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Grey Wolf Optimization-Based Improved Closed-Loop Speed Control for a BLDC Motor Drive: Proceedings of the Second International Conference on SCI 2018

DOI: 10.1007/978-981-13-1921-1_14 In book: Smart Intelligent Computing and Applications Link:  full text

Implementation of Grasshopper Optimization Algorithm for Controlling a BLDC Motor Drive

In book: Soft Computing in Data Analytics Chapter: Implementation of Grasshopper Optimization Algorithm for Controlling a BLDC Motor Drive Publisher: Springer Nature Link:  https://link.springer.com/chapter/10.1007/978-981-13-0514-6_37

Finite Time Disturbance Observer based Composite Sliding Mode Load Frequency Control for Hybrid Power Systems (accepted)

Finite Time Disturbance Observer based Composite Sliding Mode Load Frequency Control for Hybrid Power Systems is accepted for publication in IJE

My Research Articles in Peer Reviewed Journals

1.   Tummala, Ayyarao SLV, Hemanth KR Alluri, and P. V. Ramanarao. "Optimal Control of DFIG Wind Energy           System in Multi-machine Power System using Advanced Differential Evolution."  IETE Journal of    Research  (2018): 1-12.  Link 2.  Tummala, Ayyarao SLV, Kumar Pakki Bharani Chandra, and V. Ramana Rao Pulipaka. "Decentralised non-linear SDRE observer–controller scheme for large-scale power systems." IET Generation, Transmission & Distribution  12.8 (2017): 1774-1782.  link 3.  TUMMALA, Ayyarao SLV, Ravikiran Inapakurthi, and PV RAMANARAO. "Observer based sliding mode frequency control for multi-machine power systems with high renewable energy."  Journal of Modern Power Systems and Clean Energy 6.3 (2018): 473-481.  link 4.  TUMMALA,  Ayyarao  SLV, " Modified vector controlled DFIG wind energy system based on barrier function adaptive sliding mode control," Protection and Control of Modern Power Systems, 2019.  linl   5. Raju