WO2018170818A1 - 一种网络切换方法和装置 - Google Patents

一种网络切换方法和装置 Download PDF

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WO2018170818A1
WO2018170818A1 PCT/CN2017/077826 CN2017077826W WO2018170818A1 WO 2018170818 A1 WO2018170818 A1 WO 2018170818A1 CN 2017077826 W CN2017077826 W CN 2017077826W WO 2018170818 A1 WO2018170818 A1 WO 2018170818A1
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power consumption
network
mobile terminal
mobile
mobile network
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PCT/CN2017/077826
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English (en)
French (fr)
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李卓希
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李卓希
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Priority to PCT/CN2017/077826 priority Critical patent/WO2018170818A1/zh
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

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  • the present invention relates to the field of electronic communication technologies, and in particular, to a network switching method and apparatus.
  • the technical problem to be solved by the present invention is that the mobile terminal of the prior art is usually a mobile network connected to a default mode for performing operations such as a call or a network browsing, but the mobile network of the default mode is for different operations. It is not the most energy-saving option. Users usually only switch the mobile network connected to different modes manually. This not only greatly reduces the user experience of the mobile terminal, but also is not conducive to the improvement of the mobile terminal's battery life.
  • an embodiment of the present invention provides a network switching method, where the network switching method is used to implement a handover connection between a mobile terminal and a mobile network of different modes, and the method includes:
  • the embodiment of the present invention further provides another network switching method, where the network switching method is used to implement a handover connection between a mobile terminal and a mobile network of different modes, and the method includes:
  • S203 Acquire a current remaining power of the mobile terminal, and determine, according to the remaining power, whether to connect the mobile terminal to a mobile network with a minimum average power consumption required to perform the different operations.
  • acquiring the power consumption is implemented by detecting, when the mobile terminal is connected to a different mode mobile network, an operating current when performing the different operation;
  • the different operations include a voice call, a video call, a webpage browsing, or use of an application;
  • S102 further includes: identifying, according to the power consumption ordering, a mobile network that minimizes power consumption required to perform a certain operation as a highest priority connection level network;
  • the mobile terminal is switched and connected to a mobile network with a minimum average power consumption required to perform the different operations;
  • the mobile terminal is switched to connect to a mobile network with optimal network quality
  • the mobile network with optimal network quality is determined based on at least one of a transmission speed, a bit error rate, and a signal strength of the mobile network of the different mode.
  • the embodiment of the present invention further provides a network switching apparatus, where the network switching apparatus is configured to implement a handover connection between a mobile terminal and a mobile network of different modes, where the apparatus package Including: a processing unit, a current detecting unit, a storage unit, and a comparison unit, wherein
  • the current detecting unit is configured to detect an operating current of the mobile terminal performing different operations when connected to the different mode mobile network;
  • the processing unit is capable of acquiring, according to the operating current, an average power consumption when the mobile terminal performs the different operations under the different modes of mobile network connection or performing all the different operations, and also Capable of detecting the current remaining power of the mobile terminal;
  • the storage unit is capable of storing the respective power consumption data, the average power consumption data, the remaining power consumption data, and a preset power consumption threshold;
  • the comparing unit is capable of sorting the respective power consumption data and the average power consumption data by a numerical magnitude, and comparing the remaining power amount with the preset power consumption threshold;
  • the processing unit implements the mobile terminal and the said based on an operation currently performed by the mobile terminal and an ordering of the respective power consumption data, or based on a result of the comparison processing and an ordering of the average power consumption data Switching connection operations between different modes of mobile networks. ;
  • processing unit may further acquire the mobile network of the different mode regarding the transmission speed, the bit error rate or the signal strength as the network quality data, and use the network quality data as the reference data of the handover connection operation.
  • the present invention provides a network switching method and apparatus by the above technical solution, which determines whether a need is needed by determining battery power consumption of different modes of mobile networks under different mobile terminal operations, and combining current battery power detection. Automatically switch the mobile network connected to the mobile terminal, which can maximize the battery life of the mobile terminal, and also eliminate the trouble of the user manually switching the mobile network, and improve the user experience of the mobile terminal, thereby providing a A fast and convenient network switching method.
  • FIG. 1 is a schematic flowchart of a network switching method according to an embodiment of the present invention.
  • FIG. 2 is a schematic flowchart of another network switching method according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of a network switching apparatus according to an embodiment of the present invention.
