WO2022126789A1 - 光纤坐席系统中的键盘灯同步方法、系统及存储介质 - Google Patents

光纤坐席系统中的键盘灯同步方法、系统及存储介质 Download PDF

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WO2022126789A1
WO2022126789A1 PCT/CN2020/141936 CN2020141936W WO2022126789A1 WO 2022126789 A1 WO2022126789 A1 WO 2022126789A1 CN 2020141936 W CN2020141936 W CN 2020141936W WO 2022126789 A1 WO2022126789 A1 WO 2022126789A1
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optical fiber
keyboard
keyboard light
sending
mouse
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PCT/CN2020/141936
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English (en)
French (fr)
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陈日强
陈昶
廖智海
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威创集团股份有限公司
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Publication of WO2022126789A1 publication Critical patent/WO2022126789A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F11/00Error detection; Error correction; Monitoring
    • G06F11/30Monitoring
    • G06F11/32Monitoring with visual or acoustical indication of the functioning of the machine
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/02Input arrangements using manually operated switches, e.g. using keyboards or dials

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  • the invention relates to the technical field of remote keyboard transmission, and more particularly, to a keyboard light synchronization method, system and storage medium in an optical fiber seat system.
  • the user can control one person and multiple machines in one seat through a set of keyboard and mouse operations, but when the PC signal source is inconsistent with the keyboard light of the keyboard connected to the fiber receiving box, or when When the mouse roams across multiple screens and the keyboard lights on the front and back two screens controlled are inconsistent, the keyboard input value will be contrary to what the user expects, which greatly reduces the user experience.
  • the keyboard and mouse messages are unidirectionally transmitted from the fiber optic receiving box to the fiber optic sending box, so the fiber optic receiving box will not know the keyboard of the optical fiber sending box connected to the PC signal source. Therefore, it cannot be guaranteed that the state of the keyboard light of the optical fiber sending box connected to the PC signal source is consistent with the light state of the keyboard connected to the optical fiber receiving box.
  • the present invention aims to overcome at least one defect (deficiency) of the above-mentioned prior art, and provides a keyboard light synchronization method, system and storage medium in a fiber optic seat system, which are used to solve the problem that the keyboard lights in a non-IP fiber optic seat system are not
  • the synchronization problem further improves the user experience of agent control.
  • a keyboard light synchronization method in an optical fiber seat system includes the following steps:
  • the optical fiber receiving box connected with the keyboard and the mouse obtains and saves the initial state data of the keyboard light of the keyboard and the initial position information of the mouse roaming;
  • the optical fiber receiving box connected with the keyboard and mouse judges whether the real-time keyboard light status data of the keyboard has changed, if so, saves the current keyboard light status data, and sends the saved keyboard light status data to one or more optical fiber sending boxes. If no, judge whether the real-time roaming position information of the mouse has changed. If so, save the current mouse roaming position information, and then send the saved keyboard light status data to one or more optical fiber sending boxes. If not, save the saved keyboard light status data. Status data is sent to one or more optical fiber sending boxes;
  • the one or more optical fiber sending boxes obtain and save the keyboard light state data of the PC signal source, and trigger the keyboard light state change signal;
  • the one or more optical fiber sending boxes receive the keyboard light state data of the optical fiber receiving box and save it, and trigger the keyboard light state change signal;
  • the one or more optical fiber sending boxes When the one or more optical fiber sending boxes trigger the keyboard light status change signal, the one or more optical fiber sending boxes compare the keyboard light status data of the PC signal source and the keyboard light status data of the optical fiber receiving box to see if they are consistent, if No, the one or more optical fiber sending boxes send the press and pop-up events of the keys corresponding to the inconsistent keyboard light status data to the PC signal source, so that the PC signal source and the keyboard lights of the optical fiber receiving box are synchronized. PC source for other synchronization operations.
  • keyboard light state data includes the keyboard light states of "caps lock”, “scroll lock” and "num lock”.
  • the specific steps of the described optical fiber sending box sending the pressing and pop-up events of the keys corresponding to the inconsistent keyboard light status data to the PC signal source include:
  • the above steps of judging the keyboard light states of "caps lock”, “scroll lock” and “num lock” can be arbitrarily set to execute steps in actual execution, and the sequence of execution steps does not affect the execution effect.
  • the mouse roaming position information is the device ID of the optical fiber sending box where the mouse roaming position is located.
