EP1348155A2 - Display generating device - Google Patents
Display generating deviceInfo
- Publication number
- EP1348155A2 EP1348155A2 EP01272018A EP01272018A EP1348155A2 EP 1348155 A2 EP1348155 A2 EP 1348155A2 EP 01272018 A EP01272018 A EP 01272018A EP 01272018 A EP01272018 A EP 01272018A EP 1348155 A2 EP1348155 A2 EP 1348155A2
- Authority
- EP
- European Patent Office
- Prior art keywords
- focus
- functional display
- display regions
- unk
- weighted distances
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0481—Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
- G06F3/04817—Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance using icons
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0481—Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0487—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
- G06F3/0489—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using dedicated keyboard keys or combinations thereof
- G06F3/04892—Arrangements for controlling cursor position based on codes indicative of cursor displacements from one discrete location to another, e.g. using cursor control keys associated to different directions or using the tab key
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N21/00—Selective content distribution, e.g. interactive television or video on demand [VOD]
- H04N21/40—Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
- H04N21/43—Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
- H04N21/438—Interfacing the downstream path of the transmission network originating from a server, e.g. retrieving encoded video stream packets from an IP network
- H04N21/4381—Recovering the multiplex stream from a specific network, e.g. recovering MPEG packets from ATM cells
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N21/00—Selective content distribution, e.g. interactive television or video on demand [VOD]
- H04N21/60—Network structure or processes for video distribution between server and client or between remote clients; Control signalling between clients, server and network components; Transmission of management data between server and client, e.g. sending from server to client commands for recording incoming content stream; Communication details between server and client
- H04N21/63—Control signaling related to video distribution between client, server and network components; Network processes for video distribution between server and clients or between remote clients, e.g. transmitting basic layer and enhancement layers over different transmission paths, setting up a peer-to-peer communication via Internet between remote STB's; Communication protocols; Addressing
- H04N21/643—Communication protocols
- H04N21/64322—IP
Definitions
- the present invention relates to a display generating device and has particular but not exclusive application to multimedia network terminals.
- GUIs graphical user interfaces
- Such devices include, for example, personal computers (PC), televisions and mobile telephones.
- the user may interact with the device via the GUI using a user interface, for instance a touch sensitive pad, a keyboard, a mouse or a joystick.
- a user interface for instance a touch sensitive pad, a keyboard, a mouse or a joystick.
- Many factors determine the most appropriate choice of user interface for a device, such as ease of use and speed of operation and the environment in which the device is used.
- the use of a mouse is suited to the selection of icons when using a desk-top personal computer. However, it is not so useful for a digital television set. For this, a remote control unit having several keys is more convenient.
- Digital television systems provide a variety of new services as compared with analogue television. They allow the user to transmit and receive signals via a set-top box and to interact with service providers.
- the user may now access the Internet in a similar way that is already available on a PC. For example, a user may navigate web pages by selecting hypertext links.
- the process of selecting a particular link involves moving a focus between links and activating selection. In a PC-based system, this process is realised by positioning a mouse pointer over the Unk and pressing the mouse button. To indicate that the focus has moved to the Unk, the shape of the mouse pointer changes or the Unk is highUghted, for instance, by changing colour.
- the set-top bo /television system is controlled using a remote control unit, which is similar to that used in analogue television systems.
- the remote control is usually provided with a set of arrow keys —up, down, right, left— allowing orthogonal movement about a menu.
- Such a remote control unit provides a satisfactory means for selecting elements of the menu if the menu is arranged as a rectangular array along co-ordinates defined by the keys on the remote control. Elements in a column are selected by the use of up and down arrow keys, while elements along a row may be selected by use of right and left arrow keys. Thus, movement from one element to another is straightforward and intuitive.
- Hypertext Unks may be represented by text or images which are not uniformly located on the page.
- GB-A- 2357945 describes a device which seeks to overcome this problem by generating an ordered array of navigable nodes such that each link is represented by at least one node. The user can intuitively and reversibly navigate around the array to reach and select Unks.
- Unks may not be completely irregular. Links may be ordered in one direction but not another. For example, it is common to have a block of text in which is embedded several hypertext links. In this case horizontal movement between Unks using left and right arrow keys is straightforward since the text is arranged in rows. However, the Unks may not be vertically aUgned. If a Unk in one row is in focus and there are two Unks in the row below, vertical movement using the down arrow key is more compUcated since there are two Unks to chose from. Nevertheless, it is likely that the user wiU want to select the Unk which Ues obviously or intuitively below the Unk in focus, even though it may not be the closer of the two Unks.
