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Dr. SARIKI MURALI

ABOUT
NAME: Dr. SARIKI MURALI

M.TECH: JNTU Kakinada

E- MAIL: muralisai333@gmail.com

POSITION: Adhoc Faculty

PhD: National Institute of Technology Patna

PHONE: +91 8639852505


AREAS OF INTEREST: Power System Dynamics and Control; Optimization Techniques; Artificial intelligence; frequency regulation; Machine learning Techniques; charging infrastructure of EVs

EXTERNAL LINK: https://scholar.google.com/citations?user=jeNboywAAAAJ&hl=en, https://www.linkedin.com/in/dr-sariki-murali-9410a967/,
PROFILE

Publications

International Journals:

  1. Sariki Murali, Ravi Shankar, Prateek Sharma, Shivam Singh “Assessment of Power System Resiliency with New Intelligent Controller and Energy Storage Systems” Electrical power components and Systems, https://doi.org/10.1080/15325008.2023.2240360. 2023(SCIE, Impact Factor-1.5) .
  2. Murali, S, Shankar, R. Exploration of novel optimal fuzzy-based controller for enhancement of frequency regulation of deregulated hybrid power system with modified HVDC tie-line. International journal of intelligent systems, Wiley, Vol. 37, issue 7, July 2022; pp 4163-4189. https://doi.org/10.1002/int.22715. (SCIE, Impact Factor-8.993).
  3. Murali Sariki, Ravi Shankar, Optimal CC-2DOF(PI)-PDF controller for LFC of restructured multi-area power system with IES-based modified HVDC tie-line and electric vehicles, Engineering Science and Technology, an International Journal, Elsevier, Volume 32, August 2022, 101058. https://doi.org/10.1016/j.jestch.2021.09.004. (SCIE, Impact factor-5.155).
  4. A. Prakash, S. Murali, R. Shankar, and R. Bhushan, “HVDC tie-link modeling for restructured AGC using a novel fractional order cascade controller,” Electric Power System Research, Elsevier, vol. 170, no. December 2018, pp. 244–258, 2019. (SCI, Impact factor-3.818).https://doi.org/10.1016/j.epsr.2019.01.021
  5. Murali, S., Shankar, R. Impact of Inertia Emulation Based Modified HVDC Tie-Line for AGC Using Novel Cascaded Fractional Order Controller in Deregulated Hybrid Power System. Journal of Electrical Engineering Technology, Springer, 16, 1219–1239 (2021). https://doi.org/10.1007/s42835-021-00666-z   (SCI, impact factor-1.528).
  6. Sariki Murali & Ravi Shankar Assessment of Amelioration in Frequency Regulation by deploying Novel Intelligent based Controller with Modified HVDC Tie-Line in Deregulated Environment, Smart Science, vol. 11, issue 1, pp. 154-170 2023, https://doi.org/10.1080/23080477.2022.2054197  (ESCI/SCOPUS).
  7. AK Sahani, Ravi Shankar, Murali Sariki, Rajib Kumar Mandal, A coefficient diagram method based AGC mechanism for an interconnected power system in coordination with UPFC and AC/DC link, Archives of Electrical Engineering, Polish Academy of Sciences VOL.69(2), pp.287–302, 2020,(SCOPUS).
  8. B. Arundhati, S. Murali, Madisa V G Varaprasad, Solar Powered Brushless DC motor Drive using Zeta Converter, International Journal of Pure and Applied Mathematics, Vol. 114 (8), pp. 81-91.2017, (SCOPUS)

International Conferences:

  1. S. Murali, A. Prakash and R. Shankar, "LFC of Multi Area Power System with Electric Vehicle using VPL Optimized Controller," 2019 International Conference on Power Electronics Applications and Technology in Present Energy Scenario (PETPES), Mangalore, India, 2019, pp. 1-6, (NIT Surathkal, Karnataka) doi: 10.1109/PETPES47060.2019.9003878  
  2. S. Murali and R. Shankar, "Load Frequency Control Scheme using Inertia Emulation Controlled HVDC Tie-Line," 2019 20th International Conference on Intelligent System Application to Power Systems (ISAP), New Delhi, India, 2019, pp. 1-7, doi: 10.1109/ISAP48318.2019.9065987. (IIT Delhi, New Delhi)
  3. Sariki Murali and Ravi Shankar, “A True Event Based Meta-Heuristic Algorithm Optimized AGC Mechanism for A Multi-Area Power System,”4th International Conference on Soft Computing: Theories and Applications (SoCTA-2019 National institute of Technology Patna, Patna, India, 2019, pp.391-401.
  4. S. Murali, R. Shankar and P. Aryan, "A Novel Optimization Technique for LFC and Virtual Inertia Emulation of a Multi Area Hybrid Power System," 2020 International Conference on Emerging Frontiers in Electrical and Electronic Technologies (ICEFEET), Patna, India, 2020, pp. 1-6, doi: 10.1109/ICEFEET49149.2020.9186998.
  5. S. Murali, R. Shankar, S. Shrivastav, U. Dhawal and V. Kannauijia, "LFC Scheme for A Deregulated Multi-Area Power System using Cascaded Fractional Order Controller," 2020 International Conference on Emerging Frontiers in Electrical and Electronic Technologies (ICEFEET), Patna, India, 2020, pp. 1-6, doi: 10.1109/ICEFEET49149.2020.9186958.
  6. Murali, K. P. Panda and G. Panda, "PV-HESS fed BLDC Driven Water Pumping System with PSO-based MPP Tracking Employing Zeta Converter," 2018 IEEE Innovative Smart Grid Technologies - Asia (ISGT Asia), 2018, pp. 196-201, doi: 10.1109/ISGT-Asia.2018.8467896.
  7. S. Murali, V. N. Kumar and G. Panda, "Solar Powered BLDC Drive with Hybrid Energy Storage System Using Zeta Converter," 2018 3rd International Conference for Convergence in Technology (I2CT), 2018, pp. 1-6, doi: 10.1109/I2CT.2018.8529601.
  8. S. Murali, S. Singh, R. Shankar and A. Kumar, "Reinforcement of Frequency Regulation using an Aggregated EV Fleet in an Islanded Microgrid," 2022 IEEE IAS Global Conference on Emerging Technologies (GlobConET), 2022, pp. 673-679, doi: 10.1109/GlobConET53749.2022. 9872175.
  9. S. Murali, K. Abhinav, R. Shankar and S. K. Parida, "Application of Deep Learning Technique based Load Forecast for Frequency Regulation," 2022 IEEE IAS Global Conference on Emerging Technologies (GlobConET), 2022, pp. 121-127, doi: 10.1109/GlobConET53749.2022.9872420.
  10. S. Murali, K. Abhinav and R. Shankar, "Exploration of EV Fleet role in Frequency Regulation using an Aggregate Model including Communication Delay," 2022 IEEE Global Conference on Computing, Power and Communication Technologies (GlobConPT), 2022, pp. 1-6, doi: 10.1109/GlobConPT57482.2022.9938192.

Book Chapters:

  1.        Book Chapter in Soft Computing: Theories and Applications, Sariki Murali and Ravi Shankar, Springer,AISC, volume 1154, July – 2020.