  • optical fiber sending box is connected to the PC signal source through the USB transmission line, and obtains and saves the keyboard light state of the PC signal source.
  • the described optical fiber receiving box connected with the keyboard and the mouse sends the saved keyboard light status data to one or more optical fiber sending boxes.
  • the keyboard light status data is packaged, marked as keyboard light synchronization events, and sent to one or more optical fiber sending boxes.
  • a keyboard light synchronization system in an optical fiber seat system wherein the seat system includes a keyboard, a mouse, an optical fiber receiving box, an optical fiber sending box, a PC signal source and a display,
  • the keyboard and the mouse are connected to the optical fiber receiving box
  • the PC signal source is connected to the optical fiber sending box
  • the PC signal source receives the keyboard and mouse messages through the optical fiber receiving box or the optical fiber sending box to control the display.
  • the optical fiber receiving box connected with the keyboard and the mouse includes:
  • the first receiving module is used to obtain and save the initial state data of the keyboard light of the keyboard and the initial position of the mouse roaming;
  • the status detection module is used to detect the real-time roaming position of the mouse and the real-time keyboard light status data of the keyboard;
  • the first sending module is used for sending the saved keyboard light status data to one or more optical fiber sending boxes when the status detection module detects that the mouse roaming position or the keyboard light status data of the keyboard changes;
  • the optical fiber sending box includes:
  • the second receiving module is used to receive the data from the PC signal source or the optical fiber receiving box;
  • the keyboard light state change signal trigger module is used to trigger the keyboard light state change signal when receiving the keyboard light state data from the PC signal source or the optical fiber receiving box;
  • the comparison module is used to compare the PC signal source received by the receiving module two and the state of the keyboard light of the optical fiber receiving box when the optical fiber sending box triggers the state change signal of the keyboard light;
  • the second sending module is used to send the pressing and pop-up events of the keys corresponding to the inconsistent keyboard light status data to the PC signal source when the keyboard light status data of the PC signal source is inconsistent with the keyboard light status data of the optical fiber receiving box.
  • optical fiber receiving box connected with the keyboard and the mouse also includes:
  • the packaging and marking module is used to package the keyboard light status data and mark it as a keyboard light synchronization event when the sending module sends the saved keyboard light status data to one or more optical fiber sending boxes.
  • another technical solution of the present invention is a computer device, comprising a memory and a processor, the memory stores a computer program, and the processor implements the above-mentioned optical fiber agent system when executing the computer program The steps in the keyboard light synchronization method.
  • another technical solution of the present invention is a storage medium on which a computer program is stored, and when the computer program is executed by a processor, the steps of the above-mentioned method for synchronizing keyboard lights in an optical fiber seat system are realized. .
  • the present invention provides a non-IP optical fiber seat system, in the case of one-way transmission of keyboard and mouse messages, through a simple optical fiber receiving box and optical fiber sending box to the keyboard.
  • the interactive processing of light status data makes the status of the keyboard light of the connected PC signal source consistent with the keyboard light status of the keyboard connected to the locally operated optical fiber receiving box, and solves the problem that the keyboard light of the non-IP optical fiber KVM agent system is not synchronized. to further improve the user experience of agent control.
  • FIG. 1 is a flowchart of a method according to Embodiment 1 of the present invention.
  • FIG. 2 is a schematic structural diagram of a seat system according to Embodiment 2 of the present invention.
  • FIG. 3 is a schematic structural diagram of an optical fiber receiving box connected to a keyboard and a mouse according to Embodiment 2 of the present invention.
  • FIG. 4 is a schematic structural diagram of an optical fiber sending box according to Embodiment 2 of the present invention.
