WO2014134930A1 - 触摸屏解锁方法、触摸屏解锁系统及电子设备 - Google Patents

触摸屏解锁方法、触摸屏解锁系统及电子设备 Download PDF

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Publication number
WO2014134930A1
WO2014134930A1 PCT/CN2013/087350 CN2013087350W WO2014134930A1 WO 2014134930 A1 WO2014134930 A1 WO 2014134930A1 CN 2013087350 W CN2013087350 W CN 2013087350W WO 2014134930 A1 WO2014134930 A1 WO 2014134930A1
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WO
WIPO (PCT)
Prior art keywords
touch screen
unlocking
grip
holding
state
Prior art date
Application number
PCT/CN2013/087350
Other languages
English (en)
French (fr)
Inventor
曹恒
Original Assignee
中兴通讯股份有限公司
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Filing date
Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Publication of WO2014134930A1 publication Critical patent/WO2014134930A1/zh

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Classifications

    • 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
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • G06F3/04883Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures for inputting data by handwriting, e.g. gesture or text
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/66Substation equipment, e.g. for use by subscribers with means for preventing unauthorised or fraudulent calling
    • H04M1/667Preventing unauthorised calls from a telephone set
    • H04M1/67Preventing unauthorised calls from a telephone set by electronic means
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/22Details of telephonic subscriber devices including a touch pad, a touch sensor or a touch detector

