Pinching-Antenna-Assisted Index Modulation: Channel Modeling, Transceiver Design, and Performance Analysis
Shuaixin Yang, Yijia Li, Yue Xiao, Yong Liang Guan, Xianfu Lei, Zhiguo Ding

TL;DR
This paper introduces a novel pinching-antenna assisted index modulation scheme that enhances spectral efficiency and performance through advanced channel modeling, low-complexity detection, and optimized precoding techniques.
Contribution
It proposes a new PA-IM scheme, develops a comprehensive channel model, designs a low-complexity BOSD detection algorithm, and introduces a manifold optimization-based precoding method.
Findings
Significant performance gain over conventional schemes
BER substantially improved by precoding design
Effective channel modeling combining waveguide and wireless effects
Abstract
In this paper, a novel pinching-antenna assisted index modulation (PA-IM) scheme is proposed for improving the spectral efficiency without increasing the hardware complexity, where the information bits are conveyed not only by the conventional M-ary quadrature amplitude modulation (QAM) symbols but also by the indices of pinching antenna (PA) position patterns. To realize the full potential of this scheme, this paper focuses on the comprehensive transceiver design, addressing key challenges in signal detection at the receiver and performance optimization at thetransmitter. First, a comprehensive channel model is formulated for this architecture, which sophisticatedly integrates the deterministic in-waveguide propagation effects with the stochastic nature of wireless channels, including both largescale path loss and small-scale fading. Next, to overcome the prohibitive complexity of…
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