  • This embodiment provides a method for synchronizing keyboard lights in an optical fiber seat system, including the following steps:
  • the optical fiber receiving box connected with the keyboard and the mouse obtains and saves the initial state data of the keyboard light of the keyboard and the initial position information of the mouse roaming;
  • the optical fiber receiving box connected with the keyboard and mouse judges whether the real-time keyboard light status data of the keyboard has changed, if so, saves the current keyboard light status data, and sends the saved keyboard light status data to one or more optical fiber sending boxes. No, judge whether the real-time roaming position information of the mouse has changed, if so, send the saved keyboard light status data to one or more optical fiber sending boxes, if not, save the current mouse roaming position, and then send the saved keyboard light status The data is sent to one or more optical fiber sending boxes;
  • the one or more optical fiber sending boxes obtain and save the keyboard light state data of the PC signal source, and trigger the keyboard light state change signal;
  • the one or more optical fiber sending boxes receive the keyboard light state data of the optical fiber receiving box and save it, and trigger the keyboard light state change signal;
  • the one or more optical fiber sending boxes compare the keyboard light status data of the PC signal source and the keyboard light status data of the optical fiber receiving box to see if they are consistent, if No, the optical fiber sending box sends the press and pop-up events of the keys corresponding to the inconsistent keyboard light status data to the PC signal source to synchronize the PC signal source and the keyboard light of the optical fiber receiving box. If so, no other synchronization is performed on the PC signal source. operate.
  • keyboard light state data includes the keyboard light states of "caps lock”, “scroll lock” and "num lock”.
  • the specific steps of the described optical fiber sending box sending the pressing and pop-up events of the keys corresponding to the inconsistent keyboard light status data to the PC signal source include:
  • the mouse roaming position information is the device ID of the optical fiber sending box where the mouse roaming position is located.
  • optical fiber sending box is connected to the PC signal source through the USB transmission line, and obtains and saves the keyboard light state of the PC signal source.
  • the described optical fiber receiving box connected with the keyboard and the mouse sends the saved keyboard light status data to one or more optical fiber sending boxes.
  • the keyboard light status data is packaged, marked as keyboard light synchronization events, and sent to one or more optical fiber sending boxes.
  • a method for synchronizing keyboard lights in an optical fiber seat system the specific steps are:
  • the optical fiber receiving box connected with the keyboard and the mouse obtains and saves the initial state data of the keyboard light of the keyboard and the initial position information of the mouse roaming;
  • the optical fiber receiving box connected with the keyboard and the mouse judges whether the real-time keyboard light status data of the keyboard changes, if so, execute steps S22 and S23, if not, execute step S24;
  • step S24 the optical fiber receiving box connected with the keyboard and the mouse judges whether the real-time roaming position information of the mouse changes; if so, execute step S25, then execute S23, if not, execute S23;
  • the one or more optical fiber sending boxes obtain and save the keyboard light state data of the PC signal source, and trigger the keyboard light state change signal;
  • the one or more optical fiber sending boxes receive the keyboard light state data of the optical fiber receiving box and save it, and trigger the keyboard light state change signal;
  • the one or more optical fiber sending boxes send the pressing and pop-up events of the keys corresponding to the inconsistent keyboard light state data to the PC signal source.
  • this embodiment provides a keyboard light synchronization system in an optical fiber seat system.
  • the seat system includes a keyboard, a mouse, an optical fiber receiving box, an optical fiber sending box, a PC signal source, and a display.
  • the keyboard and mouse is connected with the optical fiber receiving box
  • the PC signal source is connected with the optical fiber sending box
  • the PC signal source controls the display screen by receiving keyboard and mouse messages through the optical fiber receiving box or the optical fiber sending box,
  • the optical fiber receiving box connected with the keyboard and the mouse includes:
  • the state detection module 2 is used to detect the real-time roaming position of the mouse and the real-time keyboard light state data of the keyboard;
  • the sending module one 3 is used to send the saved keyboard light state data to one or more optical fiber sending boxes when the state detection module 2 detects that the mouse roaming position or the keyboard light state data of the keyboard changes;
  • optical fiber receiving box connected with the keyboard and the mouse also includes:
  • the packaging and marking module 4 is used to package the keyboard light status data and mark it as a keyboard light synchronization event when the sending module 1 sends the saved keyboard light status data to one or more optical fiber sending boxes.
  • the optical fiber sending box includes:
  • the receiving module 2 5 is used to receive the data of the PC signal source or the optical fiber receiving box;
  • the keyboard light state change signal trigger module 6 is used to trigger the keyboard light state change signal when receiving the keyboard light state data of the PC signal source or the optical fiber receiving box;
  • the comparison module 7 is used to compare the PC signal source received by the receiving module 2 and the state of the keyboard light of the optical fiber receiving box when the optical fiber sending box triggers the keyboard light state change signal;
  • the sending module 28 is used to send the pressing and pop-up events of the keys corresponding to the inconsistent keyboard light status data to the PC signal source when the keyboard light status data of the PC signal source is inconsistent with the keyboard light status data of the optical fiber receiving box.
