ODIA routes 60% of function-calling traffic in a music app to a small 1.3B model, reducing expected latency by 45% and median latency by 78%.
Zero-Shot Learners for Natural Language Understanding via a Unified Multiple Choice Perspective
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abstract
We propose a new paradigm for zero-shot learners that is format agnostic, i.e., it is compatible with any format and applicable to a list of language tasks, such as text classification, commonsense reasoning, coreference resolution, and sentiment analysis. Zero-shot learning aims to train a model on a given task such that it can address new learning tasks without any additional training. Our approach converts zero-shot learning into multiple-choice tasks, avoiding problems in commonly used large-scale generative models such as FLAN. It not only adds generalization ability to models but also significantly reduces the number of parameters. Our method shares the merits of efficient training and deployment. Our approach shows state-of-the-art performance on several benchmarks and produces satisfactory results on tasks such as natural language inference and text classification. Our model achieves this success with only 235M parameters, which is substantially smaller than state-of-the-art models with billions of parameters. The code and pre-trained models are available at https://github.com/IDEA-CCNL/Fengshenbang-LM .
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ODIA: Oriented Distillation for Inline Acceleration of LLM-based Function Calling
ODIA routes 60% of function-calling traffic in a music app to a small 1.3B model, reducing expected latency by 45% and median latency by 78%.