WO2002093891A1 - Procede de telechargement dynamique de services vocaux dans des reseaux intelligents, et reseaux configures a l'aide dudit procede - Google Patents

Procede de telechargement dynamique de services vocaux dans des reseaux intelligents, et reseaux configures a l'aide dudit procede Download PDF

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Publication number
WO2002093891A1
WO2002093891A1 PCT/CN2002/000092 CN0200092W WO02093891A1 WO 2002093891 A1 WO2002093891 A1 WO 2002093891A1 CN 0200092 W CN0200092 W CN 0200092W WO 02093891 A1 WO02093891 A1 WO 02093891A1
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WO
WIPO (PCT)
Prior art keywords
voice
service
point
loading
configuration file
Prior art date
Application number
PCT/CN2002/000092
Other languages
English (en)
French (fr)
Inventor
Yihua Cheng
Mingyu Li
Junqing Bai
Lixin Hu
Original Assignee
Huawei Technologies Co., Ltd.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Huawei Technologies Co., Ltd. filed Critical Huawei Technologies Co., Ltd.
Priority to EP02703452A priority Critical patent/EP1309162B1/en
Priority to DE60223120T priority patent/DE60223120T2/de
Publication of WO2002093891A1 publication Critical patent/WO2002093891A1/zh
Priority to US10/310,302 priority patent/US7133505B2/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L69/00Network arrangements, protocols or services independent of the application payload and not provided for in the other groups of this subclass
    • H04L69/16Implementation or adaptation of Internet protocol [IP], of transmission control protocol [TCP] or of user datagram protocol [UDP]
    • H04L69/169Special adaptations of TCP, UDP or IP for interworking of IP based networks with other networks 
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L9/00Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols
    • H04L9/40Network security protocols
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M3/00Automatic or semi-automatic exchanges
    • H04M3/42Systems providing special services or facilities to subscribers
    • H04M3/487Arrangements for providing information services, e.g. recorded voice services or time announcements
    • H04M3/493Interactive information services, e.g. directory enquiries ; Arrangements therefor, e.g. interactive voice response [IVR] systems or voice portals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L69/00Network arrangements, protocols or services independent of the application payload and not provided for in the other groups of this subclass
    • H04L69/16Implementation or adaptation of Internet protocol [IP], of transmission control protocol [TCP] or of user datagram protocol [UDP]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M3/00Automatic or semi-automatic exchanges
    • H04M3/42Systems providing special services or facilities to subscribers
    • H04M3/50Centralised arrangements for answering calls; Centralised arrangements for recording messages for absent or busy subscribers ; Centralised arrangements for recording messages
    • H04M3/53Centralised arrangements for recording incoming messages, i.e. mailbox systems
    • H04M3/5322Centralised arrangements for recording incoming messages, i.e. mailbox systems for recording text messages

Definitions

  • the invention relates to a method for implementing dynamic loading of business voice on an intelligent network and its system networking.
  • SRF Specialized Resource Function
  • SMF Service Management Function
  • the voice editing system can generate recorded announcements or vocabulary. It is an offline tool that is completely separate from SRF.
  • voice notifications for intelligent services can be stored on the internal IP of an integrated SSP (Service Switching Point) or independent IP (Intelligent Peripheral).
  • SSP Service Switching Point
  • independent IP Intelligent Peripheral
  • the loading of business voice should be performed under the condition of the smallest business volume, and at this time the resource occupation rate is also the smallest.
  • SSP or IP location in the network it may be at the end office, or it may be at the tandem office, long distance office or international office. In this way, when a new service is launched, a large number of people and time will be required to synchronize the voice content in the voice boards in various places to ensure the consistency of the voice versions of all modules SSP or IP.
  • the loading method of the existing user's voice notification includes replacing or updating the board or chip storing the voice information, and loading the voice notification.
  • the process will affect the normal operation of the business, and these methods will lead to a corresponding increase in business operating costs.
  • the voice of most calling card services will not change frequently, and the voice can be loaded at the beginning of the service.
  • you want to open a service related to the business sponsor user such as V0T telephone voting service, MAS public call service, AD telephone advertising service, etc.
