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首页> 外文期刊>International journal of electronics >Model-based synthesis of shaped-beam patterns with the minimum number of elements: a state-space method
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Model-based synthesis of shaped-beam patterns with the minimum number of elements: a state-space method

机译:基于模型的最少数量的异型束图案合成:一种状态空间方法

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摘要

Conventional antenna array synthesis methods can give good performance for uniform spaced antenna arrays within desired performance bounds. However, due to the restriction of uniform antenna element spacing, a lot of elements are required. Because of the above-mentioned drawback, in this paper, a new approach is presented to synthesise uniform spaced antenna array using the minimum number of elements. This approach introduces the state-space model to represent the desired discrete array pattern that is sampled uniformly from -1 to 1 corresponding to 0-180 degrees, then uses the desired sampled array pattern directly to construct the forward-backward data matrix that is introduced to estimate the model parameters, from which the locations and excitations of the new antenna elements can be extracted. The appropriate roots that are located on the unit circle are selected to obtain new radiation pattern. Simulation results show the viability for both shaped-beam and pencil-beam designs.
机译:常规天线阵列合成方法可以在期望的性能范围内为均匀间隔的天线阵列提供良好的性能。然而,由于均匀的天线元件间隔的限制,需要许多元件。由于上述缺点,在本文中,提出了一种使用最少数量的元件来合成均匀间隔天线阵列的新方法。该方法引入状态空间模型来表示所需的离散阵列模式,该模式从-1到1对应于0-180度均匀采样,然后直接使用所需的采样阵列模式来构造要引入的前后数据矩阵估计模型参数,从中可以提取新天线元件的位置和激励。选择位于单位圆上的适当根,以获得新的辐射图。仿真结果显示了异形梁和笔形梁设计的可行性。

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