WO2016119286A1 - 射频配置方法、装置及终端 - Google Patents

射频配置方法、装置及终端 Download PDF

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Publication number
WO2016119286A1
WO2016119286A1 PCT/CN2015/073445 CN2015073445W WO2016119286A1 WO 2016119286 A1 WO2016119286 A1 WO 2016119286A1 CN 2015073445 W CN2015073445 W CN 2015073445W WO 2016119286 A1 WO2016119286 A1 WO 2016119286A1
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radio frequency
parameters
terminal
hardware
hardware parameter
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French (fr)
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肖念
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Yulong Computer Telecommunication Scientific Shenzhen Co Ltd
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Yulong Computer Telecommunication Scientific Shenzhen Co Ltd
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/38Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
    • H04B1/40Circuits

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  • the present invention relates to the field of mobile terminal technologies, and in particular, to a radio frequency configuration method, apparatus, and terminal.
  • Multimode chips support more and more modes, and front-end circuit design and antenna design will become more and more complex.
  • the baseband software must control these devices efficiently and accurately to ensure proper terminal communication.
  • the current solution is mainly based on the design of the RF chip, the RF front-end circuit and the antenna, adapting the fixed driver code, loading the RF driver after the system is running, and calling the driver configuration in a specific scenario to operate the RF device in a specific mode.
  • the existing solution is only for a specific hardware design, loading the corresponding driver software.
  • the technical problem to be solved by the present invention is to provide a radio frequency configuration method, device and terminal for solving the problem that the prior art radio frequency driving cannot adapt to multiple radio frequency hardware circuits.
  • the present invention provides a radio frequency configuration method, including:
  • the hardware in the terminal is driven by the radio frequency drive.
  • the hardware parameters of the terminal include: radio frequency chip parameters, radio frequency front end circuit parameters, and antenna parameters.
  • the pre-stored sets of radio frequency drives respectively correspond to a plurality of sets of hardware parameter combinations set in advance.
  • radio frequency chip parameters the RF front end circuit parameters, and the antenna parameters of any two sets of hardware parameter combinations is different.
  • acquiring the radio frequency driver corresponding to the hardware parameter of the terminal specifically includes:
  • the radio frequency chip parameters the radio frequency front end circuit parameters and the antenna parameters of the terminal, among the preset multiple sets of hardware parameter combinations, the hardware parameter combinations that are completely consistent with the hardware parameters of the terminal are searched, and the group number of the hardware parameter combination is obtained;
  • the corresponding radio frequency driving is searched for, and the radio frequency driving is the radio frequency driving corresponding to the hardware parameter of the terminal.
  • the present invention also provides a radio frequency configuration apparatus, including:
  • a hardware parameter obtaining module configured to acquire hardware parameters in the terminal
  • the RF drive acquisition module is configured to acquire hardware parameters corresponding to the hardware parameters of the terminal in a plurality of sets of pre-stored radio frequency drives;
  • a driving module configured to drive hardware in the terminal by using the radio frequency driving.
  • the hardware parameters of the terminal include: radio frequency chip parameters, radio frequency front end circuit parameters, and antenna parameters.
  • the pre-stored plurality of sets of radio frequency drivers respectively correspond to a plurality of sets of hardware parameter combinations set in advance; wherein at least one of the radio frequency chip parameters, the radio frequency front end circuit parameters and the antenna parameters of any two sets of hardware parameter combinations are different.
  • the RF drive acquisition module is further used to:
  • the radio frequency chip parameters the radio frequency front end circuit parameters and the antenna parameters of the terminal, among the preset multiple sets of hardware parameter combinations, the hardware parameter combinations that are completely consistent with the hardware parameters of the terminal are searched, and the group number of the hardware parameter combination is obtained;
  • the corresponding radio frequency driving is searched for, and the radio frequency driving is the radio frequency driving corresponding to the hardware parameter of the terminal.
  • the present invention also provides a terminal, the terminal comprising a communication bus, a memory, and a processor, wherein:
  • the communication bus is configured to implement connection communication between the memory and the processor
  • the memory stores a set of program codes, and the processor calls the program code stored in the memory to perform the following operations:
  • the hardware in the terminal is driven by the radio frequency drive.
