Rogue Detection Using Geophysical Information
Network devices have an internal or external geophysical location detection device that is used to verify the physical location of the network device. The physical location may be compared to the expected location of the device, the network connection point, or connection with neighboring devices to determine if the network device is permitted access to the network. In one embodiment, a geophysical location is stored in the memory of the device upon initial installation. When the device is attached to the network at a later time, the actual location is compared to the previous location or a list of permitted locations to ensure the device has not been moved without authorization. In a second embodiment, the expected location is determined by attempting to detect the device with another network device.
1 . A method comprising:
detecting a first device on a network;
determining a first geophysical location for said first device;
determining a first expected geophysical location for said first device;
comparing said first geophysical location with said first expected geophysical location; and
permitting said first device to operate on said network based on said comparing.
2 . The method of claim 1 wherein said network comprises a wired connection.
3 . The method of claim 1 wherein said network comprises a wireless connection.
4 . The method of claim 3 wherein said wireless connection comprises a wireless network backbone.
5 . The method of claim 3 wherein said wireless connection comprises a wireless connection to downstream devices.
6 . The method of claim 1 wherein said first device comprises a wired connection and a wireless connection.
7 . The method of claim 1 wherein said first geophysical location is based on a geophysical detection system internal to said first device.
8 . The method of claim 7 wherein said geophysical detection system comprises a Global Positioning System receiver.
9 . A host device comprising:
a network connection;
a controller adapted to:
detect a first device on a network;
determine a first geophysical location for said first device;
determine a first expected geophysical location for said first device;
compare said first geophysical location with said first expected geophysical location; and
permit said first device to operate on said network based on said comparing.
10 . The host device of claim 9 wherein said network comprises a wired connection.
11 . The host device of claim 9 wherein said network comprises a wireless connection.
12 . The host device of claim 11 wherein said wireless connection comprises a wireless network backbone.
13 . The host device of claim 11 wherein said wireless connection comprises a wireless connection to downstream devices.
14 . The host device of claim 9 wherein said first device comprises a wired connection and a wireless connection.
15 . The host device of claim 9 wherein said first device is fixedly mounted.
16 . The host device of claim 9 wherein said first device is a mobile device.
17 . The host device of claim 9 wherein said first geophysical location is based on a geophysical detection system internal to said first device.
18 . The host device of claim 17 wherein said geophysical detection system comprises a Global Positioning System receiver.
19 . The host device of claim 17 wherein said geophysical detection system is adapted to us a method comprising triangulation.
20 . The host device of claim 9 wherein said first geophysical location is based at least in part by detecting said first device by a second device on said network.