The present disclosure relates to apparatus for presentation, and more particularly, to presentation apparatus for presenting valuable or precious articles to customers or potential customers with an aim of facilitating purchasing transaction.
Many consumers enjoy shopping at ‘real’ or ‘physical’ shops so that they can feel, touch and closely examine real products as well as comparing products. In addition, many physical shops have shop attendants available to provide personal services such as real time product information, product comparison, advice and comparable products to assist a customer to make purchasing decisions.
During a shopping session, shop assistants often provide customers with many articles to compare with and to choose from. In many shopping occasions, several expensive and/or delicate items such as watches, jewelry, smart phones, or ornamental items may be placed on a presentation apparatus for customer viewing, examination and selection. Such presentation apparatus in retail business is commonly referred to as customer serving trays. A customer serving tray usually includes a main receptacle which allows open access by a viewer so that a viewer can access and remove articles on the tray for examination, close viewing or appreciation before making a purchase decision. Where the items are small and portable, tracking of article movements between a customer and a shop assistant can be difficult, especially when several items are placed on a customer serving tray to promote multiple purchase.
The value or preciousness, and therefore the price, of precious and/or valuable articles are often determined by properties and characteristics associated with the articles. Such properties and characteristics may be multifaceted, time variant and time invariant, and include, for example, design, shape, grading, uniqueness or rarity, material purity, weight or size, and/or price. It would be desirous if information on those properties and characteristics can be readily available at the time when presentation of an article is required.
A customer serving apparatus equipped with RFID detectors to monitor and track movement of articles during a customer serving session is disclosed. The customer serving apparatus, nicknamed “iTray” herein, is primarily a desktop apparatus, for example in the form of a portable tray, for use in retail services, especially in the retail of luxurious items such as jewelry, precious ornaments, pens and watches.
The serving apparatus comprises a main receptacle for holding articles for customer selection, a RFID first detector to detect product identification information associated with an article when said article is first introduced into said main receptacle during a serving session, a data storage device and a processor; wherein the processor is to collect and store said product identification information for use at end of said serving session.
In some embodiments, the serving apparatus comprises a main housing, a main receptacle, a checkout port, a display region including a display device, an RFID first detector including a first antenna, an RFID second detector including a second antenna, a data storage device, and a processor to function as a controller. The RFID first detector is configured to detect and collect RFID signals coming in from the receptacle and to register a detected article as a checked-in article. The RFID second detector is RF isolated from the RFID first detector and configured to check out a checked-in article. The processor is configured to classify a checked-in article as a floating article if the checked-in article is not detected by the RFID first detector or the RFID second detector for a time exceeding a threshold time
The processor may be configured to collect and store product identification information associated with articles introduced into said main receptacle until receipt of a signal signifying end of said serving session.
The processor may be configured to collect and store customer specific information and to associate said customer specific information with said stored product identification information associated with said articles at the end of said serving session, said customer specific information being specific to a customer of said serving session.
The customer specific information may include one or more of the following types of information of a customer: gender, age, demographic data, articles purchased, purposes of or events leading to purchase in said serving session.
The processor may be configured to cause a selected portion of said product identification information associated with an article to be displayed on said apparatus, said product identification information including one or more of the following product identification, product appearance, weight, unit price, available discount.
The RFID first detector comprises a wireless sensor and the product identification information associated is carried on an RFID (radio frequency identification) tag attached to the article.
The RFID tag may be in the form of a folded sheet.
The RFID tag may carry human readable product identification information.
The processor is configured to continuously track presence of an article on the main receptacle after first introduction of said article onto said main receptacle through continuous detection of RFID signals emitted by a tag associated with said article.
The apparatus may comprise a telecommunications frontend to facilitate retrieval of product identification information from a remote source and to upload information collected during a serving session to a remote destination.
