ICLR 2026poster0 citations

LD-MoLE: Learnable Dynamic Routing for Mixture of LoRA Experts

Yuan Zhuang, Yi Shen, Yuexin Bian, Qing Su, Shihao Ji, Yuanyuan Shi, Fei Miao

Abstract

Recent studies have shown that combining parameter-efficient fine-tuning (PEFT) with mixture-of-experts (MoE) is an effective strategy for adapting large language models (LLMs) to the downstream tasks. However, most existing approaches rely on conventional TopK routing, which requires careful hyperparameter tuning and assigns a fixed number of experts to each token. In this work, we propose LD-MoLE, a Learnable Dynamic routing mechanism for Mixture of LoRA Experts that enables adaptive, token-dependent, and layer-wise expert allocation. Our method replaces the non-differentiable TopK selection with a differentiable routing function and a closed-form solution. Moreover, our design allows the model to adaptively determine the number of experts to activate for each token at different layers. In addition, we introduce an analytical sparsity control objective to regularize the number of activated experts. Extensive experiments on the Qwen3-1.7B and Llama-3.2-3B models show that LD-MoLE achieves the highest average scores compared to state-of-the-art baselines, across a diverse set of benchmarks. Our method not only achieves superior performance, but also demonstrates the ability to learn token-dependent and layer-wise expert allocation.

Mixture of ExpertsMixture of LoRA ExpertsDynamic routingFully differentiableLoRAMoE
BibTeX
@inproceedings{
zhuang2026ldmole,
title={{LD}-Mo{LE}: Learnable Dynamic Routing for Mixture of Lo{RA} Experts},
author={Yuan Zhuang and Yi Shen and Yuexin Bian and Qing Su and Shihao Ji and Yuanyuan Shi and Fei Miao},
booktitle={The Fourteenth International Conference on Learning Representations},
year={2026},
url={https://openreview.net/forum?id=4ST2YyTjI7}
}
LD-MoLE: Learnable Dynamic Routing for Mixture of LoRA Experts · ICLR 2026