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Portable Full Channel Sounder for Mobile Robotics by Using Sub-Nanosecond Time Synchronization over Wireless

机译:移动机器人的便携式完整通道音响,通过使用副纳秒时间同步

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Wireless communications have attracted great interest from the industry due to its lower cost and the possibility of enabling new use cases. The new use cases are commonly related to mobile robotics, such as Unmanned Aerial Vehicles. The design of wireless systems for these use cases requires deep knowledge of the channel behavior. However, the weight and size of full channel sounders exceed the payload of most mobile robots. In addition, full channel sounders usually require wired time synchronization. Hence, channel measurements in these scenarios are constrained to use limited channel sounders, which can only measure some specific parameters (frame error rate, channel attenuation, etc.). In this paper, we present the design and implementation of a portable 802.11-based channel sounder combined with a sub-nanosecond wireless time synchronization algorithm. Thanks to the wireless time synchronization, the channel sounder can be used to periodically take complex baseband Channel Impulse Response samples synchronized to absolute time. From these samples, relevant channel parameters can be extracted, including the Power Delay Profile, Doppler spectrum, and channel delay. The verification of the channel sounder through a wireless channel emulator confirms its feasibility for mobile robotics applications.
机译:由于其成本较低,无线通信引起了业界的极大兴趣,并且能够实现新用例的可能性。新用例通常与移动机器人有关,例如无人驾驶飞行器。这些用例的无线系统的设计需要深入了解信道行为。但是,完整信道发声器的重量和大小超过大多数移动机器人的有效载荷。此外,完整的通道声音通常需要有线时间同步。因此,这些方案中的信道测量被约束以使用有限的信道探测器,这可以仅测量一些特定参数(帧错误率,信道衰减等)。在本文中,我们介绍了基于便携式的802.11的信道声声音与子纳秒无线时间同步算法的设计和实现。由于无线时间同步,频道声音可以用于定期采取与绝对时间同步的复杂基带通道脉冲响应样本。根据这些样本,可以提取相关信道参数,包括功率延迟曲线,多普勒频谱和信道延迟。通过无线信道仿真器验证信道发声器确认其对移动机器人应用的可行性。

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