More specifically, a serving apparatus comprising a main housing, a main receptacle, a checkout port, a display device adjacent to the main receptacle, a data storage device, an RFID first detector comprising a first antenna, an RFID second detector comprising a second antenna, and a processor is disclosed.
The main receptacle may comprise a main surface for holding a plurality of RFID tagged articles for customer viewing and selection.
The first antenna may be configured to detect RFID signals of RFID tagged articles on the main receptacle, and may be radio-frequency shielded to prevent or mitigate against detection of RFID signals of an RFID tagged article placed at the checkout port.
The second antenna may be configured to detect RFID signals of an RFID tagged article which is outside the main housing, which is present at the checkout port, and which is not on the main receptacle.
The second antenna may be radio-frequency shielded to prevent or mitigate against detection of RFID signals of an RFID tagged article placed on the main receptacle, and may be radio-frequency isolated from the first antenna.
The processor may be configured to operate the RFID first detector to continuously detect and collect RFID signals of an RFID tagged article or a plurality of RFID tagged articles on the main receptacle, to check in or register an RFID tagged article as a checked-in article when the RFID tagged article is detected by the first antenna of the RFID first detector for a first time during a serving session, and to collect and store product identification information of the checked-in article in the data storage device.
The processor may be configured to operate the RFID second detector to detect RFID signals of an RFID tagged article presented at the checkout port, and to checkout or deregister a checked-in article as a checked-out article when the RFID signals of the checked-in article are detected by the second antenna of the RFID second detector.
The processor may be configured to determine and classify a checked-in article as a floating article if the checked in article is not detected by the RFID first detector or the RFID second detector for a floating time exceeding a threshold time, and to generate and store absence information of the article, the absence information including product identification information of the floating article, the floating time, the total floating time and/or number of absence of the checked in article during the serving session.
The main surface comprises an upward-facing planar surface. The first antenna may be disposed intermediate the upward-facing planar surface and a metal casing for maximal detection of RFID signals coming from the main surface and for minimal detection of RFID signals coming from other orientations.
The first antenna is typically a distributed antenna having planar detection elements which define a detection plane, the detection plane being parallel to a top surface of the metal casing; and wherein the first antenna is mounted immediately underneath the main receptacle and sits on the top surface of the metal casing, the top surface of the metal casing being parallel to the main surface of the main receptacle.
The top surface of the metal casing may have a planar extent which is comparable to the planar extent of the main surface of the receptacle.
The second antenna may be configured to detect RFID signals of a localized RFID signal source which is outside the apparatus.
The first antenna may be configured to detect RFID signals coming to the first antenna in a first axial direction which is a downward direction. The second antenna may be configured to detect RFID signals coming to the second antenna in a second axial direction which is an inward direction orthogonal to the first axial.
The first antenna may have a horizontal detection surface and the second antenna may have a vertical detection surface.
The first antenna may be a distributed antenna having a detection area covering the main receptacle, and wherein the second antenna has a detection area which is smaller than the detection area of the first antenna and which covers the checkout port.
The first antenna may be a distributed antenna having a detection range covering the main receptacle, and wherein the checkout port is outside the detection range of the first antenna.
The second antenna may have an outward-facing front side and an inward-facing backside, and wherein the backside is radio-frequency shielded to prevent detection of residual RFID signals coming in from the first antenna.
The front side of the second antenna is preferably adjacent the checkout port.
The main housing may comprise an upper housing portion and a lower housing portion which cooperate to form the main housing, and wherein the main receptacle is formed on a top surface of the main housing and the main surface of the main receptacle is upward facing, and wherein the checkout port is formed on a lateral side of the main housing and a portion on the lateral side of the main housing which is opposite-facing the second antenna is formed as a grille-shaped checkout port.
The main receptacle may be formed as an indented portion on a top surface of the main housing, and wherein the main surface is depressed below the top surface and surrounded by an upwardly extending peripheral wall.
The first antenna may sit on a metal casing having a skirt, and wherein the peripheral wall is a skirt of the metal casing.