  • a computer device includes a memory and a processor, the memory stores a computer program, and the processor implements the above-mentioned optical fiber when executing the computer program The steps of the keyboard light synchronization method in the agent system.
  • another technical solution provided by this embodiment is a storage medium storing a computer program thereon, and when the computer program is executed by a processor, realizes the above-mentioned method for synchronizing keyboard lights in an optical fiber seat system A step of.

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Abstract

一种光纤坐席系统中的键盘灯同步方法、系统及存储介质,其中方法包括:与键盘、鼠标相连的光纤接收盒获取并保存键盘的键盘灯初始状态数据以及鼠标漫游的初始位置信息;光纤接收盒判断键盘的实时键盘灯状态数据是否发生变化,以及判断鼠标实时漫游位置信息是否发生变化;光纤发送盒获取并保存PC信号源的键盘灯状态数据或接收到光纤接收盒的键盘灯状态数据并保存,触发键盘灯状态变化信号;当触发键盘灯状态变化信号时,光纤发送盒比对PC信号源的键盘灯状态数据与光纤接收盒的键盘灯状态数据是否一致,若否,光纤发送盒发送不一致的键盘灯状态数据所对应按键的按下和弹起事件至PC信号源。本发明解决了坐席系统中的键盘灯不同步的问题,进一步提升用户对坐席控制的使用体验。

Description

光纤坐席系统中的键盘灯同步方法、系统及存储介质
本申请要求于2020年12月15日提交中国专利局、申请号为202011480023.9、发明名称为“光纤坐席系统中的键盘灯同步方法、系统及存储介质”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及远程键盘传输技术领域,更具体地,涉及一种光纤坐席系统中的键盘灯同步方法、系统及存储介质。
背景技术
在非IP的光纤KVM坐席系统中,用户在一个席位可通过一套键鼠操作完成一人多机的控制,但是当PC信号源与光纤接收盒所接入的键盘的键盘灯不一致时,或当在鼠标漫游跨屏,所控制的前后两个屏的键盘灯状态不一致时,会导致键盘输入值与用户期待的相反,极大的降低了使用体验。同时在非IP的光纤坐席系统中,为了保证实时性,键鼠消息是单向从光纤接收盒到光纤发送盒传输的,因此会导致光纤接收盒不知道光纤发送盒接入PC信号源的键盘灯状态,因此无法保证光纤发送盒接入PC信号源的键盘灯状态与所述光纤接收盒所接入键盘的灯状态保持一致。
发明内容
本发明旨在克服上述现有技术的至少一种缺陷(不足),提供一种光纤坐席系统中的键盘灯同步方法、系统及存储介质,用于解决非IP的光纤坐席系统中的键盘灯不同步的问题,进一步提升用户对坐席控制的使用体验。
本发明采取的技术方案是,一种光纤坐席系统中的键盘灯同步方法,包括以下步骤:
与键盘、鼠标相连的光纤接收盒获取并保存键盘的键盘灯初始状态数据以及鼠标漫游的初始位置信息;
与键盘、鼠标相连的光纤接收盒判断键盘的实时键盘灯状态数据是否 发生变化,若是,则保存当前键盘灯状态数据,并将保存的键盘灯状态数据发送给一个或多个光纤发送盒,若否,则判断鼠标实时漫游位置信息是否发生变化,若是,则保存当前鼠标漫游位置信息,再将保存的键盘灯状态数据发送给一个或多个光纤发送盒,若否,则将保存的键盘灯状态数据发送给一个或多个光纤发送盒;
