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Systems and methods for administrating suggested merchandising arrangements
US20210365514A1
United States
- Inventor
Miranda Huet James Pratt Donald Perciful Eric Zavesky Michael Gonzales Yupeng Jia - Current Assignee
- AT&T Intellectual Property I LP
Description
translated from
-
[0001] This application is a continuation of U.S. application Ser. No. 16/369,584, filed Mar. 29, 2019, which is incorporated herein by reference in its entirety. -
[0002] The subject disclosure relates to e-commerce, and more particularly to a method for administrating suggested merchandising arrangements using a Natural Language Processing (NLP) system. -
[0003] Product descriptions in online catalogs may be written to appeal to particular audiences. However, such written descriptions may not reflect the preferences or language style of an individual prospective customer. -
[0004] Reference will now be made to the accompanying drawings, which are not necessarily drawn to scale, and wherein: -
[0005] FIG. 1 is a block diagram illustrating an exemplary, non-limiting embodiment of a communications network in accordance with various aspects described herein. -
[0006] FIG. 2A is a block diagram illustrating an example, non-limiting embodiment of a system functioning within the communication network ofFIG. 1 and including a NLP system for processing and presenting product descriptions, in accordance with various aspects described herein. -
[0007] FIG. 2B depicts an illustrative embodiment of a method for updating a product listing based on a customer's language history, in accordance with various aspects described herein. -
[0008] FIG. 2C depicts an illustrative embodiment of a method for personalizing a product description including machine learning, in accordance with various aspects described herein. -
[0009] FIG. 3 is a block diagram illustrating an example, non-limiting embodiment of a virtualized communication network in accordance with various aspects described herein. -
[0010] FIG. 4 is a block diagram of an example, non-limiting embodiment of a computing environment in accordance with various aspects described herein. -
[0011] FIG. 5 is a block diagram of an example, non-limiting embodiment of a mobile network platform in accordance with various aspects described herein. -
[0012] FIG. 6 is a block diagram of an example, non-limiting embodiment of a communication device in accordance with various aspects described herein. -
[0013] The subject disclosure describes, among other things, illustrative embodiments for presenting a product description to a prospective customer, where the product description is composed using the customer's own preferred vocabulary and word usage. Other embodiments are described in the subject disclosure. -
[0014] One or more aspects of the subject disclosure include a method comprising receiving, by a processing system including a processor, a description of a product; the description includes a text description and a visual description. The method also comprises determining attributes of the product based on the description; obtaining, responsive to a query from equipment of an end user, end user information regarding a behavior history and a language history of the end user; and modifying the product description in accordance with the end user information. The modifying includes assigning relative weights to the respective attributes of the product; selecting attributes of the product according to the relative weights; identifying text regarding the selected attributes of the product, based on natural language processing (NLP) of the text description and the language history of the end user; adding the identified text to the text description; arranging the text description as one or more blocks of text; and determining a presentation arrangement of the blocks of text and the visual description. The method also includes presenting the modified product description at the equipment of the end user; determining an end user behavior responsive to the presenting; and updating the end user information in accordance with the end user behavior. -
[0015] One or more aspects of the subject disclosure include a device comprising a processing system including a processor, and a memory that stores executable instructions that, when executed by the processing system, facilitate performance of operations. The operations comprise receiving a description of a product; the description includes a text description and a visual description. The operations also comprise determining attributes of the product based on the description; obtaining, end user information regarding a behavior history and a language history of an end user; and modifying the product description in accordance with the end user information. The modifying includes assigning relative weights to the respective attributes of the product; selecting attributes of the product according to the relative weights; identifying text regarding the selected attributes of the product, based on natural language processing (NLP) of the text description and the language history of the end user; adding the identified text to the text description; arranging the text description as one or more blocks of text; and determining a presentation arrangement of the blocks of text and the visual description. The operations further comprise presenting the modified product description at the equipment of the end user; determining an end user behavior responsive to the presenting; and updating the end user information in accordance with the end user behavior. -
[0016] One or more aspects of the subject disclosure include a machine-readable medium comprising executable instructions that, when executed by a processing system including a processor, facilitate performance of operations. The operations comprise receiving a description of a product; the description includes a text description and a visual description. The operations also comprise determining attributes of the product based on the description; obtaining, end user information regarding a behavior history and a language history of an end user; and modifying the product description in accordance with the end user information. The modifying includes assigning relative weights to the respective attributes of the product; selecting attributes of the product according to the relative weights; identifying text regarding the selected attributes of the product, based on natural language processing (NLP) of the text description and the language history of the end user; adding the identified text to the text description; and determining a presentation arrangement of the text description and the visual description. The operations further comprise presenting the modified product description at the equipment of the end user; determining an end user behavior responsive to the presenting; and updating the end user information in accordance with the end user behavior. -
[0017] Referring now toFIG. 1 , a block diagram is shown illustrating an example, non-limiting embodiment of acommunications network 100 in accordance with various aspects described herein. For example,communications network 100 can facilitate in whole or in part receiving a description of a product, obtaining end user information, presenting a modified product description at equipment of the end user, and updating the end user information. In particular, acommunications network 125 is presented for providingbroadband access 110 to a plurality ofdata terminals 114 viaaccess terminal 112,wireless access 120 to a plurality ofmobile devices 124 andvehicle 126 via base station oraccess point 122,voice access 130 to a plurality oftelephony devices 134, viaswitching device 132 and/ormedia access 140 to a plurality of audio/video display devices 144 viamedia terminal 142. In addition,communication network 125 is coupled to one ormore content sources 175 of audio, video, graphics, text and/or other media. Whilebroadband access 110,wireless access 120,voice access 130 andmedia access 140 are shown separately, one or more of these forms of access can be combined to provide multiple access services to a single client device (e.g.,mobile devices 124 can receive media content viamedia terminal 142,data terminal 114 can be provided voice access viaswitching device 132, and so on). -
[0018] Thecommunications network 125 includes a plurality of network elements (NE) 150, 152, 154, 156, etc. for facilitating thebroadband access 110,wireless access 120,voice access 130,media access 140 and/or the distribution of content fromcontent sources 175. Thecommunications network 125 can include a circuit switched or packet switched network, a voice over Internet protocol (VoIP) network, Internet protocol (IP) network, a cable network, a passive or active optical network, a 4G, 5G, or higher generation wireless access network, WIMAX network, UltraWideband network, personal area network or other wireless access network, a broadcast satellite network and/or other communications network. -