  • the memory stores hardware parameters of the terminal, and the hardware parameters of the terminal include: radio frequency chip parameters, radio frequency front end circuit parameters, and antenna parameters.
  • the plurality of sets of radio frequency drives pre-stored in the memory respectively correspond to a plurality of sets of hardware parameter combinations set in advance.
  • radio frequency chip parameters, the radio frequency front end circuit parameters and the antenna parameters of any two sets of hardware parameters in the memory is different.
  • the processor acquires a radio frequency driver corresponding to the hardware parameter of the terminal, specifically:
  • the processor searches for a hardware parameter combination that is completely consistent with the hardware parameters of the terminal, and obtains a combination of the hardware parameters, according to the radio frequency chip parameter of the terminal, the RF front-end circuit parameter, and the antenna parameter, in a preset combination of multiple hardware parameters.
  • Group No
  • the processor searches for a corresponding radio frequency drive in the pre-stored plurality of radio frequency drives according to the group number of the obtained hardware parameter combination, and the radio frequency drive is a radio frequency drive corresponding to the hardware parameter of the terminal.
  • the invention can set the multiple sets of radio frequency driving in advance.
  • the hardware radio frequency circuit changes or needs to adapt to different radio frequency circuits
  • only the plurality of sets of radio frequency drivers need to find the corresponding radio frequency driving, so that the hardware in the terminal can be driven without Redesigning the driver software eliminates the need for software burning and other work, improving the speed of product debugging and development.
  • FIG. 1 is a structural diagram of an RF hardware system of a conventional multi-mode intelligent terminal
  • FIG. 2 is a flowchart of a radio frequency configuration method according to an embodiment of the present invention.
  • FIG. 3 is a structural diagram of a radio frequency hardware system of a multi-mode intelligent terminal according to an embodiment of the present invention
  • FIG. 4 is a schematic structural diagram of a radio frequency configuration apparatus according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of a terminal according to an embodiment of the present invention.
  • an embodiment of the present invention relates to a radio frequency configuration method, including:
  • Step S101 acquiring hardware parameters in the terminal
  • Step S102 Obtain a radio frequency driving corresponding to the hardware parameter of the terminal in the pre-stored plurality of radio frequency driving according to the hardware parameter of the terminal;
  • Step S103 driving the hardware in the terminal by using the acquired radio frequency driving.
  • the hardware parameters of the terminal include: RF chip parameters, RF front-end circuit parameters, and antenna parameters.
  • the specific parameters of the above three parameters it may not be specifically limited, and only the hardware may be distinguished by the parameter.
  • the antenna parameters can be distinguished by using the model or position as long as they can distinguish different antennas.
  • a combination circuit of multiple RF hardwares is designed, that is, multiple sets of hardware parameters are obtained, wherein the RF chip parameters, the RF front-end circuit parameters and the antenna parameters of any two sets of hardware parameters are combined. At least one of the parameters is different.
  • each RF circuit corresponds to one RF driver.
  • the group number can be compiled for the hardware parameter combination, the drive number is programmed for each RF driver, and a correspondence table is set. Each group number corresponds to a drive number, and the corresponding relationship between the two can be obtained.
  • the hardware parameters of the terminal's RF circuit that is, obtain the RF chip parameters of the terminal, the RF front-end circuit parameters, and the antenna parameters;
  • the radio frequency chip parameters, the radio frequency front end circuit parameters and the antenna parameters of the terminal among the preset multiple sets of hardware parameter combinations, the hardware parameter combinations that are completely consistent with the hardware parameters of the terminal are searched, and the group number of the hardware parameter combination is obtained; Searching for a corresponding radio frequency drive in the pre-stored plurality of radio frequency drives according to the group number of the obtained hardware parameter combination, where the radio frequency drive is a radio frequency drive corresponding to the hardware parameter of the terminal;
  • the acquired hardware driver is used to drive the hardware in the terminal.
  • radio frequency circuit design of the terminal there are various schemes or variations of the radio frequency circuit design of the terminal (only two are shown in FIG. 3).
  • one radio frequency circuit includes a radio frequency chip a and an RF front end. Circuit a and antenna a; another radio frequency circuit includes a radio frequency chip b, a radio frequency front end circuit b, and an antenna b.
