WO2017219889A1 - 机顶盒系统参数设置方法、共享服务器及机顶盒 - Google Patents
机顶盒系统参数设置方法、共享服务器及机顶盒 Download PDFInfo
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- WO2017219889A1 WO2017219889A1 PCT/CN2017/087914 CN2017087914W WO2017219889A1 WO 2017219889 A1 WO2017219889 A1 WO 2017219889A1 CN 2017087914 W CN2017087914 W CN 2017087914W WO 2017219889 A1 WO2017219889 A1 WO 2017219889A1
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- top box
- system parameter
- set top
- shared server
- parameter
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N21/00—Selective content distribution, e.g. interactive television or video on demand [VOD]
- H04N21/60—Network structure or processes for video distribution between server and client or between remote clients; Control signalling between clients, server and network components; Transmission of management data between server and client, e.g. sending from server to client commands for recording incoming content stream; Communication details between server and client
- H04N21/61—Network physical structure; Signal processing
- H04N21/6106—Network physical structure; Signal processing specially adapted to the downstream path of the transmission network
- H04N21/6143—Network physical structure; Signal processing specially adapted to the downstream path of the transmission network involving transmission via a satellite
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N21/00—Selective content distribution, e.g. interactive television or video on demand [VOD]
- H04N21/40—Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
- H04N21/43—Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
- H04N21/443—OS processes, e.g. booting an STB, implementing a Java virtual machine in an STB or power management in an STB
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N21/00—Selective content distribution, e.g. interactive television or video on demand [VOD]
- H04N21/40—Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
- H04N21/47—End-user applications
- H04N21/485—End-user interface for client configuration
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N21/00—Selective content distribution, e.g. interactive television or video on demand [VOD]
- H04N21/60—Network structure or processes for video distribution between server and client or between remote clients; Control signalling between clients, server and network components; Transmission of management data between server and client, e.g. sending from server to client commands for recording incoming content stream; Communication details between server and client
- H04N21/65—Transmission of management data between client and server
- H04N21/654—Transmission by server directed to the client
- H04N21/6547—Transmission by server directed to the client comprising parameters, e.g. for client setup
Definitions
- the present disclosure relates to the field of digital television technologies, for example, to a set top box system parameter setting method, a shared server, and a set top box.
- Digital Satellite Equipment Control refers to the working process of controlling the digital satellite television receiver and issuing the instruction set (control command) to the corresponding equipment, such as switch, switch, antenna drive equipment.
- the high frequency head Low Noise Block, referred to as "LNB", etc.
- LNB Low Noise Block
- DisEqc is actually a control protocol, not some kind of hardware.
- the specific working process is that the digital satellite television receiver internally transmits the relevant control command through the coaxial cable connected to the high frequency head through the coaxial cable connected to the high frequency head, and the digital signal alternately changed at the frequency of 22 KHz.
- the set-top box can watch the contents of different satellite programs.
- the DisEqc information is also called the system parameter. Therefore, in the prior art, the configuration method of the parameters of the set top box system is complicated, the user operation is difficult, and the system parameter update speed is slow.
- the present disclosure aims to provide a set-top box system parameter setting method, a shared server, and a set-top box, which are intended to solve the prior art set-top box system parameters.
- the configuration method of the number is complicated, the user operation is difficult, and the technical parameter update speed is slow.
- a method for setting parameters of a set top box system comprising:
- the first set top box receives an instruction to set system parameters, and sets system parameters of the first set top box;
- the first set top box acquires the system parameter, and sends the obtained system parameter to a shared server;
- the N set top boxes set their own system parameters according to the received system parameters.
- the step of the first set top box receiving the setting of the system parameter, and setting the system parameter of the first set top box specifically includes:
- the first set top box receives a setting system parameter request input by the user, and detects whether the system parameter input by the user is legal;
- the system parameter is received as the system parameter of the first set top box.
- the step of the first set top box acquiring the system parameter and sending the obtained system parameter to the shared server includes:
- the first set top box acquires the system parameter, and requests the sharing server to send the system parameter;
- the first set top box sends the acquired system parameters to the shared server through a network.
- the step that the sharing server receives the system parameter sent by the first set-top box, and sends the system parameter to the N set-top boxes connected to the shared server specifically includes:
- the sharing server receives the system parameter sent by the first set top box, and sends the system parameter to a set of N set top boxes connected to the shared server by a network broadcast, where N is a natural number.
- the system parameters include a type of low noise downconverter, a frequency of a low noise downconverter, a working power supply of a low noise downconverter, an output direction of a low noise downconverter, and an operational data of the antenna driving device, At least one of the switches of the 22K switch.