[0019] In various embodiments, theaccess terminal 112 can include a digital subscriber line access multiplexer (DSLAM), cable modem termination system (CMTS), optical line terminal (OLT) and/or other access terminal. Thedata terminals 114 can include personal computers, laptop computers, netbook computers, tablets or other computing devices along with digital subscriber line (DSL) modems, data over coax service interface specification (DOCSIS) modems or other cable modems, a wireless modem such as a 4G, 5G, or higher generation modem, an optical modem and/or other access devices. -
[0020] In various embodiments, the base station oraccess point 122 can include a 4G, 5G, or higher generation base station, an access point that operates via an 802.11 standard such as 802.11n, 802.11ac or other wireless access terminal. Themobile devices 124 can include mobile phones, e-readers, tablets, phablets, wireless modems, and/or other mobile computing devices. -
[0021] In various embodiments, theswitching device 132 can include a private branch exchange or central office switch, a media services gateway, VoIP gateway or other gateway device and/or other switching device. Thetelephony devices 134 can include traditional telephones (with or without a terminal adapter), VoIP telephones and/or other telephony devices. -
[0022] In various embodiments, themedia terminal 142 can include a cable head-end or other TV head-end, a satellite receiver, gateway orother media terminal 142. Thedisplay devices 144 can include televisions with or without a set top box, personal computers and/or other display devices. -
[0023] In various embodiments, thecontent sources 175 include broadcast television and radio sources, video on demand platforms and streaming video and audio services platforms, one or more content data networks, data servers, web servers and other content servers, and/or other sources of media. -
[0024] In various embodiments, thecommunications network 125 can include wired, optical and/or wireless links and thenetwork elements -
[0025] FIG. 2A is a block diagram illustrating an example, non-limiting embodiment of asystem 201 functioning within the communication network ofFIG. 1 in accordance with various aspects described herein. In this embodiment, anadvertiser 210 of aproduct 211 generates aproduct description 212, which is accessed and processed by asystem 215 executing on a computing device that includes a natural language processing (NLP)engine 219. -
[0026] Theproduct description 212 can include a written (text) description of the product, a visual description (picture) of the product, or both.Description 212 includes basic data regarding the product (e.g., size, weight, color, price), and additional terms that indicate the category of product (e.g., apparel, sporting goods, tools) and distinguish the product from other products in that category (e.g., in the apparel category, “dress” and “sleeveless”; in the sporting goods category, “bow” and “compound”, etc.). These terms in thedescription 212 are referred to asattributes 213 of the product. It will be appreciated that a variety of attributes may be applied to a product in a description presented to a prospective customer 214 (e.g. in an online catalog). However, depending on the particular customer, certain attributes will generally be more important than others. Accordingly, theNLP engine 219 modifies thedescription 212 by adding text emphasizing attributes determined to be of greatest importance to the customer, using language determined to be appealing to the customer. -
[0027] In an embodiment, the advertiser generates thedescription 212 with text including fillable blanks; for example: “(Blank 1) new crossbow! (Blank 2) features at a (blank 3) price.” In this embodiment,NLP engine 219 accesses adatabase 218 of the prospective customer's behavior and language history (which can include, for example, online content written by the customer, the customer's browsing history, purchasing history, etc.) to determine the attributes viewed as most important by the customer and the most effective language to use in filling those blanks. For example, based on his behavior and language history, the NLP engine might determine that one customer is likely to respond positively to “Awesome new crossbow! Fantastic features at an unbeatable price” while another customer is likely to respond positively to “Quality new crossbow! Precision features at a hard-to-resist price”. -
[0028] A modifieddescription 216, with the blanks provided by the advertiser filled in, is then prepared for presentation at adevice 217 of the customer. In this embodiment, blocks of text may be expanded or deleted, in accordance with the relative importance of the product attribute being described. For example, if a portion of the text description provided by the advertiser describes a product attribute determined not of interest to the customer, that portion may be deleted from the modifieddescription 216. -
[0029] In an embodiment, thedescription 212 includes one or more pictures of the product to be integrated in modifieddescription 216. For example, the text description of the product may be subdivided into blocks that are arranged with the pictures to form a completed product description that engages the customer's attention. -
[0030] The completed product description can be presented to the customer in a variety of ways, using a variety of devices. In this embodiment, the product description is presented on aweb page 220 atcomputing device 217, and thesystem 215 monitors the customer's interaction with the web page. The effectiveness of the presentation can be gauged using a variety of metrics (e.g., how long did the customer view the presentation, at what speed did he scroll through it, did he access a link to obtain more information, did he share the presentation with another user, did he make a purchase, etc.). These behaviors can be logged and added to thedatabase 218. In this embodiment, thedatabase 218 is updated dynamically; that is, the user behavior history and language history are modified to reflect the user's interaction with the web page while the interaction is in progress. -
[0031] In an embodiment, the modifieddescription 216 is generated on a per-user and per-search basis; that is, anew description 216 is generated each time theweb page 220 is downloaded, thereby ensuring that theNLP engine 219 accesses the most recent updates to the user behavior history and language history -
[0032] In additional embodiments, the modifieddescription 216 can be presented using an instant messenger client, a voice interactive assistant, or a combination thereof. In one embodiment, the interactive assistant is a chatbot. More generally, in other embodiments, the voice interactive assistant can be a virtual assistant (that is, an example of a cloud-based expert system). -
[0033] TheNLP engine 219 can extract words from the language history of the customer that are applicable to the product attributes presented in the product description; that is, theNLP engine 219 modifies theproduct description 212 so that theproduct description 216 includes vocabulary found in, or semantically consistent with, content authored, read and/or shared by the customer. More generally, the NLP engine determines a level of brevity or formality of language preferred by the customer, and composes theproduct description 216 accordingly. -
[0034] The vocabulary, word usage, and writing style preferred by the customer will, in general, constantly change over time. Accordingly, in an embodiment, content items authored, read, or shared by the customer are time-stamped so that theNLP engine 219 can select the most recent applicable words and phrases for use in the modifiedproduct description 216. -
[0035] In a further embodiment,system 215 monitors a customer's level of engagement with descriptions of multiple products in the same category, in order to determine product attributes that are attractors (or detractors) for the customer. For example, if the customer views an item of apparel having a bright color for a longer time than a similar item having a dark color, the system determines that a bright color is an attractor for that item and similar items. -
[0036] In one or more embodiments, the NLP engine uses artificial intelligence (AI) and machine learning techniques to generate personalized product descriptions, in accordance with various aspects described herein. In particular, words and phrases associated with a category of products can be processed using a word-embedding procedure so that they are semantically related. -
