Title :
Throughput Maximization In Multiple Antenna Communication Systems Through Quantized Rate Control
Author :
Khojastepour, Mohammad Ali ; Wang, Xiaodong ; Madihian, Mohammad
Author_Institution :
NEC Lab. America, Princeton, NJ
fDate :
Oct. 28 2005-Nov. 1 2005
Abstract :
In the recent years, we have witnessed an increasing demand for the high data rate wireless communication systems. While most of the research efforts has been focused on the minimization of the packet error probability through an adaptive transmission scheme, the overall optimization of the system throughput is not well addressed. We consider the problem of throughput maximization using a quantized feedback that is an appropriate model for practical systems with limited feedback capacity. We derive the optimal quantized rate control design for general multiple transmit and multiple receive antenna systems. Moreover, an adaptive stochastic gradient search algorithm has been proposed that can efficiently find the optimal solution. It is shown that the proposed quantized rate control design with only a few bits of feedback considerably improves the throughput of a system for a given average power
Keywords :
antenna arrays; control system synthesis; feedback; gradient methods; radio networks; stochastic processes; telecommunication congestion control; adaptive stochastic gradient search algorithm; adaptive transmission scheme; feedback capacity; feedback quantization; high data rate wireless communication systems; multiple antenna communication systems; optimal quantized rate control design; packet error probability; quantized rate control design; throughput maximization; Adaptive systems; Communication system control; Control design; Control systems; Error probability; Feedback; Receiving antennas; Stochastic processes; Throughput; Wireless communication;
Conference_Titel :
Signals, Systems and Computers, 2005. Conference Record of the Thirty-Ninth Asilomar Conference on
Conference_Location :
Pacific Grove, CA
Print_ISBN :
1-4244-0131-3
DOI :
10.1109/ACSSC.2005.1599828