MLchartDataset catalogue

Patent · US2006235611A1 · A1 · US

Systems and methods for recording and reporting data collected from a remote location

(11) Publication number
US2006235611A1
(21) Application number
US-20838905-A
(22) Filing date
2005-08-19
(30) Priority date
2005-04-18
(43) Publication date
2006-10-19
(52) CPC
  • G01C Measuring distances, levels or bearings; surveying; navigation; gyroscopic instruments; photogrammetry or videogrammetry: 15/00
(73) Assignee
DATAFORENSICS LLC
(54) Title
Systems and methods for recording and reporting data collected from a remote location
(57) Abstract

Systems and methods for recording and reporting data collected from a remote location are disclosed. A work order, defining infrastructure to be inspected at a remote site and including an inspection plan for collecting inspection information, is generated on a first computer system and transferred to a portable computing system. Inspection data is collected pursuant to the inspection plan on the portable computing system. A global positioning system (GPS) receiver associated with the portable computing system provides location information related to inspected infrastructure during the inspection. After collection, inspection data is transferred from the portable computing system to the first and/or to a second computing system for storage and the generation of related reports. The location information obtained during the inspection can be used to determine dimensional measurements of the infrastructure and to generate visual depictions of infrastructure components and defects.

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Claims (24)

  1. A system for the recording and reporting of data comprising: a server located at a first location; a client located at a second location, the client having a client-server communications interface for communication with the server; and a portable computing device for collecting inspection data at a third location according to an inspection plan, the third location being remote from the second and first locations, wherein the portable computing device further includes: means for receiving signals for determining the geographic position of the portable computing device; means for determining the geographic position of the portable computing device from the signals, the geographic position of the portable computing device forming at least a portion of the inspection data collected according to the inspection plan; a memory for storing the inspection data; and a bidirectional communications interface for transmitting the inspection data to the client and receiving the inspection plan from the client.
  2. The system of claim 1, wherein the portable computing device is configured to associate the geographic position with an infrastructure component.
  3. The system of claim 2, wherein the server is configured to: receive the inspection data from the client over the client-server communication interface; and calculate a dimensional measurement of the infrastructure component from the geographic position.
  4. The system of claim 1, wherein the server is configured to: receive the inspection data from the client over the client-server communications interface; and generate a report from the inspection data.
  5. The system of claim 4, wherein the inspection data further includes assessment data collected according to the inspection plan, and the server is further configured to analyze the assessment data by comparing the assessment data to standards.
  6. The system of claim 4, wherein the server is configured to generate geographic information system (GIS) data from the inspection data for creating a visual mapping of a target inspected according to the inspection plan.
  7. The system of claim 6, wherein the server is configured to generate geographic information system (GIS) data from the inspection data for depicting the location of at least one infrastructure component inspected according to the inspection plan, the depiction of the location of the infrastructure component being depicted with respect to the visual mapping of the target.
  8. The system of claim 1, wherein the inspection plan defines an inspection of a roof and the inspection data identifies an assessed condition of at least one drain on the roof.
  9. The system of claim 8, wherein the server is configured to: receive the inspection data from the client over the client-server communications interface; store the assessed condition of the at least one drain in a server database of historical condition assessments; and analyze the historical condition assessments to predict the frequency of inspection or maintenance of the drain.
  10. The system of claim 1, wherein the inspection plan defines an inspection of infrastructure selected from the group consisting of: a roof, a paved area, a utility distribution system, a lawn, a tree, a shrub, a flower, or a retaining wall.
  11. The system of claim 1, wherein the portable computing device further comprises an auxiliary data collection device selected from the group consisting of: a global positioning system (GPS), a bar code scanner, a digital camera, and a digital voice recorder.
  12. A roof inspection system comprising: a portable computing device that can be transported between a first location and a second location, the second location being remote from the first location, the portable computing device including: at least one auxiliary component for collecting roof inspection information at the second remote location according to an inspection plan executed by the portable computing device, the roof inspection information collected by the at least one auxiliary component including geographic positions defining a geometric shape of at least a portion of the roof and a geographic position of at least one component associated with the roof; and a bidirectional communications interface for transferring the roof inspection information from the portable computing device to a second computing device over the bidirectional communications interface at a time when the portable computing device is located at the first location.
  13. The system of claim 12, wherein the system further includes: a server system located at a third location, the third location being remote from the first and second locations, the second computing device configured to: receive the roof inspection information from the portable computing device; and transfer the inspection information to the server system.
  14. The system of claim 12, wherein one of the second computing device or the server is configured to determine an area of the portion of the roof from the geographic position.
  15. The system of claim 14, wherein the at least one auxiliary component comprises a global positioning system (GPS) receiver for receiving signals used to determine the geographic position.
  16. The system of claim 12, wherein the roof inspection information collected by the at least one auxiliary component further includes an identification of the at least one component associated with the roof, and the portable computing system is configured to associate the identification of the at least one component associated with the roof with an assessment of the condition of the at least one component associated with the roof.
  17. A method for inspecting infrastructure comprising the steps of: collecting inspection information during an infrastructure assessment pursuant to an inspection plan executed by a portable computing device, the infrastructure assessment conducted at a first location, the step of collecting inspection information further including: receiving at least one signal; determining the location of the portable computing device based on the received signal; associating the location of the portable device with an infrastructure component; and storing the location and an identification of the associated infrastructure component in memory; and transferring the inspection information from the portable computing device to a second computing device.
  18. The method of claim 17, wherein the step of transferring the inspection information from the portable computing device further comprises: transferring the inspection information from the portable computing system to a server computing system.
  19. The method of claim 17, further comprising: receiving the inspection information from the portable computing device; and generating a graphical representation of the infrastructure component from the inspection results.
  20. The method of claim 19, further comprising: displaying the graphical representation of the infrastructure component.
  21. A method for inspecting infrastructure comprising the steps of: collecting inspection information during an infrastructure assessment pursuant to an inspection plan executed by a portable computing device, the infrastructure assessment conducted at a first location, the step of collecting inspection information further including: assessing the condition of an infrastructure component; associating the assessment with an identification of the infrastructure component; and storing the assessment and identification of the infrastructure in memory associated with the portable computing device; and transferring the inspection information from the portable computing device to a second computing device.
  22. The method of claim 21, further comprising: storing the assessed condition of the infrastructure component in a database associated with the second computing device, the database including historical condition assessments of the infrastructure component; and analyzing the historical condition assessments to predict the frequency of inspection or maintenance of the infrastructure component.
  23. A system for inspecting infrastructure comprising: a portable computing device having logic configured to: record an assessment of a condition of an infrastructure component pursuant to an inspection plan; associate the assessment with an identification of the infrastructure component; and store the assessment and the identification of the infrastructure in a memory associated with the portable computing device; and transfer the assessment and identification of the infrastructure from the memory associated with the portable computing device to a second computing device located at a second location.
  24. The system of claim 23, wherein the second computing device includes: a database of historical condition assessments of the infrastructure component; and logic configured to: store the assessment in the database of historical condition assessments; and analyze the historical condition assessments to estimate a frequency of maintenance needed for the infrastructure component.

