named MICHIBIKI was launched in September, 2010. This paper shows a preliminary estimation of positioning accuracy of the QZS1. The mission of QZS1 is to raise the positioning accuracy of GPS. The QZS1 has 3 positioning signals named LEX, L1-SAIF and L1-CA. LEX and L1-SAIF are auxiliary signals based RTK and differential measurement using revised information derived from the electronic reference points managed by the Geographic Survey Institute of Japan respectively. QZS1 L1-SAIF signal is expected the accuracy less than 1 m. In order to estimate the positioning accuracy of QZS1 L1-SAIF, the positioning accuracy of QZS1 were compared with the accuracy of GPS single measurement. As the results, for an example, GPS accuracy is 3.17m in latitu...
The Japanese Quasi-Zenith Satellite System (QZSS) has recently (October 2017) reached its first 4-sa...
Results are presented for Michibiki, the first satellite of Japan’s Quasi-Zenith Satellite System. M...
The United States has been developing a GPS (Global Positioning System), and now We can make use of ...
Japanese Quasi-Zenith Satellite-1 (QZS1) named MICHIBIKI was launched in September, 2010. This paper...
Abstract: QZS was designed to supplement the performance of GPS civil use by Japan. It has the compa...
The positional information has an important role in our life-style. People need to get positional in...
The Japanese Quasi-Zenith Satellite System (QZSS) is a regional satellite navigation system capable ...
The Quasi-Zenith Satellite System (QZSS), a dedicated regional Japanese satellite system currently u...
The Quasi-Zenith Satellite System (QZSS) is a regional navigation satellite system transmitting navi...
The current Global Positioning System (GPS) provides limited availability and capability for a count...
The current GPS satellite constellation provides limited availability and reliability for a coun-try...
The Quasi-Zenith Satellite System (QZSS), which serves Japan and its surrounding areas, is a regiona...
The Quasi-zenith Satellite System is a satellite navigation system in Japan which is designed to com...
<p class="al-j">Japan decided to set up their <span id="adtext_2" class="adtext">satellite communica...
Simultaneous measurements were taken at two fixed stations in Nagasaki in order to evaluate the posi...
The Japanese Quasi-Zenith Satellite System (QZSS) has recently (October 2017) reached its first 4-sa...
Results are presented for Michibiki, the first satellite of Japan’s Quasi-Zenith Satellite System. M...
The United States has been developing a GPS (Global Positioning System), and now We can make use of ...
Japanese Quasi-Zenith Satellite-1 (QZS1) named MICHIBIKI was launched in September, 2010. This paper...
Abstract: QZS was designed to supplement the performance of GPS civil use by Japan. It has the compa...
The positional information has an important role in our life-style. People need to get positional in...
The Japanese Quasi-Zenith Satellite System (QZSS) is a regional satellite navigation system capable ...
The Quasi-Zenith Satellite System (QZSS), a dedicated regional Japanese satellite system currently u...
The Quasi-Zenith Satellite System (QZSS) is a regional navigation satellite system transmitting navi...
The current Global Positioning System (GPS) provides limited availability and capability for a count...
The current GPS satellite constellation provides limited availability and reliability for a coun-try...
The Quasi-Zenith Satellite System (QZSS), which serves Japan and its surrounding areas, is a regiona...
The Quasi-zenith Satellite System is a satellite navigation system in Japan which is designed to com...
<p class="al-j">Japan decided to set up their <span id="adtext_2" class="adtext">satellite communica...
Simultaneous measurements were taken at two fixed stations in Nagasaki in order to evaluate the posi...
The Japanese Quasi-Zenith Satellite System (QZSS) has recently (October 2017) reached its first 4-sa...
Results are presented for Michibiki, the first satellite of Japan’s Quasi-Zenith Satellite System. M...
The United States has been developing a GPS (Global Positioning System), and now We can make use of ...