Garzia Fabio, van der Merwe Johannes Rossouw, Rügamer Alexander, Urquijo Santiago, Felber Wolfgang
Satellite-Based Positioning Systems Department, Fraunhofer IIS, Nordostpark 84, 90411 Nuremberg, Germany.
Sensors (Basel). 2020 Nov 13;20(22):6492. doi: 10.3390/s20226492.
Interference can significantly degrade the performance of global navigation satellite system (GNSS) receivers. Therefore, mitigation methods are required to ensure reliable operations. However, as there are different types of interference, robust, multi-purpose mitigation algorithms are needed. This paper describes the most popular state-of-the-art interference mitigation techniques. The high-rate DFT-based data manipulator (HDDM) is proposed as a possible solution to overcome their limitations. This paper presents a hardware implementation of the HDDM algorithm. The hardware HDDM module is integrated in three different receivers equipped with analog radio-frequency (RF) front-ends supporting signals with different dynamic range. The resource utilization and power consumption is evaluated for the three cases. The algorithm is compared to a low-end mass-market receiver and a high-end professional receiver with basic and sophisticated interference mitigation capabilities, respectively. Different type of interference are used to compare the mitigation capabilities of the receivers under test. Results of the HDDM hardware implementation achieve the similar or improved performance to the state of the art. With more complex interferences, like frequency hopping or pulsed, the HDDM shows even better performance.
干扰会显著降低全球导航卫星系统(GNSS)接收机的性能。因此,需要采用缓解方法来确保可靠运行。然而,由于存在不同类型的干扰,所以需要强大的多用途缓解算法。本文介绍了最流行的先进干扰缓解技术。提出了基于高速离散傅里叶变换(DFT)的数据处理器(HDDM)作为克服其局限性的一种可能解决方案。本文给出了HDDM算法的硬件实现。硬件HDDM模块集成在三个不同的接收机中,这些接收机配备了支持不同动态范围信号的模拟射频(RF)前端。针对这三种情况评估了资源利用率和功耗。将该算法分别与具有基本和复杂干扰缓解能力的低端大众市场接收机以及高端专业接收机进行比较。使用不同类型的干扰来比较被测接收机的缓解能力。HDDM硬件实现的结果达到了与现有技术相似或更好的性能。对于更复杂的干扰,如跳频或脉冲干扰,HDDM表现出更好的性能。