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提出了一种基于虚拟阵叠加原理的阵列抗干扰方法。将相控阵列分解成一个主阵列和 N 个虚拟阵列,主阵列采用 Taylor 幅度加权实现低旁瓣电平,并通过相位控制使主波束对准来波方向。虚拟阵列也采用 Taylor 加权,并在主阵列旁瓣上产生 N 个零点,实现阵列的旁瓣对消, 虚拟阵的低旁瓣将减少对阵列主波束的影响,虚拟阵加权后与主阵列叠加最终得到整个阵列抗干扰的幅相权值。文中使用该方法对一个 24 元直线阵进行抗 3 个干扰的设计验证,在 3 个干扰方向实现了小于-100dB 的零点,证实了该方法的有效性。 相似文献
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加脊喇叭构成的幅度复加权测向圆阵研究 总被引:1,自引:1,他引:0
常规宽频带双通道干涉仪测向圆阵在高频时系统稳健性能较差,在此基础上本文提出了利用加脊喇叭天线构成的幅度复加权测向圆阵作为补偿手段。论文对幅度复加权测向原理进行了详细推导,并利用实际测试结果进行了研究。结果表明:阵元在满足特定幅度方向图的情况下,幅度复加权测向阵列可以得到较高的测向精度。由于无须利用相位信息,不存在相位模糊问题、由于不受阵列口径限制,从而可以靠增加阵元数目来补偿阵元边缘电平。提高了系统灵敏度、增强了系统稳健性能。 相似文献
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针对共形球面天线阵列,采用有向天线阵元,在保持阵列孔径不变的条件下,以阵元分布位置作为优化变量,以降低最大相对旁瓣电平为优化目标,运用改进的遗传算法对阵列进行稀疏优化,仿真结果表明:该方法能够降低球形阵列的旁瓣电平,达到了减少阵元个数、降低天线系统成本的目的。 相似文献
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圆柱面上的轴向偶极子阵的低副瓣方向图优化综合 总被引:1,自引:1,他引:0
本文利用新的非线性最优化方法讨论圆柱面上的轴向偶极子阵的低副瓣方向图优化综合问题,利用阵列的单元可实现增益方向图,我们把阵列综合问题表述为一个约束非线性规划问题,采用新直接法求解该问题即可得出一组使阵列的总方向图满足副瓣指标要求,同时具有尽可能高的方向性系数的激励系数,如果阵列的总方向图不能达到副瓣指标,则可得出一组使阵列方向图在可达到的副瓣方向图综合设计的模拟计算结果。 相似文献
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Minimization of the maximum sidelobe level for a given array geometry by phase-only adjustment of the element excitations is considered. Optimum phases are obtained by using a numerical search procedure to minimize the expression for the pattern sidelobe level with respect to the element phases. Results for both linear and planar arrays of equispaced elements are presented. The data suggests that optimum sidelobe level is a logarithmic function of array size, and optimum patterns have relative efficiencies that are typically somewhat greater than for comparable-amplitude tapered arrays. An analytic synthesis algorithm is presented for use on very large arrays for which the numerical search technique for the minimization of the sidelobe level is computationally impractical. This method produces patterns with characteristics similar to arrays synthesized using the numerical search method, i.e. relatively uniform angular distribution of energy in the sidelobe region, and generally decreasing maximum sidelobe level as the array size is increased 相似文献
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The radiation pattern of a small-size concentric ring array antenna does not remain φ-symmetric, if the array is made with an appreciably lesser number of antenna elements. The sidelobe level, first null beamwidth (FNBW), half-power beamwidth (HPBW), and the null depths of the radiation pattern change significantly in different φ planes. An efficient pattern synthesis method has been developed in this work to reduce the variation of sidelobe level, FNBW, and HPBW of a small-size concentric ring array of isotropic antennas, for different φ cuts. It is done by finding out an optimum set of amplitude distribution of the array elements using firefly algorithm. The sidelobe level and the first null depth of the array are kept below a desired value for all the defined φ cuts. The directivity of the optimized array and the uniform array has been computed. The variation of all these parameters for different φ cuts has been compared to the same array with uniform excitation among the elements. 相似文献
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Upper bounds on the height of the peak sidelobe of the random array are derived using the theory of level crossings of a random process. Statistical properties of the random array beam pattern are presented and are used to calculate the expected number of up-crossings of a given level by the power pattern. Upper bounds on the peak sidelobe height are obtained using the expected number of up-crossings. The bounds are compared with computer simulation results. 相似文献
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The solution to the optimization of performance indices of array antennas such as directive gain, efficiency index, and signal-to-noise ratio, do not provide information regarding the sidelobe region of the radiation pattern. It is shown that, with proper constraints on the sidelobes, a given performance index can be optimized to give a radiation pattern with desired sidelobe levels. As most of the performance indices of an array antenna can be expressed as a ratio of two Hermitian quadratic forms, an eigenvalue method is used for the constrained optimization. This method gives explicit expressions for the excitation vector and constrained values of the performance indices. An iterative technique is used to ensure that the specified field values occur at the sidelobe peak positions. The element excitations obtained by this technique for maximum gain and uniform sidelobe level are similar to these obtained by the Dolph-Chebyshev technique. 相似文献
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By application of a Gegenbauer polynomial, pattern synthesis of array antennas which have high directivity and low sidelobe level is investigated. A Chebyshev or uniform-amplitude array is included as a special case of the result obtained. The current amplitudes of the array elements are represented by a Jacobi polynomial and are easily calculated. It is shown by numerical calculations for a linear array and a hexagonal planar array that there is an optimum directivity for a specified sidelobe level within a class of Gegenbauer-polynomial patterns. 相似文献