所述一个或多个光纤发送盒获取并保存PC信号源的键盘灯状态数据,触发键盘灯状态变化信号;
所述一个或多个光纤发送盒接收到光纤接收盒的键盘灯状态数据并保存,触发键盘灯状态变化信号;
当所述一个或多个光纤发送盒触发键盘灯状态变化信号时,所述一个或多个光纤发送盒比对PC信号源的键盘灯状态数据与光纤接收盒的键盘灯状态数据是否一致,若否,所述一个或多个光纤发送盒发送不一致的键盘灯状态数据所对应按键的按下和弹起事件至PC信号源,实现PC信号源与光纤接收盒的键盘灯同步,若是,则不对PC信号源进行其他同步操作。
进一步的,所述键盘灯状态数据包括“caps lock”、“scroll lock”以及“num lock”的键盘灯状态。
进一步的,所述的光纤发送盒发送不一致的键盘灯状态数据所对应按键的按下和弹起事件至PC信号源具体步骤包括:
判断“caps lock”键的键盘灯状态是否不一致,若是,发送“caps lock”键的按下及弹起事件至PC信号源;
和/或,判断“scroll lock”键的键盘灯状态是否不一致,若是,发送“scroll lock”键的按下及弹起事件至PC信号源;
和/或,判断“num lock”键的键盘灯状态是否不一致,若是,发送“num lock”键的按下及弹起事件至PC信号源。
本发明中,上述判断“caps lock”、“scroll lock”以及“num lock”键盘灯状态步骤在实际执行中可任意设置执行步骤,执行步骤先后顺序不影响执行效果。
进一步的,鼠标漫游位置信息为鼠标漫游位置所在的光纤发送盒设备ID。
进一步的,光纤发送盒通过USB传输线接入PC信号源,获取并保存PC信号源的键盘灯状态。
进一步的,所述的与键盘、鼠标相连的光纤接收盒将保存的键盘灯状态数据发送给一个或多个光纤发送盒具体步骤包括:所述的与键盘、鼠标相连的光纤接收盒通过将保存的键盘灯状态数据打包,并标记为键盘灯同步事件,发送给一个或多个光纤发送盒。
另一方面,本发明采取的另一种技术方案为,一种光纤坐席系统中的键盘灯同步系统,所述坐席系统包括键盘、鼠标、光纤接收盒、光纤发送盒、PC信号源以及显示器,所述键盘、鼠标与所述光纤接收盒相连,所述PC信号源与所述光纤发送盒相连,所述PC信号源通过所述光纤接收盒或光纤发送盒接收键盘、鼠标消息控制所述显示屏,所述的与键盘、鼠标相连的光纤接收盒包括:
接收模块一,用于获取并保存键盘的键盘灯初始状态数据以及鼠标漫游的初始位置;
状态检测模块,用于检测鼠标实时漫游位置及键盘的实时键盘灯状态数据;
发送模块一,用于当状态检测模块检测到鼠标漫游位置或键盘的键盘灯状态数据发生变化时,将保存的键盘灯状态数据发送给一个或多个光纤发送盒;
所述的光纤发送盒包括:
接收模块二,用于接收PC信号源或光纤接收盒的数据;
键盘灯状态变化信号触发模块,用于当接收到PC信号源或光纤接收盒的键盘灯状态数据时,触发键盘灯状态变化信号;
比对模块,用于当光纤发送盒触发键盘灯状态变化信号时,比对接收模块二接收到的PC信号源与光纤接收盒的键盘灯的状态;
发送模块二,用于当PC信号源的键盘灯状态数据与光纤接收盒的键盘灯状态数据不一致时,发送不一致的键盘灯状态数据所对应按键的按下和弹起事件至PC信号源。
进一步的,所述的与键盘、鼠标相连的光纤接收盒还包括:
打包标记模块,用于当发送模块一将保存的键盘灯状态数据发送给一个或多个光纤发送盒时,将键盘灯状态数据打包,并标记成键盘灯同步事件。
另一方面,本发明的另一种技术方案为,一种计算机设备,包括存储器和处理器,所述存储器存储有计算机程序,所述处理器执行所述计算机程序时实现上述一种光纤坐席系统中的键盘灯同步方法的步骤。
另一方面,本发明的另一种技术方案为,一种存储介质,其上存储有计算机程序,所述计算机程序被处理器执行时实现上述一种光纤坐席系统中的键盘灯同步方法的步骤。
