The disclosed embodiments relate generally to television viewing activity and web browsing activity.
Television viewers have been watching television programs for more than fifty years. In the beginning, a small number of programs were broadcast over the airwaves, and users selected among those channels. Over time, more television viewers have come to receive their television programs from a satellite network or cable network. In addition to standard programming, satellite and cable networks offer premium channels, pay-per-view programs, and a host of interactive programs. Interactive programs are made possible by a set top box that receives the broadcast signal and also has access to the Internet. Set top boxes may also transmit viewer information back to the television provider, giving the provider more information about what programs people are watching.
Television viewers also access the Internet using computers or other devices. Using the Internet, a user can search for information, shop for clothes, books, electronic equipment, medical supplies, etc., watch videos on YouTube, connect with friends and family on social networking sites, play online games, and engage in lots of other activities.
Previously, television viewing activity and web browsing activity were disconnected. Web browsing activity may be stored in logs on servers, and television viewing activity may be tracked by television providers, but there was no process to match or correlate these activities.
Most Internet-enabled devices in a household (e.g., computers, MP3 players, game consoles, etc.) share the same IP address (e.g., the IP address of a home router). The IP address is associated with a TV account and viewing information for a set top box. Knowing this IP address enables the correlation of Web search logs, media content access logs, etc. (reflecting prior Internet activity by users for the same IP address) with log data of TV viewing information associated with the same account.
By correlating television viewing activity with web activity, it is possible to make suggestions to viewers as to other content of interest, present targeted ads, etc. reflecting preferences/behavior revealed by the combined log information. This correlation also enables providing valuable information to advertisers as to viewing and Internet behaviors of different viewer segments.
In disclosed embodiments, the IP address used by a set top box to transmit data back to a television provider (with the user's account id) is linked to web logs (e.g., from ad networks), and this is almost always the same household. This enables linking a TV to a computer/household, without burdening a user at the household.
In some embodiments, linking of web browsing with television viewing is implemented on a server with one or more processors and memory. The memory stores programs that are executed by the processors. The server receives an IP address associated with an account of a TV subscriber. In some embodiments, the IP address is received from a TV service provider, such as a cable television network or a satellite television network. The IP address is associated with a set top box employed by the TV subscriber to display TV content provided by the TV service. The IP address is also associated with one or more computers in the household corresponding to the TV subscriber. The one or more computers are configured to run web browsers. The server receives information on TV viewing of the TV subscriber, including the IP address of the household. The server also receives information on web browsing activity of the computers in the household associated with the IP address. The information on web browsing activity includes the IP address. The server maintains a TV log of the TV viewing of the TV subscriber, and maintains an Internet log of the web browsing activity of the computers in the household associated with the IP address. The server associates entries in the TV log with entries in the Internet log, and stores the associations. The server associates the entries, at least in part, using the IP address.
In some embodiments, a computer system for linking TV viewing with Internet activity has memory, one or more processors, and one or more programs stored in the memory. The programs are configured for execution by the one or more processors. The one or more programs include instructions for receiving an IP address associated with an account of a TV subscriber. In some embodiments, the IP address is received from a TV service provider, such as a cable television network or a satellite television network. The IP address is associated with a set top box employed by the TV subscriber to display TV content provided by the TV service. The IP address is also associated with one or more computers in the household corresponding to the TV subscriber. The one or more computers are configured to run web browsers. The programs include instructions for receiving information on TV viewing of the TV subscriber, including the IP address. The programs also include instructions for receiving information on web browsing activity of the computers in the household associated with the IP address. The information on web browsing activity includes the IP address. The programs include instructions for maintaining a TV log of the TV viewing of the TV subscriber, and instructions for maintaining an Internet log of the web browsing activity of the computers in the household associated with the IP address. The programs include instructions for associating entries in the TV log with entries in the Internet log using the IP address, and instructions for storing the associations.
