Intro; Preface; Contents; 1 Outline; 1.1 Introduction; 1.2 LED Market Trends; 1.3 The History of Visible Light Communication; 1.4 The Composition of the Visible Light Communication System; 1.5 Advantages of Visible Light Communication Technology; 1.6 Research Trends; 1.7 Brief Summary; References; 2 The Transmitter of the Visible Light Communication System; 2.1 Summary of the LED; 2.1.1 The Development of the LED Light Source; 2.1.2 The LED's Luminescence Mechanism; 2.1.3 Characteristics of a LED; 2.1.4 The Types of White LEDs; 2.2 The PC-LED (Phosphor-Converted LED).
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2.2.1 The PC-LED's Material and Spectral Characteristics2.2.2 The PC-LED's Structure; 2.2.3 The PC-LED's Illumination Effect; 2.3 The RGB-LED; 2.4 The RGB + UV-LED; 2.5 The LED's Illumination Light Field and Visual Design; 2.5.1 Features of the LED Illumination Light Field; 2.5.2 The Main LED Optical Design Forms; 2.6 Summary; 2.7 LED Driving; 2.7.1 The Physical Device of LED Driving; 2.7.2 The LED's Driving Mode; 2.7.3 The LED's Drive Circuit Design; References; 3 Models of the Visible Light Channel; 3.1 The LED Frequency Response Model; 3.1.1 The White LED Frequency Response Model.
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3.1.2 The LED Frequency Response Model After Blue-Light Filtering3.2 The Modulation Bandwidth of Various LEDs; 3.2.1 The LED's Modulation Bandwidth; 3.2.2 The Modulation Bandwidth of Various LEDs; 3.3 Multipath Reflection Modeling; 3.3.1 The Indoor Optical Communication Link Way; 3.3.2 VLC Channel Modeling; 3.3.3 A Basic Analysis of the VLC's System Performance; 3.4 The Photon Model; 3.4.1 The Model Design; 3.4.2 The Simulation Process and Data Analysis; 3.5 Nonlinearity of VLC Communication System; 3.6 Summary; References; 4 Visible Light Communication Receiving Technology.
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4.1 The Silicon-Based PIN Photodetector4.1.1 The PIN Structure and Its Working Principle; 4.1.2 Parameters; 4.1.3 The Device Preparation Technology; 4.2 The Narrowband Blue Light Detector; 4.3 Blu-Ray Filters; 4.3.1 An Overview; 4.3.2 The Basic Principles and Calculation Methods; 4.3.3 Blu-Ray Filter Design; 4.3.4 Design Examples; 4.3.5 Preparation; 4.4 The Detector Circuit Design; 4.4.1 Adaptive Receiver Technology; 4.4.2 The Clock Extraction and Recovery Circuit; 4.4.3 Receiver Equalization Technology; 4.5 Summary; References; 5 The Modulation Technologies of Visible Light Communication.
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5.1 OOK Modulation Format5.1.1 The Principle of the OOK Modulation Format; 5.1.2 The BER Performance of OOK; 5.1.3 System Implementation and Waveform Testing; 5.2 The PPM and PMW Modulation Technologies; 5.3 DMT Modulation Technology; 5.3.1 The Principle of DMT Modulation and Demodulation; 5.3.2 The Application of DMT Modulation in VLC; 5.4 OFDM Modulation Technology; 5.5 CAP Modulation Technology; 5.6 PAM Modulation Technology; 5.6.1 The Introduction of PAM Modulation; 5.6.2 The System of PAM-VLC; 5.7 Summary; References; 6 Visible Light Communication Pre-equalization Technology.
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SUMMARY OR ABSTRACT
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The book systematically introduces the visible light communication (VLC) technology in detail. Basic concepts and how to realize the system are both illustrated, including the transmitter, channel, and the receiver. In addition, a good many experimental results are presented to help readers further understand the VLC technologies. The upper-layer protocols of visible light communication system and the technology trends are also discussed. This book can be a good reference work for researchers, engineers, and graduate students in the fields of communications, LED, and optics.