Breaking the Bound: Rate-2, Full Diversity, Orthogonal MIMO-STBC Transceiver Design

05/01/2020
by   Anu Jagannath, et al.
0

Space Time Block Codes (STBCs) from orthogonal designs have attracted significant interest in recent years. However, with the growing demand for higher capacity schemes, the multiantenna transmission techniques must support and achieve higher symbol transmission rates. In this article, we focus on three and four transmit antenna schemes. For over two decades, STBC schemes for three and four transmit antennas that achieve a very high symbol transmission rate while being orthogonal, fully diverse, delay-efficient, and with very low decoding complexity have not been achieved. The schemes proposed so far trades off orthogonality, delay, diversity, or decoding complexity while achieving rate or vice-versa. This work is first of its kind to solve this problem while fulfilling all the desired properties. In this work, we carefully study the various aspects that must be considered in designing higher symbol transmission rate STBCs. The proposed designs, hereby referred to as, Jagannath schemes - for 4 x 3 and 4 x 4 configurations are orthogonal, achieve full diversity, and support a symbol transmission rate of 2 symbols/s/Hz. The design methodology follows a coding gain maximization approach. The low decoding complexity procedure to decode the proposed transmission schemes are proposed as well as extensively evaluated in simulations under diverse settings. The performance of proposed schemes are empirically compared to two state-of-the-art schemes; ACIOD and Jafarkhani. Jagannath 4 x 3 was shown to outperform ACIOD by  12 dB while Jagannath 4 x 4 exhibited a  7 dB superior performance in contrast to Jafarkhani at 4 bpcu. This motivates the adoption of Jagannath schemes in tactical and commercial communication systems to effectively double the throughput or to extend the

READ FULL TEXT
research
07/22/2019

Towards Higher Spectral Efficiency: Rate-2 Full-Diversity Complex Space-Time Block Codes

The upcoming 5G networks demand high-speed and high spectral-efficiency ...
research
02/08/2019

Investigations on Increased Data rate Differential Space-Time Block Codes for Single Carrier Wireless Systems

In this thesis, we study differential modulation schemes which do not ne...
research
07/08/2022

On Optimum Enumerative Sphere Shaping Blocklength at Different Symbol Rates for the Nonlinear Fiber Channel

We show that a 0.9 dB SNR improvement can be obtained via short-blocklen...
research
11/21/2018

On-off Switched Interference Alignment for Diversity Multiplexing Tradeoff Improvement in the 2-User X-Network with Two Antennas

To improve diversity gain in an interference channel and hence to maximi...
research
05/30/2020

Neural Network-Aided BCJR Algorithm for Joint Symbol Detection and Channel Decoding

Recently, deep learning-assisted communication systems have achieved man...
research
11/05/2018

Cocktail BPSK: Energy Reused Scheme for High Achievable Data Rates

The present paper proposes a novel transmission strategy, referred to as...
research
05/21/2019

Coding theory for noiseless channels realized by anonymous oblivious mobile robots

We propose an information transmission scheme by a swarm of anonymous ob...

Please sign up or login with your details

Forgot password? Click here to reset