- a shared server that includes:
- a data receiving module configured to receive system parameters sent by the first set top box
- a data sending module configured to send the received system parameter to N set top boxes connected to the shared server, where N is a natural number.
- it also includes:
- the request response module is configured to receive the sending request of the first set top box and issue a response to agree to send.
- the data sending module is configured to send the received system parameter to the N set top boxes connected to the shared server by using a network broadcast.
- the system parameters include a type of low noise downconverter, a frequency of a low noise downconverter, a working power supply of a low noise downconverter, an output direction of a low noise downconverter, and an operational data of the antenna driving device, At least one of the switches of the 22K switch.
- a set top box comprising:
- the first setting module is configured to receive an instruction for setting a system parameter, and set a system parameter of the first set top box;
- a parameter sending module configured to acquire the system parameter, and send the obtained system parameter to a shared server
- a second setting module configured to perform, according to the system parameter, a system parameter of the system Settings.
- the first setting module specifically includes:
- the verification unit is configured to receive a setting system parameter request input by the user, and detect whether the system parameter input by the user is legal;
- the setting unit is configured to receive the system parameter as a system parameter of the first set top box if it is detected that the system parameter input by the user is legal.
- the parameter sending module specifically includes:
- a first sending unit configured to acquire the system parameter, and request the sending, by the shared server, the system parameter
- a second sending unit configured to send the acquired system parameter to the shared server through a network.
- the system parameters include a type of low noise downconverter, a frequency of a low noise downconverter, a working power supply of a low noise downconverter, an output direction of a low noise downconverter, and an operational data of the antenna driving device, At least one of the switches of the 22K switch.
- a non-transitory computer readable storage medium storing computer executable instructions arranged to perform the method of any of the above.
- An electronic device comprising:
- At least one processor At least one processor
- the memory stores instructions executable by the at least one processor, the instructions being executed by the at least one processor to cause the at least one processor to perform the method of any of the above.
- the present disclosure provides a parameter setting method of a set top box system, a shared server and a set top box.
- the disclosure can make the set top box user not participate in the system parameter setting process, as long as the set top box is connected to the network and the signal line is connected, the set top box automatically sets the system parameters. And update in the fastest real-time way, improving the efficiency of the set-top box.
- Embodiment 1 is a flowchart of Embodiment 1 of a method for controlling a parameter setting method of a set top box system according to the present disclosure
- Embodiment 2 is a partial flowchart of Embodiment 2 of a method for controlling a parameter setting method of a set top box system according to the present disclosure
- Embodiment 3 is a partial flowchart of Embodiment 3 of a method for controlling a parameter setting method of a set top box system according to the present disclosure
- FIG. 4 is a structural block diagram of a shared server according to the present disclosure.
- FIG. 5 is a functional block diagram of a set top box of the present disclosure
- FIG. 6 is a functional block diagram of a first setting module of a set top box according to the present disclosure
- FIG. 7 is a functional block diagram of a parameter sending module of a set top box according to the present disclosure.
- FIG. 8 is a schematic diagram showing the hardware structure of an electronic device according to the present disclosure.
- Embodiment 1 of a parameter setting method of a set top box system. As shown in FIG. 1 , the method includes:
- Step 100 The first set top box receives an instruction to set a system parameter, and sets a system parameter of the first set top box.
- Step 200 The first set top box acquires the system parameter, and sends the obtained system parameter to a shared server.
- Step 300 The shared server receives the system parameter sent by the first set top box, and sends the system parameter to N set top boxes connected to the shared server, where N is a natural number.
- Step 400 The N set top boxes set their own system parameters according to the received system parameters.
- the system parameters in the present disclosure can be abbreviated as DisEqc.
- the first set-top box is generally a set-top box of a set-top box manufacturer, and has a permission. Set-top boxes can only be set up with administrative privileges.
- the first set top box receives the DisEqc data request input by the user, sends the DisEqc data request to the shared server, and the receiving shared server sets the system parameters such as the antenna driving device and the LNB according to the DisEqc data request.
- step 100 the user inputs the DisEqc data request: the first set top box presets the system parameters, and sends the DisEqc data to the shared server through the network.
- step 200 the first set top box sends the DisEqc data request to the shared server: receiving the DisEqc data command, sharing the server response, and allowing the DisEqc data to be received through the network to the shared server.
- step 300 the receiving shared server sets the data according to the DisEqc request: after the shared server receives the DisEqc data, it sends it to each set top box below the server.
- each set top box under the server is set according to the latest DisEqc data (antenna driven device, LNB, etc.) parameters.
