Yu Shijie, Shi Zhao, Li Xuehua, Wang Xin, W. Xuejun
{"title":"双极化气象雷达全链路主动定标方法及现场试验","authors":"Yu Shijie, Shi Zhao, Li Xuehua, Wang Xin, W. Xuejun","doi":"10.1109/ICMO49322.2019.9025953","DOIUrl":null,"url":null,"abstract":"A large number of weather operational radars were deployed around China in the past twenty years, those radar aregradually being upgraded to dual-polarization weather radars. Polarized variables play an important role in improving radar data quality, quantitative precipitation estimate and hydrometeor classification algorithm. Calibration is the key basis for successful application of dual polarization radar. At present, the main calibration methods for dual polarization weather radar consist of signal source method, solar method, light rain method, metal ball method, etc. In this paper, a full link active calibration method is applied to calibrate the dual-polarization weather radar. The full link active calibration device first receives the horizontal polarization wave and vertical polarization wave transmitted by the radar, and retrieve the time-frequency characteristics of the transmitted waveform, such as pulse waveform, transmitted central frequency and other information. Based on the acquired transmission information, the device quickly generates the simulated target with specific distance, polarized characteristics and Doppler information. Secondly, through the Up conversion, and Amplifier modules, the calibration signal is transmitted back to the radar, then the radar completes the calibration signal reception and polarized variables extraction. Compared with the variables pre-defined by the calibration device, the systematic bias for radar polarized variable are determined. From September 16 to 20, 2019, the full link active calibration experiment was designed and carried out in the main campus of Chengdu University of information technology. The X-band dual polarization weather radar is located on the top of the school's information building. The calibration device adopted the high-precision radar target simulatorfrom Palindrome and is placed on a roof with a distance of 1.574km to the radar. The calibration project includes reflectivity, differential reflectivity and Doppler velocity. The results show that the reflectivity bias is 0.96dB, the differential reflectance bias is 0.8 dB, the Doppler velocity bias is 0.1 meter per second, and the azimuth positioning bias is 0.09 degree. The experimental results show that the full link active calibration method plays a positive role in promoting the development of dual-polarization weather radar calibration.","PeriodicalId":257532,"journal":{"name":"2019 International Conference on Meteorology Observations (ICMO)","volume":"114 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2019-12-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"A full link active calibration method and field experiment for dual polarization weather radar\",\"authors\":\"Yu Shijie, Shi Zhao, Li Xuehua, Wang Xin, W. Xuejun\",\"doi\":\"10.1109/ICMO49322.2019.9025953\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"A large number of weather operational radars were deployed around China in the past twenty years, those radar aregradually being upgraded to dual-polarization weather radars. Polarized variables play an important role in improving radar data quality, quantitative precipitation estimate and hydrometeor classification algorithm. Calibration is the key basis for successful application of dual polarization radar. At present, the main calibration methods for dual polarization weather radar consist of signal source method, solar method, light rain method, metal ball method, etc. In this paper, a full link active calibration method is applied to calibrate the dual-polarization weather radar. The full link active calibration device first receives the horizontal polarization wave and vertical polarization wave transmitted by the radar, and retrieve the time-frequency characteristics of the transmitted waveform, such as pulse waveform, transmitted central frequency and other information. Based on the acquired transmission information, the device quickly generates the simulated target with specific distance, polarized characteristics and Doppler information. Secondly, through the Up conversion, and Amplifier modules, the calibration signal is transmitted back to the radar, then the radar completes the calibration signal reception and polarized variables extraction. Compared with the variables pre-defined by the calibration device, the systematic bias for radar polarized variable are determined. From September 16 to 20, 2019, the full link active calibration