Quantum-Gated LiteSSD: A Parameter-Efficient Lightweight Hybrid Quantum-Classical Framework for Forward-Looking Sonar Object Detection

📅 2026-09-12
📈 Citations: 0
Influential: 0
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🤖 AI Summary
为解决前视声纳目标检测在嵌入式平台上的模型紧凑性问题,提出了一种参数高效的量子-经典混合框架Quantum-Gated LiteSSD,通过量子门控机制实现空间特征调制。
📝 Abstract
Forward-looking sonar object detection is essential for underwater perception, yet deployment on embedded platforms requires highly compact models. To address this challenge, we explore quantum computing and introduce Quantum-Gated LiteSSD, a parameter-efficient hybrid quantum--classical detector that reformulates QuCNet-style multi-circuit quantum processing as an identity-centered channel-gating mechanism for spatial feature modulation. Experiments on the Marine Debris Watertank dataset and UATD forward-looking sonar benchmarks demonstrate an effective parameter--accuracy trade-off. The proposed detector achieves 90.84% $\mathrm{mAP}_{50}$ on Watertank with approximately $62\times$ fewer parameters than YOLO26s and $164.3\times$ fewer parameters than SSD-VGG16. On UATD, the model achieves 70.37% $\mathrm{mAP}_{50}$ with only 0.150M parameters, making it approximately $4.1\times$ smaller than SSGA-YOLO while retaining meaningful multi-class detection capability.
Problem

Research questions and friction points this paper is trying to address.

Forward-Looking Sonar
Object Detection
Embedded Platforms
Compact Models
Innovation

Methods, ideas, or system contributions that make the work stand out.

Quantum-Gated
Parameter-Efficient
Hybrid Quantum-Classical
Channel-Gating Mechanism
Spatial Feature Modulation
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Niloy Kumar Mondal
Department of Computer Science and Engineering, Bangladesh University of Engineering and Technology, Dhaka 1000, Bangladesh
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Poulomi Sarker Puja
Department of Urban and Regional Planning, Khulna University of Engineering & Technology, Khulna 9203, Bangladesh