Citations (5)

  • US2002032028A1
  • US2006137736A1
  • US2009216552A1
  • US5818340A
  • US6581045B1
Record as JSON
{
  "publication_number": "US2006235611A1",
  "country": "US",
  "kind": "A1",
  "title": "Systems and methods for recording and reporting data collected from a remote location",
  "abstract": "Systems and methods for recording and reporting data collected from a remote location are disclosed. A work order, defining infrastructure to be inspected at a remote site and including an inspection plan for collecting inspection information, is generated on a first computer system and transferred to a portable computing system. Inspection data is collected pursuant to the inspection plan on the portable computing system. A global positioning system (GPS) receiver associated with the portable computing system provides location information related to inspected infrastructure during the inspection. After collection, inspection data is transferred from the portable computing system to the first and/or to a second computing system for storage and the generation of related reports. The location information obtained during the inspection can be used to determine dimensional measurements of the infrastructure and to generate visual depictions of infrastructure components and defects.",
  "claims": [
    "1. A system for the recording and reporting of data comprising: a server located at a first location; a client located at a second location, the client having a client-server communications interface for communication with the server; and a portable computing device for collecting inspection data at a third location according to an inspection plan, the third location being remote from the second and first locations, wherein the portable computing device further includes: means for receiving signals for determining the geographic position of the portable computing device; means for determining the geographic position of the portable computing device from the signals, the geographic position of the portable computing device forming at least a portion of the inspection data collected according to the inspection plan; a memory for storing the inspection data; and a bidirectional communications interface for transmitting the inspection data to the client and receiving the inspection plan from the client.",
    "2. The system of claim 1, wherein the portable computing device is configured to associate the geographic position with an infrastructure component.",
    "3. The system of claim 2, wherein the server is configured to: receive the inspection data from the client over the client-server communication interface; and calculate a dimensional measurement of the infrastructure component from the geographic position.",
    "4. The system of claim 1, wherein the server is configured to: receive the inspection data from the client over the client-server communications interface; and generate a report from the inspection data.",
    "5. The system of claim 4, wherein the inspection data further includes assessment data collected according to the inspection plan, and the server is further configured to analyze the assessment data by comparing the assessment data to standards.",
    "6. The system of claim 4, wherein the server is configured to generate geographic information system (GIS) data from the inspection data for creating a visual mapping of a target inspected according to the inspection plan.",
    "7. The system of claim 6, wherein the server is configured to generate geographic information system (GIS) data from the inspection data for depicting the location of at least one infrastructure component inspected according to the inspection plan, the depiction of the location of the infrastructure component being depicted with respect to the visual mapping of the target.",
    "8. The system of claim 1, wherein the inspection plan defines an inspection of a roof and the inspection data identifies an assessed condition of at least one drain on the roof.",
    "9. The system of claim 8, wherein the server is configured to: receive the inspection data from the client over the client-server communications interface; store the assessed condition of the at least one drain in a server database of historical condition assessments; and analyze the historical condition assessments to predict the frequency of inspection or maintenance of the drain.",
    "10. The system of claim 1, wherein the inspection plan defines an inspection of infrastructure selected from the group consisting of: a roof, a paved area, a utility distribution system, a lawn, a tree, a shrub, a flower, or a retaining wall.",
    "11. The system of claim 1, wherein the portable computing device further comprises an auxiliary data collection device selected from the group consisting of: a global positioning system (GPS), a bar code scanner, a digital camera, and a digital voice recorder.",
    "12. A roof inspection system comprising: a portable computing device that can be transported between a first location and a second location, the second location being remote from the first location, the portable computing device including: at least one auxiliary component for collecting roof inspection information at the second remote location according to an inspection plan executed by the portable computing device, the roof inspection information collected by the at least one auxiliary component including geographic positions defining a geometric shape of at least a portion of the roof and a geographic position of at least one component associated with the roof; and a bidirectional communications interface for transferring the roof inspection information from the portable computing device to a second computing device over the bidirectional communications interface at a time when the portable computing device is located at the first location.",
