Title :
Low PAPR and spatial diversity for OFDM schemes by using L2-orthogonal CPM ST-codes with fast decoding
Author :
Hisojo, Miguel Angel ; Lebrun, Jerome ; Deneire, Luc
Author_Institution :
I3S Lab., Univ. of Nice Sophia Antipolis, Nice, France
Abstract :
Orthogonal Frequency Division Multiplexing (OFDM) is a popular modulation technique that provides high data rates and good robustness against frequency selective fading. Space-Time Block Coding (STBC) is an efficient way to introduce space-time diversity in Multiple-Input Multiple-Output (MIMO) systems. Using non-linear modulations such as Continuous Phase Modulation (CPM) with its constant envelope and continuous phase properties could be a solution to construct MIMO OFDM systems and to avoid the structural limitations of linear codes and alleviate the typical PAPR issue of OFDM. However, a major issue with CPM based systems may remain: the decoding complexity. In this paper, we introduce a new space-time-frequency diversity technique based on L2-orthogonal multi-A CPM Space-Time codes designed for OFDM transmission. We benchmark these codes under Rayleigh frequency selective channels and show how they achieve full spatial diversity at full rate for any number of antennas, good spectral compactness and also robustness to frequency fading. Furthermore, the decoding complexity is highly reduced and even made linear in the number of antennas thanks to the orthogonality properties.
Keywords :
MIMO communication; OFDM modulation; Rayleigh channels; antenna arrays; computational complexity; decoding; diversity reception; linear codes; space-time block codes; CPM; CPM-based systems; L2-orthogonal CPM ST-codes; L2-orthogonal multiA CPM space-time codes; MIMO OFDM systems; OFDM transmission; PAPR issue; Rayleigh frequency selective channels; STBC; constant envelope; continuous phase modulation; continuous phase properties; decoding complexity; fast decoding; frequency selective fading; full-spatial diversity; linear codes; modulation technique; multiple-input multiple-output systems; nonlinear modulation; orthogonal frequency division multiplexing; orthogonality properties; space-time block coding; space-time diversity; space-time-frequency diversity technique; spectral compactness; Bit error rate; Decoding; Frequency diversity; Modulation; OFDM; Transmitting antennas;
Conference_Titel :
Communications (LATINCOM), 2014 IEEE Latin-America Conference on
Conference_Location :
Cartagena de Indias
Print_ISBN :
978-1-4799-6737-7
DOI :
10.1109/LATINCOM.2014.7041850