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A flexible processor for a digital adaptive array radar

机译:用于数字自适应阵列雷达的灵活处理器

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A digital beamforming processor for an adaptive array radar is described. The functionality and the architecture of the processor are strongly driven by a goal of achieving adaptive null depths in the 60-dB to 70-dB range, which necessitates substantial preprocessing of each channel. In particular, conversion to baseband quadrature channels is accomplished digitally using a single A/D converter per channel, and FIR (finite impulse response) equalizing filters are employed in each channel to match channel transfer functions. The processor is highly modular, and this not only distributes the total processing load, but also the I/O (input/output) bandwidth requirement. This is accomplished by distributing the adaptive beamforming algorithm systolically across a linear array of processing nodes. The processor is expandable to a different number of channels and sufficiently flexible to be applied to other problems of an array signal processing nature. Experimental data presented demonstrate that the processor is capable of supporting channel-to-channel cancellation of interfering signals to the level of -65 dB.
机译:描述了一种用于自适应阵列雷达的数字波束成形处理器。处理器的功能和体系结构受实现60到70 dB范围内的自适应零深度的目标的强烈驱动,这需要对每个通道进行大量预处理。特别是,每个通道使用一个A / D转换器以数字方式完成向基带正交通道的转换,并且在每个通道中采用FIR(有限脉冲响应)均衡滤波器来匹配通道传递函数。处理器是高度模块化的,不仅分配了总的处理负载,还分配了I / O(输入/输出)带宽需求。这是通过在处理节点的线性阵列上系统地分配自适应波束成形算法来实现的。该处理器可扩展到不同数量的通道,并且足够灵活以应用于阵列信号处理性质的其他问题。呈现的实验数据表明,该处理器能够支持将干扰信号从通道间消除到-65 dB的水平。

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