Title :
Expected rate of slow-fading channel with partial CSIT under computational and transmit power constraints
Author :
Jialin He ; Rajan, D.
Author_Institution :
Dept. of Electr. Eng., Southern Methodist Univ., Dallas, TX, USA
Abstract :
In this paper, we evaluate the expected rate with quantized feedback over a fading channel with both transmit and computational power constraints. We derive the optimal quantization scheme which can achieve the maximum expected rate in two different scenarios. First, for systems with a short-term power constraint, we derive an algorithm to find the optimum quantization schemes with bursty transmission. Second, for systems with a long-term power constraint, we prove that no explicit bursty transmission is required. We also propose a two-step power allocation method, based on the traditional waterfilling followed by a water adjustment step, which achieves the maximum expected rate. We quantify the gain that the proposed algorithms can achieve for different quantization levels.
Keywords :
fading channels; quantisation (signal); bursty transmission; channel state information transmitter; computational power constraints; optimal quantization scheme; partial CSIT; quantization levels; quantized feedback; slow-fading channel expected rate; traditional waterfilling; transmit power constraints; two-step power allocation method; water adjustment step; Fading; Indexes; Optimized production technology; Quantization (signal); Resource management; Transmitters;
Conference_Titel :
Global Communications Conference (GLOBECOM), 2013 IEEE
Conference_Location :
Atlanta, GA
DOI :
10.1109/GLOCOM.2013.6831352