Dr. Parvathy Rajendran
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Dr. Parvathy Rajendran

Associate Professor
Universiti Sains Malaysia, Malaysia


Highest Degree
Ph.D. in Aerospace Engineering from Cranfield University, UK

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Area of Interest:

Physical Science Engineering
100%
Aerospace Engineering
62%
Material Engineering
90%
Energy Efficiency
75%
Photometry
55%

Research Publications in Numbers

Books
6
Chapters
9
Articles
63
Abstracts
32

Selected Publications

  1. Shauqee, M.N., P. Rajendran and N.M. Suhadis, 2021. Proportional double derivative linear quadratic regulator controller using improvised grey wolf optimization technique to control quadcopter. Appl. Sci., Vol. 11. 10.3390/app11062699.
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  2. Shauqee, M.N., P. Rajendran and N.M. Suhadis, 2021. An explosion based algorithm to solve the optimization problem in quadcopter control. Aerospace, Vol. 8. 10.3390/aerospace8050125.
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  3. Lim, Z.F., P. Rajendran, M.Y. Musa and C.F. Lee, 2021. Nasal airflow of patient with septal deviation and allergy rhinitis. Visual Comput. Ind. Biomed. Art, Vol. 4. 10.1186/s42492-021-00080-2.
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  4. Khan, A., P. Rajendran and J.S.S. Sidhu, 2021. Passive control of base pressure: A review. Appl. Sci., Vol. 11. 10.3390/app11031334.
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  5. Kok, K.Y., P. Rajendran and A.M. Ali, 2020. Spot and adjust filter: A new image filter for image enhancement and noise reduction. Int. J. Eng. Appl., 8: 71-78.
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  6. Kok, K.Y. and P. Rajendran, 2020. Enhanced particle swarm optimization for path planning of unmanned aerial vehicles. ECTI Trans. Comput. Inf. Technol., 14: 67-78.
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  7. Kok, K.Y. and P. Rajendran, 2020. A review on stereo vision algorithm: Challenges and solutions. ECTI Trans. Comput. Inf. Technol., 13: 112-128.
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  8. Wong, O.Q. and P. Rajendran, 2019. Image segmentation using modified region-based active contour model. J. Eng. Applied Sci., 14: 5710-5718.
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  9. Sethuraman, V., P. Rajendran and S.A. Khan, 2019. A cost-effective data acquisition instrumentation for measurement of base pressure and wall pressure in suddenly expanded flow through ducts. J. Adv. Res. Fluid Mech. Therm. Sci., 60: 112-123.
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  10. Seeni, A., P. Rajendran and H. Mamat, 2019. A CFD mesh independent solution technique for low reynolds number propeller. CFD Lett., 11: 15-30.
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  11. Seeni, A. and P. Rajendran, 2019. Numerical validation of naca 0009 airfoil in ultra-low reynolds number flows. Int. Rev. Aerosp. Eng., Vol. 12. No. 2. .
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  12. Ong C.K. and P. Rajendran, 2019. Kernelized correlation filters parameters optimization for enhanced visual tracking. J. Eng. Applied Sci., 14: 293-307.
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  13. Merryisha, S. and P. Rajendran, 2019. Experimental and CFD analysis of surface modifiers on aircraft wing: A review. CFD Lett., 11: 46-59.
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  14. Bashir, M. and P. Rajendran, 2019. Recent trends in piezoelectric smart materials and its actuators for morphing aircraft development. Int. Rev. Mech. Eng., 13: 117-125.
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  15. Rajendran, P. and H. Smith, 2018. Sensitivity analysis of design parameters of a small solar-powered electric unmanned aerial vehicle. J. Eng. Sci. Technol., Vol. 13. No. 12. .
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  16. Rajendran, P. and H. Smith, 2018. Development of design methodology for a small solar-powered unmanned aerial vehicle. Int. J. Aerosp. Eng., 10.1155/2018/2820717.
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  17. Mee, L.H. and P. Rajendran, 2018. Fast compressive tracking parameters optimization for enhanced visual tracking. Int. J. Eng. Res. Technol., 11: 1821-1836.
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  18. Lee, C.F., F.S. Su, J.Y. Chan and P. Rajendran, 2018. Effect of age on healthy human nasal airflow: A computational analysis. Int. J. Eng. Res. Technol., 11: 1231-1246.
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  19. Bashir, M., P. Rajendran, C. Sharma and D. Smrutiranjan, 2018. Investigation of smart material actuators and aerodynamic optimization of morphing wing. Mater. Today: Proc., 5: 21069-21075.
    CrossRef  |  
