Now showing items 1-5 of 5

    • Adaptive learning based directional medium access control (MAC) protocol for MillimeterWave communications 

      Tiwari, Pooja (Dhirubhai Ambani Institute of Information and Communication Technology, 2017)
      "The technological advancement demands for more bandwidth and high data rates. These requirement can be fulfilled using millimeter wave band (mmWave) 57-64 GHz which has 7 GHz bandwidth. This ample amount of bandwidth is ...
    • Cooperative spectrum sensing via dynamic scheduling of secondary users 

      Dubey, Mayank (Dhirubhai Ambani Institute of Information and Communication Technology, 2017)
      "Spectrum sensing is a key function in cognitive radio to identify spectrum holes without interference to licensed/primary users (PUs). To overcome issues such as, multipath and shadowing co-operative spectrum sensing has ...
    • Digital implementation of orthogonal frequency division multiplexing 

      Bhanushali, Artiben (Dhirubhai Ambani Institute of Information and Communication Technology, 2017)
      "OFDM (Orthogonal Frequency Division Multiplexing) is the most important part of 4G and 5G technology which is adopted by many standards because of its various advantages. In this thesis, firstly prototype of OFDM system ...
    • Energy Efficient Data Gathering In Wireless Sensor Network 

      Doshi, Digant Dilip (Dhirubhai Ambani Institute of Information and Communication Technology, 2017)
      "Energy consumption in Wireless Sensor Network(WSN) is one of the critical aspect that we try to look upon. In WSN we see the major energy dissipation is on the micro sensor, which is the core part of WSN. These Micro ...
    • Low Power ASIC Implementation of SC-FDMA 

      Tandel, Deep (Dhirubhai Ambani Institute of Information and Communication Technology, 2017)
      "Single Carrier-Frequency Division Multiple Access (SC-FDMA), a modified version of Orthogonal Frequency Division Multiple Access (OFDMA) is the preferred uplink access scheme for Long Term Evolution (LTE). We aim to design ...