- step 100 is replaced with step 101 and step 102, where step 101 and step 102 are specifically:
- Step 101 The first set top box receives a setting system parameter request input by the user, and detects whether the system parameter input by the user is legal.
- Step 102 If it is detected that the system parameter input by the user is legal, the system parameter is received as a system parameter of the first set top box.
- the first set top box detects the legality of the user input data, and if it is legal, receives the system parameters set by the user.
- the system parameters include parameters such as LNB Type, LNB Frequency, LNB Power, and 0/22K, wherein LNB Type is a type of low noise downconverter, LNB Frequency is a low noise downconverter, and LNB Power is low.
- LNB Type is a type of low noise downconverter
- LNB Frequency is a low noise downconverter
- LNB Power is low.
- At least one of the working power supply of the noise down converter and the switch of 0/22K is a 22K switch; the system parameters also include the output direction of the low noise down converter and the working data of the antenna driving device.
- 22K switch whether it is switched, whether there is 22K pulse signal input. For machines with 0/22K switching function, when set to 22K off, there is no 22K pulse signal output. The 22K switch does not receive a pulse signal and is in a normally closed state.
- the receiver When the receiver is set to 22K on, the receiver outputs a 22K square wave analog pulse signal. After the 22K switch obtains this pulse signal, the DC voltage is obtained by rectification of the 22K switch internal rectifier circuit to drive the 22K switch from the normally closed end to the normally open end to achieve the switching purpose.
- step 200 is replaced with step 201 and step 203, where steps 201 to 203 are specifically:
- Step 201 The first set top box acquires the system parameter, and requests a sending system parameter to the shared server.
- Step 202 The sharing server receives a sending request of the first set top box and sends a response to agree to send.
- Step 203 The first set top box sends the acquired system parameters to a shared server through a network.
- the A user sets the DisEqc parameter to OK in advance; sends the DisEqc data to the shared server through the network, and the shared server responds, allowing the passage.
- the network receives the DisEqc data to the shared server.
- the user does not need to manually set the DisEqc data (for example, the LNB direction is Horizontal Horizontal or Vertical Vertical, 22K waveform On or Off, etc.); the search efficiency is improved, and the user experience is enhanced.
- step 300 specifically includes:
- the shared server receives the system parameters sent by the first set top box, and sends the system parameters to the N set top boxes connected to the shared server by using a network broadcast, where N is a natural number.
- the DisEqc data on the shared server is sent to each set top box (set top box 1, set top box 2, ... set top box N) under the shared server in the form of network broadcast; set top box 1, set top box 2 etc.
- the set top box N sets the DisEqc parameter.
- the shared server includes:
- the data receiving module 110 is configured to receive system parameters sent by the first set top box, as described in the method embodiment.
- the data sending module 120 is configured to send the received system parameters to the N set top boxes connected to the shared server; as described in the method embodiment.
- the request response module 130 is configured to receive the sending request of the first set top box and issue a response to the agreed sending; as described in the method embodiment.
- the present disclosure also provides a functional block diagram of a set top box. As shown in FIG. 5, the set top box includes:
- the first setting module 210 is configured to receive an instruction to set a system parameter, and set a system parameter of the first set top box; specifically, as described in the method embodiment.
- the parameter sending module 220 is configured to obtain the system parameter, and send the obtained system parameter to the shared server; as described in the method embodiment.
- the second setting module 230 is configured to set its own system parameters according to the system parameters; specifically, as described in the method embodiment.
- the first setting module 210 specifically includes:
- the verification unit 211 is configured to receive a setting system parameter request input by the user, and detect whether the system parameter input by the user is legal; specifically, as described in the method embodiment.
- the setting unit 212 is configured to receive the system parameter as the system parameter of the first set top box if it is detected that the system parameter input by the user is legal; specifically, as described in the method embodiment.
- the parameter sending module 230 specifically includes:
- the first sending unit 231 is configured to acquire the system parameter, and request a sending system parameter to the sharing server; specifically, as described in the method embodiment.
- the second sending unit 232 is configured to send the acquired system parameters to the shared server through the network; as described in the method embodiment.
- the present disclosure also provides a non-transitory computer readable storage medium storing computer executable instructions arranged to perform the method of any of the above embodiments.
- the present disclosure also provides a hardware structure diagram of an electronic device.
- the electronic device can perform the corresponding method steps as the shared server or the set top box provided by the above embodiment.
- the electronic device (shared server or set top box) includes:
- At least one processor 80 which is exemplified by a processor 80 in FIG. 8; a display 81; and a memory 82, which may further include a communication interface 83 and a bus 84.