  • the independent IP of the SIP or the internal IP of the integrated SSP can ensure the smooth opening of the service. Therefore, the manner in which the user's voice notification is loaded into the independent IP or the internal IP of the integrated SSP affects the promotion and use of the service.
  • the existing loading methods for user voice notifications include replacing or updating the board or chip that stores voice information, and the normal operation of the service will be affected during the voice loading process. These methods will also increase the operating cost of the service .
  • the service voice related to the service sponsoring user should be uniformly configured to the relevant network voice Only the independent IP or the internal IP of the integrated SSP can ensure the smooth opening of the service. Therefore, the manner in which the user's voice notification is loaded into the independent IP or the internal IP of the integrated SSP affects the promotion of the service.
  • AD Advanced Driver Assistance, hereinafter referred to as AD
  • business users may need to modify business voices at any time.
  • the current user voice notification management method on the switch is used to add or delete voice notifications, it is conceivable that it is difficult to open such a service on a large-scale network.
  • managing these voice notifications on the switch is also very difficult to ensure the consistency of the voice version in each SSP module.
  • An object of the present invention is to provide a method for implementing dynamic loading of business voice on an intelligent network and a system networking thereof in order to overcome the limitation of the existing service voice loading mode.
  • the invention realizes the management of the user's voice notification resources by the SMF, solves the problem of difficult voice management, and facilitates the operator's business expansion and service maintenance.
  • a method for implementing dynamic loading of business voice on an intelligent network which is characterized in that a voice device Files and configuration files to scan for dynamic loading at any time according to the requirements of the configuration files; including the following steps:
  • SMAP service management access point
  • SSP service exchange point
  • the system dynamically loads itself according to the configuration of the configuration file.
  • the foregoing method for dynamically loading business voice on an intelligent network wherein the service management access point (SMAP) performs configuration of dynamically loading a configuration file according to three conditions: priority, resource occupation rate, and processing time.
  • SMAP service management access point
  • the priority refers to:
  • the system preferentially processes a configuration file with a higher priority.
  • the resource occupancy rate means that: the system starts a loading task when the occupancy rate of its playback resource channel is less than a certain value.
  • the foregoing method for implementing dynamic loading of business voice on an intelligent network wherein the processing time refers to a time allowed for a user to designate voice loading.
  • the above method for implementing dynamic loading of business voice on an intelligent network wherein the service voice includes service basic voice and service user voice; for loading of service user voice, only one type of service voice is allowed in one configuration file; and Service basic voice loading. Multiple profiles can be loaded in one configuration file.
  • the above method for implementing dynamic loading of business voice on an intelligent network wherein the above-mentioned processing of multiple voice devices at one time means that multiple service voices and loading of multiple voice devices can be simultaneously configured in one configuration file .
  • a system network for implementing dynamic loading of service voice includes: The system of the present invention includes: service Generation environment (SCE), service management point (SMP), service control point (SCP), service switching point (SSP (IP)) with intelligent peripherals, service switching point management module (SSP BAM), and service management interface Entry point
  • SCE service Generation environment
  • SMP service management point
  • SCP service control point
  • SSP service switching point
  • IP service switching point
  • SSP BAM service switching point management module
  • SMAP service generation environment
  • SMP service management point
  • SCP service control point
  • SSP service switching point
  • SSP BAM service switching point management module
  • SMP service management point
  • SSP BAM service management access point
  • IP devices can be integrated SSP built-in IP devices or stand-alone IP devices. No.
  • the service management point (SMP) includes a communication interface and a A message interface
  • a service switching point management module (SSP BAM) includes a communication interface
  • a service management access point (SMAP) includes a message interface
  • the service management point (SMP) and the service switching point management module (SSP BAM) ) Are linked through a communication interface, and information is transmitted according to the TCP / IP protocol
  • the service management point (SMP) and the service management access point (SMAP) are connected through a message interface, and information is transmitted according to the TCP / IP protocol .
  • the service switching point further includes multiple voice devices, and the selection of the voice device is set during configuration of a configuration file, and includes: Automatic announcement board (SPT board), voice processing platform (VP), and voice mailbox (VM) device with relay driving function.