[0037] In another embodiment, an adjustable list of the product attributes is prepared by thesystem 215 and displayed at theuser device 217 along with the modifiedproduct description 216. This list may be ordered according to weights assigned to the various attributes, based on analysis by thesystem 215 of the user's behavior history and language history. The user can modify the list via inputs atdevice 217; for example, the user can add or remove attributes or reorder the list, thereby indicating which product attributes are of greater interest. In this embodiment, the system dynamically modifies the product description to reflect the current ordering of the attribute list, so that the user is presented in real time with an updated product description that has greater appeal. -
[0038] FIG. 2B depicts an illustrative embodiment of amethod 202 for personalizing a product listing using a system including a NLP engine, in accordance with various aspects described herein. Instep 2201, the seller of a product creates a product listing for an online catalog; the product listing has a predefined markup recognized by the NLP engine. Based on the type of product, the system collects data regarding likely purchasers of the product (step 2202). In this embodiment, the system identifies specific end users as prospective customers, and collects data to discover language patterns that are most appealing to those users. The system also collects data on products similar to that shown in the new listing, to discover attributes of those products; the system can then assign weights to those attributes in accordance with their importance to the end user(s), based on the end users' browsing/purchasing histories. -
[0039] As a customer searches the catalog for the listed product (step 2204), the NLP engine obtains data (step 2206) from the customer's language history and behavior history to modify the product listing (in this embodiment, populating the markup portions of the listing provided by the seller). In an embodiment, the NLP engine generates a plurality of modified listings with different word sets describing the product; in another embodiment, the NLP engine generates modified listings with different arrangements of pictures and text blocks. These listings can be presented in rotation to determine which arrangement of word set and/or pictures is most effective in engaging the customer's attention. -
[0040] The system then aggregates information regarding the interaction of the customer(s) with the product listing (step 2208). In this embodiment, the NLP engine applies machine learning procedures to improve modification and presentation of the product listing. -
[0041] FIG. 2C depicts an illustrative embodiment of amethod 203 for generating and presenting a product description in an online catalog, based on a user's behavior history and language history, in accordance with various aspects described herein. Instep 2302, a system receives a product description provided by an advertiser or seller; the product description generally includes text and pictures, with the text description including fillable blanks. Instep 2304, the system builds a list of attributes of the product, based on the description provided. In an embodiment, the system searches for similar products offered by the same seller or other sellers, to discover additional attributes that may be included in a modified or expanded product description. -
[0042] The system responds to user input corresponding to browsing or navigating the catalog by obtaining user information (step 2306) including the user's behavior history and language history. The system then selects attributes of the product (step 2308), weighted according to the user information, to be highlighted in the personalized product description. The NLP engine generates text to be added to the description provided by the seller (step 2310). -
[0043] In an embodiment, different purchasable service tiers can be offered to the seller/advertiser, with a higher (more expensive) level of service corresponding to more extensive analysis of the user's vocabulary and word usage, purchase history and internet presence (including browsing and sharing history). In another embodiment, the system can determine cultural associations of the user and further modify the product description accordingly, so that the user feels more engaged with the product. -
[0044] The system then arranges the text and pictures for presentation at the user's display device (step 2312). In an embodiment, the text of the modified product description is arranged in blocks to complement the arrangement of pictures for maximum visual appeal, based on arrangements of text and pictures in the user information database. In a further embodiment, the modified product description comprises a portion of a web page, and the system predicts the most effective placement of the product description on the web page (e.g., center, top right, etc.), based on the user's browsing/purchasing history. -
[0045] The user response to the presentation is then analyzed (step 2314); possible responses can include sharing with another user's equipment, seeking additional information, and making a purchase. The user behavior history and/or language history is updated to reflect the user response (step 2316). -
[0046] While for purposes of simplicity of explanation, the respective processes are shown and described as a series of blocks inFIGS. 2B and 2C , it is to be understood and appreciated that the claimed subject matter is not limited by the order of the blocks, as some blocks may occur in different orders and/or concurrently with other blocks from what is depicted and described herein. Moreover, not all illustrated blocks may be required to implement the methods described herein. -
[0047] Referring now toFIG. 3 , a block diagram 300 is shown illustrating an example, non-limiting embodiment of a virtualized communication network in accordance with various aspects described herein. In particular a virtualized communication network is presented that can be used to implement some or all of the subsystems and functions ofcommunication network 100, the subsystems and functions ofsystem 201, and methods 202-203 presented inFIGS. 1, 2A, 2B, 2C and 3 . For example,virtualized communication network 300 can facilitate in whole or in part receiving a description of a product, obtaining end user information, presenting a modified product description at equipment of the end user, and updating the end user information. -
[0048] In particular, a cloud networking architecture is shown that leverages cloud technologies and supports rapid innovation and scalability via atransport layer 350, a virtualizednetwork function cloud 325 and/or one or morecloud computing environments 375. In various embodiments, this cloud networking architecture is an open architecture that leverages application programming interfaces (APIs); reduces complexity from services and operations; supports more nimble business models; and rapidly and seamlessly scales to meet evolving customer requirements including traffic growth, diversity of traffic types, and diversity of performance and reliability expectations. -
[0049] In contrast to traditional network elements—which are typically integrated to perform a single function, the virtualized communication network employs virtual network elements (VNEs) 330, 332, 334, etc. that perform some or all of the functions ofnetwork elements -
[0050] As an example, a traditional network element 150 (shown inFIG. 1 ), such as an edge router can be implemented via aVNE 330 composed of NFV software modules, merchant silicon, and associated controllers. The software can be written so that increasing workload consumes incremental resources from a common resource pool, and moreover so that it's elastic: so the resources are only consumed when needed. In a similar fashion, other network elements such as other routers, switches, edge caches, and middle-boxes are instantiated from the common resource pool. Such sharing of infrastructure across a broad set of uses makes planning and growing infrastructure easier to manage. -
[0051] In an embodiment, thetransport layer 350 includes fiber, cable, wired and/or wireless transport elements, network elements and interfaces to providebroadband access 110,wireless access 120,voice access 130,media access 140 and/or access tocontent sources 175 for distribution of content to any or all of the access technologies. In particular, in some cases a network element needs to be positioned at a specific place, and this allows for less sharing of common infrastructure. Other times, the network elements have specific physical layer adapters that cannot be abstracted or virtualized, and might require special DSP code and analog front-ends (AFEs) that do not lend themselves to implementation asVNEs transport layer 350. -
[0052] The virtualizednetwork function cloud 325 interfaces with thetransport layer 350 to provide theVNEs network function cloud 325 leverages cloud operations, applications, and architectures to support networking workloads. Thevirtualized network elements VNEs virtual network elements -
