Engineering
Acquisition Time
25%
Color Correction
32%
Color Space
29%
Compressive Sensing
47%
Computational Complexity
45%
Conventional Method
48%
Deep Learning
50%
Demonstrates
100%
Disruptions
24%
Distributed Optimization
24%
Engineering
26%
Experimental Result
61%
Exposure Time
28%
Fourier Coefficient
32%
Fourier Ptychography
57%
Gradient Descent
32%
Ground Truth
32%
High Resolution
66%
Hyperspectral Data
24%
Image Enhancement
48%
Image Reconstruction
42%
Imaging Systems
38%
Joints (Structural Components)
33%
Light Condition
32%
Limitations
34%
Limited Resource
29%
Maximum Likelihood
24%
Metrics
30%
Multispectral Data
29%
Natural Image
61%
Obtains
77%
One Dimensional
29%
Phase Information
24%
Phase Retrieval
81%
Photodiode
24%
Ptychography
48%
Reference Image
24%
Regularization
61%
Sensing Mechanisms
64%
Sensing Method
32%
Signal-dependent Noise
40%
Signal-to-Noise Ratio
58%
Simulation Result
29%
Sparsity
77%
Spatial Spectrum
24%
Structural Similarity
29%
Structured Illumination Microscopy
24%
Target Scene
32%
Tasks
86%
Total Variation
26%
Computer Science
Acquisition Time
24%
Bandwidth Product
24%
Captured Image
24%
Color Correction
16%
Compressive Sensing
21%
Computational Complexity
51%
Computational Efficiency
16%
Conventional Method
32%
de-noising
24%
Deep Learning
22%
Demosaicing
36%
Depth Information
32%
Engine Framework
16%
Experimental Result
50%
Fourier Coefficient
32%
Gradient Descent
24%
High Throughput
21%
Image Acquisition
18%
Image Database
16%
Image Reconstruction
42%
Imaging Systems
27%
Importance Sampling
16%
Linear Mapping
16%
Mathematical Optimization
32%
maximum-likelihood
24%
Measurement Noise
24%
Multiple Scattering
16%
Multiplexing
56%
Neural Network
18%
noise signal
24%
Noise-to-Signal Ratio
68%
Object Detection
21%
Optical Network
29%
Optimization Framework
24%
Overlapping Image
16%
Pattern Structure
16%
Reconstruction Accuracy
30%
reconstruction algorithm
29%
Regularization
82%
Retrieval Algorithm
21%
Sampling Ratio
30%
Signal-dependent Noise
40%
Simulated Data
24%
Source Codes
40%
Sparsity
76%
Spatial Frequency
32%
Spatial Resolution
20%
super resolution
56%
Total Variation
32%
Varying Illumination
24%