共查询到16条相似文献,搜索用时 93 毫秒
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为实现远岸潮汐精确监测,基于GPS PPK技术开展了远距离高精度GPS验潮方法研究。研究给出了GPS潮位测量方法,其次联合GPS定位信息和IMU姿态信息,通过坐标转换原理得到瞬时水面的精确高程。在此基础上,研究利用基于FFT的低通滤波技术提取潮位信息。最后在烟台港进行了实际工程试验。试验结果表明,当GPS PPK验潮距离达98km时,潮位误差可控在!15cm以内,验潮精度仍可优于10cm。 相似文献
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GPS验潮中波浪的误差分析和消除 总被引:8,自引:0,他引:8
GPS验潮采用GPS RTK计算潮位,是目前GPS技术发展和应用的一个方向,对验潮方法的革新和GPS的进一步应用有着重要的意义。在水面上,波浪引起载体的空间位置改变,给验潮带来很大的误差。为了得到厘米级精度的潮位,必须消除波浪的影响。详细分析了GPS测姿方法和姿态补偿,最后采用小波去噪提取出了潮汐信号。实测数据和模拟数据证明GPS验潮可达到厘米级的精度,满足常规水深测量的精度要求。 相似文献
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为实现远岸潮位精确监测,从天线类型、浮标姿态改正、数据处理模式等影响因素进行了远距离GNSS浮标潮位测量精度的分析研究。结果表明:相比于非扼流圈天线,采用扼流圈天线可有效提高GNSS浮标数据观测质量,获得较高精度的定位结果;姿态改正对浮标天线高误差达厘米级,潮位提取中可通过低通滤波器有效消除;远距离潮位测量(基线大于300 km)中PPP潮位精度整体优于PPK潮位;GNSS潮位测量精度受海况影响严重,四级海况以内,潮位测量精度优于10 cm,可以满足远距离潮位观测精度的要求。 相似文献
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潮位是影响水下地形测量精度的主要误差之一,获取准确的潮位信息直接关系着潮位改正的正确与否。文中基于GPS PPK技术得到的GPS天线大地高,首先经过垂直基准转换,其次利用推算的姿态改正公式以及利用压力式潮位计获取的动态吃水进行姿态与吃水改正,最后采用小波变换进行波浪滤除,得到测深点精密的瞬时潮位。以琼州海峡为试验海区,采用上述方法获得测深点瞬时潮位,并与传统潮汐模型推算潮位对比,对比发现两者并不一致,且前一种方法得到的潮位趋势与测船的航向有很强的相关性。对测区的潮汐潮流特征进行了分析,分析结果与实测结果相符,表明GPS PPK能够获得该区域的潮位,并可以反映该区域的潮汐特征。 相似文献
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GNSS船姿测量以其观测误差不随时间累积的特点得到了广泛研究和应用,本文基于三天线GNSS船姿测量方式,构建了波束脚印误差与姿态误差间的关系模型,设计仿真实验分析了基线长度对姿态误差的影响,以及不同水深环境下姿态误差与GNSS定位误差的关系。为突破传统RTK在测量距离上的限制,本文采用PPP、PPK、MBD (动态参考站差分)三种方法进行GNSS船姿计算,并通过海上实验与高精度惯性导航系统进行对比分析,结果表明使用MBD测姿结果要优于PPK和PPP模式,得到的航偏角、横摇角、纵摇角标准差均在0.1°左右,可满足通常情况下多波束测深对姿态精度的要求。 相似文献
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《海洋技术学报》2021,(1)
随着载波相位差分技术的发展,RTK(Real Time Kinematic)三维水深测量已经广泛应用于水下地形测量中。RTK技术需要建立实时数据链接传输差分数据,当数据链接丢失时,定位精度会严重下降。针对此问题,本文研究了一种基于后处理动态差分无需实时数据链接的PPK(Post Processing Kinematic)定位技术,并通过静态和动态比测的方法,对不同GNSS系统及其组合解算策略进行了精度和稳定性测试,最后在杭州湾河口进行了实际应用。测试结果表明,PPK获取的结果具有良好的稳定性,定位精度能满足实际工作需要;实际应用结果表明基于PPK的无验潮水下地形测量技术具有广泛的应用前景。 相似文献
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A four‐antenna GPS attitude determination system was used to estimate roll, pitch, and heading parameters of a 52‐meter surveying vessel in an operational marine environment. The least squares algorithm for platform attitude estimation using multiple baseline vector observables is presented. An efficient on‐the‐fly carrier phase ambiguity searching method is derived, which utilizes the Cholesky decomposition method and the known baseline constraints between the GPS antennas to construct the potential ambiguity sets on the sphere. The accuracy of the estimated attitude parameters from the GPS multi‐antenna system was assessed with an independent inertial navigation system (INS). Results from sea trials show that the proposed GPS multi‐antenna system and processing algorithms delivered a satisfactory performance under various ship maneuvers. The accuracy of GPS estimated ship attitude parameters is better than 0.06 degrees at an output rate of 10 Hz. Such a performance demonstrates a new alternative means to provide accurate, reliable, and cost‐effective ship attitude information for hydrographic applications. 相似文献
