Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Estimation and Analysis of NavIC Receiver Tracking Jitter due to Amplitude and Phase Scintillations

View through CrossRef
An independent, stand-alone satellite navigation system called Navigation with Indian Constellation (NavIC) was created by an Indian space research organization (ISRO) for civilian position, navigation and time applications using mobile devices. Also, it is going to be introduced all smartphones in India to features of NavIC. However, because of ionospheric scintillation effect the NavIC system performance suffers greatly. The random changes in the signal’s amplitude and phase cause ionospheric scintillation. The scintillation cause jitter in receiver hardware while tracking the signal. In this paper by using carrier-to-noise ratio(C/No), Spectral parameters ‘p’(slope of phase PSD) and ‘T’(spectral strength of the PSD at 1HZ) we calculate receiver tracking jitter (σ2øJ) due to L5 band(1176.45 MHz) and S-band (2492.028 MHz) signal scintillations. The result is that L5 band was more affected by amplitude scintillation index S4 than that of S-band.
Title: Estimation and Analysis of NavIC Receiver Tracking Jitter due to Amplitude and Phase Scintillations
Description:
An independent, stand-alone satellite navigation system called Navigation with Indian Constellation (NavIC) was created by an Indian space research organization (ISRO) for civilian position, navigation and time applications using mobile devices.
Also, it is going to be introduced all smartphones in India to features of NavIC.
However, because of ionospheric scintillation effect the NavIC system performance suffers greatly.
The random changes in the signal’s amplitude and phase cause ionospheric scintillation.
The scintillation cause jitter in receiver hardware while tracking the signal.
In this paper by using carrier-to-noise ratio(C/No), Spectral parameters ‘p’(slope of phase PSD) and ‘T’(spectral strength of the PSD at 1HZ) we calculate receiver tracking jitter (σ2øJ) due to L5 band(1176.
45 MHz) and S-band (2492.
028 MHz) signal scintillations.
The result is that L5 band was more affected by amplitude scintillation index S4 than that of S-band.

Related Results

Estimation and Evaluation of Ionospheric Scintillations at Various NavIC Signal Frequencies using Real Time Data
Estimation and Evaluation of Ionospheric Scintillations at Various NavIC Signal Frequencies using Real Time Data
The ionospheric scintillations affect radio waves from the NavIC satellites through the ionosphere. The ionospheric scintillations lower receiver tracking accuracy, integrity, and ...
Morphological and spectral characteristics of L-band and VHF scintillations and their impact on trans-ionospheric communications
Morphological and spectral characteristics of L-band and VHF scintillations and their impact on trans-ionospheric communications
Abstract Amplitude scintillations recorded at 1.5 GHz frequency during the high (1998–1999) and low (2004–2005) sunspot activity periods over a low latitude station, Walt...
Twinkle, Twinkle Little Pulsar/Quasar
Twinkle, Twinkle Little Pulsar/Quasar
The twinkling of stars is a familiar example of scintillations, due to turbulence in the Earth’s atmosphere causing fluctuations in the refractive index of the air along the line o...
Exploration of NavIC/GPS Receiver in both Static and Dynamic Way in an Open Surface/Ground Area
Exploration of NavIC/GPS Receiver in both Static and Dynamic Way in an Open Surface/Ground Area
Indian Regional Navigation Satellite System (IRNSS)/NavIC operates in two frequency bands namely L5 band (1176.45 MHz) and S1 band (2492.02 MHz). To navigate over vegetated area or...
Multipath Mitigation Technique Based on Successive Variational Mode Decomposition Using NAVIC Receiver Data
Multipath Mitigation Technique Based on Successive Variational Mode Decomposition Using NAVIC Receiver Data
Multipath interference poses a significant challenge in satellite-based navigation systems, including NAVIC (Navigation with Indian Constellation), degrading the accuracy of positi...
Analysis of Ionospheric Scintillations Using Gps & Navic Combined Constellation
Analysis of Ionospheric Scintillations Using Gps & Navic Combined Constellation
The disturbances and irregularities in the ionosphere are the primarily recognized ramification of space weather called scintillations. Irregularities in the electron densities are...

Back to Top