Abstract
A modified periodic encoder for increasing the pulse height in PON monitoring system is presented and demonstrated experimentally, which can reduce the receiving sensitivity of the photoreceiver. Comparing with the pulse sequence generated by the periodic encoder, the maximum and minimum pulse height generated by the modified periodic encoder increased by rough 22 % and 19 %, respectively. This significantly reduces the receiving sensitivity of the photoreceiver at the expense of a little user cost.
Funding statement: Project supported by the National Natural Science Foundation of China (No. 61271406) and the Advanced Science Foundation of Jiangsu Province, China (No. BY20160127-08).
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© 2019 Walter de Gruyter GmbH, Berlin/Boston
Articles in the same Issue
- 10.1515/joc-2019-frontmatter1
- Devices
- A Comparative Analysis of Dual-Order Bidirectional Pumping Schemes in Optical Fiber Raman Amplification
- All-Optical Logic Gates and Boolean Expressions in a Photonic Mach–Zehnder Interferometer
- Design and Simulation of Optical 4-Channel Demultiplexer Using Photonic Crystals
- Excellent Quality Factor Ultra-Compact Optical Communication Filter on Ring-Shaped Cavity
- Modified Periodic Encoder for Increasing Pulse Height in PON Monitoring System
- Laser
- Investigation on Chirping induced performance degradation in Single Mode Directly modulated 1.55um DFB laser
- Networks
- Chaotic Laser “Broadcast-Star” Synchronization Network and Its Application in Logic Gates
- Comparative Analysis of Various Wavelength Division Multiplexed PON Standards
- Comprehensive Polling and Scheduling Mechanism for Long Reach Gigabit Passive Optical Network
- Cost Efficient 4 × 2.5 Gb/s Transparent WDM Ring Network using DML and MetroCor Fiber for Long Reach Applications
- Effect of Channel Spacing on the Design of Mixed Line Rate Optical Wavelength Division Multiplexed Networks
- Systems
- Performance Evaluation of Sub-carrier Multiplexed SAC-OCDMA System Using Optimal Modulation Index
- Performance Investigation of OTDM Link at 10*4 Gbps and Link Range of 348 km Using NRZ and RZ Schemes
Articles in the same Issue
- 10.1515/joc-2019-frontmatter1
- Devices
- A Comparative Analysis of Dual-Order Bidirectional Pumping Schemes in Optical Fiber Raman Amplification
- All-Optical Logic Gates and Boolean Expressions in a Photonic Mach–Zehnder Interferometer
- Design and Simulation of Optical 4-Channel Demultiplexer Using Photonic Crystals
- Excellent Quality Factor Ultra-Compact Optical Communication Filter on Ring-Shaped Cavity
- Modified Periodic Encoder for Increasing Pulse Height in PON Monitoring System
- Laser
- Investigation on Chirping induced performance degradation in Single Mode Directly modulated 1.55um DFB laser
- Networks
- Chaotic Laser “Broadcast-Star” Synchronization Network and Its Application in Logic Gates
- Comparative Analysis of Various Wavelength Division Multiplexed PON Standards
- Comprehensive Polling and Scheduling Mechanism for Long Reach Gigabit Passive Optical Network
- Cost Efficient 4 × 2.5 Gb/s Transparent WDM Ring Network using DML and MetroCor Fiber for Long Reach Applications
- Effect of Channel Spacing on the Design of Mixed Line Rate Optical Wavelength Division Multiplexed Networks
- Systems
- Performance Evaluation of Sub-carrier Multiplexed SAC-OCDMA System Using Optimal Modulation Index
- Performance Investigation of OTDM Link at 10*4 Gbps and Link Range of 348 km Using NRZ and RZ Schemes