Alert button
Picture for Mingzhe Wang

Mingzhe Wang

Alert button

When Fuzzing Meets LLMs: Challenges and Opportunities

Add code
Bookmark button
Alert button
Apr 25, 2024
Yu Jiang, Jie Liang, Fuchen Ma, Yuanliang Chen, Chijin Zhou, Yuheng Shen, Zhiyong Wu, Jingzhou Fu, Mingzhe Wang, ShanShan Li, Quan Zhang

Viaarxiv icon

Infinite Photorealistic Worlds using Procedural Generation

Add code
Bookmark button
Alert button
Jun 26, 2023
Alexander Raistrick, Lahav Lipson, Zeyu Ma, Lingjie Mei, Mingzhe Wang, Yiming Zuo, Karhan Kayan, Hongyu Wen, Beining Han, Yihan Wang, Alejandro Newell, Hei Law, Ankit Goyal, Kaiyu Yang, Jia Deng

Figure 1 for Infinite Photorealistic Worlds using Procedural Generation
Figure 2 for Infinite Photorealistic Worlds using Procedural Generation
Figure 3 for Infinite Photorealistic Worlds using Procedural Generation
Figure 4 for Infinite Photorealistic Worlds using Procedural Generation
Viaarxiv icon

Adaptive Task Offloading for Space Missions: A State-Graph-Based Approach

Add code
Bookmark button
Alert button
Nov 16, 2022
Jiaqi Cao, Shengli Zhang, Mingzhe Wang, Qingxia Chen, Houtian Wang, Naijin Liu

Figure 1 for Adaptive Task Offloading for Space Missions: A State-Graph-Based Approach
Figure 2 for Adaptive Task Offloading for Space Missions: A State-Graph-Based Approach
Figure 3 for Adaptive Task Offloading for Space Missions: A State-Graph-Based Approach
Figure 4 for Adaptive Task Offloading for Space Missions: A State-Graph-Based Approach
Viaarxiv icon

A Unified Framework of Surrogate Loss by Refactoring and Interpolation

Add code
Bookmark button
Alert button
Jul 27, 2020
Lanlan Liu, Mingzhe Wang, Jia Deng

Figure 1 for A Unified Framework of Surrogate Loss by Refactoring and Interpolation
Figure 2 for A Unified Framework of Surrogate Loss by Refactoring and Interpolation
Figure 3 for A Unified Framework of Surrogate Loss by Refactoring and Interpolation
Figure 4 for A Unified Framework of Surrogate Loss by Refactoring and Interpolation
Viaarxiv icon

Learning to Prove Theorems by Learning to Generate Theorems

Add code
Bookmark button
Alert button
Feb 17, 2020
Mingzhe Wang, Jia Deng

Figure 1 for Learning to Prove Theorems by Learning to Generate Theorems
Figure 2 for Learning to Prove Theorems by Learning to Generate Theorems
Figure 3 for Learning to Prove Theorems by Learning to Generate Theorems
Figure 4 for Learning to Prove Theorems by Learning to Generate Theorems
Viaarxiv icon

Speaker Naming in Movies

Add code
Bookmark button
Alert button
Sep 24, 2018
Mahmoud Azab, Mingzhe Wang, Max Smith, Noriyuki Kojima, Jia Deng, Rada Mihalcea

Figure 1 for Speaker Naming in Movies
Figure 2 for Speaker Naming in Movies
Figure 3 for Speaker Naming in Movies
Figure 4 for Speaker Naming in Movies
Viaarxiv icon

Premise Selection for Theorem Proving by Deep Graph Embedding

Add code
Bookmark button
Alert button
Sep 28, 2017
Mingzhe Wang, Yihe Tang, Jian Wang, Jia Deng

Figure 1 for Premise Selection for Theorem Proving by Deep Graph Embedding
Figure 2 for Premise Selection for Theorem Proving by Deep Graph Embedding
Figure 3 for Premise Selection for Theorem Proving by Deep Graph Embedding
Figure 4 for Premise Selection for Theorem Proving by Deep Graph Embedding
Viaarxiv icon

LINE: Large-scale Information Network Embedding

Add code
Bookmark button
Alert button
Mar 12, 2015
Jian Tang, Meng Qu, Mingzhe Wang, Ming Zhang, Jun Yan, Qiaozhu Mei

Figure 1 for LINE: Large-scale Information Network Embedding
Figure 2 for LINE: Large-scale Information Network Embedding
Figure 3 for LINE: Large-scale Information Network Embedding
Figure 4 for LINE: Large-scale Information Network Embedding
Viaarxiv icon