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CE6-related: An LFNST Index Signaling with Bin Prediction
CE6-related: On LFNST Support Patterns
CE6-related: Optimized LFNST matrices for VTM-6.0
CE6-related: Optimized LFNST matrices for CE6-2.1
Non-CE6: A Simplification for MTS Index Signaling
CE1-1.2 and CE1-2.1: Simplification of CABAC initialization process
Non-CE6: LFNST Signaling at the TU Level
Non-CE6: An Improved Context Modeling for LFNST
CE6-related: Latency reduction for LFNST signalling
Non-CE6: An MTS-based Restriction for LFNST beyond Transform Skip
Context memory reduction via selective adaptation
CE6-related: Applying LFNST Only for Top-Left Subblocks
Non-CE7: A Simplified CBF Coding for Luma and Chroma
Non-CE6: Combined Test of JVET-N0172/JVET-N0375/JVET-N0419/JVET-N0420 on Unification of Implicit Transform Selection
Non-CE6: Efficient separable Multi-Transform-Selection (MTS) without zero-out
Simplification of CABAC initialization process
Non-CE6: A Simplification of Implicit Transform Selection in Intra-subblock Partitioning
Non-CE6: A Simplification of Implicit MTS
Context Reduction for CABAC in VVC
CE6-related: Software tool for computing transform throughput
CE6-related: Efficient computation of MTS transform combinations
CE6: Efficient Implementations of MTS with Transform Adjustments (tests 1.4a-d)
CE5: Per-context CABAC initialization with single window (Test 5.1.4)
CE5: Per-context CABAC initialization with double windows (Test 5.1.3)
CE6: Summary Report on Transforms and Transform Signaling
CE5: Summary report on the Arithmetic Coding Engine
CE6: MTS support for large rectangular blocks (Test 6.3.2)
CE3/6-related: Unification of RQT-like transform partitioning for intra and inter blocks
Description of Core Experiment 6 (CE6): Transforms and transform signaling
Description of Core Experiment 5 (CE5): Arithmetic Coding Engine
CE6: RQT-like transform partitioning for inter blocks (Test 6.4.2)
CE6: Replacement of 4-point DST7/DCT8 with DST4/DCT4 in MTS (Test 6.1.6)
CE5: Report of throughput analysis of CE5 contributions (CE5.2)
CE6-related: MTS with 4-point DST/DCT-4 and large block support
CE6-related: Low-complexity approximations with 8-bit Transform Adjustment Filters (TAF)
CE5-related: CE5.1.6 (JVET-L0115) with 10 and 14 bits probability precision for short and long windows
CE6: Summary Report on Transforms and Transform Signalling
CE6.1.6: Efficient Implementations of AMT with Transform Adjustment Filters (TAF)
CE5: Summary report on the Arithmetic Coding Engine
CE5: Per-context CABAC initialization with single window (Test 5.1.7)
CE5: Per-context CABAC initialization with double windows (Test 5.1.6)
CE6.3.3: Secondary Transforms Coupled with a Simplified Primary Transformation
Description of Core Experiment 6 (CE6): Transforms and transform signaling
CE5: Binary arithmetic coding range update with small table or short multiplications (Test 5.2.4)
Description of Core Experiment 5 (CE5): Arithmetic Coding Engine
CE3: Simplified PDPC (Test 2.4.1)
CE6: Summary Report on Transforms and Transform Signalling
CE3-related: Combining CE3-5.2.5 on using two rows of reference lines for prediction, CE3-2.4.1 on PDPC and 65 angular intra modes
CE5: Summary report of CE on Arithmetic Coding Engine
CE6-related: Secondary Transforms Coupled with a Simplified Primary Transformation
CE6.1.2: Efficient Implementations of AMT with Transform Adjustment Stages
CE6.2.2: Hierarchically Structured Matrix-based Transforms for NSST
CE6.1.1: Extended AMT
CE5-related: Context state memory reduction
CE5: Combined Arithmetic Coding Tools (test CE 5.1)
CE5: Binary Arithmetic Coding Range Update with Small Table or Short Multiplications (test B1)
CE5: CABAC probability initialization from previous inter frames (test C1)
CE5: Per-context CABAC initialization with double-windows (test A1)
Description of Core Experiment 5 (CE5): Arithmetic Coding Engine
Description of Core Experiment 6 (CE6): Transforms and transform signalling
Complexity Reduction for Adaptive Multiple Transforms (AMT) using Adjustment Stages
Non-Separable Secondary Transform Implementations with Reduced Memory via Hierarchically Structured Matrix-based Transforms
Extension of Simplified PDPC to Diagonal Intra Modes
Description of SDR, HDR and 360° video coding technology proposal by Qualcomm and Technicolor – low and high complexity versions
Partition only software of the video coding technology proposal by Qualcomm and Technicolor
Description of SDR, HDR and 360° video coding technology proposal by Qualcomm and Technicolor – medium complexity version
JVET AHG report: Entropy Coding Trade-offs (AHG9)
EE2 related: Arithmetic coding with progressive context-dependent double-window adaptation response
EE1 related: Simplification and extension of PDPC
EE1: PDPC without a mode flag
EE2: Arithmetic coding with context-dependent double-window adaptation response
Arithmetic coding with context-dependent double-window adaptation response
EE1: Additional tests comparing UWP/UW66 with P-PDPC in EE1 tests
Non-EE1: PDPC without a mode flag
EE1: Alternative setting for PDPC mode and explicit ARSS flag (tests 3-7)
Crosscheck of JVET-F0043 NSST memory reduction
Binary arithmetic coding with small table or short multiplications
Multi-Type-Tree
EE1-related: Cross-check of JVET-D0056 NSST with reduced table size
EE2: Grouped signalling for transform
EE1: Improvements on non-separable secondary transform
Neighbor based intra most probable modes list derivation
Grouped signalling for transform in QTBT
EE2.7 related: Improved non-separable secondary transform
EE2.7: TU-level non-separable secondary transform
TU-level non-separable secondary transform