  • Two RF driver softwares are configured for two different hardware designs: RF_CONFIG A corresponds to the first RF circuit scheme; RF_CONFIG B corresponds to the second RF circuit scheme.
  • the terminal After the terminal is powered on, it checks the relevant hardware parameters of the RF circuit and matches the correct RF drive configuration according to the pre-corresponding relationship. If the RF circuit is RF chip a, RF front-end circuit a and antenna a, the RF front-end device-related initialization is performed. , load RF_CONFIG A. If the detection radio frequency circuit is the radio frequency chip b, the radio frequency front end circuit b and the antenna b; then the RF front end device related initialization is performed, and RF_CONFIG B is loaded.
  • an embodiment of the present invention further relates to a radio frequency configuration apparatus for implementing the foregoing method, including:
  • the hardware parameter obtaining module 201 is configured to acquire hardware parameters in the terminal;
  • the RF drive acquisition module 202 is configured to acquire hardware parameters corresponding to the hardware parameters of the terminal in a plurality of sets of pre-stored radio frequency drives;
  • the driving module 203 is configured to drive hardware in the terminal by using the radio frequency driving.
  • the hardware parameters of the terminal include: radio frequency chip parameters, radio frequency front end circuit parameters, and antenna parameters.
  • the pre-stored plurality of sets of radio frequency drivers respectively correspond to a plurality of sets of hardware parameter combinations preset in advance; wherein at least one of the radio frequency chip parameters, the radio frequency front end circuit parameters and the antenna parameters of any two sets of hardware parameter combinations are different.
  • the RF driving acquisition module 202 is further configured to: according to the RF chip parameters, the RF front-end circuit parameters, and the antenna parameters of the terminal, search for a hardware parameter combination that is completely consistent with the hardware parameters of the terminal in the preset multiple sets of hardware parameter combinations, and obtain The group number of the hardware parameter combination;
  • the corresponding radio frequency driving is searched for, and the radio frequency driving is the radio frequency driving corresponding to the hardware parameter of the terminal.
  • the embodiment of the present invention further relates to a terminal.
  • the terminal in this embodiment may be a mobile phone, a tablet computer with a radio frequency circuit, or other device including a radio frequency hardware circuit.
  • the terminal can include at least one processor 501, such as a CPU, a memory 503, and at least one bus 502.
  • the processor 501 can be combined with the radio frequency configuration device shown in FIG.
  • the bus 502 is used to connect the processor 501 and the memory 503.
  • the memory 503 may be a high-speed RAM memory or a non-volatile memory, such as a disk memory, for storing hardware parameters of the terminal.
  • the foregoing memory 503 is further configured to store a set of program codes, and the processor 501 is configured to call the program code stored in the memory 503 to perform the following operations:
  • the hardware in the terminal is driven by the radio frequency drive.
  • the hardware parameters of the terminal include: radio frequency chip parameters, radio frequency front end circuit parameters, and antenna parameters.
  • the plurality of sets of radio frequency drives pre-stored in the memory respectively correspond to a plurality of sets of hardware parameter combinations set in advance.
  • At least one of the radio frequency chip parameters, the radio frequency front end circuit parameters, and the antenna parameters of any two sets of hardware parameters in the memory is different.
  • the processor acquires a radio frequency driver corresponding to the hardware parameter of the terminal, specifically:
  • the processor searches for a hardware parameter combination that is completely consistent with the hardware parameters of the terminal, and obtains a combination of the hardware parameters, according to the radio frequency chip parameter of the terminal, the RF front-end circuit parameter, and the antenna parameter, in a preset combination of multiple hardware parameters.
  • Group No
  • the processor searches for a corresponding radio frequency drive in the pre-stored plurality of radio frequency drives according to the group number of the obtained hardware parameter combination, and the radio frequency drive is a radio frequency drive corresponding to the hardware parameter of the terminal.
  • the terminal introduced in the embodiment of the present invention may be used to implement some or all of the processes in the method embodiment introduced by the present invention in conjunction with FIG. 2.
  • the technical solution of the present invention is applicable to the terminal design stage.
  • the combination of multiple hardware RF solutions and antenna designs can be supported on the same software version, thereby avoiding frequent version upgrade changes. It facilitates fast and accurate verification of RF solutions, improves product design efficiency, and shortens product development cycle.
