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Array spatial thinning for interference mitigation by semidefinite programming

机译:通过半定规划减少干扰的阵列空间稀疏

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We study the problem of interference mitigation in a phased array, where a subset containing k out of a total of N receivers creates a virtual spatial null for an incoming interference. The signal-of-interest and interference are represented by their corresponding steering vectors, and an optimum subarray is chosen such that the two vectors are as orthogonal as possible. This optimization is a binary quadratic non-convex minimization. We propose a semidefinite programming method to find suboptimal solutions using an optimal randomized sampling strategy. We show that the proposed method provides solutions as good as an exhaustive search with a cubic computational complexity. Furthermore, the proposed algorithm outperforms existing methods by solving the problem in a higher dimensionality.
机译:我们研究了相控阵中的干扰缓解问题,在该相控阵中,总共N个接收器中包含k个子集会为传入的干扰创建虚拟的空间空值。感兴趣的信号和干扰由它们相应的导引向量表示,并且选择最佳子阵列,以使两个向量尽可能正交。此优化是二进制二次非凸最小化。我们提出一种半定程序设计方法,以使用最佳随机抽样策略查找次优解决方案。我们表明,所提出的方法提供了具有三次计算复杂度的穷举搜索以及出色的解决方案。此外,所提出的算法通过在更高维度上解决问题而优于现有方法。

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