Remote flood zone determination method, system, and computer program product
First Claim
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1. An automated system for remotely obtaining flood determination data, the automated system comprising:
- a mobile device configured to automatically calculate a latitude coordinate and a longitude coordinate of a structure based on sensor readings of a plurality of sensors of the mobile device, wherein the latitude and longitude coordinates of the structure is at a different location than the mobile device, the mobile device comprising;
at least one computer processor and at least one memory,wherein said plurality of sensors comprises a global positioning system (GPS) receiver sensor coupled to said at least one computer processor,wherein said plurality of sensors comprises another sensor, other than a touchscreen, a keyboard, and a mouse, coupled to said at least one computer processor,a user interface,a first data network interface coupled to a communications network, anda flood search app client;
a flood search platform device, coupled via the communications network to the mobile device, comprisingat least one computer processor and at least one memory,a second data network interface coupled to the communications network,a flood search database, anda flood search engine; and
a flood determination platform comprisingat least one computer processor and at least one memory,a third data network interface coupled to the communications network,a flood maps database, andflood hazard determination subsystem;
wherein the flood search app client comprises wherein the at least one computer processor of the mobile device is configured to;
interact with and present data to a user via the user interface,retrieve data comprising at least one sensor reading from the GPS receiver sensor of the plurality of sensors of the mobile device, andretrieve data comprising at least one sensor reading from the another sensor of the plurality of sensors of the mobile device, andwherein the system comprises;
wherein the at least one computer processor of at least one of;
the mobile device,the flood search platform device, orthe flood determination platform,is configured to;
calculate the latitude and longitude coordinates of the location of the structure at the different location than the mobile device,wherein the latitude and longitude coordinates of the location of the structure is a different location than the GPS sensor reading of the mobile device; and
wherein the at least one processor is configured to send the latitude and longitude coordinates of the structure to the flood search engine via the first data network interface, andreceive flood determination data at the mobile device for the structure located at the latitude and longitude coordinates of the location of the structure,from the flood search engine via the first data network interface, anddisplay the flood determination data on the user interface of the mobile device;
wherein the flood search engine comprises wherein the at least one computer processor of the flood search platform device is configured toreceive the retrieved data from the flood search app client via the second data network interface,send the retrieved data to the flood hazard determination subsystem software via the second data network interface,receive the flood determination data from the flood hazard determination subsystem via the second data network interface,store the retrieved data and the flood determination data in the flood search database, andsend the flood determination data to the flood search app client via the second data network interface;
wherein the flood hazard determination subsystem comprises wherein the at least one computer processor of the flood search platform device is configured toreceive data from the flood search engine via the third data network interface,identify the flood determination data corresponding to the received data, andsend the flood determination data to the flood search engine via the third data network interface.
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Abstract
This patent discloses methods and systems for remotely requesting a flood zone determination from a mobile device such as a smart phone. The methods and systems use the GPS receiver in the mobile device to determine the exact latitude and longitude of the user'"'"'s location, thus eliminating the need for geocoding, eliminating errors introduced by manual data entry, and eliminating the need for the time consuming manual determination processes required, for example, for non-standard-addressed locations and for structures located near a 100-year flood zone.
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Citations
47 Claims
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1. An automated system for remotely obtaining flood determination data, the automated system comprising:
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a mobile device configured to automatically calculate a latitude coordinate and a longitude coordinate of a structure based on sensor readings of a plurality of sensors of the mobile device, wherein the latitude and longitude coordinates of the structure is at a different location than the mobile device, the mobile device comprising; at least one computer processor and at least one memory, wherein said plurality of sensors comprises a global positioning system (GPS) receiver sensor coupled to said at least one computer processor, wherein said plurality of sensors comprises another sensor, other than a touchscreen, a keyboard, and a mouse, coupled to said at least one computer processor, a user interface, a first data network interface coupled to a communications network, and a flood search app client; a flood search platform device, coupled via the communications network to the mobile device, comprising at least one computer processor and at least one memory, a second data network interface coupled to the communications network, a flood search database, and a flood search engine; and a flood determination platform comprising at least one computer processor and at least one memory, a third data network interface coupled to the communications network, a flood maps database, and flood hazard determination subsystem; wherein the flood search app client comprises wherein the at least one computer processor of the mobile device is configured to; interact with and present data to a user via the user interface, retrieve data comprising at least one sensor reading from the GPS receiver sensor of the plurality of sensors of the mobile device, and retrieve data comprising at least one sensor reading from the another sensor of the plurality of sensors of the mobile device, and wherein the system comprises; wherein the at least one computer processor of at least one of; the mobile device, the flood search platform device, or the flood determination platform, is configured to; calculate the latitude and longitude coordinates of the location of the structure at the different location than the mobile device, wherein the latitude and longitude coordinates of the location of the structure is a different location than the GPS sensor reading of the mobile device; and wherein the at least one processor is configured to send the latitude and longitude coordinates of the structure to the flood search engine via the first data network