System and method for synchronizing rfid readers utilizing rf or modulation signals
Abstract
A system and method are disclosed for synchronizing two RFID readers. The system includes a modulation detector to detect a modulated signal produced by a first of the two reader and produces a synchronization signal. The second of the two readers initiates transmission of a signal in response to the synchronization signal.
Term
7.4 yearsleft in the term
Expires 4 February 2034.
- Priority
- Filed
- Granted
- Today
- Expires
2 claims: 1 independent, 1 dependent
- 1WE CLAIM:1. A system for communicating with RFID transponders comprising a subsystem A, comprising a first sub-system A RFID reader;a second subsystem A RFID reader in relative proximity to said first sub-system A RFID reader;said second subsystem A RFID reader comprising a subsystem A modulation detection circuit for detecting a modulated signal from said first subsystem A RFID reader, a subsystem B, comprising a first sub-system B RFID reader;a second subsystem B RFID reader in relative proximity to said first sub-system B RFID reader, said first subsystem A RFID reader and said second subsystem A RFID reader;said second subsystem B RFID reader comprising a subsystem B modulation detection circuit for detecting a modulated signal from said first subsystem B RFID reader, wherein said subsystem A modulation detection circuit produces a trigger signal after which said second subsystem A RFID reader transmits a signal and said subsystem B modulation detection circuit produces a trigger signal after which said second subsystem B RFID reader transmits a signal, wherein said first subsystem A RFID reader and said first subsystem B RFID reader operate in different predetermined time slots, said different predetermined time slots having no temporal reference to said trigger signals, wherein said second subsystem A RFID reader delays its trigger signal by a second subsystem A delay and said second subsystem B RFID reader delays its trigger signal by a second subsystem B delay and wherein said second subsystem A delay and said second subsystem B delay are of different lengths and wherein said second subsystem A delay and said second subsystem B delay are configured to produce said trigger signals in subsystem A and subsystem B at substantially the same real time.
34 paragraphs in 6 sections, as filed
(57) Abrégé/Abstract:
A system and method are disclosed for synchronizing two RFID readers. The system includes a modulation detector to detect a modulated signal produced by a first of the two reader and produces a synchronization signal. The second of the two readers initiates transmission of a signal in response to the synchronization signal.
Canada rue Victoria · Place du Portage 1 · Gatineau, (Québec) K1A0C9 · www.opic.ic.gc.ca
Victoria Street · Place du Portage 1 · Gatineau, Quebec K1A0C9 · www.cipo.ic.gc.ca
CA 02841630 2014-02-04
CA Application Blakes Ref: 10920/00001
ABSTRACT
A system and method are disclosed for synchronizing two RFID readers. The system includes a modulation detector to detect a modulated signal produced by a first of the two reader and produces a synchronization signal. The second of the two readers initiates transmission of a signal in response to the synchronization signal.
22503411.1
CA 02841630 2014-02-04
CA Application Slakes Ref: 10920/00001
SYSTEM AND METHOD FOR SYNCHRONIZING RFID READERS UTILIZING RF OR MODULATION SIGNALS
FIELD OF THE INVENTION [0001] The invention relates generally to the field of RFID.
BACKGROUND [0002] In the field of radio frequency identification (RFID), where multiple transponder interrogators (readers) are present is a limited area, it is sometimes necessary to synchronize the readers is to reduce or eliminate interference from one reader onto another reader or from two readers onto a transponder. By synchronizing the readers both readers can communicate with transponders in a way that both readers to communicate with their respective transponders without interfering with each other’s
DESCRIPTION OF THE DRAWINGS [0003] Figure 1 is a diagram of an exemplary' Block Diagram Single RFID system with two readers;
[0004] Figure 2 is an exemplary Multi System Block Diagram;
[0005] Figure 3 is an exemplary Synchronization Circuit Diagram [0006] Figure 4 is a timing diagram of a synchronization method including a delay;
[0007] Figure 5 is a timing diagram of a synchronization method without a delay;
[0008] Figure 6 is a timing diagram where reader are synchronized and use different frequencies to avoid interference; and [0009] Figure 7 is a timing diagram for systems having multiple pairs of readers.
