Zone based radio frequency identification
First Claim
1. A locator comprising:
- a. a receiver that provides a plurality of signals each signal having respective indicia of identification device presence within a respective communication pattern; and
b. a processor that performs a method for determining whether a first identification device is located within a zone, the method comprising;
determining, in response to signals of the plurality, a respective reliability of communication between the receiver and a plurality of identification devices, the plurality comprising the first identification device and at least one second identification device, wherein;
(1) a first and a second communication pattern each respectively has a periphery such that communication with a provided identification device when located beyond the periphery is less reliable than communication with the provided identification device when located within the periphery;
(2) the first identification device is located within the periphery of the first pattern;
(3) each second identification device is located beyond the periphery of the first pattern and within the periphery of the second pattern; and
(4) the first pattern has a periphery substantially within the zone;
comparing each respective reliability of communication to a respective threshold to identify validly present identification devices;
determining that the first identification device is within the zone in accordance with whether the first identification device is validly present within the first pattern, the second identification device is validly present within the second pattern, and the second identification device is not validly present within the first pattern.
5 Assignments
0 Petitions
Accused Products
Abstract
A locator according to various aspects of the present invention includes a receiver and a processor. The receiver receives several signals, each signal having respective indicia of identification device presence within a respective communication pattern. The processor performs a method for determining whether a first identification device is located within a zone. The method includes the following steps performed in any order. A first step of determining, in response to receiver signals, a respective reliability of communication between the receiver and a plurality of identification devices. The plurality includes the first identification device and at least one second identification device. A first and a second communication pattern each respectively has a periphery such that communication with a provided identification device when located beyond the periphery is less reliable than communication with the provided identification device when located within the periphery. The first identification device is located within the periphery of the first pattern. Each second identification device is located beyond the periphery of the first pattern and within the periphery of the second pattern. And, the first pattern has a periphery substantially within the zone. A second step of comparing each respective reliability of communication to a respective threshold to identify validly present identification devices. And, a third step of determining that the first identification device is within the zone in accordance with whether the first identification device is validly present within the first pattern, the second identification device is validly present within the second pattern, and the second identification device is not validly present within the first pattern.
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Citations
22 Claims
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1. A locator comprising:
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a. a receiver that provides a plurality of signals each signal having respective indicia of identification device presence within a respective communication pattern; and
b. a processor that performs a method for determining whether a first identification device is located within a zone, the method comprising;
determining, in response to signals of the plurality, a respective reliability of communication between the receiver and a plurality of identification devices, the plurality comprising the first identification device and at least one second identification device, wherein;
(1) a first and a second communication pattern each respectively has a periphery such that communication with a provided identification device when located beyond the periphery is less reliable than communication with the provided identification device when located within the periphery;
(2) the first identification device is located within the periphery of the first pattern;
(3) each second identification device is located beyond the periphery of the first pattern and within the periphery of the second pattern; and
(4) the first pattern has a periphery substantially within the zone;
comparing each respective reliability of communication to a respective threshold to identify validly present identification devices;
determining that the first identification device is within the zone in accordance with whether the first identification device is validly present within the first pattern, the second identification device is validly present within the second pattern, and the second identification device is not validly present within the first pattern. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17)
a. the receiver comprises an attenuator operative in accordance with an attenuation of a plurality of attenuations; and
b. the receiver sensitivity is responsive to the operative attenuation of the attenuator.
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5. The locator of claim 1 wherein:
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a. the locator further comprises a transmitter for communication with identification devices; and
b. each signal is responsive to transmission by the transmitter.
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6. The locator of claim 5 wherein each pattern corresponds at least in part to a respective radiated power of the transmitter.
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7. The locator of claim 5 wherein the receiver provides the plurality of signals in response to receiving within a first range of frequency and the transmitter operates within a second range of frequency different from the first range.
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8. The locator of claim 1 wherein to be validly present, reliability of communication is based on one signal having indicia of a respective identification device.
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9. The locator of claim 1 wherein comparisons with respect to a particular pattern are made with reference to a particular threshold.
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10. The locator of claim 1 wherein the receiver has a respective configuration for operating in accordance with each pattern.
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11. The locator of claim 10 wherein the processor is coupled to the receiver for identifying at least one configuration for receiver operation.
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12. The locator of claim 11 wherein the method further comprises:
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a. identifying to the receiver a configuration for receiver operation in accordance with the first pattern; and
b. identifying to the receiver a configuration for receiver operation in accordance with the second pattern.