interface, and receive flood determination data at the mobile device for the structure located at the latitude and longitude coordinates of the location of the structure, from the flood search engine via the first data network interface, and display the flood determination data on the user interface of the mobile device; wherein the flood search engine comprises wherein the at least one computer processor of the flood search platform device is configured to receive the retrieved data from the flood search app client via the second data network interface, send the retrieved data to the flood hazard determination subsystem software via the second data network interface, receive the flood determination data from the flood hazard determination subsystem via the second data network interface, store the retrieved data and the flood determination data in the flood search database, and send the flood determination data to the flood search app client via the second data network interface; wherein the flood hazard determination subsystem comprises wherein the at least one computer processor of the flood search platform device is configured to receive data from the flood search engine via the third data network interface, identify the flood determination data corresponding to the received data, and send the flood determination data to the flood search engine via the third data network interface. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29)
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30. An automated method of remotely obtaining flood determination data comprising:
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on a mobile device, receiving, by at least one computer processor, an interaction from a user, responding, by the at least one computer processor, to the user interaction by reading from a plurality of sensors on the mobile device, wherein said plurality of sensors is other than a keyboard, a touchscreen, and a mouse, forming, by the at least one computer processor, a flood search request by inserting the sensor readings from the plurality of sensors into the flood search request, and sending, by the at least one computer processor, the flood search request to a flood search platform; on the flood search platform, receiving, by the at least one computer processor, the flood search request, responding, by the at least one computer processor, to the flood search request by receiving the sensor readings from the flood search request, sending, by the at least one computer processor, the sensor readings to a flood determination platform, receiving, by the at least one computer processor, flood determination data from the flood determination platform, storing, by the at least one computer processor, the sensor readings and the flood determination data in a flood search database, forming, by the at least one computer processor, a flood search response by inserting the flood determination data into the flood search response, and sending, by the at least one computer processor, the flood search response to the mobile device; and wherein the mobile device comprises; at least one computer processor and memory, an integrated global positioning system (GPS) receiver sensor reading at least one of the sensor readings of the mobile device, a user interface for receiving user input and displaying information, and a first data network interface for sending and receiving data communications; the flood search platform comprises; at least one computer processor and memory, a second data network interface, and the flood search database; the flood determination platform comprises; at least one computer processor and memory, a third data network interface, a flood maps database, and the flood determination software; wherein the method comprises; calculating, by the at least one computer processor, at least one latitude coordinate and at least one longitude coordinate of a location of a structure based on the sensor readings from the flood search request, and wherein the calculating the at least one latitude coordinate and the at least one longitude coordinate of the location of the structure comprises; analyzing, by the at least one computer processor, the sensor readings from the plurality of sensors of the mobile device, wherein the latitude and longitude coordinates of the location of the structure comprises; a different location than a GPS sensor reading of the mobile device; and responding, by the at least one computer processor, to the flood search app request comprising; extracting, by the at least one computer processor, at least a portion of the sensor readings from the flood search request, and storing, by the at least one computer processor, the at least the portion of the sensor readings and flood determination data in the flood search database. - View Dependent Claims (31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41)
wherein; on the flood search platform, wherein the responding to the flood search request further comprises extracting, by the at least one computer processor, the plurality of sensor readings from the flood search request, and wherein the sending the sensor readings to the flood determination platform comprises; sending, by the at least one computer processor, the plurality of sensor readings to the flood determination platform, and wherein the storing the sensor readings in the flood search database further comprises; storing, by the at least one computer processor, at least a portion of the plurality of sensor readings in the flood search database.
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39. The automated method according to claim 30, further comprising:
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displaying, by at least one computer processor, a map corresponding to an area based on the at least one latitude coordinate and the at least one longitude coordinate; displaying, by at least one computer processor, a region surrounding the at least one latitude coordinate and the at least one longitude coordinate of the location of the structure and having similar flood determination data;
ordisplaying, by at least one computer processor, a map wherein the map further comprises a region near to but not surrounding the at least one latitude coordinate and the at least one longitude coordinate of the location based on the at least one latitude coordinate and the at least one longitude coordinate having different flood determination data than other regions on the map.
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40. The automated method according to claim 30, wherein said flood determination data comprises at least one of:
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an indication of community participation; a community panel number; a flood zone panel; a flood zone; a flood map; a flood insurance rate zone; a flood map panel; a date of an applicable flood zone panel; a national flood insurance program (NFIP) panel effective date; an indicator of whether or not flood insurance was recommended or required; an indicator of whether or not flood insurance was recommended or required; a flood insurance availability; a map of neighboring flood zones; a distance to a nearest 100-year flood zone; a standard flood hazard determination form; a federal emergency management association (FEMA) form 81-93, 81-31, or some variant;
oran elevation certificate.
