In this paper, we propose an integer linear program- ming model to dynamically optimize sub-carrier (SC) allocation in the upstream direction of future digital sub-carrier multiplex- ing (DSCM)-based coherent passive optical networks (PONs). The model incorporates frequency-domain hybrid modulation to account for the varying conditions of optical network units, optimizing resource allocation while minimizing the number of SCs used. Numerical results demonstrate that hybrid modulation increases PON throughput by about 50 Gbps for 32 optical network units.
Optimization Model for Dynamic Resource Allocation in DSCM Coherent PON / Alzoubi, Safana; Arnaout, Sandra; Rahman, Md Arifur; Gaudino, Roberto. - (2025), pp. 1-3. (Intervento presentato al convegno 2025 International Conference on Optical Network Design and Modeling (ONDM) tenutosi a Pisa (Ita) nel May 06-09, 2025) [10.23919/ondm65745.2025.11029228].
Optimization Model for Dynamic Resource Allocation in DSCM Coherent PON
Alzoubi, Safana;Gaudino, Roberto
2025
Abstract
In this paper, we propose an integer linear program- ming model to dynamically optimize sub-carrier (SC) allocation in the upstream direction of future digital sub-carrier multiplex- ing (DSCM)-based coherent passive optical networks (PONs). The model incorporates frequency-domain hybrid modulation to account for the varying conditions of optical network units, optimizing resource allocation while minimizing the number of SCs used. Numerical results demonstrate that hybrid modulation increases PON throughput by about 50 Gbps for 32 optical network units.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/3001123