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Measurement analyses and evaluations of sea-level heights using the HY-2A satellite’s radar altimeter 被引量:2

Measurement analyses and evaluations of sea-level heights using the HY-2A satellite’s radar altimeter
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摘要 The HY-2A satellite is China’s first independent oceanic dynamic environmental satellite,and has been operating continuously for more than six years.The satellite’s radar altimeter,which is one of the main loads on the satellite,has the ability to realize all-weather and all-day observations of global sea-surface heights,as well as significant wave heights and sea-surface wind speeds.These observed data have been widely used in marine disaster prevention and reduction,along with resource development,maritime security and other fields.In order to achieve a comprehensive understanding of the multi-year overall observational performances of the HY-2A satellite’s radar altimeter,all of the observational data of the IGDR product from October 26,2012 to August 27,2017 were selected in this study for a comprehensive evaluation.The height measurement capability of the HY-2A satellite’s radar altimeter was evaluated using self-crossover and Jason-2 crossover methods.The height discrepancies at the self-crossover point of the HY-2A satellite’s ascending and descending orbits were also calculated.It was found that for the HY-2A satellite’s radar altimeter in global waters under the restriction conditions of ascending and descending orbits,the height anomaly differences were within a range of less than 30 cm.The absolute mean error was determined to be 5.81 cm,and the height anomaly standard deviation was 7.76 cm.Under the conditions of the observational areas being limited within a scope of 60°from the Equator,it was determined that the sea-level height anomaly differences were less than 10 cm at the junction of the ascending and descending orbits,the absolute mean error was 3.95 cm.In addition,the sea-level height anomaly standard deviation was observed to be 4.76cm.Using a mutual cross method with the Jason-2 satellite,it was found that under the conditions of the observational area being within the scope of 66°from the equator,the height anomaly differences at the junction were less than 30cm,and the absolute mean error of HY-2A and Jason-2 sea level height anomaly was 5.86 cm,with a standard deviation of 7.52 cm.It was observed that,if within the sea area the sea level height anomaly difference was limited to within 10cm,then the absolute mean error and standard deviation could reach 4.19cm and 4.98cm,respectively.It was confirmed that the HY-2A satellite’s radar altimeter had successfully reached the height measurement level of similar international altimeters.Therefore,it had the ability to meet the needs of marine scientific research and ocean circulation inversions. The HY-2A satellite is China’s first independent oceanic dynamic environmental satellite, and has been operating continuously for more than six years. The satellite’s radar altimeter, which is one of the main loads on the satellite,has the ability to realize all-weather and all-day observations of global sea-surface heights, as well as significant wave heights and sea-surface wind speeds. These observed data have been widely used in marine disaster prevention and reduction, along with resource development, maritime security and other fields. In order to achieve a comprehensive understanding of the multi-year overall observational performances of the HY-2A satellite’s radar altimeter, all of the observational data of the IGDR product from October 26, 2012 to August 27,2017 were selected in this study for a comprehensive evaluation. The height measurement capability of the HY-2A satellite’s radar altimeter was evaluated using self-crossover and Jason-2 crossover methods. The height discrepancies at the self-crossover point of the HY-2A satellite’s ascending and descending orbits were also calculated. It was found that for the HY-2A satellite’s radar altimeter in global waters under the restriction conditions of ascending and descending orbits, the height anomaly differences were within a range of less than 30 cm. The absolute mean error was determined to be 5.81 cm, and the height anomaly standard deviation was 7.76 cm. Under the conditions of the observational areas being limited within a scope of 60° from the Equator, it was determined that the sea-level height anomaly differences were less than 10 cm at the junction of the ascending and descending orbits, the absolute mean error was 3.95 cm. In addition, the sea-level height anomaly standard deviation was observed to be 4.76 cm. Using a mutual cross method with the Jason-2 satellite, it was found that under the conditions of the observational area being within the scope of 66° from the equator, the height anomaly differences at the junction were less than 30 cm, and the absolute mean error of HY-2A and Jason-2 sea level height anomaly was 5.86 cm, with a standard deviation of 7.52 cm. It was observed that, if within the sea area the sea level height anomaly difference was limited to within 10 cm, then the absolute mean error and standard deviation could reach 4.19 cm and 4.98 cm, respectively. It was confirmed that the HY-2A satellite’s radar altimeter had successfully reached the height measurement level of similar international altimeters. Therefore, it had the ability to meet the needs of marine scientific research and ocean circulation inversions.
出处 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2019年第11期134-139,共6页 海洋学报(英文版)
基金 The National Key Research and Development Program of China under contract No.2016YFC1401004 the National Natural Science Foundation of China under contract No.41406207
关键词 HY-2A satellite radar ALTIMETER sea level ANOMALIES HY-2A satellite radar altimeter sea level anomalies
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  • 1RenHua Zhang,Jing Tian,ZhaoLiang Li,HongBo Su,ShaoHui Chen,XinZhai Tang.Principles and methods for the validation of quantitative remote sensing products[J].Science China Earth Sciences,2010,53(5):741-751. 被引量:27
  • 2Abdalla S, Bidlot J R. 2004. Assimilation of ERS and ENVISAT wave data at ECMWE In: Janssen P A E M, ed. Proceedings of the ENVISAT ERS Symposium, Salzburg, Austria, 6-10.
  • 3Abdalla S, Janssen P. Bidlot J. 2008. OSTST 2008 meeting: Jason-2 Wind and Wave Products: Monitoring, Validation and Assimilation AVISO and PODAAC User Handbook. 2008. IGDR and GDR Jason Products, SMM-MU-M5-0P-13184-CN (AVISO), Edition 4.1.
  • 4Benveniste J. ed. 2002. ENVISAT Radar Altimeter and Microwave Radiometer Cross-Calibration and Validation Plan. Doc: PO?PL-ESR-RA-0005, ESA.
  • 5Chen Chuntao. 2010. Using muti-sensor satellite data to study the variability of Kuroshio [dissertationJ. Qingdao: Ocean Universi?tyofChina.
  • 6Fang Mingqing. 2003. An East China Sea (ECS) model with multi?sensor satellite data driving and assimilation and studies of some phenomena in the ECS. Qingdao: Ocean University of China.
  • 7Dumont J P. Rosmorduc V. Picot N, et a1. 2009. OSTM/Jason-2 prod?ucts handbook. CNES, EUMETSAT, JPL, NOAA/NESDIS, 400: 1 Model with Multi-sensor Satellite Data Driving and Assimilation and Studies of Some Phenomena in the ECS. Qingdao: Ocean Uni?versity of China.
  • 8Handbook of Automated Data QUality Control Checks and Proce?dures. NDBC Technical Documen. National Data Buoy Center, Stennis Space Center. http://www.ndbc.noaa.gov/handbook. pdf/2013-09-02.
  • 9Queffeulou P. 2003. Cross-validation ENVISAT RA-2 Significant Wave Height, SigmaO and Wind Speed. CCVT final report, IFREMER, BP. 70: 29280.
  • 10QuelJeulou p. 2003. Long-term quality status of wave height and wind speed measurements from satellite altimeters. In: Proceedings of The Thirteenth International Offshore and Polar Engineering Conference. Honolulu, Hawaii, USA.

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