Title :
OFDM AF Relaying Under I/Q Imbalance: Performance Analysis and Baseband Compensation
Author :
Mokhtar, Makhfudzah ; Gomaa, Ahmad ; Al-Dhahir, Naofal
Author_Institution :
Univ. of Texas at Dallas, Dallas, TX, USA
Abstract :
We analyze the outage performance of half-duplex amplify-and-forward relaying in an OFDM system with MRC detection in the presence of I/Q imbalance and compare it with that of the direct transmission mode. Both analytical and numerical results demonstrate that the direct mode can outperform the amplify-and-forward mode even under moderate levels of uncompensated I/Q imbalance. The cross-over I/Q imbalance levels are determined analytically to be inversely proportional to the cube of the signal constellation size. In addition, we present a low-complexity receiver-based digital baseband I/Q imbalance compensation scheme for the amplify-and-forward mode and analyze its EVM performance. Furthermore, we derive accurate analytical approximations for the EVM performance as a function of relay location and I/Q imbalance level with and without compensation.
Keywords :
OFDM modulation; amplify and forward communication; diversity reception; performance evaluation; relay networks (telecommunication); EVM performance; MRC detection; OFDM AF relaying; OFDM system; amplify-and-forward mode; baseband compensation; direct mode; direct transmission mode; half-duplex amplify-and-forward relaying; low-complexity receiver-based digital baseband I/Q imbalance compensation scheme; outage performance; performance analysis; relay location; signal constellation size; uncompensated I/Q imbalance; Approximation methods; Baseband; OFDM; Performance analysis; Radio frequency; Relays; Signal to noise ratio; EVM; I/Q imbalance; OFDM; amplify-and-forward relay;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2013.020813.120576