  • SPT board Automatic announcement board
  • VP voice processing platform
  • VM voice mailbox
  • FIG. 1 is a schematic diagram of the network structure of the voice dynamic loading system of the present invention.
  • FIG. 2 is a schematic diagram of a speech processing structure of the present invention.
  • FIG. 3 is a flowchart of a voice dynamic loading method according to the present invention.
  • the invention implements a method for dynamically loading business voice on an intelligent network, which is implemented on an intelligent network.
  • a voice device scans a voice file and a configuration file to dynamically load the voice according to the requirements of the configuration file at any time. This dynamic loading enables automatic loading of voice files at specified times and conditions.
  • FIG. 1 is a schematic diagram of a network structure of a voice dynamic loading system according to the present invention.
  • the invention provides a system network for implementing dynamic loading of business voices, including: service generation environment 1 (hereinafter referred to as SCE), service management point 2 (hereinafter referred to as SMP), service control point 3 (hereinafter referred to as SCP), including intelligence Peripheral service exchange point 4 (hereinafter referred to as SSP (IP)), service exchange point management module 5 (hereinafter referred to as SSP BAM), And service management access point 6 (hereinafter referred to as SMAP); the service generation environment 1 (SCE), service management point 2 (SMP), service control point 3 (SCP), and service exchange point 4 with intelligent peripherals ( SSP (IP)) sequence link, service management point 2 (hereinafter referred to as SMP) is also linked with service switch point management module 5 (SSP BAM) and service management access point 6 (SMAP) respectively; service control point 3 ( SCP) and Service Switching Point 4 (
  • the service management point 2 (SMP) of the present invention includes a communication interface and a message interface
  • the service switching point management module 5 (SSP BAM) includes a communication interface
  • the service management access point 6 (SMAP) includes a message interface
  • the service management point (SMP) and the service exchange point post management module (SSP BAM) are linked through a communication interface, and information is transmitted according to the TCP / IP protocol
  • the service management point (SMP) and the service management access point ( SMAP) are linked through a message interface, and information is transmitted according to the TCP / IP protocol.
  • the dynamic loading of the voice file of the present invention includes the following steps:
  • SMAP service management access point
  • SSP service exchange point
  • the system dynamically loads itself according to the configuration of the configuration file.
  • the present invention implements this function by adding a protocol between an SMP (Service Management Point) and IP.
  • SMP Service Management Point
  • IP Intelligent Network Service Management System
  • the protocol information between IP and Intelligent Network Service Management System (SMS) mainly involves the management of voice files and voices, such as voice addition, update, and deletion.
  • SMS Intelligent Network Service Management System
  • the protocol between IP and SMS supports processing multiple configuration files. When one loading process is not over, SMS can send another configuration file and its voice file to IP.
  • IP receives a higher-priority configuration file H in the process of processing a dynamic voice file, if the configuration file A that is being processed has not yet started to be loaded, the ongoing load processing is suspended (the processing of the configuration file A is suspended), Go to the higher priority profile H.
  • the voice ID in the configuration file H should be checked to see if it exists in other configuration files with lower priority H (such as A, B, C, etc.).
  • the corresponding voice ID is deleted from the file (such as A, B, C, etc.), and it is not processed.
  • the dynamic loading of the user's voice notification is configured on the interface by the operator through SMAP (Service Management Agent Point service management access point), and is essentially handled by SMP (Service Management Point service management point).
  • SMP Service Management Point service management point.
  • SMP Service Management Point service management point
  • the service voice according to the present invention is divided into a service basic voice and a service user voice.
  • the dynamic loading management of these two voices is in different loading interfaces, which are controlled according to the operator's authority, and the processing methods are also slightly different.
  • For the loading of business user voices only one type of business voice is allowed in one configuration file; for the loading of basic voices of business, multiple types of business voices can be loaded in one configuration file.
  • SMAP configures the dynamic loading of the configuration file according to the following conditions.
  • the processing method allows the user to specify processing conditions. These conditions are: priority, resource occupation rate, and processing time.
  • the priority refers to; in the same case, the system preferentially processes the configuration file with a higher priority.
  • the resource occupancy rate refers to: The system starts a loading task when the occupancy rate of its playback resource channel is less than a certain value.
