Kunal Dhawan

dblp:228/6625 · DBLP profile ↗
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18ranked-venue papers
1as first author
16since 2021 · last 2026
0000-0002-5276-2475ORCID · verified

Domains — the database's venue-derived domains; a paper can count in several

Graphics, computer vision, multimedia, augmented reality and games · 14 · 1 first-author · 13 since 2021Artificial intelligence and machine learning · 11 · 1 first-author · 10 since 2021
YearPublicationVenuePosition
2026 Speech-Hands: A Self-Reflection Voice Agentic Approach to Speech Recognition and Audio Reasoning with Omni Perception
abstract
Zhen Wan, Chao-Han Huck Yang, Jinchuan Tian, Hanrong Ye, Ankita Pasad, Szu-Wei Fu, Arushi Goel, Ryo Hachiuma, Shizhe Diao, Kunal Dhawan, Sreyan Ghosh, Yusuke Hirota, Zhehuai Chen, Rafael Valle, Chenhui Chu, Shinji Watanabe, Boris Ginsburg, Yu-Chiang Frank Wang. Proceedings of the 64th Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers). 2026.
Chao-Han Huck Yang, Jinchuan Tian, Hanrong Ye, Ankita Pasad, Szu-Wei Fu, Arushi Goel, Ryo Hachiuma, Shizhe Diao, Kunal Dhawan, Sreyan Ghosh, Yusuke Hirota, Zhehuai Chen, Rafael Valle, Chenhui Chu, Shinji Watanabe 0001, Boris Ginsburg, Yu-Chiang Frank Wang
ACL (1)10
2025 Training and Inference Efficiency of Encoder-Decoder Speech Models
abstract
Attention encoder-decoder architecture is the backbone of several top performing foundation speech models: Whisper, Seamless, OWSM, and Canary-1B. However, reported compute requirements are prohibitive for many researchers. In this work, we seek to improve both training and inference efficiency. We argue that a major detrimental factor is the sampling strategy of sequential data. Negligence in mini-batch sampling leads to over 50% computation spent on padding. Using improved 2D bucketing combined with a batch size optimizer, we achieve 5x increase in average batch sizes for Canary-1B training, allowing 4x less GPUs or 2x shorter training time. Finally, the major inference bottleneck lies in autoregressive decoder steps. We show that transferring parameters from decoder to encoder results in 3x inference speedup while preserving accuracy. The training code and models are open-source with permissive licenses.
Piotr Zelasko, Kunal Dhawan, Daniel Galvez, Krishna C. Puvvada, Ankita Pasad, Travis M. Bartley, Nithin Rao Koluguri, Vitaly Lavrukhin, Jagadeesh Balam, Boris Ginsburg
ASRU2
2025 NEST: Self-supervised Fast Conformer as All-purpose Seasoning to Speech Processing Tasks
abstract
Self-supervised learning (SSL) has been proved to benefit a wide range of speech processing tasks, such as speech recognition/translation, speaker verification and diarization, etc. However, most of current speech SSL approaches are computationally expensive. In this paper, we introduce a simplified and more efficient SSL framework, termed as NeMo Encoder for Speech Tasks (NEST). Specifically, we adopt the FastConformer architecture with 8x sub-sampling rate, which is faster than Transformer or Conformer architectures. Instead of clusteringbased quantization, we use fixed random projection for its simplicity and effectiveness. We also implement a generalized noisy speech augmentation that teaches the model to disentangle the main speaker from noise or other speakers. Experiments show that NEST improves over existing self-supervised models and achieves new state-of-the-art performance on a variety of speech processing tasks, such as speech recognition/translation, speaker diarization, spoken language understanding, etc. Code and checkpoints are publicly available via NVIDIA NeMo framework123.
He Huang 0012, Taejin Park, Kunal Dhawan, Ivan Medennikov, Krishna C. Puvvada, Nithin Rao Koluguri, Jagadeesh Balam, Boris Ginsburg
ICASSP3
2025 META-CAT: Speaker-Informed Speech Embeddings via Meta Information Concatenation for Multi-talker ASR
abstract
We propose a novel end-to-end multi-talker automatic speech recognition (ASR) framework that enables both multi-speaker (MS) ASR and target-speaker (TS) ASR. Our proposed model is trained in a fully end-to-end manner, incorporating speaker supervision from a pre-trained speaker diarization module. We introduce an intuitive yet effective method for masking ASR encoder activations using output from the speaker supervision module, a technique we term Meta-Cat (meta-information concatenation), that can be applied to both MS-ASR and TS-ASR. Our results demonstrate that the proposed architecture achieves competitive performance in both MS-ASR and TS-ASR tasks, without the need for traditional methods, such as neural mask estimation or masking at the audio or feature level. Furthermore, we demonstrate a glimpse of a unified dual-task model which can efficiently handle both MS-ASR and TS-ASR tasks. Thus, this work illustrates that a robust end-to-end multi-talker ASR framework can be implemented with a streamlined architecture, obviating the need for the complex speaker filtering mechanisms employed in previous studies.
