<p>1. Introduction</p> <p>1.1. Overview of Digital Holography</p> <p>1.2. Digital Holography System</p> <p>2. Fundamental Principles of Digital Holography</p> <p>2.1. Optical Theory</p> <p>2.1.1. Interference</p> <p>2.1.2. Diffraction</p> <p>2.2. Computer Generated Hologram</p> <p>2.2.1. Object Models</p> <p>2.2.2. Mathematical Models</p> <p>2.2.3. Speed-up Models</p> <p>2.3. Representation of Digital Holographic Data</p> <p>2.3.1. Intensity of Hologram</p> <p>2.3.2. Complex Amplitude</p> <p>3. Compression of Still Digital Holographic Data</p> <p>3.1. Lossless Compression</p> <p>3.1.1. Huffman Encoding</p> <p>3.1.2. Lempel-Ziv Encoding</p> <p>3.1.3. Burrows-Wheeler Encoding</p> <p>3.2. Lossy Compression</p> <p>3.2.1. Quality Evaluation Criteria</p> <p>3.2.2. Quantization</p> <p>3.2.3. Transform based Coding</p> <p>3.2.4. 3D Scanning based Compression</p> <p>3.2.5. Still Image Coding Standard-based Compression</p> <p>4. Compression of Digital Holographic Sequences</p> <p>4.1. Video Coding Standard-based Compression</p> <p>4.1.1. MPEG-4 ASP</p> <p>4.1.2. H.264/AVC</p> <p>4.1.3. HEVC</p> <p>4.2. Hybrid Compression</p> <p>4.2.1. 3D Scanning based Compression</p> <p>4.2.2. Vector lifting Scheme based Compression</p> <p>5. Conclusions</p>