experiment was designed and carried out in the main campus of Chengdu University of information technology. The X-band dual polarization weather radar is located on the top of the school's information building. The calibration device adopted the high-precision radar target simulatorfrom Palindrome and is placed on a roof with a distance of 1.574km to the radar. The calibration project includes reflectivity, differential reflectivity and Doppler velocity. The results show that the reflectivity bias is 0.96dB, the differential reflectance bias is 0.8 dB, the Doppler velocity bias is 0.1 meter per second, and the azimuth positioning bias is 0.09 degree. The experimental results show that the full link active calibration method plays a positive role in promoting the development of dual-polarization weather radar calibration.\",\"PeriodicalId\":257532,\"journal\":{\"name\":\"2019 International Conference on Meteorology Observations (ICMO)\",\"volume\":\"114 1\",\"pages\":\"0\"},\"PeriodicalIF\":0.0000,\"publicationDate\":\"2019-12-01\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"2019 International Conference on Meteorology Observations (ICMO)\",\"FirstCategoryId\":\"1085\",\"ListUrlMain\":\"https://doi.org/10.1109/ICMO49322.2019.9025953\",\"RegionNum\":0,\"RegionCategory\":null,\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"\",\"JCRName\":\"\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"2019 International Conference on Meteorology Observations (ICMO)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/ICMO49322.2019.9025953","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
摘要
近20年来,中国部署了大量的气象业务雷达,这些雷达正在逐步升级为双极化气象雷达。极化变量在提高雷达数据质量、降水定量估计和水流星分类算法等方面发挥着重要作用。标定是双极化雷达成功应用的关键基础。目前,双极化气象雷达的标定方法主要有信号源法、太阳法、小雨法、金属球法等。本文采用全链路主动定标方法对双极化气象雷达进行定标。全链路主动校准装置首先接收雷达发射的水平极化波和垂直极化波,检索发射波形的时频特性,如脉冲波形、发射中心频率等信息。该装置根据获取的传输信息,快速生成具有特定距离、极化特性和多普勒信息的仿真目标。然后,通过Up转换和放大器模块,将标定信号传回雷达,雷达完成标定信号接收和极化变量提取。通过与标定装置预置的变量进行比较,确定了雷达极化变量的系统偏差。2019年9月16日至20日,在成都信息工程大学主校区设计并开展了全环节主动标定实验。x波段双极化气象雷达位于学校信息大楼楼顶。标定装置采用Palindrome高精度雷达目标模拟器,安装在距离雷达1.574km的屋顶上。校正方案包括反射率、差分反射率和多普勒速度。结果表明:反射率偏差为0.96dB,差分反射率偏差为0.8 dB,多普勒速度偏差为0.1 m / s,方位定位偏差为0.09度。实验结果表明,全链路主动定标方法对双极化气象雷达定标的发展具有积极的推动作用。
A full link active calibration method and field experiment for dual polarization weather radar
A large number of weather operational radars were deployed around China in the past twenty years, those radar aregradually being upgraded to dual-polarization weather radars. Polarized variables play an important role in improving radar data quality, quantitative precipitation estimate and hydrometeor classification algorithm. Calibration is the key basis for successful application of dual polarization radar. At present, the main calibration methods for dual polarization weather radar consist of signal source method, solar method, light rain method, metal ball method, etc. In this paper, a full link active calibration method is applied to calibrate the dual-polarization weather radar. The full link active calibration device first receives the horizontal polarization wave and vertical polarization wave transmitted by the radar, and retrieve the time-frequency characteristics of the transmitted waveform, such as pulse waveform, transmitted central frequency and other information. Based on the acquired transmission information, the device quickly generates the simulated target with specific distance, polarized characteristics and Doppler information. Secondly, through the Up conversion, and Amplifier modules, the calibration signal is transmitted back to the radar, then the radar completes the calibration signal reception and polarized variables extraction. Compared with the variables pre-defined by the calibration device, the systematic bias for radar polarized variable are determined. From September 16 to 20, 2019, the full link active calibration experiment was designed and carried out in the main campus of Chengdu University of information technology. The X-band dual polarization weather radar is located on the top of the school's information building. The calibration device adopted the high-precision radar target simulatorfrom Palindrome and is placed on a roof with a distance of 1.574km to the radar. The calibration project includes reflectivity, differential reflectivity and Doppler velocity. The results show that the reflectivity bias is 0.96dB, the differential reflectance bias is 0.8 dB, the Doppler velocity bias is 0.1 meter per second, and the azimuth positioning bias is 0.09 degree. The experimental results show that the full link active calibration method plays a positive role in promoting the development of dual-polarization weather radar calibration.