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An FPGA-Based Implementation of a Multifunction Environment Sensing Device for Shared Access With Rotating Radars

机译:基于FPGA的旋转雷达共享访问多功能环境传感设备的实现

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To protect radar receivers and to facilitate shared access in radar bands, regulatory bodies have recommended the use of spectrum monitoring devices called environmental sensing capability (ESC). High-speed and low-cost ESC devices are required to process in real time the large amount of data (in-phase and quadrature samples) for the detection of radar signals and to differentiate them from secondary users (SUs) signals. In this paper, we present a field-programmable gate array (FPGA)-based design and implementation of a multifunction ESC device that can detect radar pulses and can also differentiate them from SU signals in microsecond time scales. The proposed ESC device performs the following tasks in parallel: 1) it detects and differentiates between radar and SU signals; 2) it measures received signal strength from SUs for radar protection; and 3) it also measures SUs' airtime utilization (ATU) in a channel, which can be used to perform load balancing (based on ATU) of SUs on different channels for efficient access. Detection of signals requires threshold setting. We present a novel minimum-based threshold setting technique, which is suitable for real-time operation of energy detectors. We implement a prototype of the proposed ESC device design on a Wireless Open-Access Research Platform node, which is equipped with a Xilinx FPGA. We evaluate the performance of the implemented device and show that with very high probability (close to 100%), it detects and differentiates between radar and SU signals. Moreover, it also accurately measures the ATU of SUs.
机译:为了保护雷达接收器并促进在雷达频带中的共享访问,监管机构建议使用称为环境传感能力(ESC)的频谱监视设备。需要高速和低成本的ESC设备实时处理大量数据(同相和正交采样)以检测雷达信号,并将其与次要用户(SU)信号区分开。在本文中,我们介绍了一种基于现场可编程门阵列(FPGA)的多功能ESC设备的设计和实现,该设备可以检测雷达脉冲,还可以在微秒级的时间范围内将它们与SU信号区分开。提出的ESC设备并行执行以下任务:1)它检测并区分雷达和SU信号; 2)测量来自SU的接收信号强度,以进行雷达保护; 3)还测量信道中SU的通话时间利用率(ATU),可用于在不同信道上对SU进行负载均衡(基于ATU),以实现有效访问。信号检测需要设置阈值。我们提出了一种新颖的基于最小的阈值设置技术,该技术适用于能量检测器的实时操作。我们在配备有Xilinx FPGA的无线开放访问研究平台节点上实现了拟议ESC设备设计的原型。我们评估了所实现设备的性能,并表明以很高的概率(接近100%)可以检测并区分雷达信号和SU信号。而且,它还可以精确地测量SU的ATU。

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