design
  • Equalization
    • Symbol-spacedand fractionally-spaced equalizers
    • Inversesystem
    • Non-recursivelinear equalizers
      • Linearzero-forcing (ZF) equalizer
      • Linearminimum mean squared error (MMSE) equalizer
    • Non-linearequalization:
      • Decisionfeedback equalizer (DFE)
      • Tomlinson-Harashimaprecoding
    • Maximuma posteriori probability (MAP) and maximum likelihood equalizer, Viterbialgorithm
  • Single-carriervs. multi-carrier transmission
  • Multi-carriertransmission
    • Generalmulticarrier transmission
    • Orthogonalfrequency division multiplex (OFDM)
      • OFDMimplementation using the Fast Fourier Transform (FFT)
      • Cyclicguard interval
      • Powerspectral density of OFDM
      • Peak-to-averagepower ratio (PAPR)
  • Multipleaccess
    • Principlesof time division multiple access (TDMA), frequency division multiple access(FDMA), code division multiple access (CDMA), non-orthogonal multiple access(NOMA), hybrid multiple access
  • Spreadspectrum communications
    • Directsequence spread spectrum communications
    • Frequencyhopping
    • Protectionagainst eavesdropping
    • Protectionagainst narrowband jammers
    • Shortvs. long spreading codes
    • Directsequence spread spectrum communications in frequency-selective channels
      • Rakereceiver
    • Codedivision multiple access (CDMA)
      • Designcriteria of spreading sequences, autocorrelation function and crosscorrelationfunction of spreading sequences
      • Intersymbolinterference (ISI) and multiple access interference (MAI)
      • Pseudonoise (PN) sequences, maximum length sequences (m-sequences), Gold codes,Walsh-Hadamard codes, orthogonal variable spreading factor (OVSF) codes
      • Multicodetransmission   
      • CDMAin uplink and downlink of a wireless communications system
      • Single-userdetection vs. multi-user detection


Performance accreditation:
611 - Digital Communications<ul><li>611 - Digital Communications: Klausur schriftlich</li><li>800 - Laboratory Digital Communications: schriftliche Ausarbeitung</li></ul>
ECTS credit points:
6
Stud.IP informationen about this course:
Home institute: Institut für Nachrichtentechnik (E-8)
Registered participants in Stud.IP: 144
Postings: 16
Documents: 44