The apparatus may comprise a first RF signal path which comprises the RFID first detector and a second RF signal path which comprises the RFID second detector, and wherein the second RF signal path is radio-frequency isolated from the first RF signal path.
The processor may be configured to display a selected portion of the absence information and a selected portion of the product identification information of the floating articles on the display device during the serving session, the product identification information including one or more of the following: shape, appearance, style, weight, price, material, grade, purity, number in stock, and available discount.
The processor may be configured to use the absence information to form a viewing history of viewed checked in articles after the serving session; and wherein the viewing history includes the product identification information of the checked in articles, the product identification information of the checked in articles which were removed for viewing, the number of viewings per checked in article, the total viewing duration of the checked in articles viewed, and/or the checked in articles purchased.
The processor may be configured to collect and store customer specific information and to associate said customer specific information with the viewing history; and wherein the customer specific information includes one or more of the following types of information of a customer: gender, age, demographic data, articles purchased, purposes of or events leading to purchase in said serving session.
The present disclosure will be described by way of example with reference to the accompanying Figures in which:—
A presentation apparatus 100 depicted in
The main receptacle 110 and the display region 120 are formed on the upper housing 112 with the main receptacle 110 on one lateral side of the upper housing 112 and the display region 120 on the other lateral side of the upper housing 112. The main receptacle 110 is formed as an indented portion on the top surface of the upper housing 112 and is in the form of a tray having a main surface 116 surrounded by a peripheral wall 118. The main surface 116 of the tray defining the main receptacle 110 is at a depressed level below the top surface of the upper housing 112 and extends between an operator's end 119a and a viewer's end 119b of the apparatus. The peripheral wall 118 extends upwardly (Z-direction of
When the apparatus 100 is placed on a leveled support surface during use, the main surface of the tray is parallel or substantially parallel to the support surface so that precious and/or valuable articles placed on the main receptacle will stay at the placing location unless intentionally moved by an operator or a customer. When in use, the apparatus is to be placed between an operator and a viewer so that the operator and the viewer are at opposite ends of the main receptacle with equal or substantially equal visibility and accessibility to articles on the tray.
The upper housing 112 includes an inclined portion which is on a lateral side of the apparatus and adjacent the main receptacle 110 to define the display region 120. The display region 120 is inclined towards the operator's end and is disposed such that the display region is to face the operator and to face away from a viewer during a viewing session when the operator is proximal the operator's end and the viewer proximal the view's end. As the display region is inclined to face the operator during use, the information shown on the display region will be readily readable by the operator but not so readily readable by the viewing customer unless with assistance of the operator or through deliberate movement of the viewing customer which will be noticeable by the operator or assistants in the vicinity.
The inclined display region is formed on the upper housing and extends between an elevated ridge and the operator's end. The elevated ridge is formed near the viewer's end and extends transversally from a lateral boundary of the main receptacle to a lateral edge of the upper housing. The display portion inclines gradually from the elevated ridge and stops at the operator's end. The inclination of the display region is designed to facilitate comfortable viewing of information by the operator while sufficient to hide information being displayed on the display portion from the viewer when sitting at the viewer's end. The upper housing includes another inclined portion which extends between the elevated ridge and the viewer's end. The two inclined portions are oppositely facing and cooperate to define a housing portion extending between the opposite ends of the upper housing and resembling a ridged roof as depicted in
The display region comprises a first display 122 comprising a first LCD display and a second display 124 comprising a second LCD display. The first LCD display is mounted on a first window formed on the display region and the second LCD display is mounted on a second window between the first window and the operator's end.