Jinhan Wang, Kunal Dhawan, Taejin Park, Myungjong Kim, Ivan Medennikov, He Huang 0012, Nithin Rao Koluguri, Jagadeesh Balam, Boris Ginsburg
ICASSP3
2025 Sortformer: A Novel Approach for Permutation-Resolved Speaker Supervision in Speech-to-Text Systems
abstract
Sortformer is an encoder-based speaker diarization model designed for supervising speaker tagging in speech-to-text models. Instead of relying solely on permutation invariant loss (PIL), Sortformer introduces Sort Loss to resolve the permutation problem, either independently or in tandem with PIL. In addition, we propose a streamlined multi-speaker speech-to-text architecture that leverages Sortformer for speaker supervision, embedding speaker labels into the encoder using sinusoidal kernel functions. This design addresses the speaker permutation problem through sorted objectives, effectively bridging timestamps and tokens to supervise speaker labels in the output transcriptions. Experiments demonstrate that Sort Loss can boost speaker diarization performance, and incorporating the speaker supervision from Sortformer improves multi-speaker transcription accuracy. We anticipate that the proposed Sortformer and multi-speaker architecture will enable the seamless integration of speaker tagging capabilities into foundational speech-to-text systems and multimodal large language models (LLMs), offering an easily adoptable and user-friendly mechanism to enhance their versatility and performance in speaker-aware tasks. The code and trained models are made publicly available through the NVIDIA NeMo Framework.
Taejin Park, Ivan Medennikov, Kunal Dhawan, He Huang 0012, Nithin Rao Koluguri, Krishna C. Puvvada, Jagadeesh Balam, Boris Ginsburg
ICML3
2025 SPGISpeech 2.0: Transcribed multi-speaker financial audio for speaker-tagged transcription
Raymond Grossman, Taejin Park, Kunal Dhawan, Andrew Titus, Sophia Zhi, Yulia Shchadilova, Jagadeesh Balam, Boris Ginsburg
INTERSPEECH3
2025 Word Level Timestamp Generation for Automatic Speech Recognition and Translation
Krishna C. Puvvada, Elena Rastorgueva, Zhehuai Chen, He Huang 0012, Shuoyang Ding, Kunal Dhawan, Hainan Xu, Jagadeesh Balam, Boris Ginsburg
INTERSPEECH7
2025 Streaming Sortformer: Speaker Cache-Based Online Speaker Diarization with Arrival-Time Ordering
Ivan Medennikov, Taejin Park, He Huang 0012, Kunal Dhawan, Jinhan Wang, Jagadeesh Balam, Boris Ginsburg
INTERSPEECH5
2025 Speaker Targeting via Self-Speaker Adaptation for Multi-talker ASR
Taejin Park, Ivan Medennikov, Jinhan Wang, Kunal Dhawan, He Huang 0012, Nithin Rao Koluguri, Jagadeesh Balam, Boris Ginsburg
INTERSPEECH5
2025 VoiceTextBlender: Augmenting Large Language Models with Speech Capabilities via Single-Stage Joint Speech-Text Supervised Fine-Tuning
abstract
Yifan Peng, Krishna C Puvvada, Zhehuai Chen, Piotr Zelasko, He Huang, Kunal Dhawan, Ke Hu, Shinji Watanabe, Jagadeesh Balam, Boris Ginsburg. Proceedings of the 2025 Conference of the Nations of the Americas Chapter of the Association for Computational Linguistics: Human Language Technologies (Volume 1: Long Papers). 2025.
Yifan Peng 0003, Krishna C. Puvvada, Zhehuai Chen, Piotr Zelasko, He Huang 0012, Kunal Dhawan, Shinji Watanabe 0001, Jagadeesh Balam, Boris Ginsburg
NAACL (Long Papers)6
2024 Enhancing Speaker Diarization with Large Language Models: A Contextual Beam Search Approach
abstract
Large language models (LLMs) have shown great promise for capturing contextual information in natural language processing tasks. We propose a novel approach to speaker diarization that incorporates the prowess of LLMs to exploit contextual cues in human dialogues. Our method builds upon an acoustic-based speaker diarization system by adding lexical information from an LLM in the inference stage. We model the multi-modal decoding process probabilistically and perform joint acoustic and lexical beam searches to incorporate cues from both modalities: audio and text. Our experiments demonstrate that infusing lexical knowledge from the LLM into an acoustics-only diarization system improves the overall speaker-attributed word error rate (SA-WER). The experimental results show that LLMs can provide complementary information to acoustic models for the speaker diarization task via the proposed beam search decoding approach showing up to 39.8% relative delta-SA-WER improvement from the baseline system. Thus, we substantiate that the proposed technique is able to exploit contextual information that is inaccessible to acoustics-only systems which is represented by speaker embeddings. In addition, these findings point to the potential of using LLMs to improve speaker diarization and other speech-processing tasks by capturing semantic and contextual cues.