Definitions

  • the present invention relates to the field of touch screen technologies, and in particular, to a touch screen unlocking method, a touch screen unlocking system, and an electronic device.
  • a commonly used smartphone unlocking method is divided into three steps. In the first step, press the phone power button (or other button) to wake the phone from sleep. In the second step, the phone screen lights up and displays the unlock screen. At the same time, the touch screen is enabled. The third step is to identify the user by the phone. The operation track on the screen to determine whether to unlock or keep the lock screen. This three-step unlocking process allows users to click and move on the phone screen, which is cumbersome and time consuming.
  • Embodiments of the present invention provide a touch screen unlocking method, a touch screen unlocking system, and an electronic device, so as to solve the problem that the existing touch screen device has many touch screen unlocking steps, and the unlocking process requires physical buttons.
  • an embodiment of the present invention provides a touch screen unlocking method, which is applied to a device including a touch screen, and the unlocking method includes the following steps: acquiring a grip state according to a grip sensing signal collected by a grip sensor; The touch screen is unlocked according to an unlocking control parameter including the grip state.
  • the grip sensor is a human body sensing sensor.
  • the holding sensor is a plurality of, and the acquiring the holding state according to the holding sensing signal collected by the holding sensor comprises: acquiring the holding sensing signals of all the holding sensors; Determining whether all of the surface of the holding sensor are covered by the human body according to all the holding sensing signals, and obtaining a first determination result; when the first determination result indicates that all the surfaces of the holding sensor are covered by the human body, determining The holding state of the device is the held state; otherwise, the holding state of the device is determined to be the unheld state.
  • the unlocking control parameter further includes a touch signal
  • the unlocking the touch screen according to the unlocking control parameter including the holding state includes: when the holding state of the device is a held state And unlocking the touch screen; when the holding state of the device is not being held, determining whether the unlocking condition is established according to the touch signal, obtaining a second determination result; the second determining result indicates that the unlocking condition is established
  • the touch screen is unlocked, otherwise the touch screen is locked.
  • the embodiment of the present invention further provides a touch screen unlocking system, which is applied to a device including a touch screen, and includes a holding sensor.
  • the unlocking system further includes: a state recognition unit, configured to receive a sensing signal according to the holding sensor.
  • the signal processing unit is configured to unlock the touch screen according to an unlocking control parameter including the grip state.
  • the grip sensors are disposed at gripping positions on both sides of the device.
  • the touch screen unlocking system further includes: a sensor unit configured to acquire a grip sensing signal of all the grip sensors; and a grip recognition unit configured to determine all of the grip sensor surfaces according to all grip sensing signals Whether the first judgment result is obtained by the human body; the grip state judging unit determines that the grip state of the device is gripped when the first judgment result indicates that all the grip sensor surfaces are covered by the human body Holding the state; otherwise, determining that the device is in the unheld state.
  • the touch screen unlocking system further includes: The unlock control unit is configured to collect an unlock control parameter including a touch signal.
  • the touch screen unlocking system further includes: an unlocking unit configured to unlock the touch screen when the holding state of the device is in a held state; and unlocking the identification unit, configured to when the holding state of the device is When the state is not held, determining whether the unlocking condition is established according to the touch signal, obtaining a second determination result; and the unlocking determining unit is configured to: when the second determination result indicates that the unlocking condition is established, unlocking the touch screen, otherwise maintaining The touch screen is locked.
  • the embodiment of the invention further provides an electronic device, the device comprising the touch screen unlocking system according to the above claims. Compared with the prior art, the beneficial effects of the technical solution of the present invention are as follows:
  • the embodiment of the invention unlocks the touch screen by holding the sensing signal and the unlocking control parameter, and unlocks the touch screen without a complicated unlocking step, and the unlocking process is simple, and the unlocking time is short;
  • FIG. 1 is a flow chart showing a method corresponding to the first embodiment
  • FIG. 2 is a view showing a system configuration corresponding to the second embodiment
  • FIG. 3 is a front view corresponding to the fourth embodiment
  • 5 is a right side view corresponding to Embodiment 4.
  • DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS The specific embodiments of the present invention will be further described in detail below with reference to the drawings and embodiments. The following examples are intended to illustrate the invention but are not intended to limit the scope of the invention.
  • the unlocking process requires physical buttons and the like, and the present invention provides a touch screen unlocking method, a touch screen unlocking system, and an electronic device.
  • Example 1 is a flow chart showing a method corresponding to the first embodiment
  • FIG. 2 is a view showing a system configuration corresponding to the second embodiment
  • FIG. 3 is a front view corresponding to the fourth embodiment
  • 5 is a right side view corresponding to Embodiment 4.
  • a touch screen unlocking method is applicable to a device including a touch screen, such as a mobile phone, a tablet computer, a touch screen computer, and the like.
  • Embodiment 1 Corresponding Method Flowchart As shown in FIG. 1, the unlocking method of the present invention includes the following steps:
  • S2 unlocking the touch screen according to an unlocking control parameter including the above holding state.
  • the invention unlocks the touch screen by holding the sensing signal and the unlocking control parameter, and unlocks the touch screen without a complicated unlocking step, the unlocking process is simple, and the unlocking time is short; in addition, the touch screen unlocking method of the present invention does not require physical button participation. Physical losses are avoided and maintenance costs are saved.
  • the invention first obtains the grip state according to the grip sensing signal collected by the grip sensor, and specifically includes the following steps:
  • the above grip sensors can be selected from a wide range, and commonly used are resistive pressure sensors and capacitive pressure sensors.
  • the present invention employs a human body sensing sensor; the holding sensor is generally selected in plurality, and is disposed at a holding position or other position of the above-mentioned device including the touch screen.