- the present invention seeks to solve this problem.
- a generating device configured to generate signals for a graphical display in which a focus can be navigated between spaced, functional display regions such that they are individually selected when the focus is moved thereto, comprising means for determining first and second weighted distances between a first functional display region in focus and second and third functional display regions respectively and means for selecting one of said second or third functional display regions in dependence upon said first and second weighted distances.
- the means for determining said first and second weighted distances may be configured to receive respective coordinate information for said first, second and third functional display regions.
- the means for determining said first and second weighted distances may be arranged to execute a predetermined mathematical method on said coordinates.
- the predetermined mathematical method may include a mathematical function, such as eUiptic or lemniscate function.
- the device may be included in a multimedia network terminal, such as an internet enabled set-top box.
- a method in a generating device configured to generate signals for a graphical display in which a focus can be navigated between spaced, functional display regions such that they are individually selected when the focus is moved thereto, of operating said device, the method comprising determining first and second weighted distances between a first functional display region in focus and second and third functional display regions respectively and selecting one of said second or third functional display regions in dependence upon said first and second weighted distances.
- a method of navigating a focus between spaced, functional display regions on a display device comprising determining first and second weighted distances between a first functional display region in focus and second and third functional display regions respectively and selecting one of said second or third functional display regions in dependence upon said first and second weighted distances.
- a computer program comprising computer code to make a computer configured to generate signals for a graphical display in which a focus can be navigated between spaced, functional display regions such that they are individually selected when the focus is moved thereto execute procedure to determine first and second weighted distances between a first functional display region in focus and second and third functional display regions respectively and to select one of said second or third functional display regions in dependence upon said first and second weighted distances.
- Figure 1 is a schematic view of a set-top box and a television set
- Figure 2 shows a web page having several hypertext Unks
- Figure 3 shows the Unks of Figure 2 in isolation
- Figure 4 shows displacements from a Unk in focus to the other Unks lying below;
- Figure 5 is flow diagram of the process by which a Unk is selected to be in focus
- Figure 6 shows elUptical plots used to select a Unk
- Figure 7 shows lemniscate plots used to select a Unk
- Figure 8 shows elUptical plots with different constants
- Figure 9 shows lemniscate plots with different constants.
- an embodiment of display generating device is a digital set-top box 1 which is connected to a display device in the form of a conventional television set 2.
- the set-top box 1 is controlled using a remote control unit 3 having up, down, right and left keys 4a, 4b, 4c, 4d and a select button 4e.
- up, down, right and left directions correspond to movement as seen on the television set 4.
- the set-top box 1 comprises one or several input ports (not shown) including a port for a satelUte antenna dish, a port for a terrestrial antenna, a port for a cable Unk and a port for a broadband internet connection and an output port (not shown) for connection to the television set.
- the set-top box 1 further comprises a microprocessor, memory, front-end tuner for filtering the signal, a video chip for rendering an image on the television set 2 and a user interface (not shown).
- the set-top box 1 may be used to receive and decode digital television channels and transmit user information via a return channel. These channels are transmitted and received through a cable Unk, although Unks provided by satellite or terrestrial broadcast may also be used.
- the set-top box 1 provides Internet services to the user, thus enabhng the user to read e-mail and "surf the web". To access the web, the set-top box 1 loads and runs web browser software.
- the web browser software is used navigate a web page 5 which comprises text 6 including first, second, third, fourth, fifth and sixth hypertext Unks 7 token 7 2 , 7 3 , 7 4 , 7 5 , 7 6 .
- the text 6 relates to the results of a search for the term "http".
- the first hypertext Unk 7a is a Unk back to a previous page.
- the second Unk 7 2 is a box for entering a new search term.
- the third and fourth links 7 3 , 7 4 are Unks to related web pages.
- the fifth Unk 7 5 is a Unk to a page relating to a different topic.
- the sixth Unk 7 6 is a Unk to an e-mail appUcation.
- a focus 8 is set at the third Unk 7 3 and is highUghted in a different colour from the other Unks 7 2 , 7 4 , 7 5 , 7 6 .
