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Marco Pavone
Dalhousie University
,
Computer Science
Halifax, Nova Scotia, Canada B3H 4R17
h-index
h10-index
h5-index
9780
引用
49
H-指数
根据储存在 Pure 的刊物以及来自 Scopus 的引用文献数量计算
7902
引用
44
H-指数
根据储存在 Pure 的刊物以及来自 Scopus 的引用文献数量计算
3071
引用
28
H-指数
根据储存在 Pure 的刊物以及来自 Scopus 的引用文献数量计算
2007
2024
每年的科研成果
综述
指纹
网络
科研成果
(302)
新闻 / 媒体
(91)
相似简介
(5)
指纹
深入其中 Marco Pavone 为活跃的研究主题。这些主题标签来自此人的成果。它们共同形成唯一的指纹。
分类
加权
按字母排序
Computer Science
Adversarial Machine Learning
13%
Autonomous Driving
13%
Autonomous Vehicles
59%
Case Study
79%
Confidence Score
13%
Conformal Prediction
14%
Control Algorithm
19%
Convex Combination
19%
Convex Optimization
23%
Customer Demand
17%
Data Lifecycle
13%
Decentralized Control
13%
Decision-Making
22%
Distributed Algorithm
13%
Dynamic Programming
14%
Input Distribution
14%
Large Language Model
15%
Lifecycle Management
13%
Linear Program
16%
Logical Structure
13%
Motion Planning
94%
multi agent
15%
Multi Agent Systems
19%
Multiobjective
13%
Multiobjective Search
13%
multiple robot
21%
Network Flow Model
28%
Neural Network
15%
Nonlinear System
21%
Participatory Design
13%
Performance Metric
14%
Pickup and Delivery Problem
13%
Planning Algorithm
24%
Prediction Model
21%
Predictive Model
66%
Private Vehicle
13%
Reinforcement Learning
23%
Risk Constraint
16%
Robot
100%
Robotic Network
13%
Routing Problem
14%
Service Request
19%
Structural Property
13%
Systems Performance
16%
Temporal Logic
19%
Total Workload
13%
Transportation Network
36%
Urban Transportation System
13%
Vehicle Routing
29%
Warning System
13%
Keyphrases
AI Inference
13%
Autonomous Mobility-on-demand (AMoD)
61%
Autonomous Vehicles
10%
Calibration Metric
13%
Cloud Communication
8%
Cloud Robotics
19%
Communication Design
13%
Conformal Prediction
13%
Congestion
17%
Congestion-aware Routing
13%
Coordination Algorithms
15%
Deep Neural Network
11%
Design Experimentation
13%
Finite Sample
9%
Fisher Market
13%
Gradient Method
13%
Hardware Experiment
8%
Information Lifecycle Management
13%
Local Calibration
13%
Logical Structure
13%
Manhattan
13%
Mixed Traffic
13%
Mobility-on-demand
8%
Motion Planning
9%
Network Offload
13%
Network Structural Properties
13%
New York City
13%
Offloading Policy
13%
Offloading Strategy
8%
On-demand Systems
61%
OOD Detection
9%
Planetary Bodies
13%
Public Transit
10%
Refunding Scheme
13%
Robot Motion Planning
12%
Robotic Mobility
13%
Robotic Vehicle
15%
Robotics
16%
Sampling-based Motion Planning
9%
Self-driving Cars
17%
Shared Vehicles
9%
Signal Temporal Logic
13%
Spacecraft Motion
13%
System Optimum
9%
Temporal Logic Specification
13%
Traffic Assignment
13%
Traffic Routing
13%
Transportation Network
15%
Transportation System
8%
Wiltshire
9%