[0053] Thecloud computing environments 375 can interface with the virtualizednetwork function cloud 325 via APIs that expose functional capabilities of theVNEs network function cloud 325. In particular, network workloads may have applications distributed across the virtualizednetwork function cloud 325 andcloud computing environment 375 and in the commercial cloud, or might simply orchestrate workloads supported entirely in NFV infrastructure from these third party locations. -
[0054] Turning now toFIG. 4 , there is illustrated a block diagram of a computing environment in accordance with various aspects described herein. In order to provide additional context for various embodiments of the embodiments described herein,FIG. 4 and the following discussion are intended to provide a brief, general description of asuitable computing environment 400 in which the various embodiments of the subject disclosure can be implemented. In particular, computingenvironment 400 can be used in the implementation ofnetwork elements access terminal 112, base station oraccess point 122, switchingdevice 132,media terminal 142, and/orVNEs computing environment 400 can facilitate in whole or in part receiving a description of a product, obtaining end user information, modifying the product description in accordance with the end user information, and determining a presentation arrangement of text and/or pictures in the modified product description. -
[0055] Generally, program modules comprise routines, programs, components, data structures, etc., that perform particular tasks or implement particular abstract data types. Moreover, those skilled in the art will appreciate that the inventive methods can be practiced with other computer system configurations, comprising single-processor or multiprocessor computer systems, minicomputers, mainframe computers, as well as personal computers, hand-held computing devices, microprocessor-based or programmable consumer electronics, and the like, each of which can be operatively coupled to one or more associated devices. -
[0056] As used herein, a processing circuit includes one or more processors as well as other application specific circuits such as an application specific integrated circuit, digital logic circuit, state machine, programmable gate array or other circuit that processes input signals or data and that produces output signals or data in response thereto. It should be noted that while any functions and features described herein in association with the operation of a processor could likewise be performed by a processing circuit. -
[0057] The illustrated embodiments of the embodiments herein can be also practiced in distributed computing environments where certain tasks are performed by remote processing devices that are linked through a communications network. In a distributed computing environment, program modules can be located in both local and remote memory storage devices. -
[0058] Computing devices typically comprise a variety of media, which can comprise computer-readable storage media and/or communications media, which two terms are used herein differently from one another as follows. Computer-readable storage media can be any available storage media that can be accessed by the computer and comprises both volatile and nonvolatile media, removable and non-removable media. By way of example, and not limitation, computer-readable storage media can be implemented in connection with any method or technology for storage of information such as computer-readable instructions, program modules, structured data or unstructured data. -
[0059] Computer-readable storage media can comprise, but are not limited to, random access memory (RAM), read only memory (ROM), electrically erasable programmable read only memory (EEPROM), flash memory or other memory technology, compact disk read only memory (CD-ROM), digital versatile disk (DVD) or other optical disk storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices or other tangible and/or non-transitory media which can be used to store desired information. In this regard, the terms “tangible” or “non-transitory” herein as applied to storage, memory or computer-readable media, are to be understood to exclude only propagating transitory signals per se as modifiers and do not relinquish rights to all standard storage, memory or computer-readable media that are not only propagating transitory signals per se. -
[0060] Computer-readable storage media can be accessed by one or more local or remote computing devices, e.g., via access requests, queries or other data retrieval protocols, for a variety of operations with respect to the information stored by the medium. -
[0061] Communications media typically embody computer-readable instructions, data structures, program modules or other structured or unstructured data in a data signal such as a modulated data signal, e.g., a carrier wave or other transport mechanism, and comprises any information delivery or transport media. The term “modulated data signal” or signals refers to a signal that has one or more of its characteristics set or changed in such a manner as to encode information in one or more signals. By way of example, and not limitation, communication media comprise wired media, such as a wired network or direct-wired connection, and wireless media such as acoustic, RF, infrared and other wireless media. -
[0062] With reference again toFIG. 4 , the example environment can comprise acomputer 402, thecomputer 402 comprising aprocessing unit 404, asystem memory 406 and asystem bus 408. Thesystem bus 408 couples system components including, but not limited to, thesystem memory 406 to theprocessing unit 404. Theprocessing unit 404 can be any of various commercially available processors. Dual microprocessors and other multiprocessor architectures can also be employed as theprocessing unit 404. -
[0063] Thesystem bus 408 can be any of several types of bus structure that can further interconnect to a memory bus (with or without a memory controller), a peripheral bus, and a local bus using any of a variety of commercially available bus architectures. Thesystem memory 406 comprisesROM 410 andRAM 412. A basic input/output system (BIOS) can be stored in a non-volatile memory such as ROM, erasable programmable read only memory (EPROM), EEPROM, which BIOS contains the basic routines that help to transfer information between elements within thecomputer 402, such as during startup. TheRAM 412 can also comprise a high-speed RAM such as static RAM for caching data. -
[0064] Thecomputer 402 further comprises an internal hard disk drive (HDD) 414 (e.g., EIDE, SATA), whichinternal HDD 414 can also be configured for external use in a suitable chassis (not shown), a magnetic floppy disk drive (FDD) 416, (e.g., to read from or write to a removable diskette 418) and anoptical disk drive 420, (e.g., reading a CD-ROM disk 422 or, to read from or write to other high capacity optical media such as the DVD). TheHDD 414,magnetic FDD 416 andoptical disk drive 420 can be connected to thesystem bus 408 by a harddisk drive interface 424, a magneticdisk drive interface 426 and anoptical drive interface 428, respectively. The harddisk drive interface 424 for external drive implementations comprises at least one or both of Universal Serial Bus (USB) and Institute of Electrical and Electronics Engineers (IEEE) 1394 interface technologies. Other external drive connection technologies are within contemplation of the embodiments described herein. -
[0065] The drives and their associated computer-readable storage media provide nonvolatile storage of data, data structures, computer-executable instructions, and so forth. For thecomputer 402, the drives and storage media accommodate the storage of any data in a suitable digital format. Although the description of computer-readable storage media above refers to a hard disk drive (HDD), a removable magnetic diskette, and a removable optical media such as a CD or DVD, it should be appreciated by those skilled in the art that other types of storage media which are readable by a computer, such as zip drives, magnetic cassettes, flash memory cards, cartridges, and the like, can also be used in the example operating environment, and further, that any such storage media can contain computer-executable instructions for performing the methods described herein. -
[0066] A number of program modules can be stored in the drives andRAM 412, comprising anoperating system 430, one ormore application programs 432,other program modules 434 andprogram data 436. All or portions of the operating system, applications, modules, and/or data can also be cached in theRAM 412. The systems and methods described herein can be implemented utilizing various commercially available operating systems or combinations of operating systems. -