- Rows may be defined for example by defining a horizontal band and determining whether Unks contained therein constitute a one-dimensional array. In this case, a user can navigate between these Unks using right and left arrow keys 4c, 4d. Thus, to move the focus 8 from the third Unk 7 3 to the second Unk 7 2 , the user presses the left arrow key 4d on the remote control unit 3. Similarly, to move the focus 8 from the third Unk 7 3 to the fourth Unk 7 4 , the user presses the right arrow key 4c.
- the third, fourth, fifth and sixth Unks 7 3 , 7 4 , 7 5 , 7 6 do not Ue neatly in a column. Furthermore, the user is Ukely to want to move the focus 8 from the third Unk 7 3 to the sixth Unk 7 6 in preference to either of the fourth or fifth Unks 7 4 , 7 5 even though those Unks are closer.
- the web browser software calculates weighted distances between the third focus 7 3 and each of the fourth, fifth and sixth Unks 7 4 , 7 5 , 7 6 respectively, weighted according their horizontal displacement from the third Unk 7 3 , and determines which of them is closest.
- the web browser software initiaUses a current Unk counter i, sets a selected link variable s to one and a focus-to-selected Unk distance variable r s 2 to a predetermined value, for example to the square of the diagonal distance p across the page 5 (step SI).
- the Unks 7 are numbered according to their position on the page 5, starting from the top left and finishing at the bottom right of the page 5.
- step S3 determines whether the current Unk 7 ; Ues below the third Unk 7 3 (step S4). In this - example, this is done by checking whether an upper edge 9 ; of the Unk 7 ; is below a lower edge 10 3 of the third Unk 7 3 which is in focus. It will be appreciated that other criteria may be used such as minimum vertical offsets between a y-midpoint 11; between upper and lower edges 9 i5 10; of the current Unk 7 ; and a y-midpoint 11 3 between upper and lower edges 9 3 , 10 3 of the third Unk 7 3 .
- step S3 the browser moves onto the next Unk 7; +1 (step S3).
- the fourth, fifth and sixth Unks 7 4 , 7 5 , 7 6 Ue below the third Unk 7 3 .
- the browser then measures horizontal and vertical displacements ⁇ x ; , ⁇ y ; from the third Unk 7 3 to the current Unk 7.-.
- step S7 If the current Unk 7- Ues to right of the third Unk 7 3 such that the leftmost edge 13 ; of the current Unk 7.- lies to the right of the x-midpoint 12 3 of the third Unk 7 3 (step S7), then the leftmost edge 13 ; is used to calculate the horizontal displacement ⁇ ; (step S8). Otherwise, the current Unk 7 ; Ues to left of the third Unk 7 3 and the rightmost edge 14 ; is used to calculate the horizontal displacement ⁇ x ; (step S9).
- the vertical displacement ⁇ y is measured from the y-midpoint 11 3 of the third Unk 7 3 to the y-midpoint 11 ; of the current Unk 7 ; (step S 0).
- the browser calculates a weighted distance r ; 2 between the current Unk 7- and the third Unk 7 3 (step Sll). This is done using an elUptic function:
- k is a constant.
- a value of k may be fixed by the software or defined by the user. Alternatively, it may be dynamicaUy determined according to, for example the duration that the down arrow key 4b is pressed. The significance of the value of k wih be described later.
- the browser checks whether the weighted distance r ; 2 between the current Unk 7 ; is less than the focus-to-selected Unk distance variable r s 2 (step SI 2). If it is, then the weighted distance r ; 2 is stored in the focus-to-selected Unk distance variable r s 2 and the current Unk 7; is flagged as the selected Unk 7 S (step SI 3), otherwise no values are stored and the browser simply moves onto the next Unk 7 i+1 (step S3). In this example, squared values of distance are computed and compared. It will be appreciated that proper values of distance may be computed although this will increase computing time.
- the browser iterates through all the links (step SI 4). Once it has done this, the focus 8 moves to the selected Unk (step SI 5).
- first, second and third elhpses 16 l5 16 2 , 16 3 are plotted for the sixth, fifth and fourth links 7 6 , 7 5 , 7 4 respectively using the elUptical function and respective calculated values of r, 2 .
- Each elhpse 16 is a contour plot of constant r. 2 .
- the selected point 15 6 of the sixth Unk 7 6 is the furthest away from the midpoint 15 3 of the third Unk 7 3 in normal EucUdean space, i.e. it has the largest value of ⁇ x 2 + ⁇ y, 2 , it has the least weighted distance, i.e.
