D. G. Rao, Yogesh Shakya, Angela Nalini Margaret, Abhishek Kothari
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引用次数: 0
摘要
波束转向单元(Beam steering unit, BSU)在相控阵雷达中负责根据波束参数对波束进行转向[3],它根据雷达控制器的指令将波束从一个位置移动到另一个位置。该装置的控制逻辑在MATLAB中建模,在Simulink中进行仿真,并用硬件描述语言实现。BSU的体系结构由单板计算机(SBC)和自主开发的阵列接口卡(AIC)组成。SBC从雷达控制器接收波束参数,并根据标准表、准直表和相位命令表等不同的表计算相位梯度和相位命令。AIC有一个控制逻辑,它驻留在FPGA中[18]。AIC将与SBC交互以接收相控阵中移相器的相位命令、行号和列号。控制逻辑将数据解码成合适的格式并转换成串行格式,以便将数据加载到移相器中。数据将在天线的每个扇区串行加载,并在其他扇区并行加载。采用这种设计方法,实现的加载时间为2.2msec。该单元可用于不同天线尺寸的相控阵[3]。
A design and implementation of control logic of beam steering unit for phased array radar
Beam steering unit (BSU) is responsible for steering of the beam in Phased Array Radar [3] based on beam parameters it will shift the beam from one position to other position as directed by the radar Controller. The control logic of the unit is modelled in MATLAB, Simulated in Simulink and implemented in Hardware description language. The architecture of BSU consists of Single Board Computer (SBC) and an indigenously developed Array Interface Card (AIC). SBC will receive the beam Parameter from Radar Controller and calculates the Phase gradients and phase commands based on the different tables like standard table, collimation table, and Phase command table. The AIC is having a control logic, which is residing in an FPGA [18]. The AIC will interact with the SBC for receiving the phase command, Row number and column number of the phase shifters in the phased array. The control logic will decode the data into suitable format and converts into serial format for loading the data into phase shifters. The data will be loaded serially in each sector and parallel in other sectors of the antenna. With this design method the loading time achieved is 2.2msec. This unit can be used for different phased arrays [3] with varying antenna dimensions.