    "13. The system of claim 12, wherein the system further includes: a server system located at a third location, the third location being remote from the first and second locations, the second computing device configured to: receive the roof inspection information from the portable computing device; and transfer the inspection information to the server system.",
    "14. The system of claim 12, wherein one of the second computing device or the server is configured to determine an area of the portion of the roof from the geographic position.",
    "15. The system of claim 14, wherein the at least one auxiliary component comprises a global positioning system (GPS) receiver for receiving signals used to determine the geographic position.",
    "16. The system of claim 12, wherein the roof inspection information collected by the at least one auxiliary component further includes an identification of the at least one component associated with the roof, and the portable computing system is configured to associate the identification of the at least one component associated with the roof with an assessment of the condition of the at least one component associated with the roof.",
    "17. A method for inspecting infrastructure comprising the steps of: collecting inspection information during an infrastructure assessment pursuant to an inspection plan executed by a portable computing device, the infrastructure assessment conducted at a first location, the step of collecting inspection information further including: receiving at least one signal; determining the location of the portable computing device based on the received signal; associating the location of the portable device with an infrastructure component; and storing the location and an identification of the associated infrastructure component in memory; and transferring the inspection information from the portable computing device to a second computing device.",
    "18. The method of claim 17, wherein the step of transferring the inspection information from the portable computing device further comprises: transferring the inspection information from the portable computing system to a server computing system.",
    "19. The method of claim 17, further comprising: receiving the inspection information from the portable computing device; and generating a graphical representation of the infrastructure component from the inspection results.",
    "20. The method of claim 19, further comprising: displaying the graphical representation of the infrastructure component.",
    "21. A method for inspecting infrastructure comprising the steps of: collecting inspection information during an infrastructure assessment pursuant to an inspection plan executed by a portable computing device, the infrastructure assessment conducted at a first location, the step of collecting inspection information further including: assessing the condition of an infrastructure component; associating the assessment with an identification of the infrastructure component; and storing the assessment and identification of the infrastructure in memory associated with the portable computing device; and transferring the inspection information from the portable computing device to a second computing device.",
    "22. The method of claim 21, further comprising: storing the assessed condition of the infrastructure component in a database associated with the second computing device, the database including historical condition assessments of the infrastructure component; and analyzing the historical condition assessments to predict the frequency of inspection or maintenance of the infrastructure component.",
    "23. A system for inspecting infrastructure comprising: a portable computing device having logic configured to: record an assessment of a condition of an infrastructure component pursuant to an inspection plan; associate the assessment with an identification of the infrastructure component; and store the assessment and the identification of the infrastructure in a memory associated with the portable computing device; and transfer the assessment and identification of the infrastructure from the memory associated with the portable computing device to a second computing device located at a second location.",
    "24. The system of claim 23, wherein the second computing device includes: a database of historical condition assessments of the infrastructure component; and logic configured to: store the assessment in the database of historical condition assessments; and analyze the historical condition assessments to estimate a frequency of maintenance needed for the infrastructure component."
  ],
  "cpc": [
    "G01C 15/00"
  ],
  "assignees": [
    "DATAFORENSICS LLC"
  ],
  "filing_date": "2005-08-19",
  "publication_date": "2006-10-19",
  "priority_date": "2005-04-18",
  "application_number": "US-20838905-A",
  "family_id": "46322476",
  "citations": [
    "US2002032028A1",
    "US2006137736A1",
    "US2009216552A1",
    "US5818340A",
    "US6581045B1"
  ]
}

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