In some embodiments, a non-transitory computer readable storage medium stores one or more programs to be executed by a computer system. The one or more programs include instructions for receiving an IP address associated with an account of a TV subscriber. In some embodiments, the IP address is received from a TV service provider, such as a cable television network or a satellite television network. The IP address is associated with a set top box employed by the TV subscriber to display TV content provided by the TV service. The IP address is also associated with one or more computers in the household corresponding to the TV subscriber. The one or more computers are configured to run web browsers. The programs include instructions for receiving information on TV viewing of the TV subscriber, including the IP address of the household. The programs also include instructions for receiving information on web browsing activity of the computers in the household associated with the IP address. The information on web browsing activity includes the IP address of the household. The programs include instructions for maintaining a TV log of the TV viewing of the TV subscriber, and instructions for maintaining an Internet log of the web browsing activity of the computers in the household associated with the IP address. The programs include instructions for associating entries in the TV log with entries in the Internet log, and instructions for storing the associations. The instructions for associating the TV log entries with the Internet log entries access the IP addresses corresponding to the entries.
Like reference numerals refer to corresponding parts throughout the several views of the drawings.
Reference will now be made in detail to embodiments, examples of which are illustrated in the accompanying drawings. In the following detailed description, numerous specific details are set forth in order to provide a thorough understanding of the present invention. However, it will be apparent to one of ordinary skill in the art that the present invention may be practiced without these specific details. In other instances, well-known methods, procedures, components, and circuits have not been described in detail so as not to unnecessarily obscure aspects of the embodiments.
Embodiments illustrated in
In some embodiments, the television viewing activity at the household 180 is tracked in a TV log database 150. In some embodiments, the viewing activity includes every program viewed by the household. In other embodiments, the viewing activity tracked includes only programs that are viewed at least a threshold amount of time (e.g., 1 minute or 5 minutes). In some embodiments, the viewing activity tracked includes only premium content. The TV viewing activity that is tracked generally includes the program 152, the channel 154, and the date/time 156 of the viewing. When the IP address 126 is available, it is generally included in the TV log data. In some embodiments, the tracking of TV viewing is performed by a log server 300.
The television provider 102 transmits the television programs to the household 180 over a cable 112, by transmission from a satellite 104, or by streaming over the Internet (described below). In the case of satellite transmissions 106, the household 180 has an antenna 108 to receive the signal. At the household 180 there is a receiver or converter 110 to process or decode the incoming signals. The television signals are transmitted to a set top box 400, which allows household members 118 to control what is being displayed on the television 116. In some embodiments, the receiver/converter 110 is combined with the set top box 400. In general, a household member, such as member 118-1 or 118-2 controls the set top box 400 with a remote control device. In some embodiments, there is additional communication between the television provider 102 and the set top box 400 over a telephone line 114. For example, the set top box may provide information about what television programs are being viewed, or may receive further information for interactive television programs.
In some embodiments, the viewing activity is identified by the receiver/converter 110, and transmitted to the television provider 102 through the set top box 400, which is connected to the communication network 130 (e.g., the Internet) through a home router 120. In other embodiments, the set top box 400 is able to ascertain the program viewed by evaluating the signal received from the receiver/converter 110. In these embodiments, the set top box transmits the viewing information (e.g., program, channel, date/time, etc.) to the television provider 102, again via the household router 120. Because the viewing information is transmitted through the household router 120, the IP address 126 of the router can be transmitted to the television provider 102 along with the viewing information. In some embodiments the IP address 126 and/or viewing information is transmitted to the television provider 102 on a periodic basis (e.g., once a day). When the viewing information is transmitted periodically, the data is stored in the set top box 400 between transmissions. As noted above, in some alternative embodiments, the set top box 400 transmits data to the television provider 102 over a phone line 114. In some of these embodiments, the set top box 400 is able to retrieve the IP address 126 from the router and transmit it with the viewing data.
In some embodiments, the household connection to the Internet uses a distinct modem (e.g., DSL modem or cable modem) and an internal router (this configuration is not shown in
The actual television program signals are generally transmitted by satellite 104 or over a cable 112. In some embodiments, the television programs are streamed over the communications network 130, such as the Internet. In these embodiments, the process of selecting a television program may be performed by a computer 200, the set top box 400, or a receiver/converter 110 that is connected directly to the household router 120 (not shown in
The home router 120 is the gateway to the Internet from the household 180. The router 120 has one external IP address 126, and that is the IP address that is relevant to various embodiments described herein. Internally, the router 120 is connected to the set top box 400, and in some cases to any number of computers 200, digital audio players 124, or game consoles 122, such as XBOX, PLAYSTATION or WII. The router 120 is connected to the communication network 130 through an Internet service provider 128. The Internet service provider 128 assigns the IP address 126 to the home router 120. As noted before, the IP Address 126 can be static (fixed) or dynamic (changing). In general, dynamic IP addresses change only when the connection between the router and the Internet service provider 128 is broken (e.g., when using a dial-up modem).