  • FIG. 1 is a schematic flowchart of a network switching method according to an embodiment of the present invention.
  • the network switching method includes:
  • the mobile terminal can switch between different modes of the mobile network, that is, the mobile terminal can switch between different modes of the mobile network under the same mobile communication carrier, or can implement different mobile communication by setting multiple SIM cards.
  • the mobile network switching of the operator such as dual-card dual-standby mode, for mobile network connection, wherein the mode of the mobile network may include CDMA, TD-SCDMA, WCDMA, GSM, LTE, TD-LTE or FDD LTE, etc.
  • the transmission speeds of mobile networks are different, and their respective power consumptions are not the same. In general, the mobile network with higher transmission speed will have more power consumption. According to relevant experimental data, the above modes are known.
  • the order of the mobile network regarding power consumption is FDD LTE>CDMA>WCDMA>TD-LTE>GSM TD-SCDMA.
  • the power consumption of the different mode mobile networks is positively correlated with the operating current when the corresponding operation is performed, so that the corresponding power consumption can be obtained by detecting the operating current of the mobile terminal under the different mode mobile network.
  • the mobile terminal performs different operations such as voice call, video call, web browsing or application using the same time period T, and acquires corresponding working currents I11, I12, I13;
  • the mobile terminal performs different operations such as voice call, video call or web page browsing at the same time T, and acquires corresponding working currents I21, I22, I23; In this way, the mobile terminal traverses all of its connected mobile networks while acquiring the working power required to perform different operations.
  • the flow, and the corresponding power consumption is calculated by the working current, thereby generating a power consumption table for different operations in different modes of the mobile network.
  • the mobile terminal based on the power consumption table generated by S101, the mobile terminal performs power consumption sorting in different mode mobile networks for each operation in the table, and marks the mobile network that is accessed when each operation has the minimum power consumption, That is, the mobile network feature code "1" is given, so as to obtain an optimal mobile network selection regarding the power consumption amount when the mobile terminal performs different operations, and the feature code is used as a start signal for triggering the mobile terminal to perform different modes of mobile network conversion.
  • the mobile network identified with the signature "1" will be divided into the first priority network.
  • the mobile terminal may also set an relevant power consumption threshold for different operations, and the mobile terminal compares the power consumption of a certain operation in different mobile network access situations with the power consumption threshold, when the power consumption is less than or equal to When the power consumption threshold is reached, the corresponding mobile network except the mobile network with the smallest power consumption is divided into the second priority network. When the power consumption is greater than the power consumption threshold, the corresponding mobile network is divided into the first A three-priority network, and the priority levels of different mobile networks are recorded in the power consumption table. The priority levels of different mobile networks determine the order in which the mobile terminals are connected.
  • the mobile terminal detects the currently performed operation, and obtains a corresponding operation code from the operation, and the mobile terminal uses the operation code as an index to query the corresponding operation in the power consumption table with priority division generated in S102.
  • the query process is: the mobile terminal accesses each different mode of the mobile network in the table, and when the signature is triggered to the feature code "1" during the access process, the access is stopped, and the current location is The mobile network identity selects the connected mobile network for the mobile terminal.
  • a handover command is issued to enable the mobile terminal to switch to the target mobile network, and if the mobile network connected to the current mobile terminal is the same as the target network, then a maintenance command is issued.
  • the mobile terminal maintains the current mobile network connection status unchanged.
  • the mobile terminal performs the target mobile network before performing the target mobile network connection.
  • the detection of the access status that is, if the access status of the target mobile network is allowed to be accessed, the mobile terminal performs a corresponding network handover connection operation, and if the access status of the target mobile network is forbidden, the mobile terminal will have the second priority level.
  • the mobile network is connected.
  • the mobile terminal connects with the mobile network having the third priority level, thereby ensuring that the mobile terminal can always maintain the mobile network.
  • the network switching method acquires the working current of different operations by detecting the mobile terminal in different mode mobile network connection, thereby obtaining corresponding power consumption, and moving the different modes according to the power consumption value.
  • the network performs the ordering of the connection priority levels.
  • This connection mode enables the mobile terminal to automatically select the mobile network that is compatible with the current operation to connect, which not only eliminates the manual step of mobile network switching to the mobile terminal, but also ensures that the mobile terminal is In any case, it is always possible to connect to the mobile network with the least power consumption, thus extending the battery life of the mobile terminal and increasing the battery life.
