Indoor drone flight awareness system
Unmanned vehicles can be terrestrial, aerial, nautical, or multi-mode. Unmanned vehicles may be used to survey a property in response to or in anticipation of a security threat or damage to the property. For example, an unmanned vehicle may analyze information about the property and based on the information provide graphics and information associated with the surveying of the property.
1. A unmanned vehicle, the unmanned vehicle comprising:
a processor; and
a memory coupled with the processor, the memory having stored thereon executable instructions that when executed by the processor to cause the processor to effectuate operations comprising:
obtaining, from a security system, instructions to identify the cause of a detected motion within a structure; and
transmitting, to the security system,
instructions to disregard movement of the unmanned vehicle within the structure.
2. The unmanned vehicle of claim 1 , the operations further comprising notifying the security system that the cause of the detected motion is innocuous.
3. The unmanned vehicle of claim 1 , the operations further comprising notifying the security system that the cause of the detected motion is innocuous, wherein the cause of the detected motion is a pet.
4. The unmanned vehicle of claim 1 , the operations further comprising:
obtaining a notification that the cause of the detected motion is unauthorized; and
contacting authorities about the cause of the detected motion.
5. The unmanned vehicle of claim 1 , the operations further comprising closing a window to enable the security system to be turned on.
6. The unmanned vehicle of claim 1 , the operations further comprising closing a door to enable the security system to be turned on.
7. The unmanned vehicle of claim 1 , the operations further comprising closing a window to enable the security system to be reset.
8. The unmanned vehicle of claim 1 , the operations further comprising closing a door to enable the security system to be reset.
9. The unmanned vehicle of claim 1 , the operations further comprising obtaining navigational rules to keep a buffer distance based on a type of object.
10. The unmanned vehicle of claim 1 , the operations further comprising obtaining navigational rules to keep a buffer distance based on a type of object, wherein a buffer distance for a fragile object is larger than a buffer distance for a durable object.
11. The unmanned vehicle of claim 1 , the operations further comprising obtaining navigational rules to keep a buffer distance based on a type of object, wherein a buffer distance for a glass object is larger than a buffer distance for a durable object.
12. The unmanned vehicle of claim 1 , the operations further comprising relaying the instructions to another unmanned vehicle to cooperatively identify the cause of the detected motion within the structure.
13. The unmanned vehicle of claim 1 , the operations further comprising relaying the instructions to another unmanned vehicle to identify the cause of the detected motion within the structure instead of the unmanned vehicle.
14. The unmanned vehicle of claim 1 , the operations further comprising:
based on a comparison of unmanned vehicle and another unmanned vehicle performance for identifying the cause of the detected motion, relaying the instructions to the another unmanned vehicle to identify the cause of the detected motion within the structure instead of the unmanned vehicle.
15. The unmanned vehicle of claim 1 , the operations further comprising:
generating a heat map that is indicative of the condition of the structure, wherein the heat map is:
a graphical representation of data based on gathered information about a structure, and the graphical representation of data is represented as colors; and
navigating the unmanned vehicle based on the colors of the heat map.
16. The unmanned vehicle of claim 1 , the operations further comprising:
generating a heat map that is indicative of the condition of the structure, wherein the heat map is:
a graphical representation of data based on gathered information about a structure, and
the graphical representation of data is represented as colors; and
surveilling the structure based on the colors of the heat map.
17. The unmanned vehicle of claim 1 , the operations further comprising surveilling the structure based on colors of a heat map associated with valuables within the structure.
18. A method comprising:
obtaining, by a computing device from a security system, instructions to identify the cause of a detected motion within a structure; and
transmitting, by the computing device, to the security system, instructions to disregard movement of the unmanned vehicle within the structure.
19. The method of claim 18 , wherein the method further comprises notifying, by the computing device, the security system that the cause of the detected motion is innocuous.
20. The method of claim 18 , wherein the method further comprises closing, by the computing device, a window or door to enable the security system to be turned on or reset.