Title :
Equivalent Capacity-Based Joint Multilevel Coding and Space–Time Transmit Diversity Design
Author :
Tee, Ronald Yee Siong ; Alamri, Osamah Rashed ; Ng, Soon Xin ; Hanzo, Lajos
Author_Institution :
Sch. of Electron. & Comput. Sci., Univ. of Southampton, Southampton
Abstract :
A novel space-time block-coding-assisted and sphere-packed multilevel-coded (STBC-SP-MLC) modulation arrangement is proposed, which combines an MLC-based scheme with a twin-antenna-aided STBC for the sake of providing a transmit diversity gain. The SP modulation invokes a 4D D 4 constellation space. A new bit-to-SP symbol mapper is designed for the sake of improving the system´s performance. This involves mapping the MLC bits to the SP symbols of Layer-1 and Layer-2 in D 4 space. The binary switching algorithm is used to determine the optimum cost function used for designing different mapping strategies. The so-called equivalent capacity-based design invoking the 4-D signal space is used to determine the optimum coding rate of the STBC-SP-MLC scheme´s component codes. Finally, we investigate a hybrid bit-to-SP symbol-mapping strategy for the STBC-SP-MLC scheme, which is capable of providing unequal error protection.
Keywords :
block codes; diversity reception; modulation; space-time codes; binary switching algorithm; bit-to-SP symbol mapper; capacity-based joint multilevel coding; error protection; hybrid bit-to-SP symbol-mapping; optimum coding; space-time block-coding-assisted modulation; space-time transmit diversity design; sphere-packed multilevel-coded modulation; transmit diversity gain; twin-antenna-aided STBC; Equivalent capacity-based code design; multi-level coding; sphere-packing modulation; transmit diversity;
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2008.915513