🚀 Santp98/SBERT-bert-base-spanish-wwm-cased-2023-11-13-22-45
This is a sentence-transformers model that maps sentences and paragraphs to a 768-dimensional dense vector space, useful for tasks like clustering and semantic search.
🚀 Quick Start
This model simplifies the process of obtaining sentence embeddings, which are crucial for various natural language processing tasks.
✨ Features
- Sentence Mapping: Maps sentences and paragraphs to a 768-dimensional dense vector space.
- Versatile Use: Ideal for tasks such as clustering and semantic search.
📦 Installation
To use this model, you need to install sentence-transformers
:
pip install -U sentence-transformers
💻 Usage Examples
Basic Usage
If you have sentence-transformers installed, you can use the model as follows:
from sentence_transformers import SentenceTransformer
sentences = ["This is an example sentence", "Each sentence is converted"]
model = SentenceTransformer('Santp98/SBERT-bert-base-spanish-wwm-cased-2023-11-13-22-45')
embeddings = model.encode(sentences)
print(embeddings)
Advanced Usage
Without sentence-transformers, you can still use the model. First, pass your input through the transformer model, then apply the appropriate pooling operation on the contextualized word embeddings:
from transformers import AutoTokenizer, AutoModel
import torch
def mean_pooling(model_output, attention_mask):
token_embeddings = model_output[0]
input_mask_expanded = attention_mask.unsqueeze(-1).expand(token_embeddings.size()).float()
return torch.sum(token_embeddings * input_mask_expanded, 1) / torch.clamp(input_mask_expanded.sum(1), min=1e-9)
sentences = ['This is an example sentence', 'Each sentence is converted']
tokenizer = AutoTokenizer.from_pretrained('Santp98/SBERT-bert-base-spanish-wwm-cased-2023-11-13-22-45')
model = AutoModel.from_pretrained('Santp98/SBERT-bert-base-spanish-wwm-cased-2023-11-13-22-45')
encoded_input = tokenizer(sentences, padding=True, truncation=True, return_tensors='pt')
with torch.no_grad():
model_output = model(**encoded_input)
sentence_embeddings = mean_pooling(model_output, encoded_input['attention_mask'])
print("Sentence embeddings:")
print(sentence_embeddings)
📚 Documentation
Evaluation Results
For an automated evaluation of this model, see the Sentence Embeddings Benchmark: https://seb.sbert.net
Training
The model was trained with the following parameters:
DataLoader:
torch.utils.data.dataloader.DataLoader
of length 6321 with parameters:
{'batch_size': 86, 'sampler': 'torch.utils.data.sampler.RandomSampler', 'batch_sampler': 'torch.utils.data.sampler.BatchSampler'}
Loss:
__main__.CustomTripletLoss
with parameters:
{'distance_metric': 'TripletDistanceMetric.EUCLIDEAN', 'triplet_margin': 5}
Parameters of the fit()-Method:
{
"epochs": 2,
"evaluation_steps": 500,
"evaluator": "__main__.CustomTripletEvaluator",
"max_grad_norm": 1,
"optimizer_class": "<class 'torch.optim.adamw.AdamW'>",
"optimizer_params": {
"lr": 5e-05
},
"scheduler": "WarmupLinear",
"steps_per_epoch": null,
"warmup_steps": 10000,
"weight_decay": 0.01
}
Full Model Architecture
SentenceTransformer(
(0): Transformer({'max_seq_length': 512, 'do_lower_case': False}) with Transformer model: BertModel
(1): Pooling({'word_embedding_dimension': 768, 'pooling_mode_cls_token': False, 'pooling_mode_mean_tokens': True, 'pooling_mode_max_tokens': False, 'pooling_mode_mean_sqrt_len_tokens': False})
)
Citing & Authors