22503411.1
CA 02841630 2014-02-04
CA Application Bl akes Refi 10920/00001
DETAILED SPECIFICATION [0010] This invention consists of a method for using a signal (either at RF or baseband) to synchronize in time two or more RFID readers, and to minimize interference among a group of reader using time and frequency multiplexing. The reason to synchronize the readers is to reduce or eliminate interference from one reader onto another reader or from two readers onto a transponder. By synchronizing the readers both readers can communicate with transponders in a way that both readers to communicate with their respective transponders without interfering with each other’s Signals. Adding frequency multiplexing to additional groups of readers will allow this configuration to exist in areas with multiple readers such as a toll plaza with multiple traffic lanes.
[0011] An exemplary synchronization circuit looks for specific patterns in the RF or modulation signal from reader 1. The patterns are based on the transponder protocol reader 1 is using to communicate. Once the synchronization circuit detects the pattern, the circuit generates a signal or pulse that is sent to reader 2. This indicates that reader 1 is in the process of transmitting a command. Reader 2 uses that pulse to know when reader 1 is communication with a transponder. Figure 2 shows the synchronization circuit using a coupler to supply the RF signal from reader 1. The dashed line for the modulation signal shows an alternate input to the synchronization circuit. If a baseband modulation signal fe available from reader 1 that modulation signal could be used as an input to the synchronization circuit. Figure 3 shows a circuit diagram of what is contained in the synchronization circuit. The synchronization circuit takes in either an RF or baseband modulation signal, detects a particular pattern in that RF or modulation signal, and then generates a pulse to create a signal that fe synchronized in time with the input RF or modulation signal.
[0012] The synchronization circuit does not have to be an external circuit. Reader 2 could be modified to look at the RF output or modulation signal of reader 1 to detect the modulation from reader 1 to generate a synchronization signal.
System Time Domain and Frequency Multiple Access Plan
22503411.1
CA 02841630 2014-02-04
CA Application . Blakes Ref: 10920/00001 [0013] To maximize efficiency, different reader/transponder systems may need to use different multiple access schemes. As an example, in RFID tolling systems active transponders all ose the same frequency to communicate from transponder to reader. These active transponders need to use separate time slots to minimize interference among readers. Backscatter or passive transponders use different RF frequencies to minimize interference among readers. This invention combines the synchronization method above with the concept of using time slots for appropriate protocols and separate frequencies for other protocols to minimize interference and other deleterious effects like cross-lane reads.
[0014] Figure 2 shows a system that combines both time and frequency multiple access methods. In the diagram reader 1 in each system uses different time slots for multiple access. Reader I in each system use a separate time slot to allow the transponders responses to be received only by the appropriate reader. In practical configurations time slots may be reused after an acceptable physical separation between readers on the same time slot. For example toll systems have been configured with four time slots so that readers On the same time slot are separated by five traffic lanes. Reader 2 in each system is configured on separate frequencies from reader 2 in the other systems. This frequency separation allows readers to operate in overlapping time slots, but still have acceptable interference rejection by using different frequencies. As an example systems have been configured with frequencies of902.25,902.75,903.25, and 903.75 MHz to operate on toll roads with backscatter transponders. As with time multiplexing, with enough physical separation frequencies can be reused.
Example 1 - (Pair of Readers) Delay Eliminate RF overlap between readers [0015] With respect to the timing diagram in Figure 4, Reader 2 uses the synchronization signal to start a timer. The timer is of sufficient duration to allow reader 1 to complete the communication process. Once the timer in reader 2 is finished reader 2 may then begin the communication process. This eliminates any interference between readers during the communication process.
