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SemViQA/bc-erniem-isedsc01

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SemViQA-BC: Vietnamese Binary Classification for Claim Verification

Model Description

SemViQA-BC is a core component of the SemViQA system, specifically designed for binary classification in Vietnamese fact-checking tasks. This model predicts whether a given claim is SUPPORTED or REFUTED based on retrieved evidence.

Model Information

SemViQA-BC is one of the key components of the two-step classification (TVC) approach in the SemViQA system. It focuses on binary classification, determining whether a claim is SUPPORTED or REFUTED. This step follows an initial three-class classification, where claims are first categorized as SUPPORTED, REFUTED, or NOT ENOUGH INFORMATION (NEI). By incorporating Cross-Entropy Loss and Focal Loss, SemViQA-BC enhances precision in claim verification, ensuring more accurate fact-checking results

Usage Example

Direct Model Usage

Python
# Install semviqa
!pip install semviqa

# Initalize a pipeline
import torch
import torch.nn.functional as F
from transformers import AutoTokenizer
from semviqa.tvc.model import ClaimModelForClassification

tokenizer = AutoTokenizer.from_pretrained("SemViQA/bc-erniem-isedsc01")
model = ClaimModelForClassification.from_pretrained("SemViQA/bc-erniem-isedsc01", num_labels=2)
claim = "Chiến tranh với Campuchia đã kết thúc trước khi Việt Nam thống nhất."
evidence = "Sau khi thống nhất, Việt Nam tiếp tục gặp khó khăn do sự sụp đổ và tan rã của đồng minh Liên Xô cùng Khối phía Đông, các lệnh cấm vận của Hoa Kỳ, chiến tranh với Campuchia, biên giới giáp Trung Quốc và hậu quả của chính sách bao cấp sau nhiều năm áp dụng."

inputs = tokenizer(
    claim,
    evidence,
    truncation="only_second",
    add_special_tokens=True,
    max_length=256,
    padding='max_length',
    return_attention_mask=True,
    return_token_type_ids=False,
    return_tensors='pt',
)

labels = ["SUPPORTED", "REFUTED"]

with torch.no_grad():
    outputs = model(**inputs)

logits = outputs["logits"]
probabilities = F.softmax(logits, dim=1).squeeze()

for i, (label, prob) in enumerate(zip(labels, probabilities.tolist()), start=1):
    print(f"{i}) {label} {prob:.4f}")
# 1) SUPPORTED 0.0007
# 2) REFUTED 0.9993

Evaluation Results

SemViQA-BC achieved impressive results on the test set, demonstrating accurate and efficient classification capabilities. The detailed evaluation of SemViQA-BC is presented in the table below.