  • FIG. 2 is a schematic flowchart of another network switching method according to an embodiment of the present invention.
  • the network switching method includes:
  • the mobile terminal can switch between different modes of mobile networks, and the power consumption of the different modes of the mobile network is positively correlated with the operating current when the corresponding operation is performed, so as to detect that the mobile terminal is accessing the mobile network under different modes.
  • the operating current can be used to obtain its corresponding power consumption.
  • the mobile terminal accesses the first mode mobile network
  • different operations such as voice call, video call or web browsing are performed in the same time period T, and corresponding working currents I11, I12, I13 are acquired; then, moving
  • the terminal performs different operations such as voice call, video call, webpage browsing or application using the same time T, and obtains corresponding working currents I21, I22, and I23;
  • the mobile terminal traverses all the mobile networks that can be connected, obtains the working current required for different operations, and calculates the corresponding power consumption through the working current, thereby generating power consumption of different operations in different modes of the mobile network. table.
  • the connection of the four mobile networks of GSM can obtain the average power consumption P1, P2 of the mobile terminal when performing operations such as voice call, video call and web browsing in the four connection states according to the power consumption consumption table.
  • P3, P4 and sort the above four values according to the average power consumption value from small to large, thereby determining the connection priority level of the corresponding four mobile networks.
  • S203 Acquire a current remaining power of the mobile terminal, and determine, according to the remaining power, whether to connect the mobile terminal to a mobile network with a minimum average power consumption when performing different operations.
  • the mobile terminal detects the remaining battery power of the current battery, and compares the remaining power amount with a preset power consumption threshold. If the remaining power is less than the preset power threshold, the mobile with the smallest average power consumption in S202.
  • the network is connected to the network as a target, so that the mobile terminal is connected to the target connection network, and if the remaining power is greater than or equal to the preset power threshold, the network quality data of the mobile network connectable by the mobile terminal is obtained, so that the mobile terminal Connected to a mobile network having optimal network quality, wherein the network quality data includes at least one of a transmission speed, a bit error rate, and a signal strength of the mobile network.
  • the mobile network is also sorted according to the priority of the network quality data.
  • the mobile terminal is connected to A mobile network with a sub-optimal network quality ensures that the mobile terminal can maintain an optimal network connection state when the power is sufficient.
  • the network switching method obtains the working power of different operations by detecting the mobile terminal in different mode mobile network connections, thereby obtaining corresponding power consumption, and calculating the mobile in the case of different modes of mobile network connection.
  • the average power consumption value of the terminal, and according to the average power consumption value, the connection priority order of the mobile networks of different modes is sorted, and the connection mode enables the mobile terminal to select the mobile network with the lowest power consumption in the case of insufficient power.
  • the connection is made to effectively extend the battery life, and at the same time, the mobile terminal can select the mobile network with the best network quality in the case of sufficient power to ensure high-quality communication of the mobile terminal.
  • FIG. 3 is a schematic structural diagram of a network switching apparatus according to an embodiment of the present invention.
  • the network switching device includes a processing unit, a current detecting unit, a storage unit, and a comparing unit.
  • the current detecting unit is configured to detect an operating current when the mobile terminal performs different operations when connected to different modes of the mobile network, and transmit the working current to the processing unit.
  • the processing unit is configured to control the working states of the current detecting unit, the storage unit and the comparing unit, and the processing unit obtains the respective power consumption when performing different operations under different mode mobile network connections after receiving the working current data, or moves in different modes.
  • the average power consumption of all operations is performed under the network connection, and the processing unit can also acquire the current remaining power of the mobile terminal, and transmit the above related power consumption data and remaining power data to the comparison unit.
  • the comparing unit is configured to receive power consumption data and remaining power data transmitted by the processing unit, and perform comparison sorting processing on the data. Specifically, after receiving the relevant power consumption data, the comparing unit sorts the power consumption data according to the value, so as to obtain a mobile network corresponding to the minimum power consumption value or the minimum average power consumption value; and the remaining power data and the pre-charge data The set power thresholds are compared to obtain corresponding power comparison results.
  • the storage unit is configured to store the foregoing power consumption data, remaining power data, a preset power threshold, and a power consumption table.
  • the network switching device can be used to perform the methods illustrated in Figures 1 and 2. With regard to the meanings and examples of the terms involved in the present embodiment, reference may be made to the embodiments corresponding to FIGS. 1 and 2. I will not repeat them here.
