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arxiveess.SP2026-07-09

Fast Pinching-Antenna Activation for AirComp

Zhenqiao Cheng, Boqun Zhao, Chongjun Ouyang, Xingqi Zhang

A pinching-antenna system (PASS) is considered for over-the-air computation (AirComp). Multiple dielectric waveguides are deployed at the base station, and one pinching antenna (PA) is activated on each waveguide. For practical implementation, each PA is restricted to a finite set of preconfigured locations. The resulting discrete activation problem is formulated to minimize the AirComp mean-squared error (MSE). After the optimal aggregation vector is derived, the minimum MSE is expressed through an inverse Gram matrix. A rank-one recursion is derived to evaluate the exact MSE reduction produced by each candidate. Greedy search and beam search are then developed for fast tree search. To further reduce complexity, coherent aggregation search is proposed from a first-order MSE approximation. It admits a separable closed-form selection rule and is asymptotically optimal in the low signal-to-noise ratio (SNR) regime. Numerical results show that the proposed methods substantially improve the AirComp accuracy of PASS over conventional antenna arrays.

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arxiveess.SP2026-07-15

On the Blockage Effect in Pinching-Antenna Systems (PASS)

Jinhua Wang, Jun Wang, Tianwei Hou, Xin Sun, Arumugam Nallanathan

Pinching-antenna systems (PASS) offer considerable potential for wireless communications due to their unique ability to dynamically reconfigure radiation positions along a waveguide. However, the performance of PASS remains a critical challenge in the presence of random line-of-s…

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arxiveess.SP2026-07-15

On the Performance of Pinching-Antenna Systems (PASS) Under Dynamic Channels with Blockages

Jinhua Wang, Jun Wang, Tianwei Hou, Anna Li, Yuanwei Liu, Arumugam Nallanathan

The performance of pinching-antenna systems (PASS) is fundamentally affected by line-of-sight (LoS) blockage in practical environments. In this paper, PASS is investigated under realistic, obstacle-induced blockage by jointly considering the LoS and non-LoS (NLoS) components, rat…

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arxiveess.SP2026-07-15

Pinching-Antenna Systems (PASS)-Based User-Side Navigation: An Anchor-Line-based Approach

Zongyi Li, Jun Wang, Tianwei Hou, Anna Li

Pinching-antenna systems (PASS) are capable of dynamically reconfiguring wireless channels by flexibly repositioning pinching antennas (PAs) along the waveguides to establish short-range line-of-sight links. In this paper, a user-side navigation framework for PASS is proposed, wh…

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arxiveess.SP2026-07-06

Shift-MoE-Based DJSCC for CSI Feedback in Multi-User Pinching-Antenna Systems

Jian Zou, Yifan Lian, Yongsheng Liang, Fanyang Meng, Wenwu Xie, Liang Yang, et al.

In frequency-division duplexing systems, the performance gains of pinching-antenna systems (PASS) critically depend on accurate channel state information (CSI) at the base station. However, PASS CSI exhibits structured correlations over the waveguide-antenna grid and pronounced h…

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