3 datasets found
  1. P

    Electric Wires Dataset Dataset

    • paperswithcode.com
    Updated Apr 17, 2025
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    (2025). Electric Wires Dataset Dataset [Dataset]. https://paperswithcode.com/dataset/electric-wires-dataset
    Explore at:
    Dataset updated
    Apr 17, 2025
    Description

    Description:

    πŸ‘‰ Download the dataset here

    The Electric Wires Dataset is a top-notch, automatically generate resource design specifically for the semantic segmentation of cable-like objects, with a special emphasis on electric wires. This versatile dataset is built to be domain-independent, making it suitable for a wide range of industrial applications. Whether in construction, industrial manufacturing, power distribution, or communication infrastructure, this dataset is tailor to meet the needs of sectors where accurately recognizing wires and similar objects is crucial.

    Dataset Generation Process:

    The Electric Wires Dataset is created using a unique procedure that ensures both precision and consistency across all images. The process starts by placing the target object, electric wires, against a monochromatic background. This method allows for easy removal of the background using the chroma-key technique. As a result, clear and accurate training masks are generated for the target object.

    Once the masks are generated, they can be combined with various backgrounds to produce a domain-independent dataset. This approach significantly reduces the reality gap, ensuring that the dataset remains applicable across different real-world scenarios. The process also includes extensive augmentation of the foreground images, enhancing the dataset's robustness and adaptability.

    Download Dataset

    Key Features:

    High-Quality Annotations: The dataset provides precise segmentation masks for electric wires, enabling accurate training of semantic segmentation models.

    Domain-Independence: By incorporating various backgrounds, the dataset is design to be used across multiple domains without the need for extensive domain-specific adjustments.

    Chroma-Key Technique: Utilizes the chroma-key technique to ensure clean and accurate separation of the target objects from the background.

    Augmentation: Includes a wide range of augment images, increasing the dataset's diversity and improving model generalization.

    Versatile Applications: Ideal for training models used in construction, industrial manufacturing, power distribution, and communication infrastructure, where wire recognition is essential.

    Applications:

    This dataset is particularly beneficial for developing Al models in the following areas:

    Industrial Automation: Improving the accuracy of robotic systems in recognizing and handling wires during assembly and manufacturing processes.

    Safety Monitoring: Enhancing surveillance systems to detect and monitor electric wires in various environments, reducing risks associated with electrical hazards.

    Infrastructure Maintenance: Assisting in the inspection and maintenance of power distribution networks and communication lines by accurately identifying wires in complex environments.

    Augmented Reality: Facilitating the development of AR systems that require precise recognition of wires for overlaying relevant information in industrial settings.

    Conclusion:

    The Electric Wires Dataset is a highly versatile and essential tool for training semantic segmentation models, particularly those focused on recognizing cable-like objects. With high-quality annotations and extensive validation, this dataset serves as a reliable resource for industries that need precise wire detection and segmentation. Moreover, its adaptability makes it valuable across various applications, ensuring accurate results in different contexts.

    This dataset is sourced from Kaggle

  2. h

    Electric-Wires-Dataset

    • huggingface.co
    Updated Apr 4, 2025
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    Globose Technology Solutions (2025). Electric-Wires-Dataset [Dataset]. https://huggingface.co/datasets/gtsaidata/Electric-Wires-Dataset
    Explore at:
    Dataset updated
    Apr 4, 2025
    Authors
    Globose Technology Solutions
    Description

    Description: πŸ‘‰ Download the dataset here The Electric Wires Dataset is a top-notch, automatically generate resource design specifically for the semantic segmentation of cable-like objects, with a special emphasis on electric wires. This versatile dataset is built to be domain-independent, making it suitable for a wide range of industrial applications. Whether in construction, industrial manufacturing, power distribution, or communication infrastructure, this dataset is tailor to meet the… See the full description on the dataset page: https://huggingface.co/datasets/gtsaidata/Electric-Wires-Dataset.

