Investigating the Complexity-Performance Tradeoff of URA8 Topology for Bluetooth 5.1 HAAT

N. Piazzese, Oleksiy Chepyk, D. Pau
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Abstract

The High Accuracy Asset Tracking (HAAT) of Bluetooth 5.1 Low Energy needs tiny antenna arrays to achieve efficient and very compact solutions. Rectangular Antenna Arrays guarantee good performances, both in azimuth and elevation in the Direction of arrival (DoA) estimation. This paper studies the eight antenna rectangular array topology, called URA8. Historically, MUSIC has been the most used algorithm on this type of array. Unfortunately in HAAT real-time applications, where it is essential to have a fast response from the DoA Locator, MUSIC, due to its high computational complexity in the peak searching over the pseudo-spectrum, may be inadequate for the scope. This paper proposes an innovative approach to reduce the complexity of this peak-searching phase: instead of only one peak-search over the complete azimuth-elevation hemisphere, we propose a two step search, the first with a reduced resolution and the latter with a fine resolution inside a proper confidence region, found in the first step. The proposed method ensures a good trade-off between computational complexity and detection performances: it turns out to approximately 6 times faster than the classic MUSIC, maintaining the same precision.
研究用于蓝牙5.1 HAAT的URA8拓扑的复杂性和性能权衡
蓝牙5.1低功耗的高精度资产跟踪(HAAT)需要微小的天线阵列来实现高效和非常紧凑的解决方案。矩形天线阵列在到达方向(DoA)估计中具有良好的方位角和仰角性能。本文研究了八天线矩形阵列拓扑,称为URA8。历史上,MUSIC一直是这类阵列上使用最多的算法。不幸的是,在HAAT实时应用中,必须从DoA定位器获得快速响应,MUSIC由于其在伪频谱上的峰值搜索的高计算复杂性,可能不适合该范围。本文提出了一种创新的方法来降低这一峰搜索阶段的复杂性:我们提出了两步搜索,第一步在第一步找到的适当置信区域内降低分辨率,第二步在适当置信区域内提高分辨率,而不是在整个方位角-仰角半球上只进行一次峰搜索。所提出的方法在计算复杂度和检测性能之间取得了很好的平衡:结果表明,在保持相同精度的情况下,它比经典MUSIC快了大约6倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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