RITA: a 1U multi-sensor Earth observation payload for the AlainSat-1

Author:

Pérez Portero Adrián,Fernandez Capon Lara Pilar,Badia Ballús Marc,Fabregat P.,Rayon L.,Gonga Siles Amadeu,Crisan Ieremia,Garcia A.,Munuera Vilalta Mar,Contreras L.,Ramos Castro Juan JoséORCID,Jallad A.H.,Camps Carmona Adriano JoséORCID

Abstract

The Remote sensing and Interference detector with radiomeTry and vegetation Analysis (RITA) is one of the Remote Sensing payloads selected as winners of the 2nd GRSS Student Grand Challenge in 2019, to fly on board of the 3U AlainSat-1. This CubeSat is being developed by the National Space Science and Technology Center (NSSTC), United Arab Emirates University. RITA has been designed as an academic mission, which brings together students from different backgrounds in a joint effort to apply very distinct sensors in an Earth Observation mission, fusing their results to obtain higher-accuracy measurements. The main payload used in RITA is a Total Power Radiometer such as the one on board the FSSCat mission. With these radiometric measurements, soil moisture and ice thickness will be obtained. To better characterize the extensive Radio-Frequency Interferences received by EO satellites in protected bands, several RFI Detection and Classification algorithms will be included to generate a worldwide map of RFI. As a novel addition to the 3Cat family of satellites and payloads, a hyper-spectral camera with 25 bands ranging from 600 to 975 nm will be used to obtain several indexes related to vegetation. By linking these measurements with the soil moisture obtained from the MWR, pixel downscaling can be attempted. Finally, a custom- developed LoRa transceiver will be included to provide a multi-level approach to in-situ sensors: On-demand executions of the other payloads will be able to be triggered from ground sensors if necessary, as well as simple reception of other measurements that will complement the ones obtained on the satellite. The antennas for both the MWR and the LoRa experiments have been developed in-house, and will span the entirety of one of the 3U sides of the satellite. In this work, the latest development advances will be presented, together with an updated system overview and information about the operations that will be conducted. Results obtained from the test campaign are also presented in the conference.

Publisher

Universitat Politècnica de Catalunya

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Model-Based Design and Testbed for CubeSat Attitude Determination and Control System with Magnetic Actuation;Applied Sciences;2024-07-11

2. Sensor Information Transmission System Using LORA based Communication in a Nanosatellite;2023 International Conference on Advances in Computing, Communication and Applied Informatics (ACCAI);2023-05-25

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