- the processor 80, the display screen 81, the memory 82, and the communication interface 83 can complete communication with each other through the bus 84.
- the display screen 81 is set to display a preset user guide interface in the initial setting mode.
- Communication interface 83 can transmit information.
- Processor 80 can invoke logic instructions in memory 82 to perform the methods in the above-described embodiments.
- logic instructions in memory 82 described above may be implemented in the form of software functional units and sold or used as separate products, and may be stored in a computer readable storage medium.
- the memory 82 is a computer readable storage medium that can be configured to store software programs, computer executable programs, program instructions or modules corresponding to the methods in the embodiments of the present disclosure.
- the processor 80 executes the functional application and data processing by executing software programs, instructions or modules stored in the memory 82, i.e., implements the methods of the above-described embodiments.
- the memory 82 may include a storage program area and an storage data area, wherein the storage program area may store an operating system, an application required for at least one function; the storage data area may store data created according to usage of the terminal device, and the like. Further, the memory 82 may include a high speed random access memory, and may also include a nonvolatile memory.
- All or part of the steps of the above embodiments may be completed by hardware, or may be executed by a program to execute related hardware.
- the program may be stored in a computer readable storage medium, and the storage medium may be a non-transitory storage medium, including a USB flash drive.
- the present disclosure provides a method for setting a parameter of a set top box system, a shared server, and a set top box.
- the method includes: the first set top box receives an instruction to set a system parameter, and sets a system parameter of the first set top box; A set top box acquires the system parameter, and sends the obtained system parameter to a shared server; the shared server receives the system parameter sent by the first set top box, and sends the system parameter to the shared N set top boxes connected by the server, where N is a natural number; the N set top boxes set their own system parameters according to the received system parameters.