  • the technical solution of the present invention is also applicable to products that have been produced and sold. For multi-mode products, different hardware combinations can be driven to achieve different effects.
  • the invention has the advantages of simple scheme, convenient implementation, low cost and the like.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Transceivers (AREA)

Abstract

一种射频配置方法、装置及终端,方法包括:获取终端中的硬件参数(S101);根据终端的硬件参数,在预先存储的多组射频驱动中,获取与所述终端硬件参数对应的射频驱动(S102);利用所述射频驱动对所述终端中的硬件进行驱动(S103)。该方法通过预先设置多组射频驱动,当硬件射频电路变化,或者需要适应不同的射频电路时,只需要在多组射频驱动中查找对应的射频驱动,即可实现对终端中的硬件进行驱动,无需重新设计驱动软件,无需进行软件烧录等工作,提高了产品调试、研发的速度。

Description

射频配置方法、装置及终端
本申请要求于2015年01月27日提交中国专利局,申请号为CN201510039871.9、发明名称为“射频配置方法、装置及终端”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
本发明涉及移动终端技术领域,特别是涉及一种射频配置方法、装置及终端。
背景技术
目前多模智能终端射频和前端系统结构如图1所示。多模芯片支持的模式越来越多,前端电路设计和天线设计也会越来越复杂。基带软件必须有效准确地控制这些器件才能保证终端通信正常。目前的方案主要是根据射频芯片,射频前端电路和天线的设计,适配固定的驱动代码,系统运行后,加载射频驱动,在特定的场景下调用驱动配置这些射频器件工作在特定的模式。
现有方案只是针对特定硬件设计,加载对应驱动软件。存在以下缺陷:当射频前端器件或天线发生变化后,需要重新配置驱动软件,才能满足射频前端器件和/或天线设计的变化,驱动软件无法在多个射频硬件设计方案之间动态切换。
发明内容
本发明要解决的技术问题是提供一种射频配置方法、装置及终端,用以解决现有技术射频驱动不能适应多个射频硬件电路的问题。
为解决上述技术问题,一方面,本发明提供一种射频配置方法,包括:
获取终端中的硬件参数;
根据终端的硬件参数,在预先存储的多组射频驱动中,获取与所述终端硬件参数对应的射频驱动;
利用所述射频驱动对所述终端中的硬件进行驱动。
进一步,终端的硬件参数包括:射频芯片参数、射频前端电路参数和天线参数。
进一步,预先存储的多组射频驱动分别对应预先设置的多组硬件参数组合。
进一步,任意两组硬件参数组合的射频芯片参数、射频前端电路参数和天线参数中,至少有一个参数不相同。
进一步,获取与所述终端硬件参数对应的射频驱动,具体包括:
根据终端的射频芯片参数、射频前端电路参数和天线参数,在预先设置的多组硬件参数组合中,查找与终端的硬件参数完全一致的硬件参数组合,并获取该硬件参数组合的组号;
根据获取的硬件参数组合的组号,在预先存储的多组射频驱动中,查找与之对应的射频驱动,该射频驱动即为与所述终端硬件参数对应的射频驱动。
另一方面,本发明还提供一种射频配置装置,包括:
硬件参数获取模块,用于获取终端中的硬件参数;
射频驱动获取模块,用于终端的硬件参数,在预先存储的多组射频驱动中,获取与所述终端硬件参数对应的射频驱动;
驱动模块,用于利用所述射频驱动对所述终端中的硬件进行驱动。
进一步,终端的硬件参数包括:射频芯片参数、射频前端电路参数和天线参数。
