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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Scalable Phased Array Architectures With a Reduced Number of Tunable Phase Shifters
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Scalable Phased Array Architectures With a Reduced Number of Tunable Phase Shifters

机译:可调相移器数量减少的可扩展相控阵架构

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A new architecture for scalable phased array design is presented. A vector summation technique is used in a new feed network in order to reduce the number of tunable phase shifters in the phased array. As a result, phased array front-end's complexity is reduced. In this architecture, one tunable phase shifter and N variable gain amplifiers (VGAs) adjust the phase and amplitude of the signal at each antenna element in an N -element subarray. The technique allows a number of subarrays to be connected together to form a larger array providing a narrow beamwidth. An optimum design based on a particle swarm optimization algorithm is presented for an N -element subarray. As a proof of concept, an eight-element transmit phased array consisting of two four-element subarrays is designed and tested at the Ku-band based on the described method. Measurement results for the eight-element phased array are presented. The eight-element phased array controlled by two phase shifters and eight VGAs provides approximately 37° of scan range.
机译:提出了一种可扩展相控阵设计的新架构。在新的馈电网络中使用矢量求和技术,以减少相控阵中可调相移器的数量。结果,降低了相控阵前端的复杂度。在这种架构中,一个可调移相器和N个可变增益放大器(VGA)调整N元素子阵列中每个天线元件处信号的相位和幅度。该技术允许将多个子阵列连接在一起以形成较大的阵列,从而提供较窄的波束宽度。针对N元素子阵列,提出了一种基于粒子群优化算法的优化设计方案。作为概念的证明,基于所描述的方法,设计和测试了由两个四元素子阵列组成的八元素发射相控阵,并在Ku频段进行了测试。给出了八元素相控阵的测量结果。由两个移相器和八个VGA控制的八元素相控阵可提供约37°的扫描范围。

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