International Journal of Emerging Trends & Technology in Computer Science
A Motivation for Recent Innovation & Research
ISSN 2278-6856
www.ijettcs.org
Call for Paper, Published Articles, Indexing Infromation
Title: |
CAD based implementation of RADAR using Direct Sequence Spread Spectrum technique
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Author Name: |
Ravi Gautam, Harshita Sahu, Swarnika kumar, Divya Singh, Nandita Pradhan |
Abstract: |
Abstract:
DIRECT SEQUENCE SPREAD SPECTRUM (DSSS) is a
spread spectrum technique and commonly used for military
purposes. This paper consists of CAD based designing of
RADIO WAVE DETECTION AND RANGING (
RADAR)transmitter and receiver using DSSS techniques with
better accuracy and ranging. The reason to use DSSS signal
for spreading because it has its own inherent merits like
accuracy of ranging, sensitivity of power estimation and
interference suppression than other types of spread spectrum.
The goal is to detect target at very short distance by sending
and receiving RF signals with high resolution and calculate
range of target with high accuracy and also to calculate the
Bit Error Ratio (BER). Spread spectrum system techniques
can be used to hide a signal by transmitting it at low power
thus avoiding interference. BFSK modulation and
demodulation technique is used in this project for the purpose
of providing security to the proposed work. One of the main
reasons behind using BFSK modulation and demodulation
technique is the ease of detecting the information about the
type of the target, while it was not possible with the previously
employed techniques. MATLAB coding and simulation are
used for the purpose of obtaining desired results
Keywords: BFSK, DSSS, PN SEQUENCE, RADAR
TRANSMITTER AND RECIEVER, ERROR RATE
CALCULATION |
Cite this article: |
Ravi Gautam, Harshita Sahu, Swarnika kumar, Divya Singh, Nandita Pradhan , "
CAD based implementation of RADAR using Direct Sequence Spread Spectrum technique " , International Journal of Emerging Trends & Technology in Computer Science (IJETTCS),
Volume 5, Issue 2, March - April 2016 , pp.
133-137 , ISSN 2278-6856.
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