An Efficient Adaptive Data-Link-Layer Architecture for LoRa Networks
Эффективная адаптивная архитектура канального уровня для сетей LoRa
2023-08-17
SCID: 54.1/pshj7w9k
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LoRa networksadaptive spreading factoradaptive transmission powercontention-free MAC protocoldata-link-layer architecture
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Abstract (AI)
LoRa is one of the most popular low-power wireless network technologies for implementation of the Internet of Things, with the advantage of providing long-range communication, but lower data rates, when compared with technologies such as Zigbee or Bluetooth. LoRa is a single-channel physical layer technology on top of which LoRaWAN implements a more complex multi-channel network with enhanced functionalities, such as adaptive data rate. However, LoRaWAN relies on expensive hardware to support these functionalities. This paper proposes a LoRa data-link-layer architecture based on a multi-layer star network topology that adapts relevant LoRa parameters for each end node dynamically taking into account its link distance and quality in order to balance communication range and energy consumption. The developed solution is comprised of multiple components, including a LoRa parameter calculator to help the user to configure the network parameters, a contention-free MAC protocol to avoid collisions, and an adaptive spreading factor and transmission power mechanism. These components work together to ensure a more efficient use of the chosen ISM band and end node resources, but with low-cost implementation and operation requirements.
Key Findings
1
Its components include a parameter calculator, a contention-free MAC protocol for collision avoidance, and adaptive spreading-factor and transmission-power mechanisms.
2
The architecture dynamically adjusts LoRa parameters for each end node according to link distance and quality, balancing communication range and energy consumption.
3
The integrated design aims to improve ISM-band and end-node resource efficiency while avoiding the expensive hardware requirements associated with LoRaWAN functionalities.
4
The paper proposes a low-cost LoRa data-link-layer architecture using a multi-layer star topology for adaptive network operation.
Research Object
LoRa data-link-layer networks with multi-layer star topology and end nodes
Research Subject
Dynamic adaptation of LoRa communication parameters to link distance and quality to balance communication range, energy consumption, resource use, and collision-free operation
Publication Details
Publication Date
2023-08-17
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