[0067] A user can enter commands and information into thecomputer 402 through one or more wired/wireless input devices, e.g., akeyboard 438 and a pointing device, such as amouse 440. Other input devices (not shown) can comprise a microphone, an infrared (IR) remote control, a joystick, a game pad, a stylus pen, touch screen or the like. These and other input devices are often connected to theprocessing unit 404 through aninput device interface 442 that can be coupled to thesystem bus 408, but can be connected by other interfaces, such as a parallel port, an IEEE 1394 serial port, a game port, a universal serial bus (USB) port, an IR interface, etc. -
[0068] Amonitor 444 or other type of display device can be also connected to thesystem bus 408 via an interface, such as avideo adapter 446. It will also be appreciated that in alternative embodiments, amonitor 444 can also be any display device (e.g., another computer having a display, a smart phone, a tablet computer, etc.) for receiving display information associated withcomputer 402 via any communication means, including via the Internet and cloud-based networks. In addition to themonitor 444, a computer typically comprises other peripheral output devices (not shown), such as speakers, printers, etc. -
[0069] Thecomputer 402 can operate in a networked environment using logical connections via wired and/or wireless communications to one or more remote computers, such as a remote computer(s) 448. The remote computer(s) 448 can be a workstation, a server computer, a router, a personal computer, portable computer, microprocessor-based entertainment appliance, a peer device or other common network node, and typically comprises many or all of the elements described relative to thecomputer 402, although, for purposes of brevity, only a remote memory/storage device 450 is illustrated. The logical connections depicted comprise wired/wireless connectivity to a local area network (LAN) 452 and/or larger networks, e.g., a wide area network (WAN) 454. Such LAN and WAN networking environments are commonplace in offices and companies, and facilitate enterprise-wide computer networks, such as intranets, all of which can connect to a global communications network, e.g., the Internet. -
[0070] When used in a LAN networking environment, thecomputer 402 can be connected to theLAN 452 through a wired and/or wireless communication network interface oradapter 456. Theadapter 456 can facilitate wired or wireless communication to theLAN 452, which can also comprise a wireless AP disposed thereon for communicating with theadapter 456. -
[0071] When used in a WAN networking environment, thecomputer 402 can comprise amodem 458 or can be connected to a communications server on theWAN 454 or has other means for establishing communications over theWAN 454, such as by way of the Internet. Themodem 458, which can be internal or external and a wired or wireless device, can be connected to thesystem bus 408 via theinput device interface 442. In a networked environment, program modules depicted relative to thecomputer 402 or portions thereof, can be stored in the remote memory/storage device 450. It will be appreciated that the network connections shown are example and other means of establishing a communications link between the computers can be used. -
[0072] Thecomputer 402 can be operable to communicate with any wireless devices or entities operatively disposed in wireless communication, e.g., a printer, scanner, desktop and/or portable computer, portable data assistant, communications satellite, any piece of equipment or location associated with a wirelessly detectable tag (e.g., a kiosk, news stand, restroom), and telephone. This can comprise Wireless Fidelity (Wi-Fi) and BLUETOOTH® wireless technologies. Thus, the communication can be a predefined structure as with a conventional network or simply an ad hoc communication between at least two devices. -
[0073] Wi-Fi can allow connection to the Internet from a couch at home, a bed in a hotel room or a conference room at work, without wires. Wi-Fi is a wireless technology similar to that used in a cell phone that enables such devices, e.g., computers, to send and receive data indoors and out; anywhere within the range of a base station. Wi-Fi networks use radio technologies called IEEE 802.11 (a, b, g, n, ac, ag, etc.) to provide secure, reliable, fast wireless connectivity. A Wi-Fi network can be used to connect computers to each other, to the Internet, and to wired networks (which can use IEEE 802.3 or Ethernet). Wi-Fi networks operate in the unlicensed 2.4 and 5 GHz radio bands for example or with products that contain both bands (dual band), so the networks can provide real-world performance similar to the basic 10BaseT wired Ethernet networks used in many offices. -
[0074] Turning now toFIG. 5 , an embodiment 500 of amobile network platform 510 is shown that is an example ofnetwork elements VNEs platform 510 can facilitate in whole or in part obtaining end user information, presenting a modified product description at equipment of the end user, and updating the end user information. In one or more embodiments, themobile network platform 510 can generate and receive signals transmitted and received by base stations or access points such as base station oraccess point 122. Generally,mobile network platform 510 can comprise components, e.g., nodes, gateways, interfaces, servers, or disparate platforms, that facilitate both packet-switched (PS) (e.g., internet protocol (IP), frame relay, asynchronous transfer mode (ATM)) and circuit-switched (CS) traffic (e.g., voice and data), as well as control generation for networked wireless telecommunication. As a non-limiting example,mobile network platform 510 can be included in telecommunications carrier networks, and can be considered carrier-side components as discussed elsewhere herein.Mobile network platform 510 comprises CS gateway node(s) 512 which can interface CS traffic received from legacy networks like telephony network(s) 540 (e.g., public switched telephone network (PSTN), or public land mobile network (PLMN)) or a signaling system #7 (SS7)network 560. CS gateway node(s) 512 can authorize and authenticate traffic (e.g., voice) arising from such networks. Additionally, CS gateway node(s) 512 can access mobility, or roaming, data generated throughSS7 network 560; for instance, mobility data stored in a visited location register (VLR), which can reside inmemory 530. Moreover, CS gateway node(s) 512 interfaces CS-based traffic and signaling and PS gateway node(s) 518. As an example, in a 3GPP UMTS network, CS gateway node(s) 512 can be realized at least in part in gateway GPRS support node(s) (GGSN). It should be appreciated that functionality and specific operation of CS gateway node(s) 512, PS gateway node(s) 518, and serving node(s) 516, is provided and dictated by radio technology(ies) utilized bymobile network platform 510 for telecommunication over aradio access network 520 with other devices, such as aradiotelephone 575. -
[0075] In addition to receiving and processing CS-switched traffic and signaling, PS gateway node(s) 518 can authorize and authenticate PS-based data sessions with served mobile devices. Data sessions can comprise traffic, or content(s), exchanged with networks external to themobile network platform 510, like wide area network(s) (WANs) 550, enterprise network(s) 570, and service network(s) 580, which can be embodied in local area network(s) (LANs), can also be interfaced withmobile network platform 510 through PS gateway node(s) 518. It is to be noted thatWANs 550 and enterprise network(s) 570 can embody, at least in part, a service network(s) like IP multimedia subsystem (IMS). Based on radio technology layer(s) available in technology resource(s) orradio access network 520, PS gateway node(s) 518 can generate packet data protocol contexts when a data session is established; other data structures that facilitate routing of packetized data also can be generated. To that end, in an aspect, PS gateway node(s) 518 can comprise a tunnel interface (e.g., tunnel termination gateway (TTG) in 3GPP UMTS network(s) (not shown)) which can facilitate packetized communication with disparate wireless network(s), such as Wi-Fi networks. -
[0076] In embodiment 500,mobile network platform 510 also comprises serving node(s) 516 that, based upon available radio technology layer(s) within technology resource(s) in theradio access network 520, convey the various packetized flows of data streams received through PS gateway node(s) 518. It is to be noted that for technology resource(s) that rely primarily on CS communication, server node(s) can deliver traffic without reliance on PS gateway node(s) 518; for example, server node(s) can embody at least in part a mobile switching center. As an example, in a 3GPP UMTS network, serving node(s) 516 can be embodied in serving GPRS support node(s) (SGSN). -
