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Exploiting special-purpose function approximation for hardware-efficient QR-decomposition

机译:利用专用函数逼近实现硬件高效的QR分解

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Efficient signal processing takes a key role in application-specific circuit design. For instance, future mobile communication standards, e.g., high-performance industrial mobile communication, require high data rates, low latency and/or high energy-efficiency. Hence, sophisticated algorithms and computing schemes must be explored to satisfy these challenging constraints. In this paper we leverage the paradigm of approximate computing to enable hardware-efficient QR-decomposition for channel pre-coding. For an efficient computation of the Givens-Rotation, bivariate, non-linear numeric functions are taken into account. An effective design method is introduced leading to highly adapted (special-purpose) functions. For evaluation, our work is tested with different configurations in a Tomlinson-Harashima pre-coding downlink environment. In addition, a corresponding HDL implementation is set up and logic and physical CMOS synthesis is performed. The comparison to actual references prove our work to be a powerful approach for future mobile communication systems.
机译:高效的信号处理在专用电路设计中起着关键作用。例如,未来的移动通信标准,例如高性能工业移动通信,要求高数据速率,低等待时间和/或高能量效率。因此,必须探索复杂的算法和计算方案来满足这些挑战性的约束。在本文中,我们利用近似计算的范例来实现硬件高效的QR分解以进行通道预编码。为了有效地计算Givens-Rotation,需要考虑双变量,非线性数值函数。引入了一种有效的设计方法,以实现高度适应的(特殊用途)功能。为了进行评估,我们的工作在Tomlinson-Harashima预编码下行链路环境中以不同的配置进行了测试。另外,建立了相应的HDL实现,并执行了逻辑和物理CMOS综合。与实际参考文献的比较证明我们的工作是未来移动通信系统的有力方法。

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