paper-with-me

Papers

PLCNet: Patch-wise Lane Correction Network for Automatic Lane Correction in High-definition Maps

2024-01-25 · Haiyang Peng, Yi Zhan, Benkang Wang, Hongtao Zhang

In High-definition (HD) maps, lane elements constitute the majority of components and demand stringent localization requirements to ensure safe vehicle navigation. Vision lane detection with LiDAR position assignment is a prevalent method to acquire initial lanes for HD maps. However, due to incorrect vision detection and coarse camera-LiDAR calibration, initial lanes may deviate from their true positions within an uncertain range. To mitigate the need for manual lane correction, we propose a patch-wise lane correction network (PLCNet) to automatically correct the positions of initial lane points in local LiDAR images that are transformed from point clouds. PLCNet first extracts multi-scale image features and crops patch (ROI) features centered at each initial lane point. By applying ROIAlign, the fix-sized ROI features are flattened into 1D features. Then, a 1D lane attention module is devised to compute instance-level lane features with adaptive weights. Finally, lane correction offsets are inferred by a multi-layer perceptron and used to correct the initial lane positions. Considering practical applications, our automatic method supports merging local corrected lanes into global corrected lanes. Through extensive experiments on a self-built dataset, we demonstrate that PLCNet achieves fast and effective initial lane correction.

📄 PDF Abstract BibTeX arXiv:2401.14024

Code (0)

등록된 구현이 없습니다.

Tasks

Lane Detection

Similar Papers 제목 키워드 기반

BS-PLCNet 2: Two-stage Band-split Packet Loss Concealment Network with Intra-model Knowledge Distillation

2024-06-10 · Zihan Zhang, Xianjun Xia, Chuanzeng Huang, Yijian Xiao 외

Audio packet loss is an inevitable problem in real-time speech communication. A band-split packet loss concealment network (BS-PLCNet) targeting full-band signals was recently proposed. Although it performs superiorly in…

Knowledge DistillationPacket Loss Concealment

BS-PLCNet: Band-split Packet Loss Concealment Network with Multi-task Learning Framework and Multi-discriminators

2024-01-08 · Zihan Zhang, Jiayao Sun, Xianjun Xia, Chuanzeng Huang 외

Packet loss is a common and unavoidable problem in voice over internet phone (VoIP) systems. To deal with the problem, we propose a band-split packet loss concealment network (BS-PLCNet). Specifically, we split the full-…

Automatic Speech RecognitionAutomatic Speech Recognition (ASR)Multi-Task LearningPacket Loss Concealment+2

tPLCnet: Real-time Deep Packet Loss Concealment in the Time Domain Using a Short Temporal Context

2022-04-04 · Nils L. Westhausen, Bernd T. Meyer

This paper introduces a real-time time-domain packet loss concealment (PLC) neural-network (tPLCnet). It efficiently predicts lost frames from a short context buffer in a sequence-to-one (seq2one) fashion. Because of its…

Packet Loss Concealment

FlanEC: Exploring Flan-T5 for Post-ASR Error Correction

2025-01-22 · Moreno La Quatra, Valerio Mario Salerno, Yu Tsao, Sabato Marco Siniscalchi

In this paper, we present an encoder-decoder model leveraging Flan-T5 for post-Automatic Speech Recognition (ASR) Generative Speech Error Correction (GenSEC), and we refer to it as FlanEC. We explore its application with…

Automatic Speech RecognitionAutomatic Speech Recognition (ASR)DecoderSentence+2

Patchwork: Concentric Zone-based Region-wise Ground Segmentation with Ground Likelihood Estimation Using a 3D LiDAR Sensor

2021-08-12 · Hyungtae Lim, Minho Oh, Hyun Myung

Ground segmentation is crucial for terrestrial mobile platforms to perform navigation or neighboring object recognition. Unfortunately, the ground is not flat, as it features steep slopes; bumpy roads; or objects, such a…

Object RecognitionSegmentation