  • the processing time refers to the time allowed for the user to specify the voice loading.
  • FIG. 2 Please refer to FIG. 2 for a processing mode for implementing the voice loading of the present invention.
  • SP Many-to-many processing mode. This method contains two meanings. (1) One configuration file corresponds to multiple voices. Multiple voice devices for processing.
  • the voice device described in this embodiment is built into a service switching point (SSP), and its selection is set by the user according to the configuration of the configuration file. It includes: an automatic announcement board (SPT) with a relay-driven function Board), voice processing platform (VP), and voice mailbox (VM) devices.
  • SPT automatic announcement board
  • VP voice processing platform
  • VM voice mailbox
  • the voice files and configuration files are transmitted to the voice resource device by SMS using the file transfer protocol (FTP tool), and the voice files and configuration files are scanned by the voice device to be dynamically loaded at any time according to the requirements of the configuration file.
  • FTP tool file transfer protocol
  • the processing status of the speech should be obtained.
  • the initial state is "unknown", that is, when the user has not selected For any voice device, the voice status is "Unknown”.
  • the service voice loading of the present invention can be automatically performed by the system by setting loading conditions and configuration files; the service voice can be managed by SMS, not only through the switch; the service voice loading does not affect the operation of the service; the service voice loading does not have to be Perform hardware operations; and have "many-to-many," characteristics.
  • the invention has been tested and can support the following functions when the voice is dynamically loaded:

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  • Signal Processing (AREA)
