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  4. Graph Neural Network Based Semantic Mapping and Classification of Dataset for Robotics Applications

Graph Neural Network Based Semantic Mapping and Classification of Dataset for Robotics Applications

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202111041.pdf (1.06 MB)

Date

2023

Authors

Sharma, Devesh

Journal Title

Journal ISSN

Volume Title

Publisher

Dhirubhai Ambani Institute of Information and Communication Technology

Abstract

In the field of Robotics, deriving meaningful insights from spatial information ispivotal. Our objective was to work with 2D dataset as 3D datasets are relativelymore time consuming as our target is to objective was to do the foundation workfor real time inferences where speed is also an important key factor and so to getbest possible results, trying to improvise in accuracy and speed. Our focus liesin semantic mapping, semantic place classification where mobile robots interpretpartial, noisy sensory data. We delve into end-to-end techniques rooted in probabilisticdeep networks, studying Local-SPNs, Graph SPNs, and TopoNets. Additionally,we explore GNNs for semantic place classification. Our report providessuccinct insights into these methods, emphasizing their principles and implementations,including the local SPN model and GNN for semantic classification. Wegot our best accuracy with GNN 70.15% which is less compared to previous best80.14% but we achieved better results with speed as our GNN model was 1.89xfaster than the previous best avilable method. We also explore multi-level semanticplace classification through GNNs and consider the potential of GraphAttention Networks (GAT) for complex datasets. Here we did a proof of conceptthat multilevel semantic classification is possible with GNNs but it needs moreresearch in this area.

Description

Keywords

Neural Network, Semantic Mapping, Robotics Applications, 2D dataset, 3D datasets, Probabilistic deep networks, Graph Attention Networks

Citation

Sharma, Devesh (2023). Graph Neural Network Based Semantic Mapping and Classification of Dataset for Robotics Applications. Dhirubhai Ambani Institute of Information and Communication Technology. vii, 47 p. (Acc. # T01123).

URI

http://ir.daiict.ac.in/handle/123456789/1182

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M Tech Dissertations

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