  • the network switching device obtains the corresponding power consumption or the average power consumption by detecting the working current of the different operations of the mobile terminal in different mode mobile network connections, so as to select different modes of movement as the switching. Based on the network, the network switching device can improve the use efficiency of the mobile terminal battery, extend the battery life, and also enable the mobile terminal to automatically switch to the different mode mobile network.
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).

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Abstract

本发明实施例公开了一种网路切换方法,所述网络切换方法用于实现移动终端与不同模式的移动网络的切换连接,所述方法包括:获取所述移动终端与所述不同模式的移动网络连接下,执行不同操作时的功耗;针对所述不同操作中的每一个,获取每一个操作在所述不同模式的移动网络连接下的功耗排序;获取所述移动终端当前执行的操作状态,并将所述移动终端切换连接到执行当前所述操作时所需功耗最小的移动网络上。本发明实施例还公开了一种网络切换装置。采用本发明,能提供一种提高移动终端电池续航时间的快速便捷的网络切换方法。

Description

一种网络切换方法和装置 技术领域
本发明涉及电子通信技术领域,尤其涉及一种网络切换方法和装置。
背景技术
随着移动通信技术的发展,移动通信网络也经历了2G、3G和4G网络的快速前进,并且在移动通信市场上,不同移动通信运营商针对自身提供的移动通信网络都有相应的网络制式,这导致移动通信网络环境中多种不同网络制式混合共存现状的存在。通常来说,不同移动通信运营商提供的移动网络之间并不存在关联性,并且相同的移动终端在连接不同移动网络的前提下,其进行语音通话、视频通话和网页浏览等操作时,移动终端的电池电量的消耗也是不尽相同的,比如,当用户使用移动终端进行语音通话时,移动终端连接WCDMA网络下消耗的电量比连接TDSCDMA网络消耗的电量要多。可见,移动终端连接不同移动网络时,其对电池电量的消耗也是不尽相同的,同时对移动终端的电池续航能力也有不同影响。
发明内容
针对上述现有技术的缺陷,本发明所要解决的技术问题在于现有技术的移动终端通常是连接默认模式的移动网络进行通话或者网络浏览等操作,但是该默认模式的移动网络针对不同的操作并不是最节电的选择,用户通常只能手动切换连接不同模式的移动网络,这不仅大大地降低了移动终端的用户使用体验,而且也不利于移动终端续航时间的提高。
为了解决上述技术问题,本发明实施例提供一种网络切换方法,其特征在于,所述网络切换方法用于实现移动终端与不同模式的移动网络的切换连接,所述方法包括:
S101、获取所述移动终端与所述不同模式的移动网络连接下,执行不同操作时的功耗;
S102、针对所述不同操作中的每一个,获取每一个操作在所述不同模式的 移动网络连接下的功耗排序;
S103、获取所述移动终端当前执行的操作状态,并将所述移动终端切换连接到执行当前所述操作时所需功耗最小的移动网络上;
本发明实施例还提供另一种网络切换方法,其特征在于,所述网络切换方法用于实现移动终端与不同模式的移动网络的切换连接,所述方法包括:
S201、获取所述移动终端与所述不同模式的移动网络连接下,执行不同操作时的功耗;
S202、获取所述移动终端在所述不同模式的移动网络下执行所述不同操作的平均功耗排序;
S203、获取所述移动终端当前剩余电量,基于所述剩余电量来决定是否将所述移动终端切换连接到执行所述不同操作时所需平均功耗最小的移动网络上;
进一步,在S101或S201中,获取所述功耗是在所述移动终端与不同模式的移动网络连接下检测执行所述不同操作时的工作电流来实现的;