2250S411.Î
CA 02841630 2014-02-04
CA Application Blakes Ref: 10920/00001
Example 2 - (Pair of Readers) No Delay Eliminate Downlink on Uplink Interference [0016] With respect to the timing diagram in Figure 5, Reader 2 uses the synchronization signal to immediately start modulation. Reader 2’s modulation will he finished before reader 1 ’s transponder begins to reply to reader 1 ’s command. This wi ll eliminate reader on reader interference when a reader is trying to detect a transponder.
Example 3 - (Pair of Readers) Synchronization and Frequency Detection [0017] With respect to Figure 6, the synchronization circuit detects the modulation pattern and the RF frequency of reader 1. This allows reader 2 to Use a frequency that is out of band from reader 1 helping to minimize any interference between reader 1 and reader 2.
Example 4 -- Multiple Pairs of Readers
10018] In this example each of the synchronization circuits detects the modulation of reader 1. Reader 2 uses the output ofthe synchronization circuit to start a delay. The delay for each pair of readers is different, but allows the RF from each of the reader 2s in the diagram to operate simultaneously. The RF frequency for each of the reader 2s in the diagram is different. This allows the group of reader Is to operate with TDM and the group of reader 2s to operate with FDM. This diagram shows that all of the readers 2s are operating at the same time on different frequencies. This is not the only configuration that could be used. Each of the reader 2s do not have to he aligned in time. The reader 2s in the diagram could each operate at different times as long as they did not interfere wife fee operation of fee reader 1 s in feeir group.
22503411.1
CA 2,841,630 Blakes Ref: 10920/00001
Contents6
4 members in 2 offices
Priority claims10
| Document | Office | Kind | Date |
|---|---|---|---|
| 201361761033 | United States of America | P | |
| 201361761033 | United States of America | P | |
| 61761033 | United States of America | – | |
| 201361775328 | United States of America | P | |
| 201361775328 | United States of America | P | |
| 61775328 | United States of America | – | |
| 61761033 | – | – | – |
| 61775328 | – | – | – |
| US201361761033P | – | – | – |
| US201361775328P | – | – | – |
Members4
| Document | Office | Kind | |
|---|---|---|---|
| CA2841630A1 | Canada | A1 | |
| US2014218175A1 | United States of America | A1 | |
| US9396367B2 | United States of America | B2 | |
| CA2841630CThis record | Canada | C |
4 legal events, as the office reported them to INPADOC
Over the term
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| Maintenance fee for patent paidMPN | MPN | |
| Fee paidST27 STATUS EVENT CODE: A-4-4-U10-U00-U101 (AS PROVIDED BY THE NATIONAL OFFICE); EVENT TEXT: MAINTENANCE REQUEST RECEIVEDU00 | U00 | |
| Full renewal or maintenance fee paidST27 STATUS EVENT CODE: A-4-4-U10-U11-U102 (AS PROVIDED BY THE NATIONAL OFFICE); EVENT TEXT: MAINTENANCE FEE PAYMENT DETERMINED COMPLIANTU11 | U11 | |
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Numbers
- Publication
- 2841630
- Publication, DOCDB
- 2841630
- Publication, EPODOC
- CA2841630
- Application
- 2841630
- Application, DOCDB
- 2841630
- Application, EPODOC
- CA20142841630
Titles2
- English
- SYSTEM AND METHOD FOR SYNCHRONIZING RFID READERS UTILIZING RF OR MODULATION SIGNALS
- French
- SYSTEME ET PROCEDE POUR SYNCHRONISER DES LECTEURS D'IDENTIFICATION PAR RADIOFREQUENCE UTILISANT DES SIGNAUX RF OU A MODULATION
Classification
- CPC, 4
- G06K7/10039
- G06K7/10475
- G06K7/016
- G07B15/063
- IPC, 3
- H04L5 22
- H04B1 59
- H04L5 26