DocumentCode :
3602759
Title :
Unitary Space-Time Pulse Position Modulation for Differential Unipolar MIMO IR-UWB Communications
Author :
Abou-Rjeily, Chadi
Author_Institution :
Dept. of Electr. & Comput. Eng., Lebanese American Univ., Byblos, Lebanon
Volume :
14
Issue :
10
fYear :
2015
Firstpage :
5602
Lastpage :
5615
Abstract :
In this paper, we present a general technique for constructing minimal-delay unitary differential Space-Time (ST) block codes for Pulse Position Modulation (PPM) with an arbitrary number of transmit antennas and signal set cardinality. A typical application corresponds to Multiple Input Multiple Output (MIMO) Impulse-Radio Ultra-Wideband (IR-UWB) systems where neither the transmitter nor the receiver knows the channel. The proposed scheme is a pulse-based solution where the information is encoded differentially through the relative shifts of the pulses in one block with respect to the pulse positions in the previous block where each block extends over P symbol durations with P standing for the number of transmit antennas. This technique of time-domain encoding avoids all types of amplitude constellation expansions and achieves a full transmit diversity order while maintaining a single unipolar pulse transmission per symbol in a way that is completely equivalent to single-antenna PPM communications. We also propose a simplified decoder that can be associated with the proposed ST code and we perform a detailed complexity analysis that allows to quantify the reduction in the number of operations offered by this simplified decoding strategy. Finally, the results are validated numerically and through a semi-analytical evaluation of the conditional symbol error rate.
Keywords :
MIMO communication; antenna arrays; decoding; diversity reception; encoding; error statistics; pulse position modulation; space-time block codes; transmitting antennas; ultra wideband communication; IR-UWB systems; ST block codes; amplitude constellation expansions; decoding strategy; differential unipolar MIMO IR-UWB communications; impulse-radio ultra-wideband systems; minimal-delay unitary differential space-time block codes; multiple input multiple output systems; pulse-based solution; signal set cardinality; single unipolar pulse transmission; single-antenna PPM communications; symbol error rate; time-domain encoding; transmit antennas; transmit diversity order; unitary space-time pulse position modulation; Complexity theory; Context; Decoding; Encoding; Modulation; Receivers; Transmitting antennas; MIMO; PPM; Pulse Position Modulation; Pulse Position Modulation (PPM); UWB; Ultra-Wideband; Ultra-Wideband (UWB); decoder complexity; differential; performance analysis; simplified decoding; space-time;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2015.2440270
Filename :
7116600
Link To Document :
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