Jul 2026· International Conference on Smart Communications and Networking· pp. 1-6· 0 citations· 22 references
Abstract
Handover management in LoRaWAN networks is a critical challenge for dynamic IoT applications such as connected vehicles and drones. Existing approaches fail to simultaneously satisfy low latency, active handover with full context transfer, and scalability without modifying end devices. This paper proposes LoRa-PDMM, a hybrid architecture combining local Distribution Servers for fast intra-zone handover and a Central Server for inter-zone coordination, without any modification to existing end devices. Evaluation uses discrete-event simulation (Python/SimPy) with explicit LoRaWAN constraints including 1% duty cycle, Class A RX1/RX2 windows, ALOHA-based channel access with capture effect, and configurable context size, over scenarios from 10 to 100 mobile nodes with Random Waypoint and Gauss-Markov mobility. LoRa-PDMM reduces server-side handover latency by 54.7% and total latency by 23.2% over a centralized active handover baseline, with packet delivery ratio between 86.1% and 98.6% under nominal conditions. The latency reduction targets the server-side processing component, which is the architectural variable LoRa-PDMM directly controls; the Class A downlink window wait is a LoRaWAN protocol constraint common to all approaches.
The proposed framework separates network control from forwarding, maintains a global view of vehicular network state, classifies V2X flows by service criticality, and dynamically selects routes and bandwidth allocations using delay, congestion, handover, and priority constraints.
Swadhin Singh, Swatantra Kumar, Mr. Rahul Kumar· International Journal of Adv...· 0 citations
LoRa-LQE, a link quality estimation scheme specifically designed for mobile environments, outperforms state-of-the-art solutions and achieves packet delivery ratio improvements and energy efficiency improvements, thereby enabling more reliable communication for mobile IoT assets.
Geraldo A. Sarmento, T. R. D. Da Silva, Fernando J. V. Santos et al.· Journal of Internet Services...· 0 citations
The deployment of Ultra-Dense Networks (UDNs) in 5G systems is to meet the growing demand for high data rates and massive connectivity. However, the dense deployment of small cells increases handover frequency, leading to challenges such as handover failures (HOF), unnecessary handovers, and the ping-pong effect, leadi...
Halah Hassen Aldumaini, Hanadi Esmeail Yahya, Oloof Ameen Mohmmed et al.· 2026 6th International Confe...· 0 citations
An innovative integration of Named Data Networking (NDN) into the 5G architecture is introduced, incorporating an Enhanced Popularity-Based Caching mechanism at the Multi-access Edge Computing (MEC) layer of the 5G user plane.
Ade Nurhayati· Journal of Communications· 0 citations
A collision-aware ADR (CA-ADR) technique to handle collisions in dense LoRaWAN deployments is presented, which incorporates a capture-aware model based on signal-to-interference ratio thresholds, enabling a more realistic assessment of packet reception under overlapping transmissions.
S. Amrane, Abdallah Zahidi, Noureddine Ennadi et al.· Engineering Research Express· 0 citations
Frequent handovers remain a challenge in vehicular fifth-generation (5G) networks, especially in dense urban areas with small cells and intersections. Conventional handover decisions mainly follow the current radio condition and may select a target that is not stable along the vehicle's future route. This paper propose...
Heriansyah, G. Kotsis· International Conference on...· 0 citations
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