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Systems and methods for precise radio frequency localization in the presence of multiple communication paths

專利號
US12108362B2
公開日期
2024-10-01
申請人
ZaiNar, Inc(US CA Redwood City)
發(fā)明人
Manu Seth; Lingkai Kong; Tommi Ylamurto; Vivek Subramanian
IPC分類
H04W64/00; G01S5/02; H04L41/12; H04L43/0864; H04L45/121; H04L45/122; H04L47/283; H04W28/02
技術(shù)領(lǐng)域
wireless,hub,nodes,rf,node,in,network,flight,circuitry,sensor
地域: CA CA Redwood City

摘要

Systems and methods for determining locations of wireless nodes in a network architecture are disclosed herein. In one example, an asynchronous system includes a first wireless node having a wireless device with one or more processing units and RF circuitry for transmitting and receiving communications in the wireless network architecture including a first RF signal having a first packet. The system also includes a second wireless node having a wireless device with a transmitter and a receiver to enable bi-directional communications with the first wireless node in the wireless network architecture including a second RF signal with a second packet. The first wireless node determines a time of flight estimate for localization based on a time estimate of round trip time of the first and second packets and a time estimate that is based on channel sense information of the first and second wireless nodes.

說明書

RELATED APPLICATIONS

This application is a continuation application of U.S. patent application Ser. No. 16/894,023, filed on 5 Jun. 2020, which is a divisional of U.S. application Ser. No. 15/173,531, filed on 3 Jun. 2016, each of which is hereby incorporated in its entirety by this reference.

FIELD

Embodiments of the invention pertain to systems and methods for precise radio frequency localization in the presence of multiple communication paths.

BACKGROUND

In the consumer electronics and computer industries, wireless sensor networks have been studied for many years. In archetypal wireless sensor networks, one or more sensors are implemented in conjunction with a radio to enable wireless collection of data from one or more sensor nodes deployed within a network. Each sensor node may include one or more sensors, and will include a radio and a power source for powering the operation of the sensor node. Location detection of nodes in indoor wireless networks is useful and important in many applications.

權(quán)利要求

1
The invention claimed is:1. A system for localization of nodes in a wireless network architecture, comprising:a first wireless node having a wireless device with one or more processing units and RF circuitry for transmitting and receiving communications in the wireless network architecture; anda second wireless node having a wireless device with a transmitter and a receiver to enable bi-directional communications with the first wireless node in the wireless network architecture, wherein the one or more processing units of the first wireless node are configured to execute instructions to determine a time of flight estimate for localization based on implementing a path estimate algorithm that determines signal amplitudes of received signals of multiple paths between the first and second wireless nodes for communications received from the second wireless node, compares the signal amplitudes of the received signals of the multiple paths to a threshold, and eliminates a false short path of the multiple paths when the signal amplitude for the false short path compares in a predetermined manner to the threshold.2. The system of claim 1, wherein the signal amplitude for the false short path compares in a predetermined manner to the threshold when the signal amplitude for the false short path is less than the threshold.3. The system of claim 2, wherein the false short path has a time of flight delay that is less than a time of flight delay of an actual line of sight path.4. The system of claim 1, wherein the threshold is set based on at least one of expected loss of the multiple paths due to environmental factors, empirical data, or path length.5. The system of claim 1, wherein the threshold is a function of path length to account for an amount of environmental loss expected in a short distance versus a long distance.6. The system of claim 1, wherein the threshold is based on a dynamic range of physical hardware including a dynamic operating range of signal levels of RF receivers of the first and second wireless nodes.
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