[0077] For radio technologies that exploit packetized communication, server(s) 514 inmobile network platform 510 can execute numerous applications that can generate multiple disparate packetized data streams or flows, and manage (e.g., schedule, queue, format . . . ) such flows. Such application(s) can comprise add-on features to standard services (for example, provisioning, billing, customer support . . . ) provided bymobile network platform 510. Data streams (e.g., content(s) that are part of a voice call or data session) can be conveyed to PS gateway node(s) 518 for authorization/authentication and initiation of a data session, and to serving node(s) 516 for communication thereafter. In addition to application server, server(s) 514 can comprise utility server(s), a utility server can comprise a provisioning server, an operations and maintenance server, a security server that can implement at least in part a certificate authority and firewalls as well as other security mechanisms, and the like. In an aspect, security server(s) secure communication served throughmobile network platform 510 to ensure network's operation and data integrity in addition to authorization and authentication procedures that CS gateway node(s) 512 and PS gateway node(s) 518 can enact. Moreover, provisioning server(s) can provision services from external network(s) like networks operated by a disparate service provider; for instance,WAN 550 or Global Positioning System (GPS) network(s) (not shown). Provisioning server(s) can also provision coverage through networks associated to mobile network platform 510 (e.g., deployed and operated by the same service provider), such as the distributed antennas networks shown inFIG. 1(s) that enhance wireless service coverage by providing more network coverage. -
[0078] It is to be noted that server(s) 514 can comprise one or more processors configured to confer at least in part the functionality ofmobile network platform 510. To that end, the one or more processor can execute code instructions stored inmemory 530, for example. It is should be appreciated that server(s) 514 can comprise a content manager, which operates in substantially the same manner as described hereinbefore. -
[0079] In example embodiment 500,memory 530 can store information related to operation ofmobile network platform 510. Other operational information can comprise provisioning information of mobile devices served throughmobile network platform 510, subscriber databases; application intelligence, pricing schemes, e.g., promotional rates, flat-rate programs, couponing campaigns; technical specification(s) consistent with telecommunication protocols for operation of disparate radio, or wireless, technology layers; and so forth.Memory 530 can also store information from at least one of telephony network(s) 540,WAN 550,SS7 network 560, or enterprise network(s) 570. In an aspect,memory 530 can be, for example, accessed as part of a data store component or as a remotely connected memory store. -
[0080] In order to provide a context for the various aspects of the disclosed subject matter,FIG. 5 , and the following discussion, are intended to provide a brief, general description of a suitable environment in which the various aspects of the disclosed subject matter can be implemented. While the subject matter has been described above in the general context of computer-executable instructions of a computer program that runs on a computer and/or computers, those skilled in the art will recognize that the disclosed subject matter also can be implemented in combination with other program modules. Generally, program modules comprise routines, programs, components, data structures, etc. that perform particular tasks and/or implement particular abstract data types. -
[0081] Turning now toFIG. 6 , an illustrative embodiment of acommunication device 600 is shown. Thecommunication device 600 can serve as an illustrative embodiment of devices such asdata terminals 114,mobile devices 124,vehicle 126,display devices 144 or other client devices for communication via eithercommunications network 125. For example,computing device 600 can facilitate in whole or in part receiving a description of a product, obtaining end user information, modifying the product description in accordance with the end user information, and determining a presentation arrangement of text and/or pictures in the modified product description. -
[0082] Thecommunication device 600 can comprise a wireline and/or wireless transceiver 602 (herein transceiver 602), a user interface (UI) 604, apower supply 614, alocation receiver 616, amotion sensor 618, anorientation sensor 620, and acontroller 606 for managing operations thereof. Thetransceiver 602 can support short-range or long-range wireless access technologies such as Bluetooth®, ZigBee®, WiFi, DECT, or cellular communication technologies, just to mention a few (Bluetooth® and ZigBee® are trademarks registered by the Bluetooth® Special Interest Group and the ZigBee® Alliance, respectively). Cellular technologies can include, for example, CDMA-1X, UMTS/HSDPA, GSM/GPRS, TDMA/EDGE, EV/DO, WiMAX, SDR, LTE, as well as other next generation wireless communication technologies as they arise. Thetransceiver 602 can also be adapted to support circuit-switched wireline access technologies (such as PSTN), packet-switched wireline access technologies (such as TCP/IP, VoIP, etc.), and combinations thereof. -
[0083] TheUI 604 can include a depressible or touch-sensitive keypad 608 with a navigation mechanism such as a roller ball, a joystick, a mouse, or a navigation disk for manipulating operations of thecommunication device 600. Thekeypad 608 can be an integral part of a housing assembly of thecommunication device 600 or an independent device operably coupled thereto by a tethered wireline interface (such as a USB cable) or a wireless interface supporting for example Bluetooth®. Thekeypad 608 can represent a numeric keypad commonly used by phones, and/or a QWERTY keypad with alphanumeric keys. TheUI 604 can further include adisplay 610 such as monochrome or color LCD (Liquid Crystal Display), OLED (Organic Light Emitting Diode) or other suitable display technology for conveying images to an end user of thecommunication device 600. In an embodiment where thedisplay 610 is touch-sensitive, a portion or all of thekeypad 608 can be presented by way of thedisplay 610 with navigation features. -
[0084] Thedisplay 610 can use touch screen technology to also serve as a user interface for detecting user input. As a touch screen display, thecommunication device 600 can be adapted to present a user interface having graphical user interface (GUI) elements that can be selected by a user with a touch of a finger. Thedisplay 610 can be equipped with capacitive, resistive or other forms of sensing technology to detect how much surface area of a user's finger has been placed on a portion of the touch screen display. This sensing information can be used to control the manipulation of the GUI elements or other functions of the user interface. Thedisplay 610 can be an integral part of the housing assembly of thecommunication device 600 or an independent device communicatively coupled thereto by a tethered wireline interface (such as a cable) or a wireless interface. -
[0085] TheUI 604 can also include anaudio system 612 that utilizes audio technology for conveying low volume audio (such as audio heard in proximity of a human ear) and high volume audio (such as speakerphone for hands free operation). Theaudio system 612 can further include a microphone for receiving audible signals of an end user. Theaudio system 612 can also be used for voice recognition applications. TheUI 604 can further include animage sensor 613 such as a charged coupled device (CCD) camera for capturing still or moving images. -
[0086] Thepower supply 614 can utilize common power management technologies such as replaceable and rechargeable batteries, supply regulation technologies, and/or charging system technologies for supplying energy to the components of thecommunication device 600 to facilitate long-range or short-range portable communications. Alternatively, or in combination, the charging system can utilize external power sources such as DC power supplied over a physical interface such as a USB port or other suitable tethering technologies. -
[0087] Thelocation receiver 616 can utilize location technology such as a global positioning system (GPS) receiver capable of assisted GPS for identifying a location of thecommunication device 600 based on signals generated by a constellation of GPS satellites, which can be used for facilitating location services such as navigation. Themotion sensor 618 can utilize motion sensing technology such as an accelerometer, a gyroscope, or other suitable motion sensing technology to detect motion of thecommunication device 600 in three-dimensional space. Theorientation sensor 620 can utilize orientation sensing technology such as a magnetometer to detect the orientation of the communication device 600 (north, south, west, and east, as well as combined orientations in degrees, minutes, or other suitable orientation metrics). -
