Modern mmWave systems have limited scalability due to inflexibility in performing frequency multiplexing. All the frequency components in the signal are beamformed to one direction via pencil beams and cannot be streamed to other user directions. We present a new flexible mmWave system called mmFlexible that enables flexible directional frequency multiplexing, where different frequency components of the mmWave signal are beamformed in multiple arbitrary directions with the same pencil beam. Our system makes two key contributions: (1) We propose a novel mmWave front-end architecture called a delay-phased array that uses a variable delay and variable phase element to create the desired frequency-direction response. (2) We propose a novel algorithm called FSDA (Frequency-space to delay-antenna) to estimate delay and phase values for the real-time operation of the delay-phased array. Through evaluations with mmWave channel traces, we show that mmFlexible provides a 60-150% reduction in worst-case latency compared to baselines
翻译:现代 毫米 Wave 系统由于执行频率多路转换不灵活,其可缩放性有限。 信号中的所有频率组件都通过铅笔波束按一个方向组成, 无法流到其他用户方向。 我们提出了一个新的软毫米Wave 系统, 叫做 mm Five 灵活机动系统, 使毫米Wave 信号的不同频率组件以同一个铅笔束的多种任意方向组成。 我们的系统做出了两个关键贡献:(1) 我们提议了一个新的毫米Wave 前端结构, 叫做延迟阶段阵列, 使用一个可变延迟和可变阶段元素来创建所需的频率- 方向响应。 (2) 我们提议了一种叫做 FSDA( 延迟- 保险- 时间间隔) 的新型算法, 来估计延迟波段阵列的实时运行的延迟和阶段值。 我们通过对毫米Wave 频道的痕迹进行评估, 显示, 毫米灵活度比基线减少了60- 150% 。