<table> <thead> <tr> <th colspan="2">Method</th> <th colspan="4">ISE-DSC01</th> </tr> <tr> <th>ER</th> <th>VC</th> <th>Strict Acc</th> <th>VC Acc</th> <th>ER Acc</th> <th>Time (s)</th> </tr> </thead> <tbody> <tr> <td rowspan="3">TF-IDF</td> <td>InfoXLM<sub>large</sub></td> <td>73.59</td> <td>78.08</td> <td>76.61</td> <td>378</td> </tr> <tr> <td>XLM-R<sub>large</sub></td> <td>75.61</td> <td>80.50</td> <td>78.58</td> <td>366</td> </tr> <tr> <td>Ernie-M<sub>large</sub></td> <td>78.19</td> <td>81.69</td> <td>80.65</td> <td>403</td> </tr> <tr> <td rowspan="3">BM25</td> <td>InfoXLM<sub>large</sub></td> <td>72.09</td> <td>77.37</td> <td>75.04</td> <td>320</td> </tr> <tr> <td>XLM-R<sub>large</sub></td> <td>73.94</td> <td>79.37</td> <td>76.95</td> <td>333</td> </tr> <tr> <td>Ernie-M<sub>large</sub></td> <td>76.58</td> <td>80.76</td> <td>79.02</td> <td>381</td> </tr> <tr> <td rowspan="3">SBert</td> <td>InfoXLM<sub>large</sub></td> <td>71.20</td> <td>76.59</td> <td>74.15</td> <td>915</td> </tr> <tr> <td>XLM-R<sub>large</sub></td> <td>72.85</td> <td>78.78</td> <td>75.89</td> <td>835</td> </tr> <tr> <td>Ernie-M<sub>large</sub></td> <td>75.46</td> <td>79.89</td> <td>77.91</td> <td>920</td> </tr> <tr> <th colspan="1">QA-based approaches</th> <th colspan="1">VC</th> <th colspan="4"></th> </tr> <tr> <td rowspan="3">ViMRC<sub>large</sub></td> <td>InfoXLM<sub>large</sub></td> <td>54.36</td> <td>64.14</td> <td>56.84</td> <td>9798</td> </tr> <tr> <td>XLM-R<sub>large</sub></td> <td>53.98</td> <td>66.70</td> <td>57.77</td> <td>9809</td> </tr> <tr> <td>Ernie-M<sub>large</sub></td> <td>56.62</td> <td>62.19</td> <td>58.91</td> <td>9833</td> </tr> <tr> <td rowspan="3">InfoXLM<sub>large</sub></td> <td>InfoXLM<sub>large</sub></td> <td>53.50</td> <td>63.83</td> <td>56.17</td> <td>10057</td> </tr> <tr> <td>XLM-R<sub>large</sub></td> <td>53.32</td> <td>66.70</td> <td>57.25</td> <td>10066</td> </tr> <tr> <td>Ernie-M<sub>large</sub></td> <td>56.34</td> <td>62.36</td> <td>58.69</td> <td>10078</td> </tr> <tr> <th colspan="2">LLM</th> <th colspan="4"></th> </tr> <tr> <td colspan="2">Qwen2.5-1.5B-Instruct</td> <td>59.23</td> <td>66.68</td> <td>65.51</td> <td>19780</td> </tr> <tr> <td colspan="2">Qwen2.5-3B-Instruct</td> <td>60.87</td> <td>66.92</td> <td>66.10</td> <td>31284</td> </tr> <tr> <th colspan="1">LLM</th> <th colspan="1">VC</th> <th colspan="4"></th> </tr> <tr> <td rowspan="3">Qwen2.5-1.5B-Instruct</td> <td>InfoXLM<sub>large</sub></td> <td>64.40</td> <td>68.37</td> <td>66.49</td> <td>19970</td> </tr> <tr> <td>XLM-R<sub>large</sub></td> <td>64.66</td> <td>69.63</td> <td>66.72</td> <td>19976</td> </tr> <tr> <td>Ernie-M<sub>large</sub></td> <td>65.70</td> <td>68.37</td> <td>67.33</td> <td>20003</td> </tr> <tr> <td rowspan="3">Qwen2.5-3B-Instruct</td> <td>InfoXLM<sub>large</sub></td> <td>65.72</td> <td>69.66</td> <td>67.51</td> <td>31477</td> </tr> <tr> <td>XLM-R<sub>large</sub></td> <td>66.12</td> <td>70.44</td> <td>67.83</td> <td>31483</td> </tr> <tr> <td>Ernie-M<sub>large</sub></td> <td>67.48</td> <td>70.77</td> <td>68.75</td> <td>31512</td> </tr> <tr> <th colspan="1">SER Faster (ours)</th> <th colspan="1">TVC (ours)</th> <th colspan="4"></th> </tr> <tr> <td>TF-IDF + ViMRC<sub>large</sub></td> <td>Ernie-M<sub>large</sub></td> <td style="color:blue">78.32</td> <td style="color:blue">81.91</td> <td style="color:blue">80.26</td> <td style="color:blue">995</td> </tr> <tr> <td>TF-IDF + InfoXLM<sub>large</sub></td> <td>Ernie-M<sub>large</sub></td> <td style="color:blue">78.37</td> <td style="color:blue">81.91</td> <td style="color:blue">80.32</td> <td style="color:blue">925</td> </tr> <tr> <th colspan="1">SER (ours)</th> <th colspan="1">TVC (ours)</th> <th colspan="4"></th> </tr> <tr> <td rowspan="3">TF-IDF + ViMRC<sub>large</sub></td> <td>InfoXLM<sub>large</sub></td> <td>75.13</td> <td>79.54</td> <td>76.87</td> <td>5191</td> </tr> <tr> <td>XLM-R<sub>large</sub></td> <td>76.71</td> <td>81.65</td> <td>78.91</td> <td>5219</td> </tr> <tr> <td>Ernie-M<sub>large</sub></td> <td><strong>78.97</strong></td> <td><strong>82.54</strong></td> <td><strong>80.91</strong></td> <td>5225</td> </tr> <tr> <td rowspan="3">TF-IDF + InfoXLM<sub>large</sub></td> <td>InfoXLM<sub>large</sub></td> <td>75.13</td> <td>79.60</td> <td>76.87</td> <td>5175</td> </tr> <tr> <td>XLM-R<sub>large</sub></td> <td>76.74</td> <td>81.71</td> <td>78.95</td> <td>5200</td> </tr> <tr> <td>Ernie-M<sub>large</sub></td> <td><strong>78.97</strong></td> <td>82.49</td> <td><strong>80.91</strong></td> <td>5297</td> </tr> </tbody> </table>

Citation

If you use SemViQA-BC in your research, please cite:

bibtex
@misc{tran2025semviqasemanticquestionanswering,
      title={SemViQA: A Semantic Question Answering System for Vietnamese Information Fact-Checking}, 
      author={Dien X. Tran and Nam V. Nguyen and Thanh T. Tran and Anh T. Hoang and Tai V. Duong and Di T. Le and Phuc-Lu Le},
      year={2025},
      eprint={2503.00955},
      archivePrefix={arXiv},
      primaryClass={cs.CL},
      url={https://arxiv.org/abs/2503.00955}, 
}

🔗 Paper Link: SemViQA on arXiv 🔗 Source Code: GitHub - SemViQA

About

Built by Dien X. Tran ![LinkedIn](https://www.linkedin.com/in/xndien2004/) For more details, visit the project repository. ![GitHub stars](https://github.com/DAVID-NGUYEN-S16/SemViQA)