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Feasibility study for detecting shallow landslides using IoT devices in smart cities
Inertial sensors are considered a new strategy to assess the slope movement prior to landslides in risk areas. It is a challenge to understand limitations, advantages, and disadvantages of the signals analysis from inertial sensors embedded in IoT devices for monitoring this phenomenon. Landslides can take a long time to collapse completely, and collecting data in real situations can imply a long-term collection, with no guarantees of recording the phenomenon. Promoting accelerated experiments can be an alternative for evaluating algorithms to detect soil movement. Therefore, this paper presents the results of two experiments performed for data collection by inertial sensors deployed in sandy soil in a dump truck. The signals were collected during sand unloading to evaluate the performance of the IoT devices in events similar to a landslide phenomenon.
Feasibility study for detecting shallow landslides using IoT devices in smart cities
Inertial sensors are considered a new strategy to assess the slope movement prior to landslides in risk areas. It is a challenge to understand limitations, advantages, and disadvantages of the signals analysis from inertial sensors embedded in IoT devices for monitoring this phenomenon. Landslides can take a long time to collapse completely, and collecting data in real situations can imply a long-term collection, with no guarantees of recording the phenomenon. Promoting accelerated experiments can be an alternative for evaluating algorithms to detect soil movement. Therefore, this paper presents the results of two experiments performed for data collection by inertial sensors deployed in sandy soil in a dump truck. The signals were collected during sand unloading to evaluate the performance of the IoT devices in events similar to a landslide phenomenon.
Feasibility study for detecting shallow landslides using IoT devices in smart cities
Santos, Alessandro S. (author) / Corsi, Alessandra C. (author) / Almeida, Rynaldo Z. H. (author) / Noda, Mauro K. (author) / Goncales, Icaro (author) / Ribeiro, Rodrigo N. (author) / Machado, Cezar O. (author) / Polkorny, Matheus (author) / Otero, Malena D'Elia (author) / Abreu, Ana Elisa S. (author)
2021-09-07
5542211 byte
Conference paper
Electronic Resource
English
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