Information Science and Technology College, Dalian Maritime University, Dalian 116026, China.
Sensors (Basel). 2018 Oct 25;18(11):3626. doi: 10.3390/s18113626.
In order to remedy the inadequacy of the sources of differential corrections in current automatic identification system (AIS) and to improve the positioning accuracy of AIS mobile stations using single-point positioning, a differential correction approach for AIS mobile stations based on the continuously operating reference station (CORS) network is proposed. In the approach, AIS server derives real-time pseudo-range differential corrections from each reference station in CORS network and generates the corrections for AIS mobile stations. Then AIS base stations transmit these differential corrections to mobile stations using broadcast or addressed binary messages for positioning. Load analysis and testing show that this approach can effectively meet the need for differential corrections for most AIS mobile stations under the condition that the occupancy rate of the AIS channel is less than 1% when using broadcast binary messages. In addition, since this method is based on the existing CORS network, it is straightforward to implement in engineering projects and does not require additional hardware upgrades to the existing differential global positioning system (DGPS) and AIS infrastructure.
为了弥补当前自动识别系统(AIS)差分改正源的不足,并提高单点定位中 AIS 移动站的定位精度,提出了一种基于连续运行参考站(CORS)网络的 AIS 移动站差分改正方法。在该方法中,AIS 服务器从 CORS 网络中的每个参考站推导出实时伪距差分改正,并为 AIS 移动站生成改正。然后,AIS 基站使用广播或寻址二进制消息将这些差分改正发送到移动站进行定位。负载分析和测试表明,在使用广播二进制消息时,当 AIS 信道的占有率小于 1%时,该方法可以有效地满足大多数 AIS 移动站对差分改正的需求。此外,由于该方法基于现有的 CORS 网络,因此在工程项目中实施非常简单,并且不需要对现有差分全球定位系统(DGPS)和 AIS 基础设施进行额外的硬件升级。