  • Computer Security & Cryptography (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Telephonic Communication Services (AREA)
  • Mobile Radio Communication Systems (AREA)
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Description

在智能网上实现业务语音动态加载的方法及其系统组网 技术领域
本发明涉及在智能网上实现业务语音动态加载的方法及其系统组网。
背景技术
智能业务运行过程中是需要业务语音通知支持的, 这些业务的语音通知可以 是业务和用户专用的, 也可以是几个业务共用的。用户通过语音通知的提示进行各 种的选择和操作。 业务的语音通知属于 SRF (Specialized Resource Function专 用资源功能)的专用资源之一,同时 SRF还提供对资源的管理。 SRF受 SMF (Service Management Function业务管理功能) 管理, 而且 SMF在任何情况下都是在其他功 能实体的请求下工作的, 而不会自己激活。 目前由于 SRF与 SMF之间的标准接口尚 未存在, 因此 SMF对 SRF还没有实质的管理关系存在。 由于为综合的 SRF, 因此它 的操作、 管理和维护应为整个交换机的操作、 管理和维护的一部分。可通过各种各 样的操作员命令实现:
(1)增加或删除已存在的业务的录音通知。
(2)语音编辑系统可生成录音通知或词汇, 它是一个与 SRF完全分离的 offline的工具。
(3)只要 SRF存储器有剩余的容量, 就可以在不影响交换机呼叫处理能力的情 况下增加语音元素。
(4)综合 SRF的硬件扩展方法同交换机系统中已存在的方法。
目前智能业务的语音通知可以存放在综合 SSP (Service Switching Point业 务交换点)的内部 IP或者独立 IP ( Intelligent Peripheral 智能外设) 上, 加 载方式很多种, 但是都需要用户进行较多干预和手工操作。业务语音的加载应该是 在业务量最小的情况下进行的, 同时这时的资源占用率也是最小的。 但是由于 SSP 的或者 IP在网络中的位置可能是在端局, 也可能在汇接局、 长途局或国际局。 这 样开通一个新业务时,就会需要大量的人员和时间来同步更新各地的语音单板中的 语音内容, 以保证所有模块 SSP的或者 IP上语音版本的一致性。 现有的用户语音 通知的加载方式有更换或是更新存储有语音信息的单板或是芯片,并且在语音加载 过程中会影响业务的正常运行, 这些方式导致业务的运营成本也会相应的增加。 在现有的智能网或其它的智能平台运行过程中, 大部分电话卡业务的语音是 不会经常变化的, 可以在业务开通之初就把语音加载完毕。但是当要开通一个和业 务主办用户相关的业务(如 V0T电话投票业务、 MAS大众呼叫业务、 AD电话广告业 务等)时,应先将和该业务主办用户相关的业务语音统一配置到网中相关的独立 IP 或综合 SSP的内部 IP中, 才能保证该业务的顺利开通。 因此用户语音通知的加载 到独立 IP或综合 SSP的内部 IP中的方式就影响到了业务的推广使用。
现有的用户语音通知的加载方式有更换或是更新存储有语音信息的单板或是 芯片, 并且在语音加载过程中会影响业务的正常运行, 这些方式导致业务的运营成 本也会相应的增加。
当要开通一个和业务主办用户相关的业务(如 V0T电话投票业务、 MAS大众呼 叫业务、 AD 电话广告业务等) 时, 应先将和该业务主办用户相关的业务语音统一 配置到网中相关的独立 IP或综合 SSP的内部 IP中, 才能保证该业务的顺利开通。 因此用户语音通知的加载到独立 IP或综合 SSP的内部 IP中的方式就影响到了业务 的推广。
随着智能网业务的迅猛发展, 业务的变化也日益增多。但是目前的业务语音加 载的方式限制了一些新业务的迅速开展和业务的变化, 如 AD (广告业务 Advertisement, 以下简称 AD) 业务中, 根据 AD业务的业务特征, 业务用户可能 随时需要修改业务语音,如果采用目前的用户语音通知在交换机上的管理方式来增 删语音通知的话, 在较大规模网络上开通这样一个业务的艰难是可想而知的。 同时 在交换机上管理这些语音通知,在保证各个 SSP模块中的语音版本的一致性上也是 十分困难的。
发明内容
本发明的目的是为了克服现有业务语音加载的方式限制而提供的一种在智能 网上实现业务语音动态加载的方法及其系统组网。本发明实现了 SMF对用户语音通 知资源的管理, 解决了语音管理困难的问题, 便于运营商业务的幵展和业务的维 护。