与现有技术相比,本发明的有益效果为:本发明提供了一种在非IP光纤坐席系统中,在键鼠消息单向传输情况下,通过简单的光纤接收盒与光纤发送盒对键盘灯状态数据的交互处理,实现所接入的PC信号源的键盘灯与本地操作的光纤接收盒所接入的键盘的键盘灯状态保持一致,解决了非IP光纤KVM坐席系统的键盘灯不同步的问题,进一步提升用户对坐席控制的使用体验。
附图说明
图1为本发明实施例1的方法流程图。
图2为本发明实施例2的坐席系统结构示意图。
图3为本发明实施例2的与键盘与鼠标相连的光纤接收盒结构示意图。
图4为本发明实施例2的光纤发送盒结构示意图。
附图标记说明:接收模块一1,状态检测模块2,发送模块一3,打包标记模块4,接收模块二5,键盘灯状态变化信号触发模块6,比对模块7,发送模块二8。
具体实施方式
本发明附图仅用于示例性说明,不能理解为对本发明的限制。为了更好说明以下实施例,附图某些部件会有省略、放大或缩小,并不代表实际 产品的尺寸;对于本领域技术人员来说,附图中某些公知结构及其说明可能省略是可以理解的。
实施例1
本实施例提供一种光纤坐席系统中的键盘灯同步方法,包括以下步骤:
与键盘、鼠标相连的光纤接收盒获取并保存键盘的键盘灯初始状态数据以及鼠标漫游的初始位置信息;
与键盘、鼠标相连的光纤接收盒判断键盘的实时键盘灯状态数据是否发生变化,若是,则保存当前键盘灯状态数据,并将保存的键盘灯状态数据发送给一个或多个光纤发送盒,若否,则判断鼠标实时漫游位置信息是否发生变化,若是,则将保存的键盘灯状态数据发送给一个或多个光纤发送盒,若否,则保存当前鼠标漫游位置,再将保存的键盘灯状态数据发送给一个或多个光纤发送盒;
所述一个或多个光纤发送盒获取并保存PC信号源的键盘灯状态数据,触发键盘灯状态变化信号;
所述一个或多个光纤发送盒接收到光纤接收盒的键盘灯状态数据并保存,触发键盘灯状态变化信号;
当所述一个或多个光纤发送盒触发键盘灯状态变化信号时,所述一个或多个光纤发送盒比对PC信号源的键盘灯状态数据与光纤接收盒的键盘灯状态数据是否一致,若否,光纤发送盒发送不一致的键盘灯状态数据所对应按键的按下和弹起事件至PC信号源,实现PC信号源与光纤接收盒的键盘灯同步,若是,则不对PC信号源进行其他同步操作。
进一步的,所述键盘灯状态数据包括“caps lock”、“scroll lock”以及“num lock”的键盘灯状态。
进一步的,所述的光纤发送盒发送不一致的键盘灯状态数据所对应按键的按下和弹起事件至PC信号源具体步骤包括:
判断“caps lock”键的键盘灯状态是否不一致,若是,发送“caps lock”键的按下及弹起事件至PC信号源;
和/或,判断“scroll lock”键的键盘灯状态是否不一致,若是,发送“scroll lock”键的按下及弹起事件至PC信号源;
和/或,判断“num lock”键的键盘灯状态是否不一致,若是,发送“num lock”键的按下及弹起事件至PC信号源。
本实施例中,优选上述判断“caps lock”、“scroll lock”以及“num lock”键盘灯状态步骤顺次执行,但其执行步骤先后顺序不影响执行效果。
进一步的,鼠标漫游位置信息为鼠标漫游位置所在的光纤发送盒设备ID。
进一步的,光纤发送盒通过USB传输线接入PC信号源,获取并保存PC信号源的键盘灯状态。
进一步的,所述的与键盘、鼠标相连的光纤接收盒将保存的键盘灯状态数据发送给一个或多个光纤发送盒具体步骤包括:所述的与键盘、鼠标相连的光纤接收盒通过将保存的键盘灯状态数据打包,并标记为键盘灯同步事件,发送给一个或多个光纤发送盒。
作为一种优选的实施方式,如图1所示,本实施例中,一种光纤坐席系统中的键盘灯同步方法,具体步骤为:
S1、与键盘、鼠标相连的光纤接收盒获取并保存键盘的键盘灯初始状态数据以及鼠标漫游的初始位置信息;
S21、与键盘、鼠标相连的光纤接收盒判断键盘的实时键盘灯状态数据是否发生变化,若是,执行步骤S22、S23,若否,执行步骤S24;
S22、保存当前键盘灯状态数据;
S23、将保存的键盘灯状态数据发送给一个或多个光纤发送盒;
