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 beam, 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 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.
翻译:在毫米波网络中,由于高路径和穿透损失,细胞大小小。移动需要经常从一个细胞向另一个细胞软切换,以保持网络连接和上下文。每次软交接都涉及移动式向导邻居细胞搜索、跟踪细胞光束、完成细胞访问请求和上下文切换。移动必须独立发现细胞光束,获取时间信息,在整个过程中保持光束对齐,以避免包丢失和硬交接。我们提议静音跟踪器,使移动能够可靠地管理移交事件,在成功交接之前保持对齐的光束。它完全在波束中,不需要任何侧面信息。实验性评估显示,静音跟踪器将移动的光束与潜在目标基地站的传输线保持对齐,直到在三种移动情景中成功完成交接:人行走、设备旋转和20米视距速度。