为了实现本发明的目的, 本发明采用的技术方案是:
在智能网上实现业务语音动态加载的方法, 其特征在于, 由语音设备对语音文 件和配置文件进行扫描以随时按照配置文件的需求来进行动态的加载;包括以下步 骤:
a、 将需动态加载的业务语音编辑成业务语音文件;
b、 通过载体将需动态加载的业务语音文件置于业务管理点 (SMP )相应目 录中;
c、 按用户需要在业务管理接入点 (SMAP ) 上对语音的动态加载进行配置 文件的配置;
d、 按用户需要在业务管理接入点 (SMAP ) 上执行命令传送语音动态加载 的配置文件和业务语音文件到业务交换点 (SSP ) 的维护台上去;
e、 系统根据配置文件的配置自行进行动态加载。
上述在智能网上实现业务语音动态加载的方法, 其中, 所述的业务管理接入 点 (SMAP ) 根据优先级、 资源占用率、 以及处理时间三个条件来进行语音动态 加载配置文件的配置。
上述在智能网上实现业务语音动态加载的方法, 其中, 所述的优先级是指: 在同等情况下, 系统优先对优先级别较高的配置文件进行处理。
上述在智能网上实现业务语音动态加载的方法, 其中,所述的资源占用率是 指: 系统在其放音资源通道占用率小于某个数值时开始加载任务。
上述在智能网上实现业务语音动态加载的方法, 其中, 所述的处理时间是 指允许用户指定进行语音加载的时间。
上述在智能网上实现业务语音动态加载的方法, 其中, 所述的业务语音包 括业务基本语音和业务用户语音; 对于业务用户语音的加载, 一个配置文件中 只允许一种业务语音的加载; 而对于业务基本语音的加载, 一个配置文件中可 以允许多种业务语音的加载。
上述在智能网上实现业务语音动态加载的方法, 其中, 所述的一个配置文件 可对应多条语音。
上述在智能网上实现业务语音动态加载的方法, 其中, 所述的一次可以对 多个语音设备进行处理指的是在一个配置文件中可以同时配置对多条业务语 音和对多个语音设备的加载。
一种用于实现业务语音动态加载的系统组网, 包括: 本发明系统包括: 业务 生成环境 (SCE) 、 业务管理点 (SMP) 、 业务控制点 (SCP) 、 含智能外设的业务 交换点 (SSP (IP) ) 、 业务交换点后管理模块 (SSP BAM) 、 以及业务管理接入点
(SMAP) ; 其中, 业务生成环境(SCE)、业务管理点(SMP)、业务控制点(SCP) 、 含智能外设的业务交换点 (SSP (IP) ) 、 业务交换点后管理模块 (SSP BAM) 顺序链 接, 业务管理点 (SMP) 还同时分别与业务交换点后管理模块 (SSP BAM) 、 以及业 务管理接入点 (SMAP) 链接。 IP设备可以是综合 SSP内置 IP设备或是独立 IP 设备。 业务控制点 (SCP) 与含智能外设的业务交换点 (SSP (IP) ) 之间通过 No. 7 信令系统来传递信令; 所述的业务管理点 (SMP) 包括一通信接口和一消息接口, 业务交换点后管理模块 (SSP BAM) 包括一通信接口, 业务管理接入点 (SMAP) 包 括一消息接口; 所述的业务管理点 (SMP) 与业务交换点后管理模块 (SSP BAM) 之 间通过通信接口链接, 并根据 TCP/IP协议传输信息; 所述的业务管理点(SMP)与 业务管理接入点 (SMAP) 之间通过消息接口链接, 并根据 TCP/IP协议传输信息。
上述用于实现业务语音动态加载的系统组网, 其中, 所述的业务交换点还包 括多个语音设备, 所述语音设备的选择是在对配置文件的配置时设定的, 其包括: 具有中继驱动功能的自动报音板(SPT单板)、语音处理平台(VP)和语音邮箱(VM) 设备。
附图概述
本发明的具体性能、 特征由以下的实施例及其附图进一步说明。
图 1是本发明的语音动态加载系统组网结构示意图。
图 2是本发明语音处理结构示意图。
图 3是本发明语音动态加载的流程图。
本发明的最佳实施方式
本发明在智能网上实现业务语音动态加载的方法,在智能网上实现, 由语音设 备对语音文件和配置文件进行扫描以随时按照配置文件的需求来进行语音动态的 加载。 这种动态加载实现在指定的时间和条件下对语音文件的自动加载。