  • the holding sensor can be set or replaced according to the user's usage habits, or different types of holding sensors can be set on one device, depending on actual needs. For example, a user who is accustomed to holding with the left hand can open the grip sensor at a specific position for the left-handed grip, and turn off other grip sensors that do not need to detect the grip sensing signal.
  • When holding the sensor signal detection check to see if all the open grip sensors have detected the grip sensor signal. If not all of the grip sensors are turned on, check to see if the sensor or other line is faulty.
  • S12 Determine whether all the surface of the above-mentioned holding sensor is covered by the human body according to all the holding sensing signals, and obtain the first determination result; in actual use, all the open holding sensors detect whether there is a holding sensing signal in real time. If a grip sensor detects that there is a grip sensing signal, the grip sensor is considered to be covered by the human body; otherwise, the grip sensor is considered not to be covered by the human body. The judgment result of whether or not it is held is obtained by real-time detection. After the detection is completed, it is judged whether the device is held according to the detected grip sensing signal.
  • unlocking the touch screen according to the unlocking control parameter including the above holding state including: S21: unlocking the touch screen when the holding state of the device is in the held state; when the holding state of the device is While holding the state, the device illuminates the above touch screen through processor control.
  • the above touch screen is unlocked.
  • the unlocked touch screen can enter the user interface of the system, or enter other set operation interfaces to meet actual needs.
  • S22 when the holding state of the device is not held, determining whether the unlocking condition is established according to the touch signal included in the unlocking control parameter, obtaining a second determination result; when the holding state of the device is not When the state is held, the touch screen is detected whether the touch signal is detected.
  • the touch signal is a user-defined touch signal, such as double-clicking on the surface of the touch screen. It can also be a touch signal of any graphic on the touch screen. For example, when the touch screen and the horizontal plane are vertically placed, a single finger quickly draws a "one" font or other similar touch signal in the middle of the touch screen.
  • S23 The second determination result indicates that the touch screen is unlocked when the unlocking condition is established, otherwise the touch screen lock is maintained.
  • the present invention also provides a touch screen unlocking system applied to a device including a touch screen, including a grip sensor, wherein the grip sensor is disposed at a holding position on both sides of the device.
  • the above unlocking system also includes: 1.
  • the state recognition unit is configured to acquire a grip state according to the grip sensing signal collected by the grip sensor; the state recognition unit receives the grip sensing signal of the grip sensor to determine the grip state.
  • a signal processing unit configured to unlock the touch screen based on an unlock control parameter including the grip state described above.
  • the status recognition unit further includes:
  • the sensor unit is configured to acquire a grip sensing signal of all the grip sensors
  • Holding the identification unit configured to determine whether all of the surface of the above-mentioned holding sensor is covered by the human body according to all the holding sensing signals, and obtain the first determination result
  • the holding state judging unit determines that the grip state of the device is the held state when all the above-mentioned grip sensor surfaces are covered by the human body; otherwise, determining that the grip state of the device is Not being held.
  • the signal processing unit includes:
  • the unlock control unit is configured to collect an unlock control parameter including a touch signal.
  • the unlocking unit is configured to unlock the touch screen when the holding state of the device is the held state;
  • unlocking the identification unit configured to when the holding state of the device is not held, according to the touch
  • the control signal determines whether the unlocking condition is established, and obtains the second determination result;
  • the unlocking determining unit is configured to unlock the touch screen when the second determination result indicates that the unlocking condition is established, otherwise the touch screen lock is maintained.
  • the corresponding system structure diagram of Embodiment 2 is shown in FIG. 2.
  • This embodiment and the embodiment 1 belong to the same inventive concept.
  • the touch screen is unlocked by each unit, and the touch screen can be unlocked without a complicated unlocking step.
  • the unlocking process is simple and the unlocking time is short.
  • the touch screen of the present invention is unlocked.
  • the method does not require physical button participation, avoids physical loss, and saves maintenance costs.
  • Embodiment 4 An electronic device, wherein the device comprises the touch screen unlocking system of Embodiment 2 described above.
  • the touch screen unlocking system in this embodiment is the same as that in Embodiment 2, and details are not described herein again.
  • Embodiment 4 The present invention will be described below through an actual scenario: This embodiment describes the present invention by a mobile phone.
  • the front view, the left view and the right view of the embodiment are respectively shown in FIG. 3, FIG. 4 and FIG. 5, respectively.
  • the mobile phone mainly comprises a touch screen 1, a first grip sensor 2, a second grip sensor 3, and a first Three holding sensor 4.
  • the earpiece above the touch screen 1, the camera on the right side of the handset, the power button above the camera, the three function keys below the touch screen 1, and the volume button above the third grip sensor 4 are also included.
  • the user holds the sensor to recognize the user's holding action.
  • the holding sensing area A, the holding sensing area B, and the holding sensing area C are respectively equipped with a first holding sensor 2, a second holding sensor 3, and a third holding sensor 4, respectively, when the user holds the mobile phone It will cause changes in the indicators of the human body sensor, and the mobile phone can determine the user's holding posture by detecting changes in these indicators.
  • the mobile phone will select to directly unlock the mobile phone according to the user's holding posture, or enable the touch screen 1 to recognize the user's next touch trajectory for unlocking. If the mobile phone determines the user's holding posture, or the user touches the touch screen 1 and does not meet the mobile phone unlocking condition, the mobile phone will re-enter the locked sleep state. On the desktop of the user's hand, there is a smart phone that is locked and hibernated. The phone is 135mm long, 66mm wide and l1mm thick.
  • IPS In-Plane-Switching liquid crystal
  • Capacitive touch screen 1 multi-touch support
  • Android 4.0 single core 1GHZ CPU
  • 2000mAh lithium battery 2000mAh lithium battery.
  • the human body sensing sensor uses a highly sensitive capacitive sensor.
  • three high-sensitivity capacitive sensors are respectively attached to the sensing areas A, B, and C.