  20. Bashir, M. and P. Rajendran, 2018. A review on electroactive polymers development for aerospace applications. J. Intell. Mater. Syst. Struct., 29: 3681-3695.
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  21. Rajendran, P., N.M. Mazlan and H. Smith, 2017. Single Cell Li-Ion Polymer Battery Charge and Discharge Characterizations for Application on Solar-Powered Unmanned Aerial Vehicle. Key Eng. Mater., 728: 428-433.
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  22. Rajendran, P., M.H. Masral and H.A. Kutty, 2017. Perpetual Solar-Powered Flight across Regions around the World for a Year-Long Operation. Aerosp., 4: 1-9.
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  23. Kutty, H.A. and P. Rajendran, 2017. Simulation and Experimental Validation of Small APC Slow Flyer Propeller Blade. Aerosp., .
  24. Kutty, H.A. and P. Rajendran, 2017. Review on Numerical and Experimental Work of Conventional and Unconventional Propeller Blade Design. Int. Rev. Aerosp. Eng., 10: 61-73.
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  25. Bashir, M., P. Rajendran and A. Mule, 2017. Investigation on three-dimensional CFD validation for a variable span morphing wing. Asian J. Convergence Technol., Vol. 3, No. 3. 10.1212/ajct.v3i3.298.
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  26. Bashir, M., C.F. Lee and P. Rajendran, 2017. Shape memory materials and their applications in aircraft morphing: An introspective study. ARPN J. Eng. Applied Sci., 12: 5434-5446.
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  27. Rajendran, P., K.W. Lim and K.T. Ong, 2016. Power Management Strategy by Enhancing the Mission Profile Configuration of Solar-Powered Aircraft. Int. J. Aerosp. Eng., 10.1155/2016/9345368.
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  28. Rajendran, P., H. Smith, K.I. Yahaya and N.M. Mazlan, 2016. Electric Propulsion System Sizing for Small Solar-powered Electric Unmanned Aerial Vehicle. Int. J. Appl. Eng. Res., 11: 9419-9423.
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  29. Rajendran, P. and H. Smith, 2016. Modelling of Solar Irradiance and Daylight Duration for Solar- powered UAV Sizing. Energy Explor. Exploitat., 34: 235-243.
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  30. Kok, K.Y., P. Rajendran, R. Rainis, J. Jaafar and Z. Majid, 2016. Selection For Biogeography-Based Optimization In Unmanned Aerial Vehicle Path Planning. ARPN J. Eng. Appl. Sci., .
  31. Kok, K.Y., P. Rajendran, R. Rainis, J. Jaafar and Z. Majid, 2016. Differential-Evolution Control Parameter Optimization for Unmanned Aerial Vehicle Path Planning. PLos One, 10.1371/journal.pone.0150558.
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  32. Kok, K.Y. and P. Rajendran, 2016. PD-LQR Controller Design for Improved Longitudinal Motion Control of Unmanned Aerial Vehicles. Int. J. Micro Air Veh., 8: 41-50.
  33. Bashir, M., P. Rajendran, T.F. Ng and S.L. Wang, 2016. Outline for mission-based morphing evaluation with smart material technology. Int. J. Appl. Eng. Res., 11: 4012-4016.
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  34. Bashir, M., P. Rajendran and N.A. Razak, 2016. Unconventional aircraft morphing employing smart actuators to enhance aerodynamic efficiency. Int. J. Appl. Eng. Res., 11: 9116-9122.
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  35. Rajendran, P. and H. Smith, 2015. Review of Solar and Battery Power System Development for Solar-Powered Electric Unmanned Aerial Vehicles. Adv. Mater. Res., 1125: 641-647.
  36. Rajendran, P. and H. Smith, 2015. Implications of longitude and latitude on the size of solar-powered UAV. Energy Convers. Manage., 98: 107-114.
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  37. Rajendran, P. and H. Smith, 2015. Future Trend Analysis on the Design and Performance of Solar- Powered Electric Unmanned Aerial Vehicles. Adv. Mater. Res., 1125: 635-640.
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  38. Kutty, H.A., M.H. Masral and P. Rajendran, 2015. Regression Model to Predict Global Solar Irradiance in Malaysia. Int. J. Photoenergy, 10.1155/2015/347023.
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  39. Kok, K.Y. and P. Rajendran, 2015. Enhanced Longitudinal Motion Control of UAV Simulation by using P-LQR Method. Int. J. Micro Air Veh., 7: 203-210.
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  40. Smith, H. and P. Rajendran, 2014. Review of the Elementary Aspect of Small Solar Powered Electric Unmanned Aerial Vehicles. Austr. J. Basic Appl. Sci., 8: 252-259.
  41. Rajendran, P., H. Smith and M.H. Masral, 2014. Modelling and Simulation of Solar Irradiance and Daylight Duration for a High-Power-Output Solar Module System. Appl. Mech. Mater., 629: 475-480.
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