- the disclosure can make the set-top box user not participate in the system parameter setting process. As long as the set-top box is connected to the network and the signal line is connected, the set-top box automatically sets the system parameters and updates in the fastest real-time manner, thereby improving the working efficiency of the set-top box.
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Abstract
本公开涉及一种机顶盒系统参数设置方法、共享服务器及机顶盒。该方法包括:第一机顶盒接收设置系统参数的指令,对所述第一机顶盒的系统参数进行设置;所述第一机顶盒获取所述系统参数,并将获取的所述系统参数发送至共享服务器;所述共享服务器接收所述第一机顶盒发送的所述系统参数,并将所述系统参数发送至与所述共享服务器连接的N台机顶盒,其中N为自然数;所述N台机顶盒根据接收到的所述系统参数对自身的系统参数进行设置。
Description
本公开涉及数字电视技术领域,例如涉及一种机顶盒系统参数设置方法、共享服务器及机顶盒。
数字卫星设备控制(Digital Satellite Equipment Control,简称“DisEqc”)是指用数字卫星电视接收机控制,并发出指令集(控制指令)给相应设备的工作过程,如切换开关、切换器、天线驱动设备、高频头(Low Noise Block,简称“LNB”)等,高频头也是低噪声下变频器。DisEqc事实上是一个控制协议,而不是某种硬件。具体工作过程是数字卫星电视接收机内部在同步时钟脉冲配合下,通过与高频头相连的同轴电缆线,经调制于22KHz频率上交替变化的数字信号串行转送相关控制指令。通过对机顶盒外部设备的设置(如:天线驱动设备、LNB等),实现机顶盒观看不同卫星节目的内容。
现有技术中对DisEqc信息的设置方法有两种方案,方案一是手动设置每一台机顶盒的DisEqc信息,方案二是软件出厂时默认配置好相关DisEqc信息;使用方案一的设置方法时由于用户对DisEqc不熟悉,无法成功设置DisEqc信息,使用方案二的设置方法时由于默认配置,无法满足不同用户设置不同的需求。其中DisEqc信息又称系统参数。因此现有技术中对机顶盒系统参数的配置方法较复杂,用户操作困难,系统参数更新速度慢。
因此,现有技术还有待于改进和发展。
发明内容
鉴于现有技术的不足,本公开目的在于提供一种机顶盒系统参数设置方法、共享服务器及机顶盒,旨在解决现有技术中机顶盒系统参
数的配置方法较复杂,用户操作困难,且系统参数更新速度慢的技术缺陷。
本公开的技术方案如下:
一种机顶盒系统参数设置方法,包括:
第一机顶盒接收设置系统参数的指令,对所述第一机顶盒的系统参数进行设置;
所述第一机顶盒获取所述系统参数,并将获取的所述系统参数发送至共享服务器;
所述共享服务器接收所述第一机顶盒发送的所述系统参数,并将所述系统参数发送至与所述共享服务器连接的N台机顶盒,其中N为自然数;
所述N台机顶盒根据接收到的所述系统参数对自身的系统参数进行设置。
可选的,所述第一机顶盒接收设置系统参数的指令,对所述第一机顶盒的系统参数进行设置的步骤,具体包括:
所述第一机顶盒接收用户输入的设置系统参数请求,检测用户输入的系统参数是否合法;
若检测到用户输入的系统参数合法,则接收所述系统参数为所述第一机顶盒的系统参数。
可选的,所述第一机顶盒获取所述系统参数,并将获取的所述系统参数发送至共享服务器的步骤,具体包括:
所述第一机顶盒获取所述系统参数,并向所述共享服务器请求发送所述系统参数;
所述共享服务器接收所述第一机顶盒的发送请求并发出同意发送的响应;
所述第一机顶盒将获取的所述系统参数通过网络发送至所述共享服务器。
可选的,所述共享服务器接收所述第一机顶盒发送的所述系统参数,并将所述系统参数发送至与所述共享服务器连接的N台机顶盒的步骤,具体包括:
所述共享服务器接收所述第一机顶盒发送的所述系统参数,通过网络广播的形式将所述系统参数发送至与所述共享服务器连接的N台机顶盒,其中N为自然数。
可选的,所述系统参数包括低噪声下变频器的类型、低噪声下变频器的频率、低噪声下变频器的工作电源、低噪声下变频器的输出方向、天线驱动设备的工作数据、22K开关的开关中的至少一种。
一种共享服务器,包括:
数据接收模块,设置为接收第一机顶盒发送的系统参数;
数据发送模块,设置为将接收到的所述系统参数发送至与所述共享服务器连接的N台机顶盒,其中N为自然数。
可选的,还包括:
