IP Library Granted Patent US 12701537
Granted Patent B2
US 12701537 · App. 18/586,481 · Granted Aug 4, 2026

System and method for isolating and locating wireless phones

Inventors: Victor-Cristian Ciochina (Herzliya, IL); Riginos Samaras (Herzliya, IL); Constantin Tanasa (Herzliya, IL)
Assignee: COGNYTE TECHNOLOGIES ISRAEL LTD
H04W64/00G01S5/0295
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Quick Facts
Patent No.
US 12701537
App. No.
18/586,481
Granted
Aug 4, 2026
Kind
B2
Abstract

A system for locating a mobile communication terminal, the system having an interrogation device, which is configured to solicit a mobile communication terminal of a wireless communication network to establish temporary communication with the interrogation device in an original bandwidth employed for communication between the interrogation device and the mobile communication terminal. Processors configured to isolate the uplink bandwidth of the mobile communication terminal by: configuring the interrogation device to remove a downlink bandwidth, to the wireless communication terminal, from an end of the original bandwidth to create a new downlink bandwidth; calculating an uplink bandwidth at the end of the original bandwidth to be less than the bandwidth removed from the downlink bandwidth; and reconfigure the mobile communication terminal to uplink to the interrogation device on the calculated uplink bandwidth at the end of the original bandwidth. The system further comprising a power detection device (PDD) configured to measure a power of a radio frequency (RF) signal emitted by the mobile communication terminal and having bandwidth filter configured to measure less than a calculated uplink bandwidth and locate the mobile communication terminal.

Claims (41)

1 . A system for locating a mobile communication terminal, the system comprising:

an interrogation device, which is configured to solicit a mobile communication terminal of a wireless communication network by imitating a base station of the wireless communication network to establish temporary communication with the interrogation device in an original bandwidth employed for communication between the interrogation device and the mobile communication terminal;

one or more processors configured to isolate the uplink bandwidth of the mobile communication terminal from the downlink bandwidth of the interrogation device by;

configuring the interrogation device to remove a downlink bandwidth, to the wireless communication terminal, from an end of the original bandwidth to create a narrowed downlink bandwidth;

calculating an uplink bandwidth at the end of the original bandwidth to be less than the downlink bandwidth removed from the original bandwidth; and

reconfiguring the mobile communication terminal to uplink to the interrogation device on the calculated uplink bandwidth at the end of the original bandwidth;

a power detection device (PDD) configured to measure a power of a radio frequency (RF) signal emitted by the mobile communication terminal and having bandwidth filter configured to measure a bandwidth less than or equal to the calculated uplink bandwidth to locate the mobile communication terminal.

2 . The system of claim 1 , wherein the system is employed in a time-division duplexing (TDD) frequency network.

3 . The system of claim 1 , wherein the interrogation device is configured such that the removed downlink bandwidth is a non-standard bandwidth of the original bandwidth, and a narrowed downlink bandwidth is a non-standard bandwidth of the original bandwidth.

4 . The system of claim 3 , wherein the removed downlink bandwidth is removed from 1 to 45 percent of the original bandwidth end.

5 . The system of claim 1 , wherein the PDD is configured to:

be portable and move through multiple geographical positions in an area of interest;

at each of the geographical position, measure power of the mobile communication terminal RF signal; and

determine when higher measurements of power indicate that the mobile communication terminal is close to the PDD and locate the mobile communication terminal.

6 . The system of claim 1 , wherein the system first receives an estimated location of the mobile communication terminal of interest.

7 . The system of claim 1 , wherein when the original bandwidth is 20 MHz, the system configures the uplink to be 0.4 MHz at the end of the 20 MHz and the downlink is configured to be 19 MHz from the start of the 20 MHz.

8 . The system of claim 3 , wherein when the original bandwidth is 20 MHz, the system configures the uplink to be 0.4 MHz at the end of the 20 MHz and the downlink is configured to be 19 MHz from the start of the 20 MHz.

9 . The system of claim 7 , wherein the PDD is configured to detect power at 0.2 MHz.

10 . The system of claim 8 , wherein the PDD is configured to detect power at 0.2 MHz.

11 . A system for isolating an uplink bandwidth of a mobile communication terminal in a time-division duplexing frequency network, the system comprising:

an interrogation device, which is configured to solicit a mobile communication terminal of a wireless communication network by imitating a base station of the wireless communication network to establish temporary communication with the interrogation device in an original bandwidth employed for communication between the interrogation device and the mobile communication terminal;

one or more processors configured to isolate the uplink bandwidth of the mobile communication terminal from the downlink bandwidth of the interrogation device by;

configuring the interrogation device to remove a downlink bandwidth, to the wireless communication terminal, from the original bandwidth to create a narrowed downlink bandwidth;

calculating an uplink bandwidth to be less than and inside of the downlink bandwidth removed from the original bandwidth; and

reconfiguring the mobile communication terminal to uplink to the interrogation device on the calculated uplink bandwidth of the original bandwidth, wherein there is no interference from the downlink signal to the uplink signal.

12 . The system of claim 11 , wherein the removed downlink bandwidth is at an end of the original bandwidth and the calculated uplink is at the end of the original bandwidth and less than the removed downlink bandwidth.

13 . The system of claim 11 , wherein the removed downlink bandwidth is a non-standard bandwidth of the original bandwidth.

14 . The system of claim 11 , wherein the calculated uplink bandwidth is a non-standard bandwidth of the original bandwidth and less than the removed downlink bandwidth.

15 . The system of claim 11 , wherein the system is employed in a time-division duplexing (TDD) frequency network.

16 . A method for locating a mobile communication terminal, the method performed by processors, the method comprising:

operating an interrogation device, which is configured to solicit a mobile communication terminal of a wireless communication network by imitating a base station of the wireless communication network to establish temporary communication with the interrogation device in an original bandwidth employed for communication between the interrogation device and the mobile communication terminal;

isolating, by the one or more processors, the uplink bandwidth of the mobile communication terminal from the downlink bandwidth of the interrogation device by;

(i) configuring the interrogation device to remove a downlink bandwidth, to the wireless communication terminal, from an end of the original bandwidth to create a narrowed downlink bandwidth;

(ii) calculating an uplink bandwidth at the end of the original bandwidth to be less than the downlink bandwidth removed from the original bandwidth; and

(iii) reconfiguring the mobile communication terminal to uplink to the interrogation device on the calculated uplink bandwidth at the end of the original bandwidth;

moving, by a user, a portable power detection device (PDD) configured to measure a power of a radio frequency (RF) signal emitted by the mobile communication terminal, through multiple geographical positions in an area of interest;

measuring, by the PDD, a power of an RF signal in a bandwidth less than or equal to the calculated uplink bandwidth at multiple geographical positions; and

determining, by the user, a location of the mobile communication terminal when higher measurements of power are measured indicating that the mobile communication terminal is close to the PDD.

17 . The method of claim 16 , wherein the method is employed in a time-division duplexing (TDD) frequency network.

18 . The method of claim 16 , wherein when the original bandwidth is 20 MHz, the one or more processors configures the uplink to be 0.4 MHz at the end of the 20 MHz and configures the downlink to be 19 MHz from the start of the 20 MHz.

19 . The method of claim 18 , wherein the PDD is configured to detect power at 0.2 MHz.