Javascript must be enabled to continue!
The next generation of IGS ROTI Maps: an extension toward global coverage
View through CrossRef
<p>The International GNSS Service (IGS) has accepted for official release a new ionospheric product for specification of ionospheric irregularities occurrence and intensity over the Northern Hemisphere as derived from multi-site ground-based GPS observations. Initially, we focused on the Northern Hemisphere auroral and midlatitude regions because of the highest concentration of the GNSS users and user supporting permanent networks located within the American, European, and Asian sectors. The IGS ROTI maps product is routinely generated by multi-step processing of carrier phase delays in dual-frequency GPS signals and transferred to the IGS CDDIS database. Now, ROTI maps allow regular monitoring of ionospheric irregularities over the Northern Hemisphere and provide information about past events when strong ionospheric irregularities developed here.</p><p>Obviously, the plasma irregularities that occur at high, middle, and low latitudes have different physical mechanisms of their origin and development. For study of the climatological features of ionospheric irregularities occurrence, investigation of the ionospheric responses for Space Weather drivers, processes derived from below, this actual ROTI Map product is required to cover low latitudes and the Southern hemisphere polar and midlatitudes.</p><p>During last decade, numerous ground-based permanent receivers were deployed within the global and regional networks and these observations are publicly available. These data can support our activity toward extending the current IGS ROTI maps product for a global coverage. In this paper, we present initial results of ROTI maps product performance to characterize ionospheric irregularities exited by different types of geophysical processes and space weather events. The next generation of the IGS ROTI maps product can be a valuable tool for global ionospheric irregularities monitoring and retrospective analysis of plasma irregularities impact on the GNSS positioning in the &#8220;worst case scenario&#8221; domain.</p><p>The research is supported by the National Science Centre, Poland, through grants 2017/25/B/ST10/00479 and 2017/27/B/ST10/02190 and <strong>t</strong>he National Centre for Research and Development, Poland, through grant DWM/PL-CHN/97/2019</p><p><strong>&#160;</strong></p><p>Keywords: GPS, ionosphere, ionospheric irregularities, ROTI, IGS</p>
Title: The next generation of IGS ROTI Maps: an extension toward global coverage
Description:
<p>The International GNSS Service (IGS) has accepted for official release a new ionospheric product for specification of ionospheric irregularities occurrence and intensity over the Northern Hemisphere as derived from multi-site ground-based GPS observations.
Initially, we focused on the Northern Hemisphere auroral and midlatitude regions because of the highest concentration of the GNSS users and user supporting permanent networks located within the American, European, and Asian sectors.
The IGS ROTI maps product is routinely generated by multi-step processing of carrier phase delays in dual-frequency GPS signals and transferred to the IGS CDDIS database.
Now, ROTI maps allow regular monitoring of ionospheric irregularities over the Northern Hemisphere and provide information about past events when strong ionospheric irregularities developed here.
</p><p>Obviously, the plasma irregularities that occur at high, middle, and low latitudes have different physical mechanisms of their origin and development.
For study of the climatological features of ionospheric irregularities occurrence, investigation of the ionospheric responses for Space Weather drivers, processes derived from below, this actual ROTI Map product is required to cover low latitudes and the Southern hemisphere polar and midlatitudes.
</p><p>During last decade, numerous ground-based permanent receivers were deployed within the global and regional networks and these observations are publicly available.
These data can support our activity toward extending the current IGS ROTI maps product for a global coverage.
In this paper, we present initial results of ROTI maps product performance to characterize ionospheric irregularities exited by different types of geophysical processes and space weather events.
The next generation of the IGS ROTI maps product can be a valuable tool for global ionospheric irregularities monitoring and retrospective analysis of plasma irregularities impact on the GNSS positioning in the &#8220;worst case scenario&#8221; domain.
</p><p>The research is supported by the National Science Centre, Poland, through grants 2017/25/B/ST10/00479 and 2017/27/B/ST10/02190 and <strong>t</strong>he National Centre for Research and Development, Poland, through grant DWM/PL-CHN/97/2019</p><p><strong>&#160;</strong></p><p>Keywords: GPS, ionosphere, ionospheric irregularities, ROTI, IGS</p>.
Related Results
IMPLEMENTASI METODE SERVQUAL UNTUK PENINGKATAN PELAYANAN PADA PABRIK ROTI CITRA
IMPLEMENTASI METODE SERVQUAL UNTUK PENINGKATAN PELAYANAN PADA PABRIK ROTI CITRA
Abstract: Citra Roti Factory is a business engaged in the manufacture and sale of bread. Sales data at the Citra Roti Factory fluctuated, namely sometimes sales increased and somet...
Pengaruh Brand Image dan Electronic Word Of Mouth Melalui Instagram terhadap Minat Beli Konsumen
Pengaruh Brand Image dan Electronic Word Of Mouth Melalui Instagram terhadap Minat Beli Konsumen
Abstract. This study aims to determine respondents responses regarding Brand Image, Electronic Word Of Mouth, and Purchase Interest Consumers on Jambal Roti Anugrah products, to f...
Comparing Gaussian Processes, Neural Processes and Neural Networks for Interpolation of Ionospheric ROTI
Comparing Gaussian Processes, Neural Processes and Neural Networks for Interpolation of Ionospheric ROTI
The Rate of Total Electron Content (TEC) Index (ROTI) is widely used as an indicator of small-scale ionospheric irregularities and GNSS signal disturbance risk. Unlike Vertical Tot...
IMPLEMENTASI METODE HOLT WINTER’S EXPONENTIAL SMOOTHING SEBAGAI PRDIKSI PENJUALAN ROTI AGUNG BAKERY
IMPLEMENTASI METODE HOLT WINTER’S EXPONENTIAL SMOOTHING SEBAGAI PRDIKSI PENJUALAN ROTI AGUNG BAKERY
Roti Agung merupakan umkm di sektor industri makanan berupa roti yang beroperasi dari pusat produksi mereka yang terletak di Martapura, Kalimantan Selatan. Dalam penjualanya tidak ...
An evolutionary perspective of Intronless Genes highlight their recent highly specialized role
An evolutionary perspective of Intronless Genes highlight their recent highly specialized role
Short Abstract:
Eukaryotic genes without introns in their coding sequence are known as "single-exon genes" (SEGs), in contrast to "multiple exon genes'' (MEGs). ...
Diversifikasi roti sorgum lokal unggulan untuk menuju ketahanan pangan global nusantara yang sehat
Diversifikasi roti sorgum lokal unggulan untuk menuju ketahanan pangan global nusantara yang sehat
Ketahanan Pangan global diuji selama tiga tahun terakhir imbas dari Pandemi COVID-19, perang ukraina dan resesi ekonomi. Langkah strategis harus diambil otoritas pangan negara untu...
Tinjauan Tampilan Visual Desain Kemasan Roti Murni di Yogyakarta
Tinjauan Tampilan Visual Desain Kemasan Roti Murni di Yogyakarta
AbstrakKemasan pada saat ini telah mengalami penambahan fungsi dimana kemasan tidak lagi sekedar untuk melindungi dan sebagai wadah, tetapi juga berfungsi sebagai media promosi ser...
Enhanced Real-time Global Ionospheric Maps using Machine Learning
Enhanced Real-time Global Ionospheric Maps using Machine Learning
Accurate ionospheric models are essential for single-frequency high-precision Global Navigation Satellite Systems (GNSS) applications. Global ionospheric maps (GIMs), which depicts...