进一步,在S101或S201中,所述不同操作包括语音通话、视频通话、网页浏览或者应用程序的使用;
进一步,S102还包括基于所述功耗排序,将执行某一特定操作时所需功耗最小的移动网络标识为最高优先连接级别网络;
进一步,在S103中,若所述所需功耗最小的移动网络处于禁止访问状态,则将所述移动终端切换连接至具有第二最小功耗的移动网络上;
进一步,在S203中,若所述剩余电量小于预设的电量阈值,则将所述移动终端切换连接至执行所述不同操作时所需平均功耗最小的移动网络上;
若所述剩余电量大于或等于所述预设的电量阈值,则将所述移动终端切换连接至具有最优网络质量的移动网络上;
进一步,在S203中,所述具有最优网络质量的移动网络是基于所述不同模式的移动网络的传输速度、误码率和信号强度中的至少一个数据判断得出的。
相应地,本发明实施例还提供一种网络切换装置,其特征在于,所述网络切换装置用于实现移动终端与不同模式的移动网络的切换连接,所述装置包 括:处理单元、电流检测单元、存储单元和比较单元,其中
所述电流检测单元用于检测所述移动终端在与所述不同模式的移动网络连接时执行不同操作的工作电流;
所述处理单元能够基于所述工作电流获取所述移动终端与所述不同模式的移动网络连接下执行所述不同操作时各自的功耗或者执行所有所述不同操作时的平均功耗,并且还能够检测所述移动终端当前的剩余电量;
所述存储单元能够存储所述各自的功耗数据、所述平均功耗数据、所述剩余电量数据和预设的电量阈值;
所述比较单元能够将所述各自的功耗数据和所述平均功耗数据进行数值大小的排序,以及将所述剩余电量与所述预设的电量阈值进行比较处理;
所述处理单元基于所述移动终端当前执行的操作和所述各自的功耗数据的排序,或者基于所述比较处理的结果和所述平均功耗数据的排序来实施所述移动终端与所述不同模式的移动网络之间的切换连接操作。;
进一步,所述处理单元还能获取所述不同模式的移动网络关于传输速度、误码率或者信号强度作为网络质量数据,并将所述网络质量数据作为所述切换连接操作的参考数据。
本发明通过上述技术方案提供一种网络切换方法和装置,该方法和装置通过确定不同模式的移动网络在不同移动终端操作下的电池功耗,并结合当前检测电池的剩余电量,来确定是否需要自动切换移动终端所连接的移动网络,这样能够最大限度地提高移动终端电池的续航时间,同时也免去了用户手动进行移动网络切换的麻烦,以及改善用户对移动终端的使用体验,从而提供一种快速便捷的网络切换方法。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明实施例提供的一种网络切换方法的流程示意图;
图2是本发明实施例提供的另一种网络切换方法的流程示意图;
图3是本发明实施例提供的一种网络切换装置的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
参见图1,为本发明实施例提供的一种网络切换方法的流程示意图,在本发明实施例中,所述网络切换方法包括:
S101、获取移动终端与不同模式的移动网络连接下,执行不同操作时的功耗;
具体而言,移动终端能够在不同模式的移动网络之间进行切换,即移动终端可以在同一移动通信运营商下切换不同模式的移动网络,也可以通过设置多个SIM卡的方式实现不同移动通信运营商的移动网络切换,如双卡双待的方式进行移动网络连接,其中移动网络的模式可包括CDMA、TD-SCDMA、WCDMA、GSM、LTE、TD-LTE或、FDD LTE等,上述模式的移动网络的传输速度各不相同,其各自的功率消耗也不尽相同,总的来说,传输速度越大的移动网络,其功率消耗量也会越大,根据相关实验数据可知,上述模式的移动网络关于功率消耗量的排序为FDD LTE>CDMA>WCDMA>TD-LTE>GSM TD-SCDMA。
实际上,不同模式移动网络的功率消耗与其进行相应操作时的工作电流呈正相关,这样通过检测移动终端在接入不同模式移动网络下的工作电流就能获得其相应的功率消耗。移动终端在接入第一模式移动网络的情况下,以相同的时间段T进行如语音通话、视频通话、网页浏览或者应用程序的使用等不同操作,并且获取其对应的工作电流I11、I12、I13;接着,移动终端在接入第二模式移动网络的情况下,以相同的时间T进行语音通话、视频通话或者网页浏览等不同操作,并且获取其对应的工作电流I21、I22、I23;以此类推,移动终端遍历其所有能够连接的移动网络,同时获取进行不同操作所需的工作电 流,并通过该工作电流计算出对应的功率消耗,从而生成不同操作在不同模式移动网络下的功率消耗表。