进一步,预先存储的多组射频驱动分别对应预先设置的多组硬件参数组合;其中,任意两组硬件参数组合的射频芯片参数、射频前端电路参数和天线参数中,至少有一个参数不相同。
进一步,射频驱动获取模块还用于:
根据终端的射频芯片参数、射频前端电路参数和天线参数,在预先设置的多组硬件参数组合中,查找与终端的硬件参数完全一致的硬件参数组合,并获取该硬件参数组合的组号;
根据获取的硬件参数组合的组号,在预先存储的多组射频驱动中,查找与之对应的射频驱动,该射频驱动即为与所述终端硬件参数对应的射频驱动。
另一方面,本发明还提供一种终端,所述终端包括通信总线、存储器以及处理器,其中:
所述通信总线,用于实现所述存储器以及处理器之间的连接通信;
所述存储器中存储一组程序代码,且处理器调用存储器中存储的程序代码,用于执行以下操作:
获取终端中的硬件参数;
根据终端的硬件参数,在预先存储的多组射频驱动中,获取与所述终端硬件参数对应的射频驱动;
利用所述射频驱动对所述终端中的硬件进行驱动。
进一步的,所述存储器存储所述终端的硬件参数,所述终端的硬件参数包括:射频芯片参数、射频前端电路参数和天线参数。
进一步的,所述存储器中预先存储的多组射频驱动分别对应预先设置的多组硬件参数组合。
进一步的,所述存储器中任意两组硬件参数组合的射频芯片参数、射频前端电路参数和天线参数中,至少有一个参数不相同。
进一步的,所述处理器获取与所述终端硬件参数对应的射频驱动,具体为:
所述处理器根据终端的射频芯片参数、射频前端电路参数和天线参数,在预先设置的多组硬件参数组合中,查找与终端的硬件参数完全一致的硬件参数组合,并获取该硬件参数组合的组号;
所述处理器根据获取的硬件参数组合的组号,在预先存储的多组射频驱动中,查找与之对应的射频驱动,该射频驱动即为与所述终端硬件参数对应的射频驱动。
本发明有益效果如下:
本发明通过预先设置多组射频驱动,当硬件射频电路变化,或者需要适应不同的射频电路时,只需要在多组射频驱动查找对应的射频驱动,即可实现对终端中的硬件进行驱动,无需重新设计驱动软件,无需进行软件烧录等工作,提高了产品调试、研发的速度。
附图说明
图1是现有多模智能终端的射频硬件系统结构图;
图2是本发明实施例一种射频配置方法的流程图;
图3是本发明实施例一种多模智能终端射频硬件系统结构图;
图4是本发明实施例一种射频配置装置的结构示意图;
图5是本发明实施例一种终端的结构示意图。
具体实施方式
以下结合附图以及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不限定本发明。
图2所示,本发明实施例涉及一种射频配置方法,包括:
步骤S101,获取终端中的硬件参数;
步骤S102,根据终端的硬件参数,在预先存储的多组射频驱动中,获取与终端硬件参数对应的射频驱动;
步骤S103,利用获取的射频驱动对终端中的硬件进行驱动。
终端的硬件参数包括:射频芯片参数、射频前端电路参数和天线参数。至于上述三个参数具体为何种参数,则可以不必具体限定,只能要够通过该参数对硬件进行区分即可。例如,天线参数,只要能够区分不同的天线,采用型号或位置作为参数均可。
实施上述方法之前,首先需要根据终端的设计需求,设计多种射频硬件的组合电路,即得到多组硬件参数组合,其中,任意两组硬件参数组合的射频芯片参数、射频前端电路参数和天线参数中,至少有一个参数不相同。
针对不同的硬件参数组合,分别配置与之对应的射频驱动,即:每一种射频电路(对应一组硬件参数组合)都对应一个射频驱动。具体对应关系,可以为硬件参数组合编制组号,为每个射频驱动编制驱动编号,设置一张对应表,每一个组号对应一个驱动编号,即可获得二者之间的对应关系。
具体驱动时,首选获取终端的射频电路的硬件参数,即获取终端的射频芯片参数、射频前端电路参数和天线参数;
然后根据终端的射频芯片参数、射频前端电路参数和天线参数,在预先设置的多组硬件参数组合中,查找与终端的硬件参数完全一致的硬件参数组合,并获取该硬件参数组合的组号;根据获取的硬件参数组合的组号,在预先存储的多组射频驱动中,查找与之对应的射频驱动,该射频驱动即为与所述终端硬件参数对应的射频驱动;
最后利用获取的射频驱动对终端中的硬件进行驱动。
