Approximate Belief-Selective Propagation Detector for Massive MIMO Systems

Wenyue Zhou, Zhenhao Ji, Zeqiong Tan, Zhuangzhuang You, Xiaosi Tan, Xiaohu You, Chuan Zhang · IEEE Transactions on Circuits and Systems I Regular Papers · 2024

When faced with challenging antenna configurations or high-order modulations in realistic propagation environments, the Belief Propagation (BP) MIMO detector outperforms its linear counterparts. To mitigate the error floor issue and lower the complexity, a revised BP detector, named the Belief-selective Propagation (BsP) detector, has recently emerged by selectively utilizing trusted incoming messages for updates. Despite those promising potentials, the straightforward hardware implementation of the BsP detector still suffers from high complexity and necessitates further optimization. To bridge the gap between the BsP algorithm and implementation, this paper introduces anapproximatebut implementation-friendly BsP detector called aBsP, based on which the very first BsP hardware is proposed. Two unexplored features:approximate initializationandsimplified message updatessave the complexity (more than$84$%) with acceptable performance penalization. Multi-level optimization techniques involving group-layered message updating, approximate arithmetic circuits, and hybrid-precise quantization are developed to boost the hardware efficiency A$128\times 8$$256$-QAM aBsP MIMO detector ASIC in$40$nm CMOS occupies an area of$0.68$mm$^2$and reaches a throughput of$790.52$Mbps. Benchmarking with the recent arts, this work achieves$1.08\times$area efficiency and$3.34\times$gate efficiency.

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