S102、针对不同操作中的每一个,获取每一个操作在不同模式的移动网络连接下的功耗排序;
具体而言,基于S101生成的功率消耗表,移动终端针对表中的每一个操作进行不同模式移动网络下的功耗排序,并且对于每一操作具有最小功耗时接入的移动网络进行标记,即赋予该移动网络特征码“1”,这样获取移动终端进行不同操作时关于功耗量的最优移动网络选择,并且该特征码是用作触发移动终端进行不同模式的移动网络转换的启动信号,此外,针对某一特定操作,标识有特征码“1”的移动网络会被划分为第一优先级别网络。
实际上,移动终端还可针对不同的操作设置相关的功耗阈值,移动终端将某一操作在不同移动网络接入情况下的功率消耗与该功耗阈值进行比较,当该功率消耗小于或等于该功耗阈值时,对应的除了功耗最小的移动网络外的其他移动网络都会被划分为第二优先级别网络,当该功率消耗大于该功耗阈值时,对应的移动网络会被划分为第三优先级别网络,并且不同移动网络的优先级别会记录在该功率消耗表中。不同移动网络所具有的优先级别决定移动终端与其进行连接的顺序。
S103、获取移动终端当前执行的操作状态,并将移动终端切换连接到执行当前操作时所需功耗最小的移动网络上;
具体而言,移动终端检测当前执行的操作,并从该操作中获取相应的操作码,移动终端以此操作码为索引,在S102中生成的具有优先级别划分的功率消耗表中查询对应的操作可供选择连接的移动网络,该查询过程为:移动终端以此访问表中的每个不同模式的移动网络,当访问过程中触发到特征码“1”时,停止访问,并将当前所在的移动网络标识为移动终端选择连接的目标移动网络。若当前移动终端连接的移动网络与该目标移动网络不同,则发出切换指令,使移动终端切换连接到目标移动网络,若当前移动终端连接的移动网络与该目标网络相同,则发出维持指令,则移动终端维持当前的移动网络连接状态不变。
进一步,移动终端在进行目标移动网络连接之前,还对目标移动网络进行 访问状态的检测,即若目标移动网络的访问状态为允许访问时,移动终端进行相应的网络切换连接操作,若目标移动网络的访问状态为禁止访问时,则移动终端将与具有第二优先级别的移动网络进行连接,此外,若具有第二优先级别的所有移动网络的访问状态也是禁止访问,移动终端就会与具有第三优先级别的移动网络进行连接,从而保证移动终端能够始终维持移动网络的连接状态,并且能够进行功率消耗量最小的移动网络选择连接。
从上述实施例可以看出,该网络切换方法通过检测移动终端在不同模式移动网络连接情况下进行不同操作的工作电流,从而获取对应的功率消耗,并根据该功率消耗值,对不同模式的移动网络进行连接优先级别的排序,这种连接方式能够使移动终端自动选择与当前操作相适应的移动网络进行连接,不仅免去了人工对移动终端进行移动网络切换的步骤,而且还保证移动终端在进行任何操作的情况下始终能够与功率消耗量最小的移动网络连接,从而延长了移动终端的电池续航时间和提高电池的使用寿命。
参见图2,为本发明实施例提供的另一种网络切换方法的流程示意图,在本发明实施例中,所述网络切换方法包括:
S201、获取移动终端与不同模式的移动网络连接下,执行不同操作时的功耗;
具体而言,移动终端能够在不同模式的移动网络之间进行切换,不同模式移动网络的功率消耗与其进行相应操作时的工作电流呈正相关,这样通过检测移动终端在接入不同模式移动网络下的工作电流就能获得其相应的功率消耗。移动终端在接入第一模式移动网络的情况下,以相同的时间段T进行如语音通话、视频通话或者网页浏览等不同操作,并且获取其对应的工作电流I11、I12、I13;接着,移动终端在接入第二模式移动网络的情况下,以相同的时间T进行语音通话、视频通话、网页浏览或者应用程序的使用等不同操作,并且获取其对应的工作电流I21、I22、I23;以此类推,移动终端遍历其所有能够连接的移动网络,同时获取进行不同操作所需的工作电流,并通过该工作电流计算出对应的功率消耗,从而生成不同操作在不同模式移动网络下的功率消耗表。
S202、针对不同操作中的每一个,获取每一个操作在不同模式的移动网络连接下的功耗排序;
具体而言,基于S101生成的功率消耗表,计算出在不同模式移动网络连接的情况下,执行所有不同操作所需的平均功耗,比如当移动终端能够分别进行CDMA、TD-SCDMA、WCDMA、GSM这四种移动网络的连接,根据该功耗消耗表可以获取移动终端在该四种连接状态下,执行语音通话、视频通话和网页浏览等操作时,其相应的平均功耗P1、P2、P3、P4,并按照平均功耗值由小到大的顺序对上面四个值进行排序,从而确定对应的四种移动网络所具有的连接优先级别。