[0088] Thecommunication device 600 can use thetransceiver 602 to also determine a proximity to a cellular, WiFi, Bluetooth®, or other wireless access points by sensing techniques such as utilizing a received signal strength indicator (RSSI) and/or signal time of arrival (TOA) or time of flight (TOF) measurements. Thecontroller 606 can utilize computing technologies such as a microprocessor, a digital signal processor (DSP), programmable gate arrays, application specific integrated circuits, and/or a video processor with associated storage memory such as Flash, ROM, RAM, SRAM, DRAM or other storage technologies for executing computer instructions, controlling, and processing data supplied by the aforementioned components of thecommunication device 600. -
[0089] Other components not shown inFIG. 6 can be used in one or more embodiments of the subject disclosure. For instance, thecommunication device 600 can include a slot for adding or removing an identity module such as a Subscriber Identity Module (SIM) card or Universal Integrated Circuit Card (UICC). SIM or UICC cards can be used for identifying subscriber services, executing programs, storing subscriber data, and so on. -
[0090] The terms “first,” “second,” “third,” and so forth, as used in the claims, unless otherwise clear by context, is for clarity only and doesn't otherwise indicate or imply any order in time. For instance, “a first determination,” “a second determination,” and “a third determination,” does not indicate or imply that the first determination is to be made before the second determination, or vice versa, etc. -
[0091] In the subject specification, terms such as “store,” “storage,” “data store,” data storage,” “database,” and substantially any other information storage component relevant to operation and functionality of a component, refer to “memory components,” or entities embodied in a “memory” or components comprising the memory. It will be appreciated that the memory components described herein can be either volatile memory or nonvolatile memory, or can comprise both volatile and nonvolatile memory, by way of illustration, and not limitation, volatile memory, non-volatile memory, disk storage, and memory storage. Further, nonvolatile memory can be included in read only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable ROM (EEPROM), or flash memory. Volatile memory can comprise random access memory (RAM), which acts as external cache memory. By way of illustration and not limitation, RAM is available in many forms such as synchronous RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), Synchlink DRAM (SLDRAM), and direct Rambus RAM (DRRAM). Additionally, the disclosed memory components of systems or methods herein are intended to comprise, without being limited to comprising, these and any other suitable types of memory. -
[0092] Moreover, it will be noted that the disclosed subject matter can be practiced with other computer system configurations, comprising single-processor or multiprocessor computer systems, mini-computing devices, mainframe computers, as well as personal computers, hand-held computing devices (e.g., PDA, phone, smartphone, watch, tablet computers, netbook computers, etc.), microprocessor-based or programmable consumer or industrial electronics, and the like. The illustrated aspects can also be practiced in distributed computing environments where tasks are performed by remote processing devices that are linked through a communications network; however, some if not all aspects of the subject disclosure can be practiced on stand-alone computers. In a distributed computing environment, program modules can be located in both local and remote memory storage devices. -
[0093] In one or more embodiments, information regarding use of services can be generated including services being accessed, media consumption history, user preferences, and so forth. This information can be obtained by various methods including user input, detecting types of communications (e.g., video content vs. audio content), analysis of content streams, sampling, and so forth. The generating, obtaining and/or monitoring of this information can be responsive to an authorization provided by the user. In one or more embodiments, an analysis of data can be subject to authorization from user(s) associated with the data, such as an opt-in, an opt-out, acknowledgement requirements, notifications, selective authorization based on types of data, and so forth. -
[0094] Some of the embodiments described herein can also employ artificial intelligence (AI) to facilitate automating one or more features described herein. The embodiments (e.g., in connection with automatically identifying acquired cell sites that provide a maximum value/benefit after addition to an existing communication network) can employ various AI-based schemes for carrying out various embodiments thereof. Moreover, the classifier can be employed to determine a ranking or priority of each cell site of the acquired network. A classifier is a function that maps an input attribute vector, x=(x1, x2, x3, x4, . . . , xn), to a confidence that the input belongs to a class, that is, f(x)=confidence (class). Such classification can employ a probabilistic and/or statistical-based analysis (e.g., factoring into the analysis utilities and costs) to determine or infer an action that a user desires to be automatically performed. A support vector machine (SVM) is an example of a classifier that can be employed. The SVM operates by finding a hypersurface in the space of possible inputs, which the hypersurface attempts to split the triggering criteria from the non-triggering events. Intuitively, this makes the classification correct for testing data that is near, but not identical to training data. Other directed and undirected model classification approaches comprise, e.g., naïve Bayes, Bayesian networks, decision trees, neural networks, fuzzy logic models, and probabilistic classification models providing different patterns of independence can be employed. Classification as used herein also is inclusive of statistical regression that is utilized to develop models of priority. -
[0095] As will be readily appreciated, one or more of the embodiments can employ classifiers that are explicitly trained (e.g., via a generic training data) as well as implicitly trained (e.g., via observing UE behavior, operator preferences, historical information, receiving extrinsic information). For example, SVMs can be configured via a learning or training phase within a classifier constructor and feature selection module. Thus, the classifier(s) can be used to automatically learn and perform a number of functions, including but not limited to determining according to predetermined criteria which of the acquired cell sites will benefit a maximum number of subscribers and/or which of the acquired cell sites will add minimum value to the existing communication network coverage, etc. -
[0096] As used in some contexts in this application, in some embodiments, the terms “component,” “system” and the like are intended to refer to, or comprise, a computer-related entity or an entity related to an operational apparatus with one or more specific functionalities, wherein the entity can be either hardware, a combination of hardware and software, software, or software in execution. As an example, a component may be, but is not limited to being, a process running on a processor, a processor, an object, an executable, a thread of execution, computer-executable instructions, a program, and/or a computer. By way of illustration and not limitation, both an application running on a server and the server can be a component. One or more components may reside within a process and/or thread of execution and a component may be localized on one computer and/or distributed between two or more computers. In addition, these components can execute from various computer readable media having various data structures stored thereon. The components may communicate via local and/or remote processes such as in accordance with a signal having one or more data packets (e.g., data from one component interacting with another component in a local system, distributed system, and/or across a network such as the Internet with other systems via the signal). As another example, a component can be an apparatus with specific functionality provided by mechanical parts operated by electric or electronic circuitry, which is operated by a software or firmware application executed by a processor, wherein the processor can be internal or external to the apparatus and executes at least a part of the software or firmware application. As yet another example, a component can be an apparatus that provides specific functionality through electronic components without mechanical parts, the electronic components can comprise a processor therein to execute software or firmware that confers at least in part the functionality of the electronic components. While various components have been illustrated as separate components, it will be appreciated that multiple components can be implemented as a single component, or a single component can be implemented as multiple components, without departing from example embodiments. -