  • the high-sensitivity capacitive sensor has a sensing surface size of 15 ⁇ 7 mm, which is used to sense the skin of the user.
  • Contact (fit) of the phone case as shown in Figure 3.
  • the mobile phone when the mobile phone is placed on the desktop, the mobile phone is not held, and the capacitance values of the three highly sensitive capacitive sensors corresponding to the sensing areas A, B, and C are C, C 1B , and C ie , respectively .
  • the user picks up the mobile phone with his right hand (the analogy can be used to infer the left hand, the same below). After picking up, the user's right hand ring finger and little finger face are placed on the left side of the mobile phone and the sensitive sensitive sensor of the sensing area C is held.
  • the user's palm is attached to the sensing surface of the high-sensitivity capacitive sensor holding the sensing area B on the right side of the mobile phone, and the thumb of the user is placed on the right side of the mobile phone.
  • the sensing surface of the sensitive capacitive sensor The user's finger and palm affect the capacitance of the high-sensitivity capacitive sensor that holds the sensing area, B, and C.
  • the capacitance of the highly sensitive capacitive sensor that holds the sensing areas A, B, and C becomes C, 4 .
  • the CPU After the CPU interrupts the sleep state, it firstly detects the level signal sent by the three high-sensitivity capacitive sensors corresponding to the sensing areas A, B, and C, and determines whether to directly unlock the state of the mobile phone according to the level signal.
  • the CPU determines that the direct unlocking condition is not satisfied according to the previous user setting, and then enables the mobile phone touch screen 1 to wait for recognition and receiving the user's touch signal to the mobile phone touch screen 1.
  • the mobile phone touch screen 1 is enabled for the next 3 seconds (the length of time can be set by itself) time window. After 3 seconds, if the CPU determines that the user's touch signal to the screen of the mobile phone still does not satisfy the unlocking condition, the CPU will control the mobile phone to re-enter the locked and sleep state.
  • the touch signal set by the user is a "one" shape in the horizontal direction of the middle of the screen of the mobile phone, and the camera mode is entered (the touch signal can be a touch signal that can be recognized by other mobile phones, and the interface enters after being unlocked by the touch signal) If the user can set it by himself, the user will mark the track of the user's touch track on the touch screen 1 of the mobile phone when the "one" shape is drawn along the middle of the mobile phone screen in the horizontal direction of the touch screen 1 of the mobile phone. And transferred to the CPU.
  • the mobile phone when the user draws a "one" shape along the horizontal direction of the middle of the screen of the mobile phone, the mobile phone unlocks and enters the photographing mode, and the CPU wakes up the camera, the display screen, and the like, unlocks the mobile phone, and directly enters Photo mode.
  • the invention has the following functional units:
  • the human body sensing unit is equivalent to the holding sensor.
  • the human body sensing unit can recognize the gripping action of the user's finger and palm on the mobile phone body, and can transmit a level signal representing the user's grip to the CPU.
  • the high-sensitivity capacitive sensor can be selectively controlled by the CPU to enable or disable high-sensitivity capacitive sensors in one or more specific locations;
  • the touch recognition unit is equivalent to a state recognition unit.
  • the touch recognition unit can recognize the touch trajectory of the user's finger to the screen, and can transmit the trajectory information to the CPU.
  • the touch screen 1 of the mobile phone can be controlled, enabled or disabled by the CPU;
  • the application processing unit that is, the mobile phone CPU mentioned above, can enable and control the human body sensing unit and the touch recognition unit, can judge the signal change of the highly sensitive capacitive sensor, and judge the user's holding by the change of the signal. The status can be judged according to the holding state to directly unlock.
  • the signal from the touch screen 1 of the mobile phone can be received and judged, the operation track of the user on the screen is analyzed, and the mobile phone is unlocked according to the unlocking condition and enters the corresponding function menu. , and when the unlocking condition is not met, keep the phone into lock and hibernation.
  • the above-mentioned application processing unit of the smart phone in the above scenario may be merged with the baseband processing chip of the smart phone, so that the baseband processing chip of the smart phone also has the relevant function of the application processing unit.
  • the baseband processing chip of the smart phone also has the relevant function of the application processing unit.
  • aspects of the invention, or possible implementations of various aspects may be in the form of an entirely hardware embodiment, an entirely software embodiment (including firmware, resident software, etc.), or a combination of software and hardware aspects, They are collectively referred to herein as "circuits,"”modules," or “systems.”
  • aspects of the invention, or possible implementations of various aspects may take the form of a computer program product, which is a computer readable program code stored in a computer readable medium.
  • the computer readable medium can be a computer readable signal medium or a computer readable storage medium.
  • the computer readable storage medium includes, but is not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, device, or device, or any suitable combination of the foregoing, such as a random access memory (RAM), read only Memory (Read Only Memory, abbreviated as ROM), Erasable Programmable Read Only Memory (EPROM or Flash Memory), optical fiber, and portable read only memory (CD-ROM).
  • RAM random access memory
  • ROM read only Memory
  • EPROM or Flash Memory Erasable Programmable Read Only Memory
  • CD-ROM portable read only memory
  • the processor in the computer reads the computer readable program code stored in the computer readable medium, such that the processor can perform the functional actions specified in each step or combination of steps in the flowchart; A device that functions as specified in each block, or combination of blocks.
  • the computer readable program code can be executed entirely on the user's computer, partly on the user's computer, as a separate software package, partly on the user's computer and partly on the remote computer, or entirely on the remote computer or server. .
  • the functions noted in the various steps of the flowcharts or in the blocks of the block diagrams may not occur in the order noted in the drawings.
  • two steps, or two blocks shown in succession may be executed substantially concurrently, or the blocks may sometimes be executed in the reverse order, depending upon the functionality involved.
  • the above description is only a preferred embodiment of the present invention, and it should be noted that those skilled in the art can make several improvements and substitutions without departing from the technical principles of the present invention.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Security & Cryptography (AREA)
  • Signal Processing (AREA)
  • User Interface Of Digital Computer (AREA)
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Abstract