The computers 200 in the household 180 can access the Internet to perform a myriad of activities, such as searching for data (e.g., using a search engine), shopping, viewing videos online (e.g., on YouTube), playing online games, participating in online social networks, or engaging in many other activities. Some of these web browsing activities are logged on one or more log servers 300 in an Internet log database 138. For example, the log 138 may track web site visits 140 or search queries 144. Many other Internet activities are logged, such as online shopping conversions and viewing advertisements. In addition, many web sites track browsing 144 on their sites using Google Analytics. Web browsing activities are generally tracked by the IP Address 126 of the household 180 because it is readily available and it is a unique identifier (at least at a specific point in time). In some embodiments, there is specific tracking for visits to YouTube 146 or other particular sites of interest. In some embodiments, the Internet log 138 includes cookies 148 that are downloaded during the web activity.
One of skill in the art would recognize that the data identified in Internet log database 138 and TV log database 150 could be in a single database, or distributed to a different number of databases depending on the implementation.
Referring to
The correlation module 324 may also convert the information from the log entries in databases 320 and 322 into aggregated data. In some embodiments, the log data processing module 324 processes the IP or web address to determine geographic information, such as country, state and city.
Although
A set top box includes one or more communication buses 412 for interconnecting these components. The communication buses 412 may include circuitry (sometimes called a chipset) that interconnects and controls communications between system components. Memory 414 may include high-speed random access memory, such as DRAM, SRAM, DDR RAM or other random access solid state memory devices; and may include non-volatile memory, such as one or more magnetic disk storage devices, optical disk storage devices, flash memory devices, or other non-volatile solid state storage devices. Memory 414 may include mass storage that is remotely located from the central processing unit(s) 402. Memory 414, or alternately the non-volatile memory device(s) within memory 414, comprises a computer readable storage medium. In some embodiments, memory 414 or the computer readable storage medium of memory 414 stores the following programs, modules and data structures, or a subset thereof:
Each of the methods described herein may be performed by instructions that are stored in a computer readable storage medium and that are executed by one or more processors of one or more servers or clients. Each of the operations shown in
Associating TV Viewing with Web Activity for a Single Source Panel
A “single source panel” is an all-in-one ratings system that measures viewership across television and the Internet.
Both television viewing activity and web usage activity are useful indicators of future activities of an individual household as well as aggregate trends. Combining these two disparate types of data can provide even more valuable information. In order to do this, the data from television viewing has to be correlated to web usage activity for the same household, or even the same user.
Previously, the only way to get correlated data is with the use of surveys. For example, a sample page of an exemplary survey is depicted in
As described above, some embodiments associate TV viewing data and web usage data on a per household/per user basis. This is made possible in some embodiments by recognizing that, at any given time, most or all Internet-enabled devices in a household will access the Internet through a common router and, as a result, share a common IP address. As already described, the IP address can be static or dynamic. In the case where the IP address is dynamic and changes over time (e.g., when the IP address is assigned dynamically by an ISP using DHCP) the IP address for the household can be logged at a web server (such as the Google TV set top box 400, the log server 300, or the TV provider 102). In this way, historical TV viewing data and web usage can still be associated with a particular household/user over the corresponding period of time.
In particular, when a set top box 400 used by a household 180 connects to the Internet through the same router 120 as other Internet-enabled electronic devices in the household, the set top box 400 shares the same IP address 126 as those devices. As a result, TV viewing data 150 reported by the set top box 400 (e.g., to the Google TV server, log server 300, and/or the TV provider 102) can be stored and associated with the same household 180 and IP address 126 as that associated with web activity data 138 reported by Internet-enabled electronic devices from the same household 180.
By associating TV viewing data 150 and web usage data 138 using a common key associated with a particular household 180 or user (e.g., a household IP address 126), it is possible to provide additional value and services to viewers, advertisers who place ads with a TV provider to insert into that providers TV content, and the TV provider.
For example, TV providers (such as cable providers or satellite providers) often wish to enroll viewers in panels to answer surveys related to TV or movie content, or the ads displayed therewith.