下面以一个具体实例进行说明:
如图3所示,终端的射频电路设计存在的多种方案或变化的可能(图3中仅示出两种),以两种射频电路为例,一种射频电路包括射频芯片a、射频前端电路a和天线a;另一种射频电路包括射频芯片b、射频前端电路b和天线b。针对两种不同硬件设计,配置两种射频驱动软件,分别为:RF_CONFIG A对应第一种射频电路方案;RF_CONFIG B对应第二种射频电路方案。
终端开机后,会检查射频电路的相关硬件参数,根据预先的对应关系匹配正确的射频驱动配置,如果检测射频电路是射频芯片a、射频前端电路a和天线a;则进行射频前端器件相关的初始化,加载RF_CONFIG A。如果检测射频电路是射频芯片b、射频前端电路b和天线b;则进行射频前端器件相关的初始化,加载RF_CONFIG B。
如图4所示,本发明实施例还涉及一种实现上述方法的射频配置装置,包括:
硬件参数获取模块201,用于获取终端中的硬件参数;
射频驱动获取模块202,用于终端的硬件参数,在预先存储的多组射频驱动中,获取与所述终端硬件参数对应的射频驱动;
驱动模块203,用于利用所述射频驱动对所述终端中的硬件进行驱动。
其中,终端的硬件参数包括:射频芯片参数、射频前端电路参数和天线参数。
预先存储的多组射频驱动分别对应预先设置的多组硬件参数组合;其中,任意两组硬件参数组合的射频芯片参数、射频前端电路参数和天线参数中,至少有一个参数不相同。
射频驱动获取模块202还用于:根据终端的射频芯片参数、射频前端电路参数和天线参数,在预先设置的多组硬件参数组合中,查找与终端的硬件参数完全一致的硬件参数组合,并获取该硬件参数组合的组号;
根据获取的硬件参数组合的组号,在预先存储的多组射频驱动中,查找与之对应的射频驱动,该射频驱动即为与所述终端硬件参数对应的射频驱动。
如图5所示,本发明实施例还涉及一种终端,本实施例的终端可以为手机,带有射频电路的平板电脑,或者其它包含射频硬件电路的设备。如图所示,所述终端可以包括:至少一个处理器501,例如CPU,存储器503和至少一个总线502,处理器501可以结合图4所示的射频配置装置。
其中,上述总线502用于连接上述处理器501和存储器503。
其中,上述存储器503可以是高速RAM存储器,也可为非不稳定的存储器(non-volatile memory),例如磁盘存储器,用于存储终端的硬件参数。上述存储器503还用于存储一组程序代码,上述处理器501用于调用存储器503中存储的程序代码,执行如下操作:
获取终端中的硬件参数;
根据终端的硬件参数,在预先存储的多组射频驱动中,获取与所述终端硬件参数对应的射频驱动;
利用所述射频驱动对所述终端中的硬件进行驱动。
其中所述终端的硬件参数包括:射频芯片参数、射频前端电路参数和天线参数。
所述存储器中预先存储的多组射频驱动分别对应预先设置的多组硬件参数组合。
所述存储器中任意两组硬件参数组合的射频芯片参数、射频前端电路参数和天线参数中,至少有一个参数不相同。
在可选实施例中,所述处理器获取与所述终端硬件参数对应的射频驱动,具体为:
所述处理器根据终端的射频芯片参数、射频前端电路参数和天线参数,在预先设置的多组硬件参数组合中,查找与终端的硬件参数完全一致的硬件参数组合,并获取该硬件参数组合的组号;
所述处理器根据获取的硬件参数组合的组号,在预先存储的多组射频驱动中,查找与之对应的射频驱动,该射频驱动即为与所述终端硬件参数对应的射频驱动。
具体的,本发明实施例中介绍的终端可以用以实施本发明结合图2介绍的方法实施例中的部分或全部流程。
本发明的技术方案适用于终端设计阶段,针对设计阶段存在的多种射频硬件电路,可以在同一软件版本基础上,支持多种硬件射频方案和天线设计的组合,避免了频繁的版本升级改动,便于射频方案的快速准确验证,提高了产品的设计效率,缩短了产品的研发周期。另外,本发明的技术方案也适用于已经生产销售的产品,针对多模产品,可以通过驱动不同的硬件组合,以实现不同的效果。本发明具有方案简单、便于实现、成本低等优点。
尽管为示例目的,已经公开了本发明的优选实施例,本领域的技术人员将意识到各种改进、增加和取代也是可能的,因此,本发明的范围应当不限于上述实施例。