- fourth, fifth and sixth elhpses 16 3 , 16 5 . 16 6 are normaUsed plots of the elUptical function with values of k equal to 1, 2 and 4 respectively.
- k the number of values of k equal to 1, 2 and 4 respectively.
- having a high value of k tends to favour selection of Unks 7 which are substantiaUy vertically colUnear.
- a constant with k ⁇ l to multiply the horizontal displacement ⁇ y 2 may be used.
- r. 2 (c ⁇ x. 2 + ⁇ y 2 ) 2 /( c ⁇ x 2 - ⁇ y. 2 )
- first and second lemniscate plots 17 l5 17 2 are shown.
- the selected point 15 5 of the fifth Unk 7 5 is determined to be closest.
- no value of r 2 can be computed and no plot can be traced which passes though the selected point 15 4 of the fourth Unk 7 4 .
- third, fourth and fifth normahsed lemniscate plots 17 3 , 17 4 , 17 5 are shown having values of c equal to 1, 2 and 4 respectively.
- non-orthogonal directions and non-Cartesian coordinates may be used.
- the method may be used in conjunction with other method of navigating a web page using keys or buttons.
- Other platforms such as personal computers, game machine, personal digital assistant, wireless datapads or mobile telephone handset may be used.
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- General Engineering & Computer Science (AREA)
- Theoretical Computer Science (AREA)
- Human Computer Interaction (AREA)
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- General Physics & Mathematics (AREA)
- Multimedia (AREA)
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Abstract
A digital television system having a set-top box controlled by a remote control unit is used to access the Internet. Arrow keys on the remote control unit are used to navigate a focus around irregularly positioned hypertext links on a web page. If a down arrow key is pressed, web browser software determines weighted distances between a link in focus and links below it using an elliptical function. The distances are weighted so as to favour a link closest to being vertically collinear even though other links may be closer.
Description
Display generating device
Field of the Invention
The present invention relates to a display generating device and has particular but not exclusive application to multimedia network terminals.
Background Art
A number of electronic devices have graphical user interfaces (GUIs). Such devices include, for example, personal computers (PC), televisions and mobile telephones. The user may interact with the device via the GUI using a user interface, for instance a touch sensitive pad, a keyboard, a mouse or a joystick. Many factors determine the most appropriate choice of user interface for a device, such as ease of use and speed of operation and the environment in which the device is used. The use of a mouse is suited to the selection of icons when using a desk-top personal computer. However, it is not so useful for a digital television set. For this, a remote control unit having several keys is more convenient.
However, there are problems with using key- or button-based control units, as will now be explained with reference to digital television.
Digital television systems provide a variety of new services as compared with analogue television. They allow the user to transmit and receive signals via a set-top box and to interact with service providers. The user may now access the Internet in a similar way that is already available on a PC. For example, a user may navigate web pages by selecting hypertext links. The process of selecting a particular link involves moving a focus between links and activating selection. In a PC-based system, this process is realised by positioning a mouse pointer over the Unk and pressing the mouse button. To indicate that the focus has moved to the Unk, the shape of the mouse pointer changes or the Unk is highUghted, for instance, by changing colour.
The set-top bo /television system is controlled using a remote control unit, which is similar to that used in analogue television systems. The remote control is usually
provided with a set of arrow keys —up, down, right, left— allowing orthogonal movement about a menu.
Such a remote control unit provides a satisfactory means for selecting elements of the menu if the menu is arranged as a rectangular array along co-ordinates defined by the keys on the remote control. Elements in a column are selected by the use of up and down arrow keys, while elements along a row may be selected by use of right and left arrow keys. Thus, movement from one element to another is straightforward and intuitive.
However, such a remote control unit is not suited to the selection of irregularly positioned elements, such as hypertext Unks in a web page. Hypertext Unks may be represented by text or images which are not uniformly located on the page. GB-A- 2357945 describes a device which seeks to overcome this problem by generating an ordered array of navigable nodes such that each link is represented by at least one node. The user can intuitively and reversibly navigate around the array to reach and select Unks.
However, the arrangement of Unks may not be completely irregular. Links may be ordered in one direction but not another. For example, it is common to have a block of text in which is embedded several hypertext links. In this case horizontal movement between Unks using left and right arrow keys is straightforward since the text is arranged in rows. However, the Unks may not be vertically aUgned. If a Unk in one row is in focus and there are two Unks in the row below, vertical movement using the down arrow key is more compUcated since there are two Unks to chose from. Nevertheless, it is likely that the user wiU want to select the Unk which Ues obviously or intuitively below the Unk in focus, even though it may not be the closer of the two Unks.
