Silent tracker: in-band beam management for soft handover for mm-wave networks

Venkata Siva Santosh Ganji, Tzu-Hsiang Lin, Jaewon Kim, P. R. Kumar
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Abstract

In mm-wave networks, cell sizes are small due to high path and penetration losses. Mobiles need to frequently switch softly from one cell to another to preserve network connections and context. Each soft handover involves the mobile performing directional neighbor cell search, tracking cell beams, completing cell access request, and finally, context switching. The mobile must independently discover cell beams, derive timing information, and maintain beam alignment throughout the process to avoid packet loss and hard handover. We propose Silent Tracker which enables a mobile to reliably manage handover events by maintaining an aligned beam until the successful handover completion. It is an entirely in-band beam mechanism that does not need any side information. Experimental evaluations show that Silent tracker maintains the mobile's receive beam aligned to the potential target base station's transmit beam till the successful conclusion of handover in three mobility scenarios: human walk, device rotation, and 20 mph vehicular speed.
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无声跟踪器:毫米波网络软切换带内波束管理
在毫米波网络中,由于高路径损耗和穿透损耗,小区尺寸很小。手机需要频繁地从一个小区切换到另一个小区,以保持网络连接和上下文。每次软切换都涉及移动设备进行定向邻居小区搜索、跟踪小区波束、完成小区接入请求,最后进行上下文切换。在整个过程中,移动设备必须独立地发现小区波束,获得定时信息,并保持波束对准,以避免丢包和硬切换。我们提出了静默跟踪器,它使移动设备能够通过保持对准波束来可靠地管理切换事件,直到成功完成切换。它完全是一种不需要任何侧信息的带内波束机制。实验评估表明,Silent tracker在人类行走、设备旋转和车速20 mph三种移动场景下,都能保持移动设备的接收波束与潜在目标基站的发射波束对齐,直到切换成功。
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