To provide a sufficient useable area to hold precious articles for display and viewing, the main surface of the tray is to make up a substantial portion of the surface area of the upper housing while the display region will take up most of the remaining surface area of the upper housing so that sufficient information can be displayed during operations. In general, the main surface of the tray would make up around 65%-80% of the total projected area of the upper housing in the vertical direction while the display region will take up about 15-30% of that area. Of course, the proportion of the area of the main surface of the tray to the projected area of the apparatus or the proportion of the area of the display region to the projected area of the apparatus is variable and very much dependent on actual requirements or operation environment. In general, an inclination of the display region in the region of between 1.5° to 10° would be useful, while a lower inclination angle of say between 1.5° to 3°, or 2° to 5° would be less noticeable to a viewing customer.
In a portable version of the example apparatus 100 as depicted in
The example apparatus 100 includes example detection and display circuitry 140 depicted in
The detection and display circuitry 140 of this example apparatus is built around RFID (radio frequency identification) applications. In particular, the example detection and display circuitry 140 is built around the Class 1 Generation 2 RFID standard to operate in the UHF frequency range of 860 MHz to 960 MHZ. An RFID system built around this standard, also known as “EPC Gen 2” standard is attractive since the system is compatible with passive RFID tags of low per unit costs. Details of this standard, known as “UHF Air Interface Protocol Standard (Gen2)”, is available at http://www.gs1.org/gsmp/kc/epcglobal/uhfc1g2/uhfc1g2_1_2_0-standard-20080511.pdf. RFID readers compatible with EPC Gen2 UHF RFID Reader standards are used for detection.
The detection and display circuitry 140 of
As depicted in
Referring to
A typical switching frequency may be in the region of 1 Hz to 10 Hz so that RFID signals present at the antennae can be updated at intervals of between 0.1 second and a second. Where a quicker response time is required, the switching frequency may be set to be in the region of 10 Hz to 10 kHz so that the response time can be less than 100 millisecond (ms) and delay associated with the switched reading would not be human perceivable. In order to avoid confusing display of status information, the CPU may be set to only output such status information when the status has been stabilized, for example, no change in several seconds.
The first antenna 144a is configured as an article detection antenna 144b to detect articles on the main receptacle. In order that articles on the main receptacle 110 and carrying RFID tags can be effectively detected, the article detection antenna 144b is required to have an effective detection range covering at least the entire main surface 116 of the tray on the main receptacle 110. An example antenna suitable for covering the entire main surface 116 is a distributed antenna such as the article detection antenna 144b depicted in the partially exploded view of
The article detection antenna 144b is to detect radio frequency signals coming in from RFID tags on the tray or the main receptacle 110. Radio frequency signals not coming from the tray or from the main receptacle 110 are treated as spurious or unwanted signals and the reception thereof is to be mitigated. To provide radio frequency shielding against unwanted or spurious signals, the article detection antenna 144b is mounted on the top surface 149 of a metal casing with the planar detection elements sitting on the top surface 149 of the metal housing and exposed to and facing the bottom surface of the main receptacle 110.
The metal casing has a planar extent comparable, if not slightly larger, than that of main receptacle and has a top surface 149 parallel to the main surface 116 of the tray so that when the article detection antenna 144b is mounted on the top surface of the metal casing, the planar detection elements are parallel to the main surface 116 for maximal detection of radio signals coming from the main surface 116 and minimal detection of radio signals coming from other orientations. As an optional feature, the metal casing may include a downwardly depending wall or skirt extending around boundary of the top surface to enhance radio frequency shielding. An alternative antenna layout suitable to operate as an article detection antenna is depicted in
The second antenna 146a is configured as a peripheral antenna 146b to detect radio frequency signals coming from outside of the apparatus 100 but not from RFID tags attached to articles on the main receptacle 110. The second antenna 146a is mounted near a corner on the operator's end 119a of the apparatus which is distal from the main receptacle 110. The mounting of the second antenna 146a at a location distal from the main receptacle 110 and hence the article detection antenna 144b is to mitigate detection of radio signals coming from the main receptacle. This peripheral antenna 146b has planar detection elements which are arranged to define a detection plane that is orthogonal or substantially orthogonal to the detection plane of the article detection antenna 144b. This peripheral antenna 146b is oriented to detect radio signals coming from outside of the apparatus and in a direction (−X) towards the lateral side of the apparatus distal from the main receptacle 110. The second antenna 146a is for detecting radio frequency signals coming in from a localised source such as an access card or a single RFID tag and therefore has a physical and detection area substantially less than that of the article detection antenna 144b. In an example, the second antenna 146a is formed on a printed circuit board and is inserted vertically into a vertical slot formed on the lower housing 114 so that its detection surface is outwardly (X-direction of
While the article detection antenna 144b and the second antenna 146a are both formed as a printed circuit board (PCB) antenna with the detection elements imprinted on a substrate of a PCB, each or one of the antennae can be formed on other substrates or mediums and in a membrane form or a template form without loss of generality.