The present invention seeks to solve this problem.
Summary of the Invention
According to a first aspect of the present invention there is provided a generating device configured to generate signals for a graphical display in which a focus can be
navigated between spaced, functional display regions such that they are individually selected when the focus is moved thereto, comprising means for determining first and second weighted distances between a first functional display region in focus and second and third functional display regions respectively and means for selecting one of said second or third functional display regions in dependence upon said first and second weighted distances.
The means for determining said first and second weighted distances may be configured to receive respective coordinate information for said first, second and third functional display regions. The means for determining said first and second weighted distances may be arranged to execute a predetermined mathematical method on said coordinates. The predetermined mathematical method may include a mathematical function, such as eUiptic or lemniscate function.
The device may be included in a multimedia network terminal, such as an internet enabled set-top box.
According to a second aspect of the present invention there is provided a method, in a generating device configured to generate signals for a graphical display in which a focus can be navigated between spaced, functional display regions such that they are individually selected when the focus is moved thereto, of operating said device, the method comprising determining first and second weighted distances between a first functional display region in focus and second and third functional display regions respectively and selecting one of said second or third functional display regions in dependence upon said first and second weighted distances.
According to a third aspect of the present invention there is provided a method of navigating a focus between spaced, functional display regions on a display device, the method comprising determining first and second weighted distances between a first functional display region in focus and second and third functional display regions respectively and selecting one of said second or third functional display regions in dependence upon said first and second weighted distances.
According to a fourth aspect of the present invention there is provided a computer program comprising computer code to make a computer configured to generate signals for a graphical display in which a focus can be navigated between spaced, functional display regions such that they are individually selected when the focus is moved thereto execute procedure to determine first and second weighted distances between a first functional display region in focus and second and third functional display regions respectively and to select one of said second or third functional display regions in dependence upon said first and second weighted distances.
Brief Description of the Drawings Embodiments of the present invention will now be described, by way of example, with reference to the accompanying drawings in which:-
Figure 1 is a schematic view of a set-top box and a television set;
Figure 2 shows a web page having several hypertext Unks;
Figure 3 shows the Unks of Figure 2 in isolation; Figure 4 shows displacements from a Unk in focus to the other Unks lying below;
Figure 5 is flow diagram of the process by which a Unk is selected to be in focus;
Figure 6 shows elUptical plots used to select a Unk;
Figure 7 shows lemniscate plots used to select a Unk;
Figure 8 shows elUptical plots with different constants; and Figure 9 shows lemniscate plots with different constants.
Best Mode for Carrying out the Invention
Referring to Figure 1, an embodiment of display generating device according to the present invention is a digital set-top box 1 which is connected to a display device in the form of a conventional television set 2. The set-top box 1 is controlled using a remote control unit 3 having up, down, right and left keys 4a, 4b, 4c, 4d and a select button 4e. In this case, up, down, right and left directions correspond to movement as seen on the television set 4.
The set-top box 1 comprises one or several input ports (not shown) including a port for a satelUte antenna dish, a port for a terrestrial antenna, a port for a cable Unk and a port for a broadband internet connection and an output port (not shown) for
connection to the television set. The set-top box 1 further comprises a microprocessor, memory, front-end tuner for filtering the signal, a video chip for rendering an image on the television set 2 and a user interface (not shown).
The set-top box 1 may be used to receive and decode digital television channels and transmit user information via a return channel. These channels are transmitted and received through a cable Unk, although Unks provided by satellite or terrestrial broadcast may also be used.
The set-top box 1 provides Internet services to the user, thus enabhng the user to read e-mail and "surf the web". To access the web, the set-top box 1 loads and runs web browser software.
Referring to Figure 2, the web browser software is used navigate a web page 5 which comprises text 6 including first, second, third, fourth, fifth and sixth hypertext Unks 7„ 72, 73, 74, 75, 76.
In this example, the text 6 relates to the results of a search for the term "http". The first hypertext Unk 7a is a Unk back to a previous page. The second Unk 72 is a box for entering a new search term. The third and fourth links 73, 74 are Unks to related web pages. The fifth Unk 75 is a Unk to a page relating to a different topic. The sixth Unk 76 is a Unk to an e-mail appUcation. A focus 8 is set at the third Unk 73 and is highUghted in a different colour from the other Unks 72, 74, 75, 76.