请参见图 1, 这是本发明的语音动态加载系统组网结构示意图。本发明一种用 于实现业务语音动态加载的系统组网, 包括: 业务生成环境 1 (以下简称 SCE) 、 业务管理点 2 (以下简称 SMP) 、 业务控制点 3 (以下简称 SCP) 、 含智能外设的业 务交换点 4 (以下简称 SSP (IP) )、业务交换点后管理模块 5 (以下简称 SSP BAM) 、 以及业务管理接入点 6 (以下简称 SMAP) ; 所述的业务生成环境 1 (SCE) 、 业务 管理点 2 (SMP) 、 业务控制点 3 (SCP) 、 含智能外设的业务交换点 4 (SSP (IP) ) 顺序链接, 业务管理点 2 (以下简称 SMP) 还同时分别与业务交换点后管理模块 5 (SSP BAM) 、 以及业务管理接入点 6 (SMAP) 链接; 业务控制点 3 (SCP) 与含智 能外设的业务交换点 4 (SSP (IP) ) 之间通过 No. 7信令系统来传递信令。 本发明业 务管理点 2 (SMP) 包括一通信接口和一消息接口, 业务交换点后管理模块 5 (SSP BAM) 包括一通信接口, 业务管理接入点 6 (SMAP) 包括一消息接口; 所述的业务 管理点 (SMP) 与业务交换点后管理模块 (SSP BAM) 之间通过通信接口链接, 并根 据 TCP/IP协议传输信息; 所述的业务管理点 (SMP)与业务管理接入点 (SMAP)之 间通过消息接口链接, 并根据 TCP/IP协议传输信息。
本发明语音文件动态加载包括以下步骤:
a、 将需动态加载的业务语音编辑成业务语音文件;
b、 通过载体将需动态加载的业务语音文件置于业务管理点 (SMP)相应目 录中;
c、 按用户需要在业务管理接入点 (SMAP) 上对语音的动态加载进行配置 文件的配置;
d、 按用户需要在业务管理接入点 (SMAP ) 上执行命令传送语音动态加载 的配置文件和业务语音文件到业务交换点 (SSP) 的维护台上去;
e、 系统根据配置文件的配置自行进行动态加载。
从图 1 中可以看出, 本发明是通过增加 SMP (Service Management Point 业 务管理点) 与 IP之间的协议实现此功能的。 IP与智能网业务管理系统 (SMS) 之 间的协议信息主要涉及对语音文件和语音的管理, 如语音的增加、 更新、 删除等。 IP与 SMS之间的协议支持处理多个配置文件, 当一次加载过程没有结束时, SMS可 以向 IP下发另一配置文件及其语音文件。 IP在处理动态语音文件的过程中, 又收 到优先级更高的配置文件 H时, 如果正在处理的配置文件 A还没有开始加载, 则中 止正在进行的加载处理(中止处理配置文件 A), 去处理优先级更高的配置文件 H。 在处理更高优先级的配置文件 H时, 应检査其中的语音 ID, 在优先级 H更低的其 他配置文件 (如 A、 B、 C等) 中是否存在, 如果存在, 则在这些配置文件 (如 A、 B、 C等) 中删除相应语音 ID, 对其不作处理。 用户语音通知的动态加载是操作员通过 SMAP (Service Management Agent Point业务管理接入点)在界面上进行配置的,实质上是由 SMP(Service Management Point业务管理点) 来进行操作处理的, SMP会把语音文件以及配置文件传送给交 换机, 由交换机随时进行对配置文件的扫描, 这样就可以根据配置文件的配置来进 行相应的语音通知的加载。
本发明所述的业务语音分为业务基本语音和业务用户语音, 对于这两种语 音的动态加载管理处于不同的加载界面, 根据操作员的权限进行控制, 同时处 理方式也略有差别。 对于业务用户语音的加载, 一个配置文件中只允许一种业 务语音的加载; 而对于业务基本语音的加载, 一个配置文件中可以允许多种业 务语音的加载。
对于配置文件的处理, SMAP是根据以下的条件来进行语音动态加载配置文件 的配置, 处理方式允许用户指定处理条件, 这些条件有: 优先级、 资源占用率、 处 理时间。 所述的优先级是指; 在同等情况下, 系统优先对优先级别较高的配置 文件进行处理。 所述的资源占用率是指: 系统在其放音资源通道占用率小于某 个数值时开始加载任务。所述的处理时间是指允许用户指定进行语音加载的时 间。
实现本发明的语音加载的处理模式请参见图 2。在新的业务需求中, 要求提高 语音的处理效率, SP : 多对多处理模式, 这种方式包含了两方面的含义, (1)一个配 置文件对应多个语音; (2) —次可以对多个语音设备进行处理。
本实施例所述的语音设备是内置在业务交换点 (SSP) 内的, 其选择是用 户根据配置文件的配置而设定的, 其包括: 具有中继驱动功能的自动报音板 ( SPT单板) 、 语音处理平台 (VP) 和语音邮箱 (VM) 设备。