In addition, for such surveys to be useful to an advertiser, the selected panelists must be within the target population (e.g., in the right demographic segment and having an appropriate viewing history and/or set of interests) and they must be willing to complete the survey tools. Conventionally, identifying appropriate panelists has required the use of lengthy screening procedures, including written and/or online questionnaires, and incentives for panelists to complete the surveys. While these approaches may be effective for small panels, they are cumbersome if used for large panels (for example, to generate surveys for those large panels). Information from large panels is especially useful because it can be aggregated and used to spot trends among large groups of users. The information can also provide helpful information for targeting ads and content for large numbers of individual households.
For example, a method implemented at a log server 300 or a computer system at a TV provider 102 can conduct searches on the associated TV viewing 150 and web usage data 138 for individual households to generate survey tools 500 for individual panelists and identify likely panelists. For example, likely panelists can be identified based on TV content viewed, records of click-through history for web ads, and logs of media content viewed. Once identified, the surveyor can interact with the panelists and prospective panelists through additional status and approval screens, such as the screens illustrated in
The form 700 includes a problem history section 710, which enables panelists to report problems with the survey questions. In the illustrated embodiment, a panelist can specify the problem category 716 and additional comments 720. In some embodiments, there is also a date field 712 for each problem. In preferred embodiments, the form automatically fills in the date 714 during entry or when saved. The panelist specifies the problem category 718 (e.g., “other” in the illustrated embodiment) and comments 722.
The ad approval section 724 in form 700 is similar to
Using the log information maintained by the log server 300, some embodiments are configured to automatically generate new surveys and otherwise monitor the progress of surveys. For example,
When the illustrated process flow 800 in
After the survey status is generated (804), some embodiments process (810) the created panel XML file. While processing (810) the panel XML file, the process flow 800 generates (812) ad viewing information for the panelists and processes (814) the panelist white list from the market research system. In some embodiments, the panelist white list identifies TV subscribers who meet the eligibility requirements (e.g., having appropriate hardware and software). Using the ad viewing information and the panelist white list, the process 800 generates (816) new surveys for panelists. In addition, the process flow 800 processes the survey status updates from the market research systems. The process flow 800 ends (818) when the survey status updates are processed (808), the new surveys for panelists are generated (816), and the survey results for existing surveys are generated (806).
Some disclosed embodiments provide an alternative simplified process that utilizes a set top box and Internet connectivity. An interactive application runs on the set top box that enables correlation of web browsing activity and television viewing activity. Because both types of activity are known, appropriate panelists can more easily be identified. In addition, when users agree to become panelists, much of the data can be tracked automatically, removing the burden of responding to many survey questions.
To qualify a household 180 as a panelist, the interactive application initially reviews the operating systems and browser(s) used at the household to determine if they are compatible with the application software. In order to attract a sufficient number of panelists, various incentives can be provided. For example, panelists may receive cash compensation, credit towards viewing Pay-Per-View movies, discounts on premium channels, sweepstakes entries, or other incentives.
Access to both television viewing activity and web browsing activity enables the creation of a “white list” of active set top boxes. The households with active set top boxes may be contacted for enrollment as panelists. Because eligibility for enrollment can be calculated automatically, a much greater number of panelists can be enrolled. Furthermore, because much of the data can be automatically collected after enrollment, there is greater accuracy, and fewer panelists discontinue as panelists because the burden of answering survey questions is greatly reduced.
An Exemplary Embodiment
One exemplary embodiment includes the following:
The foregoing description, for purpose of explanation, has been described with reference to specific embodiments. However, the illustrative discussions above are not intended to be exhaustive or to limit the invention to the precise forms disclosed. Many modifications and variations are possible in view of the above teachings. The embodiments were chosen and described in order to best explain the principles of the invention and its practical applications, to thereby enable others skilled in the art to best utilize the invention and various embodiments with various modifications as are suited to the particular use contemplated.
This application claims priority under 35 U.S.C. 119(e) to U.S. Provisional Patent Application Ser. No. 61/389,692 filed Oct. 4, 2010, entitled “System and Method for Linking Web Browsing with Television Viewing,” and to U.S. Provisional Patent Application Ser. No. 61/390,154 filed Oct. 5, 2010, entitled “System and Method for Providing Real Time Television Viewing Information and Popularity to Viewers,” both of which are hereby incorporated by reference in their entirety.
Number | Date | Country | |
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61389692 | Oct 2010 | US | |
61390154 | Oct 2010 | US |