S24、与键盘、鼠标相连的光纤接收盒判断鼠标实时漫游位置信息是否发生变化;若是,执行步骤S25,再执行S23,若否,执行S23;
S25、保存当前鼠标漫游位置信息;
S3、所述一个或多个光纤发送盒获取并保存PC信号源的键盘灯状态数据,触发键盘灯状态变化信号;
S4、所述一个或多个光纤发送盒接收到光纤接收盒的键盘灯状态数据并保存,触发键盘灯状态变化信号;
S51、当所述一个或多个光纤发送盒触发键盘灯状态变化信号时,所述一个或多个光纤发送盒比对PC信号源的键盘灯状态数据与光纤接收盒的 键盘灯状态数据是否一致,若否,执行S52,若是,则不对PC信号源进行其他同步操作;
S52、所述一个或多个光纤发送盒发送不一致的键盘灯状态数据所对应按键的按下和弹起事件至PC信号源。
实施例2
如图2所示,本实施例提供一种光纤坐席系统中的键盘灯同步系统,所述坐席系统包括键盘、鼠标、光纤接收盒、光纤发送盒、PC信号源以及显示器,所述键盘、鼠标与所述光纤接收盒相连,所述PC信号源与所述光纤发送盒相连,所述PC信号源通过所述光纤接收盒或光纤发送盒接收键盘、鼠标消息控制所述显示屏,
如图3所示,所述的与键盘、鼠标相连的光纤接收盒包括:
接收模块一1,用于获取并保存键盘的键盘灯初始状态数据以及鼠标漫游的初始位置;
状态检测模块2,用于检测鼠标实时漫游位置及键盘的实时键盘灯状态数据;
发送模块一3,用于当状态检测模块2检测到鼠标漫游位置或键盘的键盘灯状态数据发生变化时,将保存的键盘灯状态数据发送给一个或多个光纤发送盒;
进一步的,所述的与键盘、鼠标相连的光纤接收盒还包括:
打包标记模块4,用于当发送模块一将保存的键盘灯状态数据发送给一个或多个光纤发送盒时,将键盘灯状态数据打包,并标记成键盘灯同步事件。
如图4所示,所述的光纤发送盒包括:
接收模块二5,用于接收PC信号源或光纤接收盒的数据;
键盘灯状态变化信号触发模块6,用于当接收到PC信号源或光纤接收盒的键盘灯状态数据时,触发键盘灯状态变化信号;
比对模块7,用于当光纤发送盒触发键盘灯状态变化信号时,比对接收模块二接收到的PC信号源与光纤接收盒的键盘灯的状态;
发送模块二8,用于当PC信号源的键盘灯状态数据与光纤接收盒的键 盘灯状态数据不一致时,发送不一致的键盘灯状态数据所对应按键的按下和弹起事件至PC信号源。
另一方面,本实施例提供的另一种技术方案为,一种计算机设备,包括存储器和处理器,所述存储器存储有计算机程序,所述处理器执行所述计算机程序时实现上述一种光纤坐席系统中的键盘灯同步方法的步骤。
另一方面,本实施例提供的另一种技术方案为,一种存储介质,其上存储有计算机程序,所述计算机程序被处理器执行时实现上述一种光纤坐席系统中的键盘灯同步方法的步骤。
显然,本发明的上述实施例仅仅是为清楚地说明本发明技术方案所作的举例,而并非是对本发明的具体实施方式的限定。凡在本发明权利要求书的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明权利要求的保护范围之内。

Claims (10)

  1. 一种光纤坐席系统中的键盘灯同步方法,其特征在于,包括以下步骤:
    与键盘、鼠标相连的光纤接收盒获取并保存键盘的键盘灯初始状态数据以及鼠标漫游的初始位置信息;
    与键盘、鼠标相连的光纤接收盒判断键盘的实时键盘灯状态数据是否发生变化,若是,则保存当前键盘灯状态数据,并将保存的键盘灯状态数据发送给一个或多个光纤发送盒,若否,则判断鼠标实时漫游位置信息是否发生变化,若是,则将保存的键盘灯状态数据发送给一个或多个光纤发送盒,若否,则保存当前鼠标漫游位置,再将保存的键盘灯状态数据发送给一个或多个光纤发送盒;
    所述一个或多个光纤发送盒获取并保存PC信号源的键盘灯状态数据,触发键盘灯状态变化信号;
    所述一个或多个光纤发送盒接收到光纤接收盒的键盘灯状态数据并保存,触发键盘灯状态变化信号;