请求响应模块,设置为接收所述第一机顶盒的发送请求并发出同意发送的响应。
可选的,所述数据发送模块,设置为通过网络广播的形式将接收到的所述系统参数发送至与所述共享服务器连接的N台机顶盒。
可选的,所述系统参数包括低噪声下变频器的类型、低噪声下变频器的频率、低噪声下变频器的工作电源、低噪声下变频器的输出方向、天线驱动设备的工作数据、22K开关的开关中的至少一种。
一种机顶盒,包括:
第一设置模块,设置为接收设置系统参数的指令,对第一机顶盒的系统参数进行设置;
参数发送模块,设置为获取所述系统参数,并将获取的所述系统参数发送至共享服务器;
第二设置模块,设置为根据所述系统参数对自身的系统参数进行
设置。
可选的,第一设置模块具体包括:
校验单元,设置为接收用户输入的设置系统参数请求,检测用户输入的系统参数是否合法;
设置单元,设置为若检测到用户输入的系统参数合法,则接收所述系统参数为所述第一机顶盒的系统参数。
可选的,所述参数发送模块具体包括:
第一发送单元,设置为获取所述系统参数,并向所述共享服务器请求发送所述系统参数;
第二发送单元,设置为将获取的所述系统参数通过网络发送至所述共享服务器。
可选的,所述系统参数包括低噪声下变频器的类型、低噪声下变频器的频率、低噪声下变频器的工作电源、低噪声下变频器的输出方向、天线驱动设备的工作数据、22K开关的开关中的至少一种。
一种非暂态计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令设置为执行如上任一项的方法。
一种电子设备,包括:
至少一个处理器;以及
与所述至少一个处理器通信连接的存储器;其中,
所述存储器存储有可被所述至少一个处理器执行的指令,所述指令被所述至少一个处理器执行,以使所述至少一个处理器执行如上任一项的方法。
本公开提供了一种机顶盒系统参数设置方法、共享服务器及机顶盒,本公开可使机顶盒用户不用参与系统参数设置过程,只要机顶盒连上了网,接上了信号线,机顶盒会自动去设置系统参数,并且以实时最快的方式更新,提高了机顶盒的工作效率。
为了清楚地说明本公开实施例中的技术方案,下面将对本公开实施例描述中使用的附图进行介绍。
图1为本公开的一种机顶盒系统参数设置方法的控制方法实施例一的流程图;
图2为本公开的一种机顶盒系统参数设置方法的控制方法实施例二的部分流程图;
图3为本公开的一种机顶盒系统参数设置方法的控制方法实施例三的部分流程图;
图4为本公开的一种共享服务器的结构框图;
图5为本公开的一种机顶盒的功能原理框图;
图6为本公开的一种机顶盒的第一设置模块的功能原理框图;
图7为本公开的一种机顶盒的参数发送模块的功能原理框图;以及
图8为本公开的电子设备的硬件结构示意图。
为使本公开的采用的技术方案更加清楚,下面将结合附图对本公开实施例的技术方案作详细描述,所描述的实施例仅仅是本公开一部分实施例,而不是全部的实施例。在不冲突的情况下,以下实施例以及实施例中的技术特征可以相互任意组合。
实施例一
本公开提供了一种机顶盒系统参数设置方法的实施例一的流程图,如图1所示,方法包括:
步骤100、第一机顶盒接收设置系统参数的指令,对所述第一机顶盒的系统参数进行设置。
步骤200、所述第一机顶盒获取所述系统参数,并将获取的所述系统参数发送至共享服务器。
步骤300、所述共享服务器接收第一机顶盒发送的所述系统参数,并将系统参数发送至与共享服务器连接的N台机顶盒,其中N为自然数。
步骤400、所述N台机顶盒根据接收到的系统参数对自身的系统参数进行设置。
具体实施时,本公开中的系统参数又可简记为DisEqc。其中第一机顶盒一般为机顶盒生产商的机顶盒,设置有权限。只有管理权限才能对机顶盒进行设置。第一机顶盒接收用户输入的DisEqc数据请求、发送所述DisEqc数据请求至共享服务器、接收共享服务器根据所述DisEqc数据请求设置天线驱动设备、LNB等系统参数。
步骤100中接收用户输入的DisEqc数据请求:第一机顶盒预先设置好系统参数,通过网络发送DisEqc数据到共享服务器的指令。
步骤200中第一机顶盒发送所述DisEqc数据请求至共享服务器:接收DisEqc数据指令,共享服务器响应,允许通过网络接收DisEqc数据到共享服务器。
步骤300中接收共享服务器根据所述DisEqc数据请求设置:共享服务器接收DisEqc数据后,发给服务器下面的每台机顶盒。
步骤400中服务器下面的每台机顶盒根据最新的DisEqc数据设置(天线驱动设备、LNB等)参数。
实施例二
进一步的,如图2所示,本实施例的流程步骤与实施例一基本相同,不同的是将步骤100替换为步骤101和步骤102,其中步骤101和步骤102具体为:
步骤101、第一机顶盒接收用户输入的设置系统参数请求,检测用户输入的系统参数是否合法。
步骤102、若检测到用户输入的系统参数合法,则接收所述系统参数为所述第一机顶盒的系统参数。
具体实施时,第一机顶盒检测用户输入数据的合法性,若合法,则接收用户设置的系统参数。
具体地,所述系统参数包括LNB Type、LNB Frequency、LNB Power、0/22K等参数,其中LNB Type为低噪声下变频器的类型、LNB Frequency为低噪声下变频器的频率、LNB Power为低噪声下变频器的工作电源、0/22K为22K开关的开关中的至少一种;所述系统参数还包括低噪声下变频器的输出方向、天线驱动设备的工作数据。其中22K开关,其是否切换,在于是否有22K的脉冲信号输入。带有0/22K开关功能的机器,设置为22K关时,无22K脉冲信号输出。22K开关得不到脉冲信号而处于常闭端导通状态。当接收机设置为22K开时,接收机输出一个22K的方波模拟脉冲信号。22K开关得到此脉冲信号后,经22K开关内部整流电路的整流后得到直流电压驱使22K开关由常闭端导通转为常开端导通,以达到切换目的。
