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Sheng Cheng

24 accepted papers

2026

Failure Detection and Recovery for Quadrotors in the Presence of Severe Rotor Failures With Multiple Model $\mathcal {L}_{1}$ Adaptive Controller

RA-L 2026

Over the last few decades, quadrotors proved to be a viable platform for improving efficiency and achieving cost savings in a variety of industries, and yet the safety of flight remains a major challenge to be guaranteed, especially in the presence of rotor failures. In this paper, we revisit the <i

Cited by 0SourceScholar
2026

MUSE: Multimodal Uncertainty Quantification of State Estimation

ICRA 2026poster

Accurate visual state estimation has been a central topic in robotics with a wide range of applications in robot navigation, autonomous driving, and autonomous flight. Recent advances in robot perception have led to significant improvements in the accuracy and robustness of state estimation, yet a f…

2026

Real-Time Linear MPC for Quadrotors on SE(3): An Analytical Koopman-Based Realization

ICRA 2026poster

This letter presents an analytical linear parameter- varying (LPV) representation of quadrotor dynamics utilizing Koopman theory, facilitating computationally efficient linear model predictive control (LMPC) for real-time trajectory track- ing. By leveraging carefully designed Koopman observables, t…

2026

Throw Maneuver: Exact Trajectories for Invariant Target Hitting in Robotic Throwing

ICRA 2026poster

Robots can throw objects to distant targets using gravity, with applications ranging from material transport to firefighting. Existing approaches typically adopt a singleton throw formulation, where the carrier must reach a specific position–velocity configuration at the moment of throw. This relian…

Cited by 0Scholar
2025

Autotuning Bipedal Locomotion MPC with GRFM-Net for Efficient Sim-to-Real Transfer

IROS 2025

Bipedal locomotion control is essential for humanoid robots to navigate complex, human-centric environments. While optimization-based control designs are popular for integrating sophisticated models of humanoid robots, they often require labor-intensive manual tuning. In this work, we address the ch

Cited by 1SourceScholar
2025

BEVDiffuser: Plug-and-Play Diffusion Model for BEV Denoising with Ground-Truth Guidance

CVPR 2025highlight

Bird's-eye-view (BEV) representations play a crucial role in autonomous driving tasks. Despite recent advancements in BEV generation, inherent noise, stemming from sensor limitations and the learning process, remains largely unaddressed, resulting in suboptimal BEV representations that adversely imp…

Cited by 2SourcePDFScholar
2025

Bridging Context Gaps: Leveraging Coreference Resolution for Long Contextual Understanding

ICLR 2025poster

Large language models (LLMs) have shown remarkable capabilities in natural language processing; however, they still face difficulties when tasked with understanding lengthy contexts and executing effective question answering. These challenges often arise due to the complexity and ambiguity present i…

2025

DP-MemArc: Differential Privacy Transfer Learning for Memory Efficient Language Models

AAAI 2025technical

Large language models have repeatedly shown outstanding performance across diverse applications. However, deploying these models can inadvertently risk user privacy. The significant memory demands during training pose a major challenge in terms of resource consumption. This substantial size places a…

Cited by 0SourcePDFScholar
2025

DiffCoTune: Differentiable Co-Tuning for Cross-Domain Robot Control

RA-L 2025

The deployment of robot controllers is hindered by modeling discrepancies due to necessary simplifications for computational tractability or inaccuracies in data-generating simulators. Such discrepancies typically require ad-hoc tuning to meet the desired performance, thereby ensuring successful tra

Cited by 0SourceScholar
2025

Geometric Tracking Control of Omnidirectional Multirotors for Aggressive Maneuvers

RA-L 2025

An omnidirectional multirotor has the maneuverability of decoupled translational and rotational motions, superseding the traditional multirotors' motion capability. Such maneuverability is achieved due to the ability of the omnidirectional multirotor to frequently alter the thrust amplitude and dire

Cited by 10SourceScholar
2025

Real-Time Linear MPC for Quadrotors on SE(3): An Analytical Koopman-Based Realization

RA-L 2025

This letter presents an analytical linear parameter-varying (LPV) representation of quadrotor dynamics utilizing Koopman theory, facilitating computationally efficient linear model predictive control (LMPC) for real-time trajectory tracking. By leveraging carefully designed Koopman observables, the