    当所述一个或多个光纤发送盒触发键盘灯状态变化信号时,所述一个或多个光纤发送盒比对PC信号源的键盘灯状态数据与光纤接收盒的键盘灯状态数据是否一致,若否,光纤发送盒发送不一致的键盘灯状态数据所对应按键的按下和弹起事件至PC信号源,实现PC信号源与光纤接收盒的键盘灯同步。
  2. 根据权利要求1所述的一种光纤坐席系统中的键盘灯同步方法,其特征在于,所述键盘灯状态数据包括“caps lock”、“scroll lock”以及“num lock”的键盘灯状态。
  3. 根据权利要求2所述的一种光纤坐席系统中的键盘灯同步方法,其特征在于,光纤发送盒发送不一致的键盘灯状态数据所对应按键的按下和弹起事件至PC信号源具体步骤包括:
    判断“caps lock”键的键盘灯状态是否不一致,若是,发送“caps lock”键的按下及弹起事件至PC信号源,同步“caps lock”键盘灯状态;
    和/或,判断“scroll lock”键的键盘灯状态是否不一致,若是,发送“scroll  lock”键的按下及弹起事件至PC信号源,同步“scroll lock”键盘灯状态;
    和/或,判断“num lock”键的键盘灯状态是否不一致,若是,发送“num lock”键的按下及弹起事件至PC信号源,同步“num lock”键盘灯状态。
  4. 根据权利要求1所述的一种光纤坐席系统中的键盘灯同步方法,其特征在于,鼠标漫游位置信息为鼠标漫游位置所在的光纤发送盒设备ID。
  5. 根据权利要求1所述的一种光纤坐席系统中的键盘灯同步方法,其特征在于,光纤发送盒通过USB传输线接入PC信号源,获取并保存PC信号源的键盘灯状态。
  6. 根据权利要求1所述的一种光纤坐席系统中的键盘灯同步方法,其特征在于,所述的与键盘、鼠标相连的光纤接收盒将保存的键盘灯状态数据发送给一个或多个光纤发送盒具体步骤包括:所述的与键盘、鼠标相连的光纤接收盒通过将保存的键盘灯状态数据打包,并标记为键盘灯同步事件,发送给一个或多个光纤发送盒。
  7. 一种光纤坐席系统中的键盘灯同步系统,所述坐席系统包括键盘、鼠标、光纤接收盒、光纤发送盒、PC信号源以及显示器,所述键盘、鼠标与所述光纤接收盒相连,所述PC信号源与所述光纤发送盒相连,所述PC信号源通过所述光纤接收盒或光纤发送盒传输键鼠设备消息控制所述显示屏,其特征在于,
    所述的与键盘、鼠标相连的光纤接收盒包括:
    接收模块一,用于获取并保存键盘的键盘灯初始状态数据以及鼠标漫游的初始位置;
    状态检测模块,用于检测鼠标实时漫游位置及键盘的实时键盘灯状态数据;
    发送模块一,用于当状态检测模块检测到鼠标漫游位置或键盘的键盘灯状态数据发生变化时,将保存的键盘灯状态数据发送给一个或多个光纤发送盒;
    所述的光纤发送盒包括:
    接收模块二,用于接收PC信号源或光纤接收盒的数据;
    键盘灯状态变化信号触发模块,用于当接收到PC信号源或光纤接收 盒的键盘灯状态数据时,触发键盘灯状态变化信号;
    比对模块,用于当光纤发送盒触发键盘灯状态变化信号时,比对接收模块二接收到的PC信号源与光纤接收盒的键盘灯的状态;
    发送模块二,用于当PC信号源的键盘灯状态数据与光纤接收盒的键盘灯状态数据不一致时,发送不一致的键盘灯状态数据所对应按键的按下和弹起事件至PC信号源。
  8. 根据权利要求7所述的一种光纤坐席系统中的键盘灯同步系统,其特征在于,所述的与键盘、鼠标相连的光纤接收盒还包括:
    打包标记模块,用于当发送模块一将保存的键盘灯状态数据发送给一个或多个光纤发送盒时,将键盘灯状态数据打包,并标记成键盘灯同步事件。
  9. 一种计算机设备,包括存储器和处理器,所述存储器存储有计算机程序,其特征在于,所述处理器执行所述计算机程序时实现权利要求1至6中任一项所述方法的步骤。
  10. 一种存储介质,其上存储有计算机程序,其特征在于,所述计算机程序被处理器执行时实现权利要求1至6中任一项所述的方法的步骤。
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