实施例三
进一步的,如图3所示,本实施例的流程步骤与实施例一基本相同,不同的是将步骤200替换为步骤201和步骤203,其中步骤201至步骤203具体为:
步骤201、所述第一机顶盒获取所述系统参数,并向共享服务器请求发送系统参数。
步骤202、所述共享服务器接收第一机顶盒的发送请求并发出同意发送的响应。
步骤203、所述第一机顶盒将获取的所述系统参数通过网络发送至共享服务器。
具体实施时,A用户(机顶盒)预先把DisEqc参数设置OK;通过网络发送DisEqc数据到共享服务器,共享服务器响应,允许通过
网络接收DisEqc数据到共享服务器。本公开中在数字电视搜台前,用户不需要手动去设置DisEqc数据(如:LNB方向是水平Horizontal or垂直Vertical、22K波形On or Off等);提高搜台效率,增强用户体验。
具体地,步骤300具体包括:
所述共享服务器接收第一机顶盒发送的所述系统参数,通过网络广播的形式将系统参数发送至与共享服务器连接的N台机顶盒,其中N为自然数。
具体实施时,共享服务器上的DisEqc数据通过网络广播的形式发给共享服务器下面的每台机顶盒(机顶盒1、机顶盒2......机顶盒N);机顶盒1、机顶盒2......机顶盒N设置DisEqc参数。
本公开还提供了一种共享服务器的功能原理框图,如图4所示,共享服务器包括:
数据接收模块110,设置为接收第一机顶盒发送的系统参数;具体如方法实施例所述。
数据发送模块120,设置为将接收到的系统参数发送至与所述共享服务器连接的N台机顶盒;具体如方法实施例所述。
请求响应模块130,设置为接收第一机顶盒的发送请求并发出同意发送的响应;具体如方法实施例所述。
本公开还提供了一种机顶盒的功能原理框图,如图5所示,机顶盒包括:
第一设置模块210,设置为接收设置系统参数的指令,对第一机顶盒的系统参数进行设置;具体如方法实施例所述。
参数发送模块220,设置为获取所述系统参数,并将获取的所述系统参数发送至共享服务器;具体如方法实施例所述。
第二设置模块230,设置为根据所述系统参数对自身的系统参数进行设置;具体如方法实施例所述。
进一步地,如图6所示,第一设置模块210具体包括:
校验单元211,设置为接收用户输入的设置系统参数请求,检测用户输入的系统参数是否合法;具体如方法实施例所述。
设置单元212,设置为若检测到用户输入的系统参数合法,则接收所述系统参数为所述第一机顶盒的系统参数;具体如方法实施例所述。
进一步地,如图7所示,参数发送模块230具体包括:
第一发送单元231,设置为获取所述系统参数,并向共享服务器请求发送系统参数;具体如方法实施例所述。
第二发送单元232,设置为将获取的所述系统参数通过网络发送至共享服务器;具体如方法实施例所述。
本公开还提供了一种非暂态计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令设置为执行上述任一实施例中的方法。
本公开还提供了一种电子设备的硬件结构示意图。该电子设备可以执行相应的方法步骤,作为上述实施例提供的共享服务器或者机顶盒。如图8所示,该电子设备(共享服务器或机顶盒)包括:
至少一个处理器(processor)80,图8中以一个处理器80为例;显示屏81;以及存储器(memory)82,还可以包括通信接口(Communications Interface)83和总线84。其中,处理器80、显示屏81、存储器82和通信接口83可以通过总线84完成相互间的通信。显示屏81设置为显示初始设置模式中预设的用户引导界面。通信接口83可以传输信息。处理器80可以调用存储器82中的逻辑指令,以执行上述实施例中的方法。
此外,上述的存储器82中的逻辑指令可以通过软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。
存储器82作为一种计算机可读存储介质,可设置为存储软件程序、计算机可执行程序,如本公开实施例中的方法对应的程序指令或模块。处理器80通过运行存储在存储器82中的软件程序、指令或模块,从而执行功能应用以及数据处理,即实现上述实施例中的方法。
存储器82可包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需的应用程序;存储数据区可存储根据终端设备的使用所创建的数据等。此外,存储器82可以包括高速随机存取存储器,还可以包括非易失性存储器。
上述实施例的全部或部分步骤可以通过硬件来完成,也可以通过程序来指令相关的硬件完成,该程序可以存储于一计算机可读存储介质中,存储介质可以是非暂态存储介质,包括U盘、移动硬盘、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁盘或光盘等等多种可以存储程序代码的介质,也可以是暂态存储介质。