To use the apparatus 100, an operator will turn on the power switch 156 and the processor will execute initialization instructions to initialise. After completion of initialization procedures, the detection and display circuitry 140 will be activated and the apparatus 100 will be ready to operate upon validation of the access authorization of an operator by the processor 142a. Upon completion of the initialization process, an access invitation message such as an image showing how to access or ‘check in’ will be displayed on the second, larger, display 122 as depicted in
To gain authorized access to operate the apparatus 100, an operator will present an RFID enabled access card to an access authorization detector on the apparatus 100. In this example, the second antenna 146a is configured as an access authorization detector and the portion of the main housing facing the detection surface of the second antenna 146a is grille-shaped to define a detection window 146c. An intended operator will present the RFID enabled access card to the detection window 146c which is on one lateral side of the apparatus 100 proximal the display region and the operator's end 119a. When the RFID information contained in the access card and detected by the apparatus 100 through operation of the RF interrogator 148b is verified by the CPU 142a as consistent with valid access authorization, the apparatus will enter into actual operation modes. As an additional feature or an alternative, an intended operator may access the apparatus 100 by entering an authorization code through an interactive input window on the touch screen 122 depicted in
After access to the apparatus 100 has been validated, the apparatus 100 will enter into an operation mode upon execution of prescribed instructions. Initially, no article is on the main receptacle and nullity information corresponding to a condition of zeroes or ‘no article has been introduced’ will be displayed on the first 122 and second 124 displays as depicted in
Example operation of the apparatus 100 will be described with reference to the flow diagram 1100 of
In order to assist an operator to track movement of RFID tagged articles after introduction into the apparatus during a customer serving session, the processor 142 is to maintain a first counter and a second counter. The first counter (“presence counter”) is to track the number of RFID tagged articles which are present on the main receptacle. The second counter (“absence or floating counter”) is to track the number of RFID tagged articles which are moved out of the main receptacle after introduction into the main receptacle and before returning to the shop's stock. The instantaneous value of the first counter is to be displayed in a first sub-window on the second display 124 and the instantaneous value of the second counter is to be displayed in the second sub-window to provide visual assistance to the operator.
As shown in
Referring to the flow diagram 1200 of
In some modes of operation, the apparatus 100 is to operate to monitor and track articles introduced into the main receptacle and their subsequent status.
