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read mode, and although manufacturers use different terms to refer to these modes, they all are basically the same for all interrogators When in conveyor mode, the interrogator reads in fast intervals with a low number of retries; in this mode, usually few tags are in the IZ but they need to be read quickly, since the tag is in view of the antenna for only a short time Inventory mode is more of a transitional mode The interrogator will report when it sees a change; it will see a large number or a given number of tags for a specific amount of time, and when that number changes, the interrogator instantly generates a report to the back-end system to indicate the loss or gain of a new tag identity
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Interference is mitigated by the environment and the modes in which the interrogators operate Single interrogator environments obviously indicate one interrogator is installed in a particular facility This interrogator can broadcast on whatever channels it finds appropriate within its configuration at any given time The interrogator will not encounter interference from other interrogators, but it may encounter interference from the environment and from its own multipath interference caused by reflections of its own or other signal(s) This type of interference can be handled by proper shielding and by adjusting the signal strength and antenna gain If the number of simultaneously operating interrogators is smaller than the number of available channels, a multiple interrogator environment results In this type of environment, the interrogators can interfere with each other, but you can resolve this by assigning specific channels to specific interrogators or by time division In a dense interrogator environment, the number of interrogators operating is greater than the number of available channels As discussed earlier, certified interrogators will incorporate schemes identified in the Gen 2 specification to minimize mutual interference
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Know that to handle a dense interrogator environment successfully, it is essential that all interrogators operate in dense interrogator mode If one interrogator does not operate in this mode, the whole scheme will not work
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You must consider the speed and direction of the tagged assets/goods moving through the IZ when you are installing and configuring the IZ Direction can be determined by using multiple input sensors, such as light break sensors, at the beginning and the end of the IZ The order in which the sensors are triggered will indicate which direction the goods are traveling through the IZ Some antennas in development can sense the direction of tag movement These are essentially active antenna arrays, which will sweep a coverage area using multiple antennas embedded within one another in a certain sequence These antennas, coupled with the appropriate interrogator, can not only indicate direction of travel, but also eliminate weak areas in the coverage of the primary lobe
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Dwell time beam The time in which tags are within range of an antenna s
The speed of the items traveling through the IZ will ultimately determine how many tags can be successfully read during their dwell time If an interrogator has a maximum read ability of 500 tags per second, for example, and due to the coverage of the antennas and the speed of the goods, tags are in the interrogation field for only two thirds of a second, your interrogator will read only 330 tags two thirds of the total tag population These values come from the combination of the constraint of the abilities of the interrogator and the speed the tags travel through the zone If you want to extend the dwell time as much as possible, you should angle the antennas 25 to 45 degrees into or away from the path of travel This will make the beam wider along the path of travel for the goods, thereby increasing the time the tags spend in the read field
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