Abstract
Grouping the Home Circuits (HCs) with the same source is a critical issue of Labeled Optical Burst Switching with Home Circuit (LOBS-HC). To maximize the wavelength utilization in LOBS-HC ring networks, an HC grouping and wavelength assignment scheme, called Longest Path Matching and Graph Coloring (LPMGC), is proposed. LPMGC consists of two phases: grouping and wavelength assignment. First, a heuristic algorithm, named Longest Path Matching (LPM), is proposed to group the HCs according to the longest common path matching between HCs and to make each group as large as possible. And then, Graph Coloring (GC) is introduced to assign wavelengths for HC groups. The numerical results show that the proposed scheme performances better than Complementary HC Assignment (CHA) and some other heuristics in both unidirectional and bidirectional LOBS-HC ring networks in terms of wavelength utilization.
©2014 by Walter de Gruyter Berlin/Boston
Articles in the same Issue
- Frontmatter
- Amplifiers
- A Detailed Circuit Model for Semiconductor Optical Amplifier Incorporating Thermal Effects
- Devices
- Research on the Intensity Modulation upon Performance in 40 Gbit/s GPON System
- Simplified Versions of Triangular-lattice Photonic Crystal Waveguides
- Lasers
- Investigate the Effect of Line Width at Various Laser Sources on FWM Power in WDM System
- Networks
- A Comparative Study of Multiplexing Schemes for Next Generation Optical Access Networks
- Low-cost RAU with Optical Power Supply Used in a Hybrid RoF IEEE 802.11 Network
- Heuristic Scheme for Home Circuit Grouping andWavelength Assignment in LOBS-HC Networks
- Receivers
- Receiver Sensitivity in Optical and Microwave, Heterodyne and Homodyne Systems
- Systems
- Power Budget Analysis of Colorless Hybrid WDM/TDM-PON Scheme Using Downstream DPSK and Re-modulated Upstream OOK Data Signals
- Bidirectional Transmission of 10 Gbit/s Using RSOA Based WDM-PON and Optical Carrier Suppression Scheme
- Performance Analysis of DQPSK Modulated RoF System
- Theory
- Energy-saving EPON Bandwidth Allocation Algorithm Supporting ONU's Sleep Mode
- Performance Evaluation of Single Sideband Radio over Fiber System through Modulation Index Enhancement
Articles in the same Issue
- Frontmatter
- Amplifiers
- A Detailed Circuit Model for Semiconductor Optical Amplifier Incorporating Thermal Effects
- Devices
- Research on the Intensity Modulation upon Performance in 40 Gbit/s GPON System
- Simplified Versions of Triangular-lattice Photonic Crystal Waveguides
- Lasers
- Investigate the Effect of Line Width at Various Laser Sources on FWM Power in WDM System
- Networks
- A Comparative Study of Multiplexing Schemes for Next Generation Optical Access Networks
- Low-cost RAU with Optical Power Supply Used in a Hybrid RoF IEEE 802.11 Network
- Heuristic Scheme for Home Circuit Grouping andWavelength Assignment in LOBS-HC Networks
- Receivers
- Receiver Sensitivity in Optical and Microwave, Heterodyne and Homodyne Systems
- Systems
- Power Budget Analysis of Colorless Hybrid WDM/TDM-PON Scheme Using Downstream DPSK and Re-modulated Upstream OOK Data Signals
- Bidirectional Transmission of 10 Gbit/s Using RSOA Based WDM-PON and Optical Carrier Suppression Scheme
- Performance Analysis of DQPSK Modulated RoF System
- Theory
- Energy-saving EPON Bandwidth Allocation Algorithm Supporting ONU's Sleep Mode
- Performance Evaluation of Single Sideband Radio over Fiber System through Modulation Index Enhancement