语音文件和配置文件是由 SMS利用文件传输协议 (FTP工具)传送到语音资源 设备的,并且由语音设备对语音文件和配置文件进行扫描以便随时按照配置文件的 需求来进行动态的加载。在整个过程中, 对语音的处理存在着四种状态, 其流程如 图 3所示。 在对语音处理后, 应能获得语音的处理状态, 语音的处理状态有四种选 择: 未知、 已加载、 未加载和等待处理, 其初始状态为 "未知,, , 即: 在用户没 有选定任何语音设备时, 语音状态为 "未知" 。 考虑到配置文件执行条件的差 异, 当用户在 SMAP执行完语音加载处理操作后, 得到的结果是 "已加载" 、 "未加载"和 "等待处理"三种状态的集合。 当配置文件规定的加载条件均满 足时, 系统执行配置文件。 这时如果执行配置文件加载语音成功, 则此语音的 状态会由 "等待处理"状态转换到 "己加载" 。 如果语音加载不成功, 则此语 音的状态会由 "等待处理"状态转换到 " 未加载"状态。 所以, 加载通过 SMAP 界面给用户提供了语音处理状态査询功能, 可以进行实时监控语音动态加载状 态。
工业应用性
本发明业务语音加载可以通过设定加载条件、 配置文件, 由系统自动执行; 业务语音可以由 SMS进行管理, 而不仅仅是通过交换机; 业务语音加载时不影响业 务的运行; 业务语音的加载不必进行硬件的操作; 且具有 "多对多,, 特性。
本发明经试验, 在语音动态加载时能对以下功能支持:
1)支持语音的增加、 替换、 删除;
2)支持删除语音设备上特定的配置文件;
3)支持对语音的批量处理;
4)支持对语音设备的批量处理;
5)支持对语音加载状态的查询;
6)支持根据指定的文件的进行加载。

Claims

权 利 要 求
1、 在智能网上实现业务语音动态加载的方法, 其特征在于, 由语音设备对语音 文件和配置文件进行扫描以随时按照配置文件的需求来进行动态的加载;包括以下 步骤:
a、 将需动态加载的业务语音编辑成业务语音文件;
b、 通过载体将需动态加载的业务语音文件置于业务管理点相应目录中; c、 按用户需要在业务管理接入点上对语音的动态加载进行配置文件的配 置;
d、 按用户需要在业务管理接入点执行命令, 传送语音动态加载的配置文 件和业务语音文件到业务交换点的维护台;
e、 系统根据配置文件的配置自行进行动态加载。
2、 根据权利要求 1 所述的在智能网上实现业务语音动态加载的方法, 其特征 在于, 所述的业务管理接入点根据优先级、 资源占用率、 已以及处理时间三个 条件来进行语音动态加载配置文件的配置。
3、 根据权利要求 2 所述的在智能网上实现业务语音动态加载的方法, 其特征 在于, 所述的优先级是指: 在同等情况下, 系统优先对优先级别较高的配置文 件进行处理。
4、 根据权利要求 2 所述的在智能网上实现业务语音动态加载的方法, 其特征 在于, 所述的资源占用率是指: 系统在其放音资源通道占用率小于某个数值时 开始加载任务。
5、 根据权利要求 2所述的在智能网上实现业务语音动态加载的方法, 其特征 在于, 所述的处理时间是指允许用户指定进行语音加载的时间。
6、 根据权利要求 1所述的在智能网上实现业务语音动态加载的方法, 其特征 在于, 所述的业务语音分为业务基本语音和业务用户语音; 对于业务用户语音 的加载, 一个配置文件中只允许一种业务语音的加载; 而对于业务基本语音的 加载, 一个配置文件中可以允许多种业务语音的加载。
7、 根据权利要求 1所述的在智能网上实现业务语音动态加载的方法, 其特征 在于, 所述的一个配置文件可对应多条语音。
8、 根据权利要求 1所述的在智能网上实现业务语音动态加载的方法, 其特征 在于, 所述的一次可以对多个语音设备进行处理指的是在一个配置文件中可以 同时配置对多条业务语音和对多个语音设备的加载。
9、 一种用于实现业务语音动态加载的系统组网, 包括: 业务生成环境、 业务管 理点、 业务控制点、 含智能外设的业务交换点、 业务交换点后管理模块、 以及业务 管理接入点; 所述的业务生成环境、 业务管理点、 业务控制点、 含智能外设的业务 交换点、 业务交换点顺序链接, 还同时分别与业务交换点后管理模块、 以及业务管 理接入点链接; 业务控制点与含智能外设的业务交换点之间通过 No. 7信令系统来 传递信令; 其特征在于, 所述的业务管理点包括一通信接口和一消息接口, 业务交 换点后管理模块包括一通信接口, 业务管理接入点包括一消息接口; 所述的业务管 理点与业务交换点后管理模块之间通过通信接口链接, 并根据 TCP/IP协议传输信 息; 所述的业务管理点与业务管理接入点之间通过消息接口链接, 并根据 TCP/IP 协议传输信息。
10、 根据权利要求 9所述的用于实现业务语音动态加载的系统组网, 其特征在 于, 所述的业务交换点还包括多个语音设备, 所述语音设备的选择是在对配置 文件的配置时设定的, 其包括: 具有中继驱动功能的自动报音板、 语音处理平 台和语音邮箱设备。
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