Abstract
With the continuous progress of society, people’s requirements for communication technology are getting higher and higher, and the traditional communication system has not been able to meet the growing data needs of society. Therefore, it is of practical significance and guiding significance to study the transmission reliability of communication system. In this study, the wireless communication system-based on optical fiber and Class-AB technology and non-linear distortion model used for improving communication quality were briefly introduced, and then simulation analysis was carried out on the traditional simulation system and communication system designed in this study using VPI TransmissionMaker software. The results demonstrated that the proposed system had better stability than the traditional system. The comparison of the electricity frequency spectrum between the two systems showed that the proposed system could effectively suppress the third-order distortion current, and 28.6 dBm distortion current was suppressed. The Spurious Free Dynamic Range (SFDR) of the proposed system was higher, and the fit line slope of the distortion current was 5, differing from that of the traditional system, 3. which further demonstrated that the distortion current was inhibited. In conclusion, the optical communication system designed in this study can effectively improve the communication quality and increase the reliability of wireless communication.
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© 2019 Walter de Gruyter GmbH, Berlin/Boston
Articles in the same Issue
- Frontmatter
- Amplifiers
- Fourth-generation Bidirectional Wireless Hybrid Transmission System Employing Power-Doubler-Amplifier and Data Comparator
- Devices
- PAPR Reduction for O-OFDM UOWC System
- An All Optical OR Gate Using BPSK Technique Inside 2D Photonic Crystals
- Optical Scheme of Obtaining Highest Transmission Factor in Case of KDP Based Electro-Optic Crystal by the Adjustment of Suitable Biasing Voltage and Number of Feedback Passing
- Evaluation of Chirped Fiber Bragg Grating with APD on Designed Optical Fiber Communication Link
- Design of Linear Block Code Encoder and Decoder Using Electro-optical and All-optical Units
- Fibers
- Chirped Large Mode Area Photonic Crystal Modal Fibers and its Resonance Modes Based on Finite Element Technique
- Lasers
- Radio Over Fiber-Based Wavelength Division Multiplexed/Time Division Multiplexed Passive Optical Network Architecture Employing Mutual Injection Locked Fabry-Perot Laser Diodes
- Networks
- High Speed Passive Optical Network Based Elastic Optical Communication System
- Hamiltonian Graph Analysis – Mixed Integer Linear Programming (HGA-MILP) Based Link Failure Detection System in Optical Data Center Networks
- IoT-Based Health Monitoring System Using BeagleBone Black with Optical Sensor
- Systems
- Performance Analysis of a STBC FDM FSO Communication System with Direct Detection Receiver under Turbulent Condition
- Transmission Reliability of Wireless Communication System-Based on Optical Fiber Signal Processing
- Crosstalk Limitations due to Intercore Coupling on the BER Performance of an Optical Communication System with Homogeneous Multi-core Fiber
- High Speed 2 × 10 Gbps WDM Enabled Inter-Satellite Optical Wireless Communication Link
- Theory
- Performance Analysis of FSO DF Relays with Log-Normal Fading Channel
- Pointing Error Effects on Mixed RF-FSO Link
Articles in the same Issue
- Frontmatter
- Amplifiers
- Fourth-generation Bidirectional Wireless Hybrid Transmission System Employing Power-Doubler-Amplifier and Data Comparator
- Devices
- PAPR Reduction for O-OFDM UOWC System
- An All Optical OR Gate Using BPSK Technique Inside 2D Photonic Crystals
- Optical Scheme of Obtaining Highest Transmission Factor in Case of KDP Based Electro-Optic Crystal by the Adjustment of Suitable Biasing Voltage and Number of Feedback Passing
- Evaluation of Chirped Fiber Bragg Grating with APD on Designed Optical Fiber Communication Link
- Design of Linear Block Code Encoder and Decoder Using Electro-optical and All-optical Units
- Fibers
- Chirped Large Mode Area Photonic Crystal Modal Fibers and its Resonance Modes Based on Finite Element Technique
- Lasers
- Radio Over Fiber-Based Wavelength Division Multiplexed/Time Division Multiplexed Passive Optical Network Architecture Employing Mutual Injection Locked Fabry-Perot Laser Diodes
- Networks
- High Speed Passive Optical Network Based Elastic Optical Communication System
- Hamiltonian Graph Analysis – Mixed Integer Linear Programming (HGA-MILP) Based Link Failure Detection System in Optical Data Center Networks
- IoT-Based Health Monitoring System Using BeagleBone Black with Optical Sensor
- Systems
- Performance Analysis of a STBC FDM FSO Communication System with Direct Detection Receiver under Turbulent Condition
- Transmission Reliability of Wireless Communication System-Based on Optical Fiber Signal Processing
- Crosstalk Limitations due to Intercore Coupling on the BER Performance of an Optical Communication System with Homogeneous Multi-core Fiber
- High Speed 2 × 10 Gbps WDM Enabled Inter-Satellite Optical Wireless Communication Link
- Theory
- Performance Analysis of FSO DF Relays with Log-Normal Fading Channel
- Pointing Error Effects on Mixed RF-FSO Link