Taejin Park, Kunal Dhawan, Nithin Rao Koluguri, Jagadeesh Balam
ICASSP2
2024 Discrete Audio Representation as an Alternative to Mel-Spectrograms for Speaker and Speech Recognition
abstract
Discrete audio representation, aka audio tokenization, has seen renewed interest driven by its potential to facilitate the application of text language modeling approaches in audio domain. To this end, various compression and representation-learning based tokenization schemes have been proposed. However, there is limited investigation into the performance of compression-based audio tokens compared to well-established mel-spectrogram features across various speaker and speech related tasks. In this paper, we evaluate compression based audio tokens on three tasks: Speaker Verification, Diarization and (Multi-lingual) Speech Recognition. Our findings indicate that (i) the models trained on audio tokens perform competitively, on average within 1% of mel-spectrogram features for all the tasks considered, and do not surpass them yet. (ii) these models exhibit robustness for out-of-domain narrowband data, particularly in speaker tasks. (iii) audio tokens allow for compression to 20x compared to mel-spectrogram features with minimal loss of performance in speech and speaker related tasks, which is crucial for low bit-rate applications, and (iv) the examined Residual Vector Quantization (RVQ) based audio tokenizer exhibits a low-pass frequency response characteristic, offering a plausible explanation for the observed results, and providing insight for future tokenizer designs.
Krishna C. Puvvada, Nithin Rao Koluguri, Kunal Dhawan, Jagadeesh Balam, Boris Ginsburg
ICASSP3
2024 Codec-ASR: Training Performant Automatic Speech Recognition Systems with Discrete Speech Representations
Kunal Dhawan, Nithin Rao Koluguri, Ante Jukic, Ryan Langman, Jagadeesh Balam, Boris Ginsburg
INTERSPEECH1
2024 Less is More: Accurate Speech Recognition & Translation without Web-Scale Data
Krishna C. Puvvada, Piotr Zelasko, He Huang 0012, Oleksii Hrinchuk, Nithin Rao Koluguri, Kunal Dhawan, Somshubra Majumdar, Elena Rastorgueva, Zhehuai Chen, Vitaly Lavrukhin, Jagadeesh Balam, Boris Ginsburg
INTERSPEECH6
2024 Resource-Efficient Adaptation of Speech Foundation Models for Multi-Speaker ASR
abstract
Speech foundation models have achieved state-of-the-art (SoTA) performance across various tasks, such as automatic speech recognition (ASR) in hundreds of languages. However, multi-speaker ASR remains a challenging task for these models due to data scarcity and sparsity. In this paper, we present approaches to enable speech foundation models to process and understand multi-speaker speech with limited training data. Specifically, we adapt a speech foundation model for the multi-speaker ASR task using only telephonic data. Remarkably, the adapted model also performs well on meeting data without any fine-tuning, demonstrating the generalization ability of our approach. We conduct several ablation studies to analyze the impact of different parameters and strategies on model performance. Our findings highlight the effectiveness of our methods. Results show that less parameters give better overall cpWER, which, although counterintuitive, provides insights into adapting speech foundation models for multi-speaker ASR tasks with minimal annotated data.
Kunal Dhawan, Taejin Park, Krishna C. Puvvada, Ivan Medennikov, Somshubra Majumdar, He Huang 0012, Jagadeesh Balam, Boris Ginsburg
SLT2
2024 Large Language Model Based Generative Error Correction: A Challenge and Baselines For Speech Recognition, Speaker Tagging, and Emotion Recognition
abstract
Given recent advances in generative AI technology, a key question is how large language models (LLMs) can enhance acoustic modeling tasks using text decoding results from a frozen, pretrained automatic speech recognition (ASR) model. To explore new capabilities in language modeling for speech processing, we introduce the generative speech transcription error correction (GenSEC) challenge. This challenge comprises three post-ASR language modeling tasks: (i) post-ASR transcription correction, (ii) speaker tagging, and (iii) emotion recognition. These tasks aim to emulate future LLM-based agents handling voice-based interfaces while remaining accessible to a broad audience by utilizing open pretrained language models or agent-based APIs. We also discuss insights from baseline evaluations, as well as lessons learned for designing future evaluations.
Chao-Han Huck Yang, Taejin Park, Yuan Gong 0001, Yuanchao Li, Zhehuai Chen, Chen Chen 0075, Kunal Dhawan, Piotr Zelasko, Chao Zhang 0031, Yun-Nung Chen, Yu Tsao 0001, Jagadeesh Balam, Boris Ginsburg, Sabato Marco Siniscalchi, Chng Eng Siong, Peter Bell 0001, Catherine Lai, Shinji Watanabe 0001, Andreas Stolcke
SLT9
2020 Novel textual features for language modeling of intra-sentential code-switching data
Ganji Sreeram, Kunal Dhawan, Rohit Sinha 0003
Comput. Speech Lang.2
2019 IITG-HingCoS corpus: A Hinglish code-switching database for automatic speech recognition
Ganji Sreeram, Kunal Dhawan, Rohit Sinha 0003
Speech Commun.2