Cited by 6SourceScholar
2025

Tool-Planner: Task Planning with Clusters across Multiple Tools

ICLR 2025poster

Large language models (LLMs) have demonstrated exceptional reasoning capabilities, enabling them to solve various complex problems. Recently, this ability has been applied to the paradigm of tool learning. Tool learning involves providing examples of tool usage and their corresponding functions, all…

2024

An Optimization-Based Planner with B-spline Parameterized Continuous-Time Reference Signals

IROS 2024poster

For the cascaded planning and control modules implemented for robot navigation, the frequency gap between the planner and controller has received limited attention. In this study, we introduce a novel B-spline parameterized optimization-based planner (BSPOP) designed to address the frequency gap cha…

Cited by 1SourceScholar
2024

DiffTune-MPC: Closed-Loop Learning for Model Predictive Control

RA-L 2024

Model predictive control (MPC) has been applied to many platforms in robotics and autonomous systems for its capability to predict a system's future behavior while incorporating constraints that a system may have. To enhance the performance of a system with an MPC controller, one can manually tune t

Cited by 25SourceScholar
2024

ECLIPSE: A Resource-Efficient Text-to-Image Prior for Image Generations

CVPR 2024poster

Text-to-image (T2I) diffusion models notably the unCLIP models (e.g. DALL-E-2) achieve state-of-the-art (SOTA) performance on various compositional T2I benchmarks at the cost of significant computational resources. The unCLIP stack comprises T2I prior and diffusion image decoder. The T2I prior model…

Cited by 21SourcePDFScholar
2024

Precision or Recall? An Analysis of Image Captions for Training Text-to-Image Generation Model

EMNLP 2024finding

Despite advancements in text-to-image models, generating images that precisely align with textual descriptions remains challenging due to misalignment in training data. In this paper, we analyze the critical role of caption precision and recall in text-to-image model training. Our analysis of human-…

2024

SecCoder: Towards Generalizable and Robust Secure Code Generation

EMNLP 2024main

After large models (LMs) have gained widespread acceptance in code-related tasks, their superior generative capacity has greatly promoted the application of the code LM. Nevertheless, the security of the generated code has raised attention to its potential damage. Existing secure code generation met…

Cited by 0SourcePDFScholar
2024

TripletCLIP: Improving Compositional Reasoning of CLIP via Synthetic Vision-Language Negatives

NeurIPS 2024poster

Contrastive Language-Image Pretraining (CLIP) models maximize the mutual information between text and visual modalities to learn representations. This makes the nature of the training data a significant factor in the efficacy of CLIP for downstream tasks. However, the lack of compositional diversity…

2024

WOUAF: Weight Modulation for User Attribution and Fingerprinting in Text-to-Image Diffusion Models

CVPR 2024poster

The rapid advancement of generative models facilitating the creation of hyper-realistic images from textual descriptions has concurrently escalated critical societal concerns such as misinformation. Although providing some mitigation traditional fingerprinting mechanisms fall short in attributing re…

2023

Simultaneous Spatial and Temporal Assignment for Fast UAV Trajectory Optimization Using Bilevel Optimization

RA-L 2023

In this letter, we propose a framework for fast trajectory planning for unmanned aerial vehicles (UAVs). Our framework is reformulated from an existing bilevel optimization, in which the lower-level problem solves for the optimal trajectory with a fixed time allocation, whereas the upper-level probl

Cited by 8SourceScholar
2022

L1Adaptive Augmentation for Geometric Tracking Control of Quadrotors

ICRA 2022poster

This paper introduces an LL1adaptive control aug-mentation for geometric tracking control of quadrotors. In the proposed design, the LL 1 augmentation handles nonlinear (time-and state-dependent) uncertainties in the quadrotor dynamics without assuming or enforcing parametric structures, while the b…

Cited by 45SourceScholar
2020

Cooperative Mapping and Target Search Over an Unknown Occupancy Graph Using Mutual Information

RA-L 2020

A cooperative mapping and target-search algorithm is presented for detecting a single moving ground target in an urban environment that is initially unknown to a team of autonomous quadrotors equipped with noisy, range-limited sensors. The target moves according to a biased random-walk model, and se

Cited by 19SourceScholar