1460739179-25f147ac-8a11-411b-a8e1-b6fad07fee13

1. A method for identifying an object’s passing route direction, wherein the method is applied to a system that comprises at least one group of vector beacons placed at preset intervals, wherein each group comprises two vector beacons, and each group of vector beacons alternatively send two low-frequency signals carrying different attribute codes according to a preset sequence, the two low-frequency signals form two low-frequency electromagnetic fields which are partially overlapped in space, and the preset interval enables the area of the overlapped part of the two low-frequency electromagnetic field to be no less than 70% of the total area of the electromagnetic fields or the maximum extension width of the independence part to be less than 1 m, and the method comprises:
when the object is in a whole process from entering to separating from a region inducted by the low-frequency electromagnetic field, receiving the low-frequency signal of the low-frequency electromagnetic field in real time;
extracting the attribute code and signal intensity corresponding to the low-frequency signal received and conducting associate storage; and
after the object separates from the region inducted by the low-frequency electromagnetic field, determining the object’s route direction along which the object passes through the vector beacons according to the attribute code and signal intensity stored.
2. The method according to claim 1, wherein the identification method further comprises:
transmitting the route direction along which the object passes through the vector beacons and identification information representing the identity of the object to a superior system.
3. The method according to claim 2, further comprising:
when the step of transmitting the route direction along which the object passes through the vector beacons and the identification information representing the identity of the object to the superior system is failed, retransmitting the route direction and the identification information.
4. The method according to claim 1, wherein the step of determining the route direction along which the object passes through the vector beacons according to the attribute code and signal intensity stored after the object separates from the region inducted by the low-frequency electromagnetic field comprises:
after the object separates from the region inducted by the low-frequency electromagnetic field, sequencing the different attribute codes stored according to a storage sequence, and
respectively selecting a preset number of attribute codes as a first segment and a final segment in sequence from the first attribute code and the last attribute code; and
respectively comparing signal intensity statistics values of different attribute codes in the first segment and the final segment according to the signal intensity corresponding to the attribute codes, and respectively judging the first approached vector beacon when the object enters the region inducted by the low-frequency electromagnetic field and the last separated vector beacon when the object separates from the region inducted by the low-frequency electromagnetic field according to the comparison result.
5. A system for identifying an object’s passing route direction, wherein the system comprises at least one group of vector beacons placed at preset intervals, wherein each group comprises two vector beacons, and each group of vector beacons alternatively send two low-frequency signals carrying different attribute codes according to a preset sequence, the two low-frequency signals form two low-frequency electromagnetic fields which are partially overlapped in space, and the preset interval enables the area of the overlapped part of the two low-frequency electromagnetic field to be no less than 70% of the total area of the electromagnetic fields or the maximum extension width of an independence part to be less than 1 m, and the identification system further comprises:
a receiving module configured to, when the object is in a whole process from entering to separating from a region inducted by the low-frequency electromagnetic field, receive the low-frequency signal of the low-frequency electromagnetic field in real time;
an extraction module configured to extract the attribute code and a signal intensity corresponding to the low-frequency signal received and conduct associate storage; and
a judgment module configured to, after the object separates from the region inducted by the low-frequency electromagnetic field, judge the object’s route direction along which the object passes through the vector beacons according to the attribute code and signal intensity stored.
6. The system according to claim 5, wherein at the identification system further comprises:
a transmission module configured to transmit the route direction along which the object passes through the vector beacons and identification information representing the identity of the object to a superior system.
7. The system according to claim 6, wherein the identification system further comprises:
a retransmission module configured to, when the step of transmitting the route direction along which the object passes through the vector beacons and the identification information representing the identity of the object to the superior system failed, retransmit the route direction and the identification information.
8. The system according to claim 5, wherein the judgment module comprises:
a selection module configured to, after the object separates from the region inducted by the low-frequency electromagnetic field, sequence the different attribute codes stored according to a storage sequence, and respectively select a preset number of attribute codes as a first segment and a final segment in sequence from the first attribute code and the last attribute code; and
a judgment submodule configured to respectively compare signal intensity statistics values of different attribute codes in the first segment and the final segment according to the signal intensity corresponding to the attribute codes, and respectively judge the first approached vector beacon when the object enters the region inducted by the low-frequency electromagnetic field and the last separated vector beacon when the object separates from the region inducted by the low-frequency electromagnetic field according to the comparison result.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A method for creating computer documentation on demand, comprising: embedding an indicator corresponding to a screen image in a documentation file; capturing a screen image corresponding to the embedded indicator at a time consistent with a configuration option, wherein the configuration option specifies whether the screen image capture is executed when the software corresponding to the documentation file is installed on a computing system, when documentation corresponding to the documentation file is loaded on the computing system, when the documentation file is accessed in conjunction with an execution of software corresponding to the documentation file and when detecting that software corresponding to the documentation file has been modified; storing the screen image in the documentation file at a location corresponding to the embedded indicator; and displaying the screen image in conjunction with the documentation file, wherein the screen image is displayed in conformity with parameters stored within a configuration file.