Referring to the flow diagram 1300 of
Example operations during an example viewing session will be explained with reference to
After completion of the initialization process, an article having an associated RFID tag (an “RFID tagged article”) is introduced into the main receptacle by an operator and placed on the velvet floor of the main receptacle 110. When the check-in antenna has detected the RFID signals emitted by the RFID tag associated with the newly introduced article, the processor 142a will search through its accessible databases and retrieve product related information associated with that specific RFID. In this example, EPC code is used as an example of unique identification code for retrieving information relating to an RFID tagged article. The accessible databases may include databases stored on the apparatus or accessible via telecommunications means such as the WiFi frontend or LAN connection. Selected product related information will be displayed on the first display as depicted in
Next, a second RFID tagged article is introduced into the main receptacle 100 by the operator. With the introduction or “checking-in” of the second RFID tagged article, there is now a total of two RFID tagged articles introduced into and present on the apparatus. Upon detection of the second RFID tagged article by the check-in antenna 144b and the processor selected information relating to the newly introduced article will be presented in the first display as depicted in
A third RFID tagged article is introduced into the main receptacle by the operator. With the introduction of the second RFID tagged article, there is now a total of three RFID tagged articles introduced into and present on the apparatus 100. Upon detection of the presence of the third RFID tagged article by the check-in antenna 116 and the processor, the processor will update the first display region of the second display so that the number “3” is displayed to indicate that a total of three RFID tagged articles is present on the main receptacle 110, and the number “0” is displayed on the second display portion of the second display to indicate that there is no floating article, as depicted in
One of the three RFID tagged articles is then moved out of the main receptacle 110 for customer viewing and that moved article will be out of the detection range of the check-in antenna 144b. When the presence tracking assembly comprising the check-in antenna 144b and the processor 142 can no longer detect the presence of that article on the main receptacle 110, the assembly will take the non-detection as an indication that the article has been moved out of the main receptacle. At this time, the process will decrement the presence counter by “1” and increment the absence (or floating) counter by “1” to reflect the removal as depicted in
When the floating article is returned to the main receptacle 110, the presence tracking assembly will update the information and the states of the display will return to that of
On the other hand, if the operator decides to return the floating article to the shop's stock or inventory control, the operator will place the RFID tagged article against the check-out port 146c. When the RFID tagged article is placed in proximity of and against the check-out port 146c, it is within the detection range of a check-out assembly comprising the check-out antenna 146b and the processor 142. When the processor 142 has detected presence of the RFID tagged article at the check-out port, the processor will register that RFID tagged article as a “checked-out” article. Once an article has been checked out and registered as a checked-out article, the apparatus will no longer track its movement or whereabouts unless the article is re-introduced onto the main receptacle. When the article has been checked out, the processor 142 will update its counter, including the presence counter and the absence counter, to reflect the discharge of an article from scrutiny measures provided by the apparatus.
When a viewing session has come to an end, an operator can according to the information on the apparatus complete a purchase transaction.
In this example, the floating article is the last article introduced into the main receptacle which is depicted in
It will be noted that when the RFID tag at the check-out port 136c is out of the detection range of the check-in antenna 144b due to the distance of separation as well as the RF shielding, the presence of the RFID tag at the check-out port will not be detected by the check-in antenna, even though the physical separation between the check-out port and the check-in antenna is in the region of 10-15 cm only.
The RFID tag used in this example is formed on one side of a foldable label carrying selected product related information such as product ID, serial number, price, quality, or other relevant description or information. An RFID antenna is integrally formed on the other side of the foldable label and an RFID circuit is bonded to the antenna. A miniaturised and foldable RFID tag is useful for article of a small size and high value, such as jewelry items of the present examples. The RFID tags are folded into one third of the unfolded size.
After the customer sessions has ended, the operator will check out all the articles remaining on the main receptacle individually or simply authorize bulk check out of all items by activating a bulk check out function. In the example apparatus, the display region 120 and the detection window 146c are both located on the right side of the apparatus 100 to suit a right-handed user. The display region 120 and the detection window 146c may alternatively be located on the left side of the apparatus 100 to suit a left handed user. In some embodiments, the display region 120 and the detection window 146c may be located on the middle of the apparatus 100 so that the main receptacle 100 comprises trays on both sides of the display region 120, and with the detection window 146c on the operator's end.
At the end of the customer serving session, the identification of articles which have been introduced into the main receptacle and/or the identification of articles which have been moved out of the main receptacle for customer examination will be logged for subsequent or future use. To distinguish between the removal of an article form the main receptacle for customer viewing and that for straight check out, a threshold floating time, say 10-20 seconds, may be used to differentiate the two types of action. For example, where the floating time exceeds 10 seconds, the floating time will be interpreted as corresponding to customer viewing, rather than straight check-out.