  3. g

    Electric Wires Dataset

    • gts.ai
    json
    Updated Aug 12, 2024
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    GTS (2024). Electric Wires Dataset [Dataset]. https://gts.ai/dataset-download/electric-wires-dataset/
    Explore at:
    jsonAvailable download formats
    Dataset updated
    Aug 12, 2024
    Dataset provided by
    GLOBOSE TECHNOLOGY SOLUTIONS PRIVATE LIMITED
    Authors
    GTS
    License

    CC0 1.0 Universal Public Domain Dedicationhttps://creativecommons.org/publicdomain/zero/1.0/
    License information was derived automatically

    Description

    The Electric Wires Dataset offers precise semantic segmentation of cable-like objects, perfect for industrial and infrastructure applications. This high-quality, domain-independent dataset includes detailed annotations.

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Share
FacebookFacebook
TwitterTwitter
Email
Click to copy link
Link copied
Close
Cite
(2025). Electric Wires Dataset Dataset [Dataset]. https://paperswithcode.com/dataset/electric-wires-dataset

Electric Wires Dataset Dataset

Explore at:
4 scholarly articles cite this dataset (View in Google Scholar)
Dataset updated
Apr 17, 2025
Description

Description:

πŸ‘‰ Download the dataset here

The Electric Wires Dataset is a top-notch, automatically generate resource design specifically for the semantic segmentation of cable-like objects, with a special emphasis on electric wires. This versatile dataset is built to be domain-independent, making it suitable for a wide range of industrial applications. Whether in construction, industrial manufacturing, power distribution, or communication infrastructure, this dataset is tailor to meet the needs of sectors where accurately recognizing wires and similar objects is crucial.

Dataset Generation Process:

The Electric Wires Dataset is created using a unique procedure that ensures both precision and consistency across all images. The process starts by placing the target object, electric wires, against a monochromatic background. This method allows for easy removal of the background using the chroma-key technique. As a result, clear and accurate training masks are generated for the target object.

Once the masks are generated, they can be combined with various backgrounds to produce a domain-independent dataset. This approach significantly reduces the reality gap, ensuring that the dataset remains applicable across different real-world scenarios. The process also includes extensive augmentation of the foreground images, enhancing the dataset's robustness and adaptability.

Download Dataset

Key Features:

High-Quality Annotations: The dataset provides precise segmentation masks for electric wires, enabling accurate training of semantic segmentation models.

Domain-Independence: By incorporating various backgrounds, the dataset is design to be used across multiple domains without the need for extensive domain-specific adjustments.

Chroma-Key Technique: Utilizes the chroma-key technique to ensure clean and accurate separation of the target objects from the background.

Augmentation: Includes a wide range of augment images, increasing the dataset's diversity and improving model generalization.

Versatile Applications: Ideal for training models used in construction, industrial manufacturing, power distribution, and communication infrastructure, where wire recognition is essential.

Applications:

This dataset is particularly beneficial for developing Al models in the following areas:

Industrial Automation: Improving the accuracy of robotic systems in recognizing and handling wires during assembly and manufacturing processes.

Safety Monitoring: Enhancing surveillance systems to detect and monitor electric wires in various environments, reducing risks associated with electrical hazards.

Infrastructure Maintenance: Assisting in the inspection and maintenance of power distribution networks and communication lines by accurately identifying wires in complex environments.

Augmented Reality: Facilitating the development of AR systems that require precise recognition of wires for overlaying relevant information in industrial settings.

Conclusion:

The Electric Wires Dataset is a highly versatile and essential tool for training semantic segmentation models, particularly those focused on recognizing cable-like objects. With high-quality annotations and extensive validation, this dataset serves as a reliable resource for industries that need precise wire detection and segmentation. Moreover, its adaptability makes it valuable across various applications, ensuring accurate results in different contexts.

This dataset is sourced from Kaggle

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