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      Multi-hop Communication in the Uplink for LPWANs

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          Abstract

          Low-Power Wide Area Networks (LPWANs) have arisen as a promising communication technology for supporting Internet of Things (IoT) services due to their low power operation, wide coverage range, low cost and scalability. However, most LPWAN solutions like SIGFOX or LoRaWAN rely on star topology networks, where stations (STAs) transmit directly to the gateway (GW), which often leads to rapid battery depletion in STAs located far from it. In this work, we analyze the impact on LPWANs energy consumption of multi-hop communication in the uplink, allowing STAs to transmit data packets in lower power levels and higher data rates to closer parent STAs, reducing their energy consumption consequently. To that aim, we introduce the Distance-Ring Exponential Stations Generator (DRESG) framework, designed to evaluate the performance of the so-called optimal-hop routing model, which establishes optimal routing connections in terms of energy efficiency, aiming to balance the consumption among all the STAs in the network. Results show that enabling such multi-hop connections entails higher network lifetimes, reducing significantly the bottleneck consumption in LPWANs with up to thousands of STAs. These results lead to foresee multi-hop communication in the uplink as a promising routing alternative for extending the lifetime of LPWAN deployments.

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          Most cited references9

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          A Study of LoRa: Long Range & Low Power Networks for the Internet of Things

          LoRa is a long-range, low-power, low-bitrate, wireless telecommunications system, promoted as an infrastructure solution for the Internet of Things: end-devices use LoRa across a single wireless hop to communicate to gateway(s), connected to the Internet and which act as transparent bridges and relay messages between these end-devices and a central network server. This paper provides an overview of LoRa and an in-depth analysis of its functional components. The physical and data link layer performance is evaluated by field tests and simulations. Based on the analysis and evaluations, some possible solutions for performance enhancements are proposed.
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            Energy-Efficient Routing Protocols in Wireless Sensor Networks: A Survey

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              Dedicated networks for IoT: PHY / MAC state of the art and challenges

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                Author and article information

                Journal
                2016-11-26
                Article
                1611.08703
                f9dadaf4-1456-4797-8675-e6c1252a101a

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                27 pages, 15 figures
                cs.NI

                Networking & Internet architecture
                Networking & Internet architecture

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