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An adaptive beamspace algorithm for mobile satellite communications systems using orthogonal waveforms and convolutional codes

机译:使用正交波形和卷积码的移动卫星通信系统自适应波束空间算法

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It is shown that convolutional codes combined with orthogonal waveforms over the complex field provide both co-channel interference mitigation and reduced order computations for a multi-beam antenna. Reduced computational complexity is achieved by selecting a subset of the fixed beams based on a threshold computed from estimates of the bit error rates (BER) at the outputs of each of the beams. The subset of beams is subsequently used to perform adaptive beamspace processing to reduce the co-channel interference. Finally, the performance of the algorithm is evaluated via computer simulations for both fading and non-fading channels in the presence of co-channel interference.
机译:结果表明,在复数场上与正交波形相结合的卷积码既可以减轻同信道干扰,又可以为多波束天线提供降阶计算。通过基于从每个波束的输出处的误码率(BER)的估计值计算出的阈值来选择固定波束的子集,可以降低计算的复杂度。波束的子集随后用于执行自适应波束空间处理,以减少同信道干扰。最后,在存在同信道干扰的情况下,通过计算机模拟对衰落和非衰落信道进行评估,以评估算法的性能。

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