The second, third and fourth Unks 72, 73, 74 Ue in a row, as indicated by dotted Unes. Rows may be defined for example by defining a horizontal band and determining whether Unks contained therein constitute a one-dimensional array. In this case, a user can navigate between these Unks using right and left arrow keys 4c, 4d. Thus, to move the focus 8 from the third Unk 73 to the second Unk 72, the user presses the left arrow key 4d on the remote control unit 3. Similarly, to move the focus 8 from the third Unk 73 to the fourth Unk 74, the user presses the right arrow key 4c.
However, the third, fourth, fifth and sixth Unks 73, 74, 75, 76 do not Ue neatly in a column. Furthermore, the user is Ukely to want to move the focus 8 from the third
Unk 73 to the sixth Unk 76 in preference to either of the fourth or fifth Unks 74, 75 even though those Unks are closer.
When the user presses the down arrow key 4b, the web browser software calculates weighted distances between the third focus 73 and each of the fourth, fifth and sixth Unks 74, 75, 76 respectively, weighted according their horizontal displacement from the third Unk 73, and determines which of them is closest.
A process by which this is performed wiU now be described.
Referring to Figures 4 and 5, the user presses the down arrow key 4b. The web browser software initiaUses a current Unk counter i, sets a selected link variable s to one and a focus-to-selected Unk distance variable rs 2 to a predetermined value, for example to the square of the diagonal distance p across the page 5 (step SI). In this example, the Unks 7 are numbered according to their position on the page 5, starting from the top left and finishing at the bottom right of the page 5. The browser first checks whether the current Unk 7; is the Unk in focus 8, namely whether i=f=3 (step S2). If it is, then the browser moves onto the next Unk 7i+] (step S3) otherwise it determines whether the current Unk 7; Ues below the third Unk 73 (step S4). In this - example, this is done by checking whether an upper edge 9; of the Unk 7; is below a lower edge 103 of the third Unk 73 which is in focus. It will be appreciated that other criteria may be used such as minimum vertical offsets between a y-midpoint 11; between upper and lower edges 9i5 10; of the current Unk 7; and a y-midpoint 113 between upper and lower edges 93, 103 of the third Unk 73. If the current Unk 7; does not Ue below the Unk in focus 73, then the browser moves onto the next Unk 7;+1 (step S3). In this example, the fourth, fifth and sixth Unks 74, 75, 76 Ue below the third Unk 73.
The browser then measures horizontal and vertical displacements Δx;, Δy; from the third Unk 73 to the current Unk 7.-.
The horizontal displacement Δx; is measured from a x-midpoint 123 between leftmost and rightmost edges 133, 143 of the third Unk 73 to a selected point 15; of
the current Unk 7.-. If the x-midpoint 123 of the third Unk 73 lies between the leftmost and rightmost edges 13;, 14; of the current link 7;, (step S5), then the selected point 15; is chosen so as to be verticaUy colUnear with the x-midpoint 123 and the horizontal displacement Δx; = 0 (step S6). If the current Unk 7- Ues to right of the third Unk 73 such that the leftmost edge 13; of the current Unk 7.- lies to the right of the x-midpoint 123 of the third Unk 73 (step S7), then the leftmost edge 13; is used to calculate the horizontal displacement Δ ; (step S8). Otherwise, the current Unk 7; Ues to left of the third Unk 73 and the rightmost edge 14; is used to calculate the horizontal displacement Δx; (step S9).
The vertical displacement Δy; is measured from the y-midpoint 113 of the third Unk 73 to the y-midpoint 11; of the current Unk 7; (step S 0).
The browser calculates a weighted distance r; 2 between the current Unk 7- and the third Unk 73 (step Sll). This is done using an elUptic function:
r; 2 = kΔx; 2 + Δy,2
where k is a constant. A value of k may be fixed by the software or defined by the user. Alternatively, it may be dynamicaUy determined according to, for example the duration that the down arrow key 4b is pressed. The significance of the value of k wih be described later.
The browser checks whether the weighted distance r; 2 between the current Unk 7; is less than the focus-to-selected Unk distance variable rs 2 (step SI 2). If it is, then the weighted distance r; 2 is stored in the focus-to-selected Unk distance variable rs 2 and the current Unk 7; is flagged as the selected Unk 7S (step SI 3), otherwise no values are stored and the browser simply moves onto the next Unk 7i+1 (step S3). In this example, squared values of distance are computed and compared. It will be appreciated that proper values of distance may be computed although this will increase computing time.