S203、获取移动终端当前剩余电量,基于剩余电量来决定是否将所述移动终端切换连接到执行不同操作时所需平均功耗最小的移动网络上;
具体而言,移动终端检测当前电池的剩余电量,并将该剩余电量与预设的电量阈值进行比较处理,若该剩余电量小于预设的电量阈值时,则S202中具有最小平均功耗的移动网络作为目标连接网络,以使移动终端连接到该目标连接网络上,若该剩余电量大于或者等于预设的电量阈值时,则获取移动终端可连接的移动网络的网络质量数据,以使移动终端连接到具有最优网络质量的移动网络上,其中网络质量数据包括移动网络的传输速度、误码率和信号强度中的至少一种。
进一步,获取移动终端可连接的移动网络的网络质量数据后,还基于该网络质量数据的优次对不同移动网络进行排序,当具有最优网络质量的移动网络无法连接时,移动终端将连接到具有次一级最优网络质量的移动网络,这样保证移动终端在电量充足的情况下,能够保持最佳的网络连接状态。
从上述实施例可以看出,该网络切换方法通过检测移动终端在不同模式移动网络连接情况下进行不同操作的工作电流,从而获取对应的功率消耗,同时计算在不同模式移动网络连接情况下的移动终端的平均功率消耗值,并根据该平均功率消耗值,对不同模式的移动网络进行连接优先级别的排序,这种连接方式能够使移动终端在电量不足的情况下能够选择功耗最小的移动网络进行连接,从而有效地延长电池的续航时间,同时也能够使移动终端在电量充足的情况下选择与网络质量最好的移动网络进行连接,以保证移动终端的高质量通信。
参见图3,为本发明实施例提供的一种网络切换装置的结构示意图,在本 发明实施例中,网络切换装置包括处理单元、电流检测单元、存储单元和比较单元。其中,电流检测单元用于检测移动终端在与不同模式的移动网络连接时执行不同操作时的工作电流,并传送给处理单元。
处理单元用于控制电流检测单元、存储单元和比较单元的工作状态,处理单元接收到工作电流数据后获取在不同模式的移动网络连接下执行不同操作时各自的功耗,或者在不同模式的移动网络连接下执行所有操作的平均功耗,处理单元还能获取移动终端当前的剩余电量,并将上面相关的功耗数据和剩余电量数据传送给比较单元。
比较单元,用于接收处理单元传送的功耗数据和剩余电量数据,并对上述数据进行比较排序处理。具体来说,比较单元接收到相关的功耗数据后将该功耗数据按照数值大小进行排序,从而获得最小功率消耗值或者最小平均功率消耗值所对应的移动网络;以及将剩余电量数据与预设的电量阈值进行比较,以获取对应的电量比较结果。
存储单元,用于存储上述相关的功耗数据、剩余电量数据,预设的电量阈值和功率消耗表。网络切换装置可以用于执行图1和图2所示的方法。关于本实施例涉及的术语的含义以及举例,可以参考图1和图2对应的实施例。此处不再赘述。
从上述实施例可以看出,该网络切换装置通过检测移动终端在不同模式移动网络连接情况下进行不同操作的工作电流,从而获取对应的功率消耗或者平均功率消耗,以作为切换选择不同模式的移动网络的依据,该网络切换装置能够提高移动终端电池的使用效率,延长电池的续航时间,同时也能够使移动终端与不同模式移动网络的自动切换连接。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)或随机存储记忆体(Random Access Memory,RAM)等。
以上所揭露的仅为本发明一种较佳实施例而已,当然不能以此来限定本发明之权利范围,本领域普通技术人员可以理解实现上述实施例的全部或部分流 程,并依本发明权利要求所作的等同变化,仍属于发明所涵盖的范围。

Claims (10)

  1. 一种网络切换方法,其特征在于,所述网络切换方法用于实现移动终端与不同模式的移动网络的切换连接,所述方法包括:
    S101、获取所述移动终端与所述不同模式的移动网络连接下,执行不同操作时的功耗;
    S102、针对所述不同操作中的每一个,获取每一个操作在所述不同模式的移动网络连接下的功耗排序;
    S103、获取所述移动终端当前执行的操作状态,并将所述移动终端切换连接到执行当前所述操作时所需功耗最小的移动网络上。
  2. 一种网络切换方法,其特征在于,所述网络切换方法用于实现移动终端与不同模式的移动网络的切换连接,所述方法包括:
    S201、获取所述移动终端与所述不同模式的移动网络连接下,执行不同操作时的功耗;
    S202、获取所述移动终端在所述不同模式的移动网络下执行所述不同操作的平均功耗排序;
    S203、获取所述移动终端当前剩余电量,基于所述剩余电量来决定是否将所述移动终端切换连接到执行所述不同操作时所需平均功耗最小的移动网络上。