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The accuracy of GPS/Acoustic positioning is crucial for monitoring seafloor crustal deformation. However, the slant range residual is currently the only indicator used to evaluate the precision of positioning seafloor transponders. This study employs a unique Seafloor Acoustic Transponder System (SATS) to evaluate the accuracy of GPS/Acoustic seafloor positioning. The SATS has three transponders and an attitude sensor in a single unit, which provides true lengths of transponder baselines and true attitude of the SATS to ensure assessment reliability and validity. The proposed approach was tested through a GPS/Acoustic experiment, in which an off-the-shelf acoustic system was used to collect range measurements. Using GPS/Acoustic geodetic observations, the positions of three transponders on the SATS were estimated by an optimization technique combined with ray-tracing calculations. The accuracy of the GPS/Acoustic seafloor positioning is assessed by comparing the true baselines and attitude with the results derived from the position estimates of the three transponders. A sensitivity analysis is conducted to investigate the robustness of the GPS/Acoustic positioning results to changes of sound speed. Experimental results demonstrate that the use of the SATS can help to assess the validity of the GPS and acoustic travel time measurements in the GPS/Acoustic seafloor positioning. 相似文献
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利用在全球不同海域的船载GNSS进出港数据,以事后动态处理技术(PPK)的坐标计算值为评价基准,分析了Veripos星站差分系统和事后动态精密单点定位技术(PPP)在不同运动状态下的位置服务精度。结果表明,Veripos与PPP在低动态下的平面与高程位置服务精度可优于6.2 cm和14.9 cm,在常规动态下平均精度优于20 cm;PPP与Veripos坐标分量平均互差小于15 cm,标准差小于23 cm,在深远海调查中PPP技术可作为星站差分系统的有效补充和特殊情况下的位置服务替代。 相似文献
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阐述了GPS/IMU系统进行位置与姿态测量的基本原理,推导了利用GPS/IMU的导航解计算遥感器瞬时外方位元素的数学模型,并利用机载三线阵影像验证了GPS/IMU辅助直接对地定位的精度潜力。三组ADS40数据直接定位的试验结果表明,GPS/IMU提供的外方位元素具有较高的定位精度,平面精度优于2.5个像元,高程优于5.1个像元,但存在系统性的测量误差,在大比例尺遥感测绘作业中引入少量控制点参与平差仍是必须的。 相似文献
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Shipborne GPS attitude determination during MMST-93 总被引:1,自引:0,他引:1
Lachapelle G. Cannon M.E. Lu G. Loncarevic B. 《Oceanic Engineering, IEEE Journal of》1996,21(1):100-104
The attitude parameters of a ship underway were measured using a configuration of four 10-channel NovAtel Model 951 narrow-correlator-spacing receivers. These C/A code receivers have output rates of up to 10 Hz and maintain effective carrier phase lock under relatively harsh ship dynamics. The attitude parameters are calculated independently at each epoch using differential carrier phase measurements, carrier phase ambiguities are resolved on-the-fly by constraining the approximately known distances between the antennas that are rigidly mounted on the ship. Carrier phase thermal noise and multipath are minimized by mounting the antennas as far apart as possible. The four-antenna configuration provides redundancy and further improves accuracy. During the Matthew Motion Sensor Trials (MMST-93) conducted off the coast of Halifax, Nova Scotia, in June-July 1993, the GPS-derived attitude parameters were compared with those obtained with a Honeywell HG1050 ring laser gyro inertial navigation system (INS) which provides roll and pitch with an accuracy of 15 arcsecs and heading with an accuracy of 2 arcmins. To simulate rough weather conditions, sharp maneuvers were performed to induce roll angles in excess of 10°. No accuracy degradation nor any loss of GPS measurements occurred. The RMS agreement between GPS and INS derived attitude parameters is better than 2 arcmins in heading, 1 arcmin in pitch and 3 arcmins in roll. This level of accuracy demonstrates the capability of GPS for cost-effective shipborne attitude determination at an accuracy level of 0.05 相似文献