The browser iterates through all the links (step SI 4). Once it has done this, the focus 8 moves to the selected Unk (step SI 5).
Referring to Figure 6, in order to help understand the purpose of using the elUptical function, first, second and third elhpses 16l5 162, 163 are plotted for the sixth, fifth and fourth links 76, 75, 74 respectively using the elUptical function and respective calculated values of r,2. Each elhpse 16 is a contour plot of constant r.2. Thus, although the selected point 156 of the sixth Unk 76 is the furthest away from the midpoint 153 of the third Unk 73 in normal EucUdean space, i.e. it has the largest value of Δx2 + Δy,2, it has the least weighted distance, i.e. the lowest value of kΔx 2 + Δy,2. Thus, the selected point 15fi of the sixth Unk 76 Ues on the on the first elhpse 16t with the lowest value of r2. The elUptical function effectively transforms the x-y coordinates by scaUng the x-coordinate by a factor 1 / vk.
Referring to Figure 7, fourth, fifth and sixth elhpses 163, 165. 166 are normaUsed plots of the elUptical function with values of k equal to 1, 2 and 4 respectively. Thus, having a high value of k, tends to favour selection of Unks 7 which are substantiaUy vertically colUnear. It will be appreciated that rather than using a constant with k>l to multiply the horizontal displacement Δx; 2, a constant with k<l to multiply the horizontal displacement Δy2 may be used.
It wiU also be appreciated that other functions may be used. One alternative is to use a lemniscate function:
r.2 = (cΔx.2 + Δy2)2/( cΔx2 - Δy.2)
where c is a constant.
Referring to Figure 8, first and second lemniscate plots 17l5 172 are shown. In this example, the selected point 155 of the fifth Unk 75 is determined to be closest. In this example, for a chosen value of c, no value of r2 can be computed and no plot can be traced which passes though the selected point 154 of the fourth Unk 74.
Referring to Figure 9, third, fourth and fifth normahsed lemniscate plots 173, 174, 175 are shown having values of c equal to 1, 2 and 4 respectively.
It is preferable that an appropriate function with one or more suitable weighting constants be used so that the Unks which the user perceives should be selected are indeed chosen.
Although the embodiments hereinbefore described refer to selection of a Unk 7 below a Unk in focus by pressing a down arrow key 4b, it will be appreciated this apparatus and process may be used to select Unks 7 above the Unk in focus 8 by pressing the up arrow key 4a. The apparatus and process may also be used to select Unks to the left and the right of the link in focus, by weighting vertical displacements.
It will be appreciated that many modifications may be made to the embodiments hereinbefore described. For example, non-orthogonal directions and non-Cartesian coordinates may be used. The method may be used in conjunction with other method of navigating a web page using keys or buttons. Other platforms such as personal computers, game machine, personal digital assistant, wireless datapads or mobile telephone handset may be used.
Claims
1. A generating device configured to generate signals for a graphical display in which a focus can be navigated between spaced, functional display regions such that they are individually selected when the focus is moved thereto, comprising: means for determining first and second weighted distances between a first functional display region in focus and second and third functional display regions respectively and means for selecting one of said second or third functional display regions in dependence upon said first and second weighted distances.
2. A device according to claim 1, wherein the means for determining said first and second weighted distances is configured to receive respective coordinate information for said first, second and third functional display regions.
3. A device according to claim 2, wherein the means for determining said first and second weighted distances is arranged to execute a predetermined mathematical method on said coordinates.
4. A device according to claim 3, wherein said predetermined mathematical method includes a mathematical function.
5. A device according to claim 4, wherein the mathematical function is an elUptic function.
6. A device according to claim 4, wherein the mathematical function is a lemniscate function.
7. A multimedia network terminal including a device according to any preceding claim.
8. A multimedia network terminal according to claim 7, which is an internet enabled set-top box.
9. A method, in a generating device configured to generate signals for a graphical display in which a focus can be navigated between spaced, functional display regions such that they are individually selected when the focus is moved thereto, of operating said device, the method comprising determining first and second weighted distances between a first functional display region in focus and second and third functional display regions respectively and selecting one of said second or third functional display regions in dependence upon said first and second weighted distances.
