Score: 3

A Universal Block Error Rate Bound for Fluid Antenna Systems

Published: November 13, 2025 | arXiv ID: 2511.09929v2

By: Zhentian Zhang , David Morales-Jimenez , Hao Jiang and more

Potential Business Impact:

Makes wireless signals work better with less equipment.

Business Areas:
Wireless Hardware, Mobile

Fluid antenna systems (FASs) offer genuine simplicity for communication network design by eliminating expensive hardware overhead and reducing the complexity of access protocol architectures. Through the discovery of significant spatial diversity within a compact antenna space, FASs enable the implementation of reconfigurable-antenna-based architectures. However, current state-of-the-art studies rarely investigate the impact of finite blocklength constraints on FAS-based designs, leaving a gap in both analytical modeling and the establishment of a solid, universally applicable performance metric for finite blocklength fluid antenna systems (FBL-FAS). In this work, we focus on the study of FBL-FAS and, more importantly, derive a block error rate (BLER) bound that serves as a general and practical performance benchmark across various FAS architectures. The proposed BLER bound is computable both with and without an explicit statistical model, meaning that the BLER performance can be characterized analytically or empirically under model-aware or model-free system scenarios. Moreover, when the statistical model is known, the analytical results derived from the proposed BLER bound exhibit strong alignment with the empirical findings, demonstrating the remarkable simplicity, accuracy, and universality of the proposed BLER bound.

Country of Origin
🇪🇸 🇬🇧 🇨🇳 Spain, China, United Kingdom

Repos / Data Links

Page Count
6 pages

Category
Computer Science:
Information Theory