综上所述,本公开提供了一种机顶盒系统参数设置方法、共享服务器及机顶盒,方法包括:第一机顶盒接收设置系统参数的指令,对所述第一机顶盒的系统参数进行设置;所述第一机顶盒获取所述系统参数,并将获取的所述系统参数发送至共享服务器;所述共享服务器接收所述第一机顶盒发送的所述系统参数,并将所述系统参数发送至与所述共享服务器连接的N台机顶盒,其中N为自然数;所述N台机顶盒根据接收到的所述系统参数对自身的系统参数进行设置。本公开可使机顶盒用户不用参与系统参数设置过程,只要机顶盒连上了网,接上了信号线,机顶盒会自动去设置系统参数,并且以实时最快的方式更新,提高了机顶盒的工作效率。
应当理解的是,本公开的应用不限于上述的举例,对本领域普通技术人员来说,可以根据上述说明加以改进或变换,所有这些改进和变换都应属于本公开所附权利要求的保护范围。
Claims (15)
- 一种机顶盒系统参数设置方法,包括:第一机顶盒接收设置系统参数的指令,对所述第一机顶盒的系统参数进行设置;所述第一机顶盒获取所述系统参数,并将获取的所述系统参数发送至共享服务器;所述共享服务器接收所述第一机顶盒发送的所述系统参数,并将所述系统参数发送至与所述共享服务器连接的N台机顶盒,其中N为自然数;所述N台机顶盒根据接收到的所述系统参数对自身的系统参数进行设置。
- 根据权利要求1所述的机顶盒系统参数设置方法,其中,所述第一机顶盒接收设置系统参数的指令,对所述第一机顶盒的系统参数进行设置的步骤,具体包括:所述第一机顶盒接收用户输入的设置系统参数请求,检测用户输入的系统参数是否合法;若检测到用户输入的系统参数合法,则接收所述系统参数为所述第一机顶盒的系统参数。
- 根据权利要求2所述的机顶盒系统参数设置方法,其中,所述第一机顶盒获取所述系统参数,并将获取的所述系统参数发送至共享服务器的步骤,具体包括:所述第一机顶盒获取所述系统参数,并向所述共享服务器请求发送所述系统参数;所述共享服务器接收所述第一机顶盒的发送请求并发出同意发送的响应;所述第一机顶盒将获取的所述系统参数通过网络发送至所述共享服务器。
- 根据权利要求3所述的机顶盒系统参数设置方法,其中,所述共享服务器接收所述第一机顶盒发送的所述系统参数,并将所述系 统参数发送至与所述共享服务器连接的N台机顶盒的步骤,具体包括:所述共享服务器接收所述第一机顶盒发送的所述系统参数,通过网络广播的形式将所述系统参数发送至与所述共享服务器连接的N台机顶盒,其中N为自然数。
- 根据权利要求1~4任一项所述的机顶盒系统参数设置方法,其中,所述系统参数包括低噪声下变频器的类型、低噪声下变频器的频率、低噪声下变频器的工作电源、低噪声下变频器的输出方向、天线驱动设备的工作数据、22K开关的开关中的至少一种。
- 一种共享服务器,包括:数据接收模块,设置为接收第一机顶盒发送的系统参数;数据发送模块,设置为将接收到的所述系统参数发送至与所述共享服务器连接的N台机顶盒,其中N为自然数。
- 根据权利要求6所述的共享服务器,其中,还包括:请求响应模块,设置为接收所述第一机顶盒的发送请求并发出同意发送的响应。
- 根据权利要求6所述的共享服务器,其中,所述数据发送模块,设置为通过网络广播的形式将接收到的所述系统参数发送至与所述共享服务器连接的N台机顶盒。
- 根据权利要求6~8任一项所述的共享服务器,其中,所述系统参数包括低噪声下变频器的类型、低噪声下变频器的频率、低噪声下变频器的工作电源、低噪声下变频器的输出方向、天线驱动设备的工作数据、22K开关的开关中的至少一种。
- 一种机顶盒,包括:第一设置模块,设置为接收设置系统参数的指令,对第一机顶盒的系统参数进行设置;参数发送模块,设置为获取所述系统参数,并将获取的所述系统参数发送至共享服务器;第二设置模块,设置为根据所述系统参数对自身的系统参数进行设置。
- 根据权利要求10所述的机顶盒,其中,第一设置模块具体包括:校验单元,设置为接收用户输入的设置系统参数请求,检测用户输入的系统参数是否合法;设置单元,设置为若检测到用户输入的系统参数合法,则接收所述系统参数为所述第一机顶盒的系统参数。
- 根据权利要求11所述的机顶盒,其中,所述参数发送模块具体包括:第一发送单元,设置为获取所述系统参数,并向所述共享服务器请求发送所述系统参数;第二发送单元,设置为将获取的所述系统参数通过网络发送至所述共享服务器。
- 根据权利要求10~12任一项所述的机顶盒,其中,所述系统参数包括低噪声下变频器的类型、低噪声下变频器的频率、低噪声下变频器的工作电源、低噪声下变频器的输出方向、天线驱动设备的工作数据、22K开关的开关中的至少一种。
- 一种非暂态计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令设置为执行权利要求1-5中任一项的方法。
- 一种电子设备,包括:至少一个处理器;以及与所述至少一个处理器通信连接的存储器;其中,所述存储器存储有可被所述至少一个处理器执行的指令,所述指令被所述至少一个处理器执行,以使所述至少一个处理器执行权利要求1-5中任一项的方法。
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CN105933769A (zh) * | 2016-06-24 | 2016-09-07 | 深圳创维数字技术有限公司 | 一种机顶盒系统参数设置方法、共享服务器及机顶盒 |
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