Projecte llegit
Títol: PocketQube InterSatellite Links using LoRa
Estudiants que han llegit aquest projecte:
- TRIBÓ CABRÉ, JÚLIA (data lectura: 27-06-2023)
- Cerca aquest projecte a Bibliotècnica
- TRIBÓ CABRÉ, JÚLIA (data lectura: 27-06-2023)
- Cerca aquest projecte a Bibliotècnica
Director/a: PARK, HYUK
Departament: FIS
Títol: PocketQube InterSatellite Links using LoRa
Data inici oferta: 17-07-2022 Data finalització oferta: 17-03-2023
Estudis d'assignació del projecte:
- DG ENG AERO/TELEMÀT
Tipus: Individual | |
Lloc de realització: |
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Nom del segon director/a (UPC): Adriano Camps, Stefan Podrau | |
Departament 2n director/a: | |
Paraules clau: | |
PocketQube, NanoSat, Space Engineering, LoRa | |
Descripció del contingut i pla d'activitats: | |
This Final Degree Project aims at developing a telecommunications
network usingLoRa technology to interconnect several PocketQubes (pico-satellites with a form factor of 5 x 5 x 5 cm^3). These long-range low-bandwidth Inter-Satellite Links (ISL) can be used to exchange satellites' position and attitude as auxiliary information to align the spacecrafts so that large-bandwidth optical ISL can be properly oriented and perform. These ISLs can also be used to exchange small amounts of scientific information or even to download it to ground. In this Final Degre Project the communication protocols will be implemented, first using COTS LoRa Heltec modules (Arduino based), and then using several PocketQubes developed at the UPC NanoSat Lab, that use an STM 32 (to be programmed in C-language) as On-Board Computer. |
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Overview (resum en anglès): | |
This Final Degree Project aims at developing a telecommunications link using LoRa technology to interconnect a PocketQube (pico-satellites with a form factor of 5 x 5 x 5 cm^3) with a ground station from the TinyGS network.
This long-range low-bandwidth link can be used to download the telemetry, the payload or the configuration data, and to send telecommands from the ground station to the PocketQube, such as the execution of orders as activate the payload, do a soft reset, perform an ADCS calibration etc. In this Final Degre Project, the communication protocols will be implemented, using COTS LoRa TTGO T-Display ESP32 WiFi module (Arduino based), and a PocketQube developed at the UPC NanoSat Lab, which uses an STM 32 (to be programmed in C-language) as On-Board Computer. |