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13. The locator of claim 12 wherein the processor comprises a memory that stores indicia of a multiplicity of associations, each association making reference to a particular configuration and a particular zone of a plurality of zones.
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14. The locator of claim 13 wherein:
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a. the receiver comprises an attenuator that attenuates energy received and provides an attenuator output signal, each signal provided by the receiver being responsive to the attenuator output signal, attenuation of the attenuator being responsive to the processor in accordance with an identified configuration; and
b. the step of identifying to the receiver a configuration for receiver operation in accordance with the second pattern is performed in accordance with a maximum attenuation with which the second identification device is determined to be validly present.
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15. The locator of claim 14 wherein the step of identifying to the receiver a configuration for receiver operation in accordance with the first pattern is performed in accordance with the maximum attenuation.
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16. The locator of claim 14 wherein the step of identifying to the receiver a configuration for receiver operation in accordance with the first pattern is performed in accordance with the maximum attenuation and an offset.
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17. The locator of claim 1 wherein:
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a. each signal further provides indicia of identification device identification; and
b. the processor further comprises a memory that stores indicia of a multiplicity of associations, each association making reference to a particular identification device identification and a particular zone of a plurality of zones.
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18. A method for determining whether a first identification device is located within a zone, the method comprising:
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operating a portable locator within the zone to determine a respective reliability of communication between the locator and a plurality of identification devices, the plurality comprising the first identification device and at least one second identification device, wherein;
a. the first identification device is located within a periphery of a first communication pattern;
b. each second identification device is located beyond the periphery of the first communication pattern and within the periphery of a second communication pattern;
c. the first and the second communication pattern each respectively has a periphery such that communication with a provided identification device that is physically located beyond the periphery is less reliable than communication with a provided identification device that is physically located within the periphery; and
d. the first communication pattern has a periphery substantially within the zone;
comparing reliability of communication with the second identification device via the first communication pattern and reliability of communication with the second identification device via the second communication pattern to provide a result of comparison; and
indicating, in response to the result of comparison, that operation via the first communication pattern is within the zone.
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19. A locator comprising:
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a. a receiver that provides a signal having indicia of identification device presence within a communication pattern; and
b. a processor that performs a method for determining whether operation of a portable locator is within a zone, the method comprising;
comparing reliability of communication with an identification device via a first communication pattern and reliability of communication with the identification device via a second communication pattern to provide a result of comparison; and
indicating, in response to the result of comparison, that operation via the first pattern is within the zone, wherein;
(a) the first and the second communication pattern each respectively has a periphery such that communication with a provided identification device that is physically located beyond the periphery is less reliable than communication with a provided identification device that is physically located within the periphery;
(b) the first communication pattern has a periphery substantially within the zone; and
(c) the identification device is located beyond the periphery of the first pattern and within the periphery of the second pattern.
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20. A method for determining whether operation of a portable locator is within a zone, the method comprising:
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comparing reliability of communication with an identification device via a first communication pattern and reliability of communication with the identification device via a second communication pattern to provide a result of comparison; and
indicating, in response to the result of comparison, that operation via the first pattern is within the zone, wherein;
(a) the first and the second communication pattern each respectively has a periphery such that communication with a provided identification device that is physically located beyond the periphery is less reliable than communication with a provided identification device that is physically located within the periphery;
(b) the first communication pattern has a periphery substantially within the zone; and
(c) the identification device is located beyond the periphery of the first pattern and within the periphery of the second pattern.
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21. A method for preparing for zone-based communication, such communication using a portable locator, the method comprising for each zone:
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determining a respective set of locations comprising at least one location, each respective location for operating the locator within the zone, all points within the zone being on at least one respective line of sight from at least one location of the set of locations; and
determining a respective set of communication pattern pairs comprising at least one pattern pair, wherein;
(a) each pair respectively comprises a first pattern and a second pattern;
(b) each respective pattern, operative with the locator, has a periphery such that communication with a provided identification device that is physically located beyond the periphery is less reliable than communication with a provided identification device that is physically located within the periphery; and
(c) each respective first pattern has a periphery substantially within the zone; and
(d) for each pattern pair, placing at least one identification device beyond the periphery of the first pattern and within the periphery of the second pattern. - View Dependent Claims (22)
comparing reliability of communication with the identification device via the first pattern at a location in the zone and reliability of communication with the identification device via the second pattern at the location in the zone to provide a result of comparison; and
indicating proper operating conditions exist for operating the portable locator via the first pattern in response to the result of comparison.
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Specification