To further utilise the logged information, the apparatus includes an interactive process to collect information regarding the customer of that customer serving session for future use. The process may include the steps of the operator entering information relating to personal particulars, events that trigger the purchase or the shopping exercise, purpose of the purchase or the shopping exercise, geographic origin of the customer, language used by the customer, or other information which may be used for service and/or business enhancement. In some modes of operation, the apparatus 100 is to cooperate with external databases. For example, the apparatus 100 may cooperate with external databases to obtain and prepare presentation information for a viewer. In general, presentation information to be presented to a viewer during a viewing session typically comprises “article specific information” which is information specific to an article and “general information” which is information relating but not specific to an article. Article specific information typically includes selected information relating to shape, appearance, style, quality, colour, grade, purity, weight, total number of articles in production, number of articles in stock, pricing formulae, latest auction or bid prices and/or certification number of the article. Article specific information may optionally include promotion information on a particular article such as extra discount, rebates, etc. General information is typically non-article specific information and typically includes selected general information such as information relating to merchandise price such as price of precious metals including gold, silver, platinum, etc.; price of precious stones including diamond, sapphire, emerald, jade, etc.; currency exchange rates; promotional discounts to a class of customers such as loyalty member scheme or credit card schemes.
Referring to the flow diagram 1400 of
When an actual viewing session begins, the processor 142 will upon detection of a newly introduced article prepare presentation information specific to that article for display at 1420. The article specific presentation information to be displayed is primarily article specific information comprising time invariant information and time variant information. For example, the time invariant information being displayed on
Referring to the flow diagram of
During the course of a viewing session, the processor 142 will operate to log and store the viewing history in the local data storage. The information to be logged to form a viewing history includes the identification data of the articles introduced into the main receptacle, the identification of articles removed for viewing, the number of viewings per article, the total viewing duration of a viewed article, and/or the article purchased. The viewing history will be uploaded to external data storage for subsequent processing and use for information compilation.
In some modes of operation, the apparatus 100 is to operate to collect viewer information after the completion or end of a viewing session. Upon detection of signals indicating the end of a viewing session, the processor 142 will execute instructions to enter into viewer data collection mode as depicted in the flow diagram 1500 of
After the viewing session has been completed and before the viewing data are uploaded to the data processing facility, the viewing data will be stored in the local data storage. The general information and the article specific information downloaded during the last viewing session will be kept for retrieval and possible use during subsequent viewing sessions. Where as a result of analyses of recently collected viewing data, some articles or class of articles are of particular demand or interest to viewers, specific data on such articles and classes of articles will be downloaded at initialization for more expeditious presentation of information to meet anticipated demand.
While the present disclosure has been illustrated with reference to the above example, it should be appreciated that the examples are for illustration only and shall not be used to restrict scope of the disclosure. For example, while various standards and protocols have been used herein for convenience, it should be understood that the present disclosure is not limited to such standards and/or protocols. Furthermore, where an apparatus comprising a processor is described, it should be appreciated that the processor can be a single processor, multiple processors, a cluster of processors, or distributed processors without loss of generality. Where a method or process is described herein, it should be appreciated that the method or process can be implemented by means of hardware, software, firmware or a combination thereof without loss of generality.
Number | Date | Country | Kind |
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13110832.6 | Sep 2013 | HK | national |
This is a continuation-in-part application of U.S. Ser. No. 15/023,909, which is a US national entry of PCT/IB2014/064754 and which claims priority from Hong Kong patent application number 13110832.6, filed 23 Sep. 2013. All the above are hereby incorporated by reference.
Number | Date | Country | |
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Parent | 15023909 | Mar 2016 | US |
Child | 16914502 | US |