Claims (14)

  1. 一种射频配置方法,其特征在于,包括:
    获取终端中的硬件参数;
    根据终端的硬件参数,在预先存储的多组射频驱动中,获取与所述终端硬件参数对应的射频驱动;
    利用所述射频驱动对所述终端中的硬件进行驱动。
  2. 如权利要求1所述的射频配置方法,其特征在于,终端的硬件参数包括:射频芯片参数、射频前端电路参数和天线参数。
  3. 如权利要求2所述的射频配置方法,其特征在于,预先存储的多组射频驱动分别对应预先设置的多组硬件参数组合。
  4. 如权利要求3所述的射频配置方法,其特征在于,任意两组硬件参数组合的射频芯片参数、射频前端电路参数和天线参数中,至少有一个参数不相同。
  5. 如权利要求4所述的射频配置方法,其特征在于,获取与所述终端硬件参数对应的射频驱动,具体包括:
    根据终端的射频芯片参数、射频前端电路参数和天线参数,在预先设置的多组硬件参数组合中,查找与终端的硬件参数完全一致的硬件参数组合,并获取该硬件参数组合的组号;
    根据获取的硬件参数组合的组号,在预先存储的多组射频驱动中,查找与之对应的射频驱动,该射频驱动即为与所述终端硬件参数对应的射频驱动。
  6. 一种射频配置装置,其特征在于,包括:
    硬件参数获取模块,用于获取终端中的硬件参数;
    射频驱动获取模块,用于终端的硬件参数,在预先存储的多组射频驱动中,获取与所述终端硬件参数对应的射频驱动;
    驱动模块,用于利用所述射频驱动对所述终端中的硬件进行驱动。
  7. 如权利要求6所述的射频配置装置,其特征在于,终端的硬件参数包括:射频芯片参数、射频前端电路参数和天线参数。
  8. 如权利要求7所述的射频配置装置,其特征在于,预先存储的多组射频驱动分别对应预先设置的多组硬件参数组合;其中,任意两组硬件参数组合的射频芯片参数、射频前端电路参数和天线参数中,至少有一个参数不相同。
  9. 如权利要求8所述的射频配置装置,其特征在于,射频驱动获取模块还用于:
    根据终端的射频芯片参数、射频前端电路参数和天线参数,在预先设置的多组硬件参数组合中,查找与终端的硬件参数完全一致的硬件参数组合,并获取该硬件参数组合的组号;
    根据获取的硬件参数组合的组号,在预先存储的多组射频驱动中,查找与之对应的射频驱动,该射频驱动即为与所述终端硬件参数对应的射频驱动。
  10. 一种终端,其特征在于,所述终端包括通信总线、存储器以及处理器,其中:
    所述通信总线,用于实现所述存储器以及处理器之间的连接通信;
    所述存储器中存储一组程序代码,且处理器调用存储器中存储的程序代码,用于执行以下操作:
    获取终端中的硬件参数;
    根据终端的硬件参数,在预先存储的多组射频驱动中,获取与所述终端硬件参数对应的射频驱动;
    利用所述射频驱动对所述终端中的硬件进行驱动。
  11. 如权利要求10所述的终端,其特征在于,所述存储器存储所述终端的硬件参数,所述终端的硬件参数包括:射频芯片参数、射频前端电路参数和天线参数。
  12. 如权利要求11所述的终端,其特征在于,所述存储器中预先存储的 多组射频驱动分别对应预先设置的多组硬件参数组合。
  13. 如权利要求12所述的终端,其特征在于,所述存储器中任意两组硬件参数组合的射频芯片参数、射频前端电路参数和天线参数中,至少有一个参数不相同。
  14. 如权利要求13所述的终端,其特征在于,所述处理器获取与所述终端硬件参数对应的射频驱动,具体为:
    所述处理器根据终端的射频芯片参数、射频前端电路参数和天线参数,在预先设置的多组硬件参数组合中,查找与终端的硬件参数完全一致的硬件参数组合,并获取该硬件参数组合的组号;
    所述处理器根据获取的硬件参数组合的组号,在预先存储的多组射频驱动中,查找与之对应的射频驱动,该射频驱动即为与所述终端硬件参数对应的射频驱动。
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