Design and Integration of Communication subsystem for Pratham

13
Design and Integration of Communication subsystem for Pratham Department of Aerospace Engineering IIT Bombay

description

Design and Integration of Communication subsystem for Pratham. Department of Aerospace Engineering IIT Bombay. Contents. Design of telemetry, beacon and uplink modules Design and fabrication of final Onboard PCBs Allocation of frequencies by IARU - PowerPoint PPT Presentation

Transcript of Design and Integration of Communication subsystem for Pratham

Page 1: Design and Integration of Communication subsystem for  Pratham

Design and Integration of Communication subsystem for Pratham

Department of Aerospace EngineeringIIT Bombay

Page 2: Design and Integration of Communication subsystem for  Pratham

ContentsDesign of telemetry, beacon and uplink

modules Design and fabrication of final Onboard

PCBs Allocation of frequencies by IARU Integration of Groundstation at IITBSocial Goal  

Page 3: Design and Integration of Communication subsystem for  Pratham

Communication Subsystem Onboard

Beacon

Telemetry

Uplink

Groundstation

PolarisationMeasurement

Signal reception

Page 4: Design and Integration of Communication subsystem for  Pratham

Telemetry Module

• CC 1020 daughter board

• Coded by OBC• Data input in the

form of AX.25 packets

Modulates the signal

• RF5110 G with perpendicular berg strips and perpendicular SMA

Amplifies the signal • Monopole

• Characterization done

Radiates the signal

Page 5: Design and Integration of Communication subsystem for  Pratham

Beacon Module

• Atmega 8 microcontroller to be used

• Bit banged code to be used as 8 bit SPI not workingCodes the

daughter board

• ADF 7020 daughter board

• Transmitting at 144.5 MHz

• To be tuned • Duty cycle is 25 %

Modulates the signal

• RF5110 G with perpendicular berg strips and perpendicular SMA

Amplifies the signal

• Monopole• Characterization

done

Radiates the signal

Page 6: Design and Integration of Communication subsystem for  Pratham

Uplink Module

• Monopole• Characterizati

on done

Radiates the signal

• SRZ LNA from RFMD

• To be characterised

• Satisfies the operational parameters

Amplifies the received

signal • CC 1020 daughter board

• Receiving at 437 MHz

• Demodulates after a certain RSSI value

Demodulates the signal

• Atmega 8 microcontroller to be used

• Decode the kill signal and pass on to Power

Decodes the signal

Page 7: Design and Integration of Communication subsystem for  Pratham

Monopole and Monopole holder

Page 8: Design and Integration of Communication subsystem for  Pratham

Onboard antenna mounting

Page 9: Design and Integration of Communication subsystem for  Pratham

Allocation of frequencies by IARUConditions for frequency allocation

Amateur Ham License or a Custodian Detailed link budget analysis Telemetry sequenceDetails about the GS and Onboard circuity and

their functionalitiesUplink or telecommand to control the satellite.

Page 10: Design and Integration of Communication subsystem for  Pratham

Groundstation setup: Polarisation

• Crossed Yagi mounted on a rotor controlled by NOVA and ARS

Antenna

Page 11: Design and Integration of Communication subsystem for  Pratham

Groundstation setup: Telemetry

• Crossed Yagi mounted on a rotor controlled with ARS and NOVA

Antennae

Page 12: Design and Integration of Communication subsystem for  Pratham

Social Goal We have undertaken Social goal as a part of our

Communication Subsystem task. The Social goal aims to involve universities

across the nation for the purpose of generating a TEC Map of India.

The readings received from the Groundstation can also be used for the purpose of Tomography of the Ionosphere.

We have also entered into a collaboration with IPGP France who shall be utilising our TEC data for their scientific research.

Page 13: Design and Integration of Communication subsystem for  Pratham

Thank You