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41. The automated method according to claim 30, wherein the forming the flood search response further comprises at least one of:
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providing, by the at least one computer processor, a flood map differentiating flood zones; providing, by the at least one computer processor, a visual representation of a flood zone and a related area; providing, by the at least one computer processor, a visual representation of a flood zone related to a location of a structure; providing, by the at least one computer processor, a flood map differentiating flood zones;
orvisually differentiating, by the at least one computer processor, flood zones.
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42. A nontransitory flood search client application computer program product embodied on a nontransitory computer accessible medium configured to execute, on at least one computer processor of a mobile device in communication with a flood search platform over a communications network, a method of remotely obtaining flood determination data, the method comprising:
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receiving, by the at least one computer processor, an interaction from a user; responding, by the at least one computer processor, to the user interaction by reading sensor readings from a plurality of sensors of the mobile device, wherein said plurality of sensors comprises; a global positioning system (GPS) receiver sensor, and another sensor, other than a touchscreen, a keyboard, and a mouse; forming, by the at least one computer processor, a flood search request by inserting, by the at least one computer processor, the sensor readings from the plurality of sensors into the flood search request; and sending, by the at least one computer processor, the flood search request, over the communications network, to the flood search platform; and receiving, by the at least one computer processor, flood determination data, from the communications network, in response to the flood search request; and wherein the method comprises; retrieving, by the at least one computer processor, data comprising the at least one sensor reading; and calculating, by the at least one computer processor, at least one latitude coordinate and at least one longitude coordinate of a location of a structure, and using the at least one sensor reading comprising; wherein the calculating comprises; calculating, by the at least one computer processor, the at least one latitude coordinate and at least one longitude coordinate of the location of the structure, wherein the location of the structure comprises; a different location than a GPS sensor reading of the mobile device.
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43. An apparatus for remotely obtaining flood determination data, the apparatus comprising:
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a mobile device comprising; at least one computer processor and at least one memory, a global positioning system (GPS) receiver sensor for determining a position data of said mobile device coupled to said computer processor, another sensor, other than a touchscreen, a keyboard, and a mouse, coupled to said at least one computer processor, wherein said mobile device is configured to; automatically calculate a latitude coordinate and a longitude coordinate of a location of a structure based on the GPS sensor, and the another sensor, wherein the latitude and longitude coordinates of the location of the structure is at a different location than the mobile device, and a flood search database, a flood maps database, and flood hazard determination subsystem; wherein the at least one computer processor is configured to; retrieve at least one sensor reading from the GPS receiver sensor, retrieve at least one sensor reading from the another sensor associated with the mobile device, wherein the at least one computer processor is configured to retrieve data comprising the at least one sensor reading and the apparatus is configured to; calculate at least one latitude coordinate and at least one longitude coordinate of a location of the structure, and to use the sensor readings comprising wherein at least one computer processor of the mobile device or another device is configured to; calculate the at least one latitude coordinate and the at least one longitude coordinate of the location of the structure, wherein the location of the structure is a different location than the GPS sensor reading of the mobile device, when the mobile device is aimed at the structure; store the retrieved data and the flood determination data in the flood search database, and identify the flood determination data corresponding to the sensed data. - View Dependent Claims (44, 45)
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46. An automated system for remotely obtaining flood determination data, the automated system comprising:
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a mobile device configured to automatically calculate a latitude coordinate and a longitude coordinate of a location of a structure based on a plurality of sensors of the mobile device, wherein the location of the structure is a different location than the mobile device, the mobile device comprising; at least one computer processor and at least one memory, wherein said plurality of sensors comprises; a global positioning system (GPS) receiver sensor coupled to said at least one computer processor, and another sensor, other than a touchscreen, a keyboard, and a mouse, coupled to said at least one computer processor, a user interface, and a flood search app client; wherein the mobile device is configured to be coupled to; a flood search platform comprising a flood search database, and a flood search engine; and a flood determination platform comprising a flood maps database, and flood hazard determination subsystem; wherein the flood search app client comprises wherein the at least one computer processor is configured to; interact with and present data to a user via the user interface, retrieve data comprising at least one sensor reading from the GPS receiver sensor, retrieve data comprising at least one sensor reading from the another sensor associated with the mobile device, wherein the at least one computer processor configured to retrieve data comprising the at least one sensor reading; send the retrieved data to the flood search engine, receive flood determination data from the flood search engine, and display the flood determination data on the user interface; wherein the flood search engine comprises receive the retrieved data from the flood search app client, send the retrieved data to the flood hazard determination software, receive the flood determination data from the flood hazard determination software, store the retrieved data and the flood determination data in the flood search database, and send the flood determination data to the flood search app client; wherein the flood hazard determination software comprises receive data from the flood search engine, identify the flood determination data corresponding to the received data, and send the flood determination data to the flood search engine. - View Dependent Claims (47)
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Specification