Now showing items 1-6 of 6

    • Development of Graphical User Interface (GUI) for dead reckoning system of a non-holonomic mobile robot 

      Muhammad Hassan, Tanveer; Hazry, Desa, Assoc. Prof. Dr.; Syed Faiz, Ahmed, Dr.; Muhammad Kamran, Joyo; Faizan, A Warsi; Zuradzman, Mohamad Razlan, Dr.; Wan Khairunizam, Wan Ahmad, Dr.; Abadal-Salam, T. Hussain (American-Eurasian Network for Scientific Information (AENSI), 2014)
      This article presents the creation of GUI for the dead reckoning nonholonomic mobile robot and verifies the completion of designing a user-friendly GUI for controlling and operating, which will help the user to understand ...
    • Development of underwater mobile robot AQUA-X with new maneuvering method 

      Hazry, Desa, Assoc. Prof. Dr.; Syed Faiz, Ahmed; Muhammad Hassan, Tanveer; Faizan, A Warsi; Muhammad Kamran, Joyo; Wan Khairunizam, Wan Ahmad, Dr.; Abadal-Salam, T. Hussain (American-Eurasian Network for Scientific Information (AENSI), 2014)
      An Unmanned underwater vehicle is a type of robot that can maneuver under the sea surface without any human operator. The first Autonomous Underwater Vehicles was developed by the University of Washington in 1957 (Blidberg, ...
    • Model predictive control based reference point tracking of quad-rotor UAV in prevalence of disturbance 

      Muhammad Hassan, Tanveer; Hazry, Desa, Assoc. Prof. Dr.; Syed Faiz, Ahmed, Dr.; Muhammad Kamran, Joyo; Faizan, A Warsi; Zuradzman, Mohamad Razlan, Dr.; Abadal-Salam, T. Hussain (American-Eurasian Network for Scientific Information (AENSI), 2014)
      This paper presents an accomplishment of reference point tracking with the help of Model predictive control (MPC). The foremost concern is based upon predicting the performance of the system in occurrence of unknown ...
    • NMPC-PID based new control structure design for altitude and attitude stabilization of non-linear quad-rotor type unmanned aerial vehicles (UAV) 

      Muhammad Hassan, Tanveer (Universiti Malaysia Perlis (UniMAP)School of Mechatronic Engineering, 2013)
      Quad-rotor typed unmanned aerial vehicles (UAV) are rotorcraft that has four propellers. In this design there are two arms and each arm has two propellers at their end.. It has complex controlling structure, that is why ...
    • PID based controller design for attitude stabilization of Quad-rotor 

      Muhammad Hassan, Tanveer; Hazry, Desa, Assoc. Prof. Dr.; Syed Faiz, Ahmed, Dr.; Muhammad Kamran, Joyo; Faizan, A Warsi; Zuradzman, Mohamad Razlan, Dr.; Wan Khairunizam, Wan Ahmad, Dr.; Abadal-Salam, T. Hussain (American-Eurasian Network for Scientific Information (AENSI), 2014)
      This article presents a PID based control approach for stabilizing the attitude of quad-rotor UAV during flying. To solve the stability problem of quad-rotor UAV, some suitable and easy feedback control algorithm can be ...
    • Stabilized controller design for attitude and altitude controlling of quad-rotor under disturbance and noisy conditions 

      Muhammad Hassan, Tanveer; Syed Faiz, Ahmed, Dr.; Hazry, Desa, Assoc. Prof. Dr.; Faizan A., Warsi; Muhammad Kamran, Joyo (Science Publication, 2013-07)
      This article presents a control approach to obtain the better stabilization in attitude and altitude of quad-rotor under different disturbance conditions. In the standard Quad-rotor rotor type UAV, controlling of attitude ...