本发明公开了触摸屏技术领域中的触摸屏解锁方法、触摸屏解锁系统及电子设备。本发明首先根据握持传感器采集到的握持传感信号获取握持状态;然后根据包括所述握持状态在内的解锁控制参数对所述触摸屏进行解锁。本发明通过握持传感信号和解锁控制参数对触摸屏进行解锁控制,无需繁琐的解锁步骤就可对触摸屏解锁,解锁过程简单,解锁时间短;本发明的触摸屏解锁方法无需物理按键参与,避免了物理损耗,节约了维护成本。

Description

触摸屏解锁方法、 触摸屏解锁系统及电子设备 技术领域 本发明涉及触摸屏技术领域, 特别涉及触摸屏解锁方法、 触摸屏解锁系统及电子 设备。 背景技术 目前常用的智能手机解锁方式分为三步。第一步,按动手机电源键(或其他按键), 使手机从休眠状态被唤醒, 第二步, 手机屏幕点亮并显示解锁画面, 同时触摸屏使能, 第三步, 手机通过识别用户在屏幕上的操作轨迹, 以判断是否解锁或保持锁屏。 如此 三步的解锁过程, 让用户既需要点击手机按钮, 又需要在手机屏幕上进行点击或移动 等, 繁琐及费时。 并且现有的手机电源键是物理键, 长时间使用容易出现故障, 寿命短; 不容易修 理, 容易被其他物体触碰导致误触发; 物理按键容易进水, 甚至导致电路烧坏, 增加 更多的维护成本。 发明内容 本发明实施例提供了触摸屏解锁方法、 触摸屏解锁系统及电子设备, 以解决现有 触摸屏设备存在的触摸屏解锁步骤多, 解锁过程需要物理按键等问题。 为了解决上述技术问题, 本发明实施例提供了一种触摸屏解锁方法, 应用于包括 触摸屏的装置, 所述解锁方法包括以下步骤: 根据握持传感器采集到的握持传感信号获取握持状态; 根据包括所述