  3. 根据权利要求1或2所述的方法,其特征在于,
    在S101或S201中,获取所述功耗是在所述移动终端与不同模式的移动网络连接下检测执行所述不同操作时的工作电流来实现的。
  4. 根据权利要求1或2所述的方法,其特征在于,
    在S101或S201中,所述不同操作包括语音通话、视频通话、网页浏览或者应用程序的使用。
  5. 根据权利要求1所述的方法,其特征在于,
    S102还包括基于所述功耗排序,将执行某一特定操作时所需功耗最小的移动网络标识为最高优先连接级别网络。
  6. 根据权利要求1所述的方法,其特征在于,
    在S103中,若所述所需功耗最小的移动网络处于禁止访问状态,则将所述移动终端切换连接至具有第二最小功耗的移动网络上。
  7. 根据权利要求2所述的方法,其特征在于,
    在S203中,若所述剩余电量小于预设的电量阈值,则将所述移动终端切换连接至执行所述不同操作时所需平均功耗最小的移动网络上;
    若所述剩余电量大于或等于所述预设的电量阈值,则将所述移动终端切换连接至具有最优网络质量的移动网络上。
  8. 根据权利要求7所述的方法,其特征在于,
    在S203中,所述具有最优网络质量的移动网络是基于所述不同模式的移动网络的传输速度、误码率和信号强度中的至少一个数据判断得出的。
  9. 一种网络切换装置,其特征在于,所述网络切换装置用于实现移动终端与不同模式的移动网络的切换连接,所述装置包括:处理单元、电流检测单元、存储单元和比较单元,其中
    所述电流检测单元用于检测所述移动终端在与所述不同模式的移动网络连接时执行不同操作的工作电流;
    所述处理单元能够基于所述工作电流获取所述移动终端与所述不同模式的移动网络连接下执行所述不同操作时各自的功耗或者执行所有所述不同操作时的平均功耗,并且还能够检测所述移动终端当前的剩余电量;
    所述存储单元能够存储所述各自的功耗数据、所述平均功耗数据、所述剩余电量数据和预设的电量阈值;
    所述比较单元能够将所述各自的功耗数据和所述平均功耗数据进行数值大小的排序,以及将所述剩余电量与所述预设的电量阈值进行比较处理;
    所述处理单元基于所述移动终端当前执行的操作和所述各自的功耗数据的排序,或者基于所述比较处理的结果和所述平均功耗数据的排序来实施所述移动终端与所述不同模式的移动网络之间的切换连接操作。
  10. 根据权利要求9所述的装置,其特征在于,
    所述处理单元还能获取所述不同模式的移动网络关于传输速度、误码率或者信号强度作为网络质量数据,并将所述网络质量数据作为所述切换连接操作的参考数据。
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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102724738A (zh) * 2012-04-16 2012-10-10 中兴通讯股份有限公司 多模终端、多模终端驻留网络的选择方法及装置
CN105357403A (zh) * 2015-11-28 2016-02-24 广东欧珀移动通信有限公司 一种通信终端中的网络切换方法、装置及通信终端
CN105406892A (zh) * 2015-11-28 2016-03-16 广东欧珀移动通信有限公司 一种网络制式的确定方法、装置及移动终端
CN105517084A (zh) * 2015-11-28 2016-04-20 广东欧珀移动通信有限公司 一种混合网络制式下的业务处理方法、装置及移动终端

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102724738A (zh) * 2012-04-16 2012-10-10 中兴通讯股份有限公司 多模终端、多模终端驻留网络的选择方法及装置
CN105357403A (zh) * 2015-11-28 2016-02-24 广东欧珀移动通信有限公司 一种通信终端中的网络切换方法、装置及通信终端
CN105406892A (zh) * 2015-11-28 2016-03-16 广东欧珀移动通信有限公司 一种网络制式的确定方法、装置及移动终端
CN105517084A (zh) * 2015-11-28 2016-04-20 广东欧珀移动通信有限公司 一种混合网络制式下的业务处理方法、装置及移动终端

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