Search sequence determination for tree search based detection algorithms

B. Mennenga, G. Fettweis
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引用次数: 35

Abstract

Tree search based detection algorithms provide a promising approach to solve the detection problems in MIMO systems. Depth-first, Breadth-first or Metric-first search strategies provide near max-log detection at reduced but still significant complexity. In this paper we show how the incurred complexity can be reduced substantially. In order to reduce the number of metric calculations to a minimum, we propose a novel relative determination of search sequences for QAM constellations, usable inexpensively independent of the underlying constellation size and search strategy and moreover also usable for soft-in soft-out detection. Based on its application to a sphere detector, we will demonstrate the impact on complexity and performance of the detection as well as on the detector structure. Building on the results, we propose refinements of the resulting detector providing a very good performance at minimized complexity, making the resulting detector particularly favorable for implementation.
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基于树搜索的检测算法的搜索序列确定
基于树搜索的检测算法为解决MIMO系统中的检测问题提供了一种很有前途的方法。深度优先、宽度优先或度量优先的搜索策略提供了接近最大日志的检测,降低了复杂度,但复杂度仍然很高。在本文中,我们展示了如何大幅降低所产生的复杂性。为了将度量计算的次数减少到最小,我们提出了一种新的QAM星座搜索序列的相对确定方法,该方法可以独立于潜在的星座大小和搜索策略而廉价地使用,而且还可以用于软入软出检测。基于其在球面探测器上的应用,我们将展示其对检测的复杂性和性能以及探测器结构的影响。在结果的基础上,我们提出了对所得到的检测器的改进,以最小的复杂性提供非常好的性能,使所得到的检测器特别有利于实现。
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