# Spatial Coded Modulation

**Authors:** Junshan Luo, Fanggang Wang, Shilian Wang

arXiv: 1907.00365 · 2023-09-21

## TL;DR

This paper introduces a spatial coded modulation scheme that enhances active antenna detection accuracy and system reliability by coding over transmit antennas, achieving higher capacity and robustness compared to conventional methods.

## Contribution

The paper proposes a novel spatial coded modulation scheme with a larger minimum Hamming distance, along with low-complexity detection algorithms and comprehensive theoretical analysis across various channel scenarios.

## Key findings

- SCM improves active antenna detection accuracy.
- SCM achieves higher channel capacity.
- SCM outperforms conventional spatial modulation in reliability.

## Abstract

In this paper, we propose a spatial coded modulation (SCM) scheme, which improves the accuracy of the active antenna detection by coding over the transmit antennas. Specifically, the antenna activation pattern in the SCM corresponds to a codeword in a properly designed codebook with a larger minimum Hamming distance than its counterpart conventional spatial modulation. As the minimum Hamming distance increases, the reliability of the active antenna detection is directly enhanced, which in turn improves the demodulation of the modulated symbols and yields a better system reliability. In addition to the reliability, the proposed SCM scheme also achieves a higher capacity with the identical antenna configuration compared to the conventional spatial modulation technique. Moreover, the proposed SCM scheme strikes a balance between spectral efficiency and reliability by trading off the minimum Hamming distance with the number of available codewords. The optimal maximum likelihood detector is first formulated. Then, a low-complexity suboptimal detector is proposed to reduce the computational complexity, which has a two-step detection. Theoretical derivations of the channel capacity and the bit error rate are presented in various channel scenarios, i.e., Rayleigh, Rician, Nakagami-m, imperfect channel state information, and spatial correlation. Further derivation on performance bounding is also provided to reveal the insight of the benefit of increasing the minimum Hamming distance. Numerical results validate the analysis and demonstrate that the proposed SCM outperforms the conventional spatial modulation techniques in both channel capacity and system reliability.

## Full text

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## Figures

22 figures with captions in the complete paper: https://tomesphere.com/paper/1907.00365/full.md

## References

34 references — full list in the complete paper: https://tomesphere.com/paper/1907.00365/full.md

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Source: https://tomesphere.com/paper/1907.00365