Method and device for locating wireless fetal monitoring probes in set area

US9931100B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9931100-B2
Application numberUS-201515038468-A
CountryUS
Kind codeB2
Filing dateApr 15, 2015
Priority dateMar 31, 2015
Publication dateApr 3, 2018
Grant dateApr 3, 2018

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  5. First independent claim

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Abstract

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The invention relates to a method and device for locating wireless fetal monitoring probes in a set area. The method comprises the following steps: instructions are sent via a plurality of wireless base stations to instruct the wireless probes in the action scopes of the wireless base stations to send base station signal intensity data tables; the wireless probes search all receivable base station signals, establish the base station signal intensity data tables; operations are carried out based on the received current base station signal intensity data tables and base station signal intensity data tables of reference points to obtain a distance reference table; the position of one with the smallest distance value is selected to be regarded as the current position of the corresponding probe. The method and the device have the benefits of quickly locating each wireless probe and avoiding loss of monitoring data.

First claim

Opening claim text (preview).

What is claimed is: 1. A method for locating wireless fetal monitoring probes in a set area, comprising the following steps: A) a data management center sends instructions via a plurality of wireless base stations arranged at different positions in the set area to instruct the wireless fetal monitoring probes in the action scopes of the wireless base stations to send base station signal intensity data tables of received base station signals; B) the wireless fetal monitoring probes search all receivable signals of the base stations after receiving the instructions, quantize the intensities of the received signals of the base stations, establish base station signal intensity data tables in which the signal intensities of the base stations are arranged according to the serial numbers of the base stations, and send the base station signal intensity data tables to the data management center via the base station of which the received signal intensity is the largest; and C) operations are carried out based on each received current base station signal intensity data table sent by the corresponding wireless fetal monitoring probe and reference point base station signal intensity data tables which are obtained in advance and comprise base station signal intensities at a plurality of reference points in the set area to obtain a distance reference table expressing distance between the current position of the wireless fetal monitoring probe and each reference point; and the position of one reference point with the smallest distance value is selected to be regarded as the current position of the wireless fetal monitoring probe, wherein the method relates to a mobile terminal configured to download the current position of the wireless fetal monitoring probe from the data management center via the wireless base stations, and to display the current position of the wireless fetal monitoring probe; when finding out that the current wireless fetal monitoring probe disappears, a searching mode of the mobile terminal is started, and the mobile terminal emits electromagnetic waves the same as that of the wireless base stations, and displays response information of the wireless fetal monitoring probes, so as to search the wireless fetal monitoring probes. 2. The method for locating the wireless fetal monitoring probes in the set area of claim 1 , further comprising the following steps before the step A: M) the wireless base stations are arranged at different positions in the set area; and N) the set area is divided into a plurality of locating sub-areas, and a reference point is arranged for each locating sub-area; the base station signal intensities at the reference points are acquired, and quantized to obtain the reference point base station signal intensity data tables; the reference point base station signal intensity data tables are saved. 3. The method for locating the wireless fetal monitoring probes in the set area of claim 2 , wherein quantizing in the step B or the step N comprises: the receivable signal intensity value of each wireless base station is regarded as the signal intensity value of the base station, while if no signal intensity value of a base station is receivable, zero is regarded as the signal intensity value of the base station; signal intensity values acquired by each wireless fetal monitoring probe or at a certain point are arranged according to the serial number sequence of the wireless base stations, so as to obtain the base station signal intensity data table or the reference point base station signal intensity data table at the point. 4. The method for locating the wireless fetal monitoring probes in the set area of claim 3 , wherein in the reference point base station signal intensity data table, the signal levels of all of the receivable signals of the wireless base stations are required to be larger than a set signal level or signal intensity, otherwise, the requirement is met by moving corresponding wireless base station(s) or by increasing the number of the wireless base stations. 5. The method for locating the wireless fetal monitoring probes in the set area of claim 1 , wherein the method further comprises the following steps: D) the current positions of the wireless fetal monitoring probes are marked in a map drawn in advance. 6. The method for locating the wireless fetal monitoring probes in the set area of claim 1 , wherein the method further comprises the following steps: the data management center sends probe sounding instructions with identification numbers of the wireless fetal monitoring probes to enable buzzers on the wireless fetal monitoring probes matched with the identification numbers to sound after the wireless fetal monitoring probes receive the instructions. 7. The method for locating the wireless fetal monitoring probes in the set area of claim 1 , wherein the method further comprises the following steps: when a wireless fetal monitoring probe(s) cannot receive any signal of the wireless base stations, physiological data obtained by the wireless fetal monitoring probe(s), current state data of the wireless fetal monitoring probe(s) and time data are saved in the wireless fetal monitoring probe(s), and are sent to the data management center as long as the wireless fetal monitoring probe(s) can receive a signal(s) of the wireless base stations. 8. The method for locating the wireless fetal monitoring probes in the set area of claim 1 , wherein the data management center sends instructions to search the wireless fetal monitoring probes or exchange data with the wireless fetal monitoring probes via the wireless base stations connected with the data management center or wireless base stations of the data management center. 9. A system for implementing the method for locating the wireless fetal monitoring probes in the set area of claim 1 , comprising: a data management center, a plurality of wireless base stations and the wireless fetal monitoring probes, wherein the data management center sends instructions via the wireless base stations arranged at different positions in the set area, so as to require the wireless fetal monitoring probes in the action scopes of the wireless base stations to send base station signal intensity data tables of received base station signals, wherein each wireless fetal monitoring probe searches receivable signals of the base stations after receiving the instructions, quantizes the intensities of the received signals of the base stations, establishes a base station signal intensity data table in which signal intensities of the base stations are arranged according to the serial numbers of the base stations, and sends the base station signal intensity data table to the data management center via the base station of which the signal intensity is the largest; wherein the data management center carries out operations based on each received current base station signal intensity data table sent by the corresponding wireless fetal monitoring probe and reference point base station signal intensity data tables which are obtained in advance and comprise the base station signal intensities at a plurality of reference points in the set area to obtain a distance reference table of distance values between the wireless fetal monitoring probe and the reference points, wherein the position of a reference point with the smallest distance value is selected to be regarded as the current position of the wireless fetal monitoring probe, wherein the data managing center relates to a mobile terminal configured to download the current position of the wireless fetal monitoring probe from the data management center via the wireless base stations, and to display the current position of the wireless fetal monit

Assignees

Inventors

Classifications

  • Received signal strength · CPC title

  • characterised by the type of physiological signal transmitted · CPC title

  • ECG or EEG signals · CPC title

  • Arrangements in telecontrol or telemetry systems for selectively calling a substation from a main station, in which substation desired apparatus is selected for applying a control signal thereto or for obtaining measured values therefrom · CPC title

  • Radio frequency fingerprinting · CPC title

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What does patent US9931100B2 cover?
The invention relates to a method and device for locating wireless fetal monitoring probes in a set area. The method comprises the following steps: instructions are sent via a plurality of wireless base stations to instruct the wireless probes in the action scopes of the wireless base stations to send base station signal intensity data tables; the wireless probes search all receivable base stat…
Who is the assignee on this patent?
Edan Instruments Inc
What technology area does this patent fall under?
Primary CPC classification A61B8/00. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Apr 03 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).