10. A method of navigating a focus between spaced, functional display regions on a display device, the method comprising: determining first and second weighted distances between a first functional display region in focus and second and third functional display regions respectively and selecting one of said second or third functional display regions in dependence upon said first and second weighted distances.
11. A computer program comprising computer code to make a computer configured to generate signals for a graphical display in which a focus can be navigated between spaced, functional display regions such that they are individuaUy selected when the focus is moved thereto execute procedure: to determine first and second weighted distances between a first functional display region in focus and second and third functional display regions respectively and to select one of said second or third functional display regions in dependence upon said first and second weighted distances.
12. A generating device configured to generate signals for a graphical display in hich a focus can be navigated between spaced, functional display regions such that they are individually selected when the focus is moved thereto, comprising: a first processor configured to determine first and second weighted distances between a first functional display region in focus and second and third functional display regions respectively and a second processor configured to select one of said second or third functional display regions in dependence upon said first and second weighted distances.
13. A device according to claim 12, wherein the first and second processors are unitary.
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| GB0031707A GB2370740A (en) | 2000-12-27 | 2000-12-27 | Menu item selection |
| GB0031707 | 2000-12-27 | ||
| PCT/EP2001/014860 WO2002052395A2 (en) | 2000-12-27 | 2001-12-14 | Display generating device |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP1348155A2 true EP1348155A2 (en) | 2003-10-01 |
Family
ID=9905937
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP01272018A Ceased EP1348155A2 (en) | 2000-12-27 | 2001-12-14 | Display generating device |
Country Status (4)
| Country | Link |
|---|---|
| EP (1) | EP1348155A2 (en) |
| AU (1) | AU2002217121A1 (en) |
| GB (1) | GB2370740A (en) |
| WO (1) | WO2002052395A2 (en) |
Families Citing this family (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US7571393B2 (en) | 2003-04-15 | 2009-08-04 | Microsoft Corporation | Method for navigation between elements on a page of content in a handheld device |
| JP2005122422A (en) * | 2003-10-16 | 2005-05-12 | Sony Corp | Electronic apparatus apparatus, program, and focus control method for electronic apparatus apparatus |
| GB2429802A (en) * | 2005-08-31 | 2007-03-07 | Ant Software Ltd | Display systems |
| US20100127973A1 (en) * | 2006-11-29 | 2010-05-27 | Neil Turton | Display Systems |
| EP2385452A1 (en) * | 2010-05-06 | 2011-11-09 | Amadeus S.A.S. | Computer navigation method |
| US9383922B2 (en) * | 2012-09-11 | 2016-07-05 | Sap Se | Keyboard-based navigation of a user interface |
Family Cites Families (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4803474A (en) * | 1986-03-18 | 1989-02-07 | Fischer & Porter Company | Cursor control matrix for computer graphics |
| JPS63226718A (en) * | 1987-03-16 | 1988-09-21 | Fujitsu Ltd | Cursor control system |
| US5510811A (en) * | 1992-11-25 | 1996-04-23 | Microsoft Corporation | Apparatus and method for controlling cursor movement |
| US5808604A (en) * | 1994-03-10 | 1998-09-15 | Microsoft Corporation | Apparatus and method for automatically positioning a cursor on a control |
| GB2348520B (en) * | 1999-03-31 | 2003-11-12 | Ibm | Assisting user selection of graphical user interface elements |
| ATE443946T1 (en) * | 1999-05-27 | 2009-10-15 | Tegic Communications Inc | KEYBOARD SYSTEM WITH AUTOMATIC CORRECTION |
-
2000
- 2000-12-27 GB GB0031707A patent/GB2370740A/en not_active Withdrawn
-
2001
- 2001-12-14 WO PCT/EP2001/014860 patent/WO2002052395A2/en not_active Ceased
- 2001-12-14 EP EP01272018A patent/EP1348155A2/en not_active Ceased
- 2001-12-14 AU AU2002217121A patent/AU2002217121A1/en not_active Abandoned
Non-Patent Citations (1)
| Title |
|---|
| See references of WO02052395A3 * |
Also Published As
| Publication number | Publication date |
|---|---|
| AU2002217121A1 (en) | 2002-07-08 |
| GB0031707D0 (en) | 2001-02-07 |
| WO2002052395A2 (en) | 2002-07-04 |
| GB2370740A (en) | 2002-07-03 |
| WO2002052395A3 (en) | 2003-03-13 |
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