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Yi Wu
Professor of Engineering
,
School of Engineering (Behrend)
h-index
411
Citations
12
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2002
2020
Research activity per year
Overview
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Research output
(34)
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(6)
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Dive into the research topics where Yi Wu is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Engineering
Blood Pump
97%
Adaptive Controller
89%
Simulation Result
62%
Control System
56%
Experimental Result
42%
Test Environment
37%
Reference Signal
35%
Mechanical Engineering
33%
Physiological Condition
32%
Systems Dynamics
30%
Parameter Estimation
29%
Parameter Estimate
29%
Flow Speed
29%
Estimation Scheme
29%
Estimation Error
29%
Numerical Solution
29%
Pump Head
29%
Model System
29%
Simulation Model
25%
One Dimensional
25%
Controller Design
24%
Circulation System
23%
Good Performance
22%
Response Time
20%
Simulation Program
19%
Pressure Flow
19%
Biomechanics
18%
Engineering Student
18%
Computer Simulation
17%
Rotational Speed
17%
Seniors
17%
Predictive Control
14%
Control Input
14%
Solving Skill
14%
Performance Test
14%
Direct Numerical Simulation
14%
Transient Analysis
14%
Intrinsic Parameter
14%
Vibration Problem
14%
Lumped Parameter
14%
Pressure Rise
14%
Computer Simulation Study
14%
Solution Method
14%
Pump Performance
14%
Charge Density
14%
Nonlinear Function
14%
Pump Pressure
14%
Test System
14%
Keyphrases
Left Ventricular Assist Device
100%
Controller
66%
Adaptive Controller
64%
Aortic Pressure
50%
Left Ventricular Dysfunction
49%
Congestive Heart Failure
41%
Human Circulatory System
38%
Continuous-flow Left Ventricular Assist Device (CF-LVAD)
32%
Hemodynamic Parameters
31%
Heart Failure Patients
30%
Speed-flow Relationships
29%
Modeling for Control
29%
Simulation Study
29%
Model Estimation
29%
Interactive Simulation
29%
Physiologic Range
28%
Cardiovascular System
27%
Charge Density Wave
26%
Left Ventricle
26%
Circulatory System
24%
Flow Controller
22%
Human Circulation
22%
Parameter Estimation
20%
Left Ventricular Function
19%
Dynamic Course
18%
Blood Pump
18%
Controller Design
18%
Cardiac Assist Devices
17%
Pump Parameters
17%
Physiological Condition
16%
Reference Signal
15%
System Dynamics
15%
Mechanical Engineering
15%
Monte Carlo Method
14%
Radiative Transfer
14%
High-order
14%
Flow Control
14%
Direct numerical Simulation
14%
Rotary Blood Pump
14%
Neural Predictive Control
14%
Dynamic Exercise
14%
Rotary
14%
Preload
14%
Engineering Business
14%
Vibration Problems
14%
Problem Solving
14%
Cavopulmonary
14%
Semimetal
14%
Fontan Physiology
14%
Total Cavopulmonary Connection
14%