3MULTI-DIMENSIONAL SIGNAL PROCESSING AND CIRCUITS FOR ADVANCED ELECTRONICALLY SCANNED ANTENNA ARRAYS

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LIST OF TABLES

TablePage3.1 Multiplier and adder complexities for N element ULA of the proposed and example designs of 2-D IIR beam filters in literature.
(所提N元非线性阵列 乘法器&加法器的复杂性 及 文献中二维IIR波束滤波器设计案例)603.2 Finite precision quantizers present inside each PPCM.(每个并行核心处理模块的有限精度量化62

3.3 Accuracy of the 2-D magnitude frequency response, FPGA resource consumption, CPD, and dynamic power consumption 

of the prototype FPGA implementation for different fixed point precision levels.

(2-D幅频响应的准确性,FPGA资源消耗、CPD、和不同固定点精度水平原型(样机)FPGA实现的动态功耗。)

643.4 AT and AT2 complexities of the prototype FPGA design for different fi xed point finite precision.
(不同固定点有限精度原型(样机)FPGA设计的AT , AT2复杂性 653.5 Beam directions and half-power beam angles obtained from the the-oretical expressions and the prototype FPGA
implementation(源自理论表达式的波束方向和半功率波束角和原型(样机)FPGA实现)69   4.1 Error in DOA due to frequency warping effect.(由于频率翘曲效应误差产生的DOA误差)88

4.2 Multiplier complexities for phased array beamformer.(相控阵波束形成器 多重 复杂性

965.1 Example propagation scenario(传播场景方案)1285.2 Multi-path directions pertaining to each look direction(任意方向的多径方向)129  6.1 Angular error,  'Delta Psi' of the main lobe direction of [ Rho(Psi’)]Ft0(角度误差,主瓣 [ Rho(Psi’)]Ft0方向的'Delta Psi' )153

6.2 Group delay (GD), M, beam Psi  , achieved beam  Psi′ and percentage MSE of the 2-D magnitude response E (M,Psi )

 for the examples in Figs. 6.18(例图6.18的群时延(GD),M,期望波束Psi,接收波束Psi',2-D幅度响应E(M,Psi) 的百分比误差

1729.1 Design parameters and the improvement in SIR(signal to interference ratio) obtained by the proposed transfer function in
 (9.10) for different closed-form simulation scenarios. All scenarios assume an inter-carrier spacing of Fmax/1024 for the
signal model given by (9.2)(在(9.10)不同封闭形式的模拟方案中 所提传递函数的 设计参数和改进信号干扰比。所有场景
均假设9.2节所给信号模型具有一个间隔为
Fmax/1024的子载波)2129.2 Relative improvement in the first side lobe level obtained from the proposed beam-enhancement for various spatial windows
 shown in Fig. 9.6(在图9.6的空间窗口显示了 使用所提波束增强 的 第一旁瓣水平的相对改善)215   9.3 Signal processing complexities of HBeam,A (Zx,Sct), H DAS,A (Zx,Sct) and H (Zx; Sct) for a ULA of size N (assuming
uniform aperture weights). (对H波束,A(ZX,Sct),H DAS,H(ZX,Sct)和N元非线性阵列H(ZX,Sct)(假设均匀孔径重量)
信号处理的复杂性。219

9.4 Different test cases of simulation example 2 (模型2 的不同测试事件)

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