QPSK communication between two nodes using USRP

In Nanyang Technological University (NTU), the Satellite Research Centre (SaRC) had six different satellite mission since the year of 2011. SaRC had successfully launched six satellite to space, which is named VELOX-I, VELOX-II, and VELOX-PIII. As these three satellites are classified under nano or...

Full description

Saved in:
Bibliographic Details
Main Author: Ng, Eric Jia Qiang
Other Authors: Shao Xuguang Michelle
Format: Final Year Project
Language:English
Published: 2017
Subjects:
Online Access:http://hdl.handle.net/10356/71002
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Nanyang Technological University
Language: English
id sg-ntu-dr.10356-71002
record_format dspace
spelling sg-ntu-dr.10356-710022023-07-07T15:41:59Z QPSK communication between two nodes using USRP Ng, Eric Jia Qiang Shao Xuguang Michelle School of Electrical and Electronic Engineering Satellite Engineering Centre DRNTU::Engineering::Electrical and electronic engineering In Nanyang Technological University (NTU), the Satellite Research Centre (SaRC) had six different satellite mission since the year of 2011. SaRC had successfully launched six satellite to space, which is named VELOX-I, VELOX-II, and VELOX-PIII. As these three satellites are classified under nano or pico satellite class. In this final year project, the main objective is to be able to set up communication between the satellite ground stations using the USRP X312 device, USRP E312 device, and ZC706 device and integrate it together with the Software Defined Radio under the platform of GNU Radio software. The first task for this FYP is to be able to synchronize the USRP X310 with the Windows PC. By assigning the fixed IP address to the device itself, the Windows PC will be able to detect the USRP X310. Hence, it is able to allow the USRP X310 to transmit and receive the signal of the desired outcome. Not only that, it can also display the necessary signal spectrum that it had received from other devices. The second task for this FYP is to be able to enable communication between USRP E312 and the Windows PC. Hence, a simple Radio Frequency (RF) channel can be set up through this communication channel. By having this communication, USRP E312 is able to receive signal spectrum from the RF. Not only that, by implementing GNU Radio system in the communication between USRP E312 and Windows PC, USRP E312 will allow the user to receive a signal from a specific and tuneable frequency band. The third and final task for this FYP is to be able to set up a communication between Xilinx ZC706, the Windows PC, and the external monitor. Hence, a simple set up is required to display out the transmitting and receiving of the signal spectrum. Not only that, by changing the setting and the wiring connection, it is able to change the display from the external monitor to the main Windows PC. Next, by connecting an Ethernet crossover cable, it is able to set up a communication connection between two ZC706 boards. Lastly, by setting to the correct transmitting and receiving frequency, it will allow two different boards of ZC706 to communicate. Bachelor of Engineering 2017-05-12T07:11:30Z 2017-05-12T07:11:30Z 2017 Final Year Project (FYP) http://hdl.handle.net/10356/71002 en Nanyang Technological University 70 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Electrical and electronic engineering
spellingShingle DRNTU::Engineering::Electrical and electronic engineering
Ng, Eric Jia Qiang
QPSK communication between two nodes using USRP
description In Nanyang Technological University (NTU), the Satellite Research Centre (SaRC) had six different satellite mission since the year of 2011. SaRC had successfully launched six satellite to space, which is named VELOX-I, VELOX-II, and VELOX-PIII. As these three satellites are classified under nano or pico satellite class. In this final year project, the main objective is to be able to set up communication between the satellite ground stations using the USRP X312 device, USRP E312 device, and ZC706 device and integrate it together with the Software Defined Radio under the platform of GNU Radio software. The first task for this FYP is to be able to synchronize the USRP X310 with the Windows PC. By assigning the fixed IP address to the device itself, the Windows PC will be able to detect the USRP X310. Hence, it is able to allow the USRP X310 to transmit and receive the signal of the desired outcome. Not only that, it can also display the necessary signal spectrum that it had received from other devices. The second task for this FYP is to be able to enable communication between USRP E312 and the Windows PC. Hence, a simple Radio Frequency (RF) channel can be set up through this communication channel. By having this communication, USRP E312 is able to receive signal spectrum from the RF. Not only that, by implementing GNU Radio system in the communication between USRP E312 and Windows PC, USRP E312 will allow the user to receive a signal from a specific and tuneable frequency band. The third and final task for this FYP is to be able to set up a communication between Xilinx ZC706, the Windows PC, and the external monitor. Hence, a simple set up is required to display out the transmitting and receiving of the signal spectrum. Not only that, by changing the setting and the wiring connection, it is able to change the display from the external monitor to the main Windows PC. Next, by connecting an Ethernet crossover cable, it is able to set up a communication connection between two ZC706 boards. Lastly, by setting to the correct transmitting and receiving frequency, it will allow two different boards of ZC706 to communicate.
author2 Shao Xuguang Michelle
author_facet Shao Xuguang Michelle
Ng, Eric Jia Qiang
format Final Year Project
author Ng, Eric Jia Qiang
author_sort Ng, Eric Jia Qiang
title QPSK communication between two nodes using USRP
title_short QPSK communication between two nodes using USRP
title_full QPSK communication between two nodes using USRP
title_fullStr QPSK communication between two nodes using USRP
title_full_unstemmed QPSK communication between two nodes using USRP
title_sort qpsk communication between two nodes using usrp
publishDate 2017
url http://hdl.handle.net/10356/71002
_version_ 1772828187551596544