[0097] Further, the various embodiments can be implemented as a method, apparatus or article of manufacture using standard programming and/or engineering techniques to produce software, firmware, hardware or any combination thereof to control a computer to implement the disclosed subject matter. The term “article of manufacture” as used herein is intended to encompass a computer program accessible from any computer-readable device or computer-readable storage/communications media. For example, computer readable storage media can include, but are not limited to, magnetic storage devices (e.g., hard disk, floppy disk, magnetic strips), optical disks (e.g., compact disk (CD), digital versatile disk (DVD)), smart cards, and flash memory devices (e.g., card, stick, key drive). Of course, those skilled in the art will recognize many modifications can be made to this configuration without departing from the scope or spirit of the various embodiments. -
[0098] In addition, the words “example” and “exemplary” are used herein to mean serving as an instance or illustration. Any embodiment or design described herein as “example” or “exemplary” is not necessarily to be construed as preferred or advantageous over other embodiments or designs. Rather, use of the word example or exemplary is intended to present concepts in a concrete fashion. As used in this application, the term “or” is intended to mean an inclusive “or” rather than an exclusive “or”. That is, unless specified otherwise or clear from context, “X employs A or B” is intended to mean any of the natural inclusive permutations. That is, if X employs A; X employs B; or X employs both A and B, then “X employs A or B” is satisfied under any of the foregoing instances. In addition, the articles “a” and “an” as used in this application and the appended claims should generally be construed to mean “one or more” unless specified otherwise or clear from context to be directed to a singular form. -
[0099] Moreover, terms such as “user equipment,” “mobile station,” “mobile,” subscriber station,” “access terminal,” “terminal,” “handset,” “mobile device” (and/or terms representing similar terminology) can refer to a wireless device utilized by a subscriber or user of a wireless communication service to receive or convey data, control, voice, video, sound, gaming or substantially any data-stream or signaling-stream. The foregoing terms are utilized interchangeably herein and with reference to the related drawings. -
[0100] Furthermore, the terms “user,” “subscriber,” “customer,” “consumer” and the like are employed interchangeably throughout, unless context warrants particular distinctions among the terms. It should be appreciated that such terms can refer to human entities or automated components supported through artificial intelligence (e.g., a capacity to make inference based, at least, on complex mathematical formalisms), which can provide simulated vision, sound recognition and so forth. -
[0101] As employed herein, the term “processor” can refer to substantially any computing processing unit or device comprising, but not limited to comprising, single-core processors; single-processors with software multithread execution capability; multi-core processors; multi-core processors with software multithread execution capability; multi-core processors with hardware multithread technology; parallel platforms; and parallel platforms with distributed shared memory. Additionally, a processor can refer to an integrated circuit, an application specific integrated circuit (ASIC), a digital signal processor (DSP), a field programmable gate array (FPGA), a programmable logic controller (PLC), a complex programmable logic device (CPLD), a discrete gate or transistor logic, discrete hardware components or any combination thereof designed to perform the functions described herein. Processors can exploit nano-scale architectures such as, but not limited to, molecular and quantum-dot based transistors, switches and gates, in order to optimize space usage or enhance performance of user equipment. A processor can also be implemented as a combination of computing processing units. -
[0102] As used herein, terms such as “data storage,” data storage,” “database,” and substantially any other information storage component relevant to operation and functionality of a component, refer to “memory components,” or entities embodied in a “memory” or components comprising the memory. It will be appreciated that the memory components or computer-readable storage media, described herein can be either volatile memory or nonvolatile memory or can include both volatile and nonvolatile memory. -
[0103] What has been described above includes mere examples of various embodiments. It is, of course, not possible to describe every conceivable combination of components or methodologies for purposes of describing these examples, but one of ordinary skill in the art can recognize that many further combinations and permutations of the present embodiments are possible. Accordingly, the embodiments disclosed and/or claimed herein are intended to embrace all such alterations, modifications and variations that fall within the spirit and scope of the appended claims. Furthermore, to the extent that the term “includes” is used in either the detailed description or the claims, such term is intended to be inclusive in a manner similar to the term “comprising” as “comprising” is interpreted when employed as a transitional word in a claim. -
[0104] In addition, a flow diagram may include a “start” and/or “continue” indication. The “start” and “continue” indications reflect that the steps presented can optionally be incorporated in or otherwise used in conjunction with other routines. In this context, “start” indicates the beginning of the first step presented and may be preceded by other activities not specifically shown. Further, the “continue” indication reflects that the steps presented may be performed multiple times and/or may be succeeded by other activities not specifically shown. Further, while a flow diagram indicates a particular ordering of steps, other orderings are likewise possible provided that the principles of causality are maintained. -
[0105] As may also be used herein, the term(s) “operably coupled to”, “coupled to”, and/or “coupling” includes direct coupling between items and/or indirect coupling between items via one or more intervening items. Such items and intervening items include, but are not limited to, junctions, communication paths, components, circuit elements, circuits, functional blocks, and/or devices. As an example of indirect coupling, a signal conveyed from a first item to a second item may be modified by one or more intervening items by modifying the form, nature or format of information in a signal, while one or more elements of the information in the signal are nevertheless conveyed in a manner than can be recognized by the second item. In a further example of indirect coupling, an action in a first item can cause a reaction on the second item, as a result of actions and/or reactions in one or more intervening items. -
[0106] Although specific embodiments have been illustrated and described herein, it should be appreciated that any arrangement which achieves the same or similar purpose may be substituted for the embodiments described or shown by the subject disclosure. The subject disclosure is intended to cover any and all adaptations or variations of various embodiments. Combinations of the above embodiments, and other embodiments not specifically described herein, can be used in the subject disclosure. For instance, one or more features from one or more embodiments can be combined with one or more features of one or more other embodiments. In one or more embodiments, features that are positively recited can also be negatively recited and excluded from the embodiment with or without replacement by another structural and/or functional feature. The steps or functions described with respect to the embodiments of the subject disclosure can be performed in any order. The steps or functions described with respect to the embodiments of the subject disclosure can be performed alone or in combination with other steps or functions of the subject disclosure, as well as from other embodiments or from other steps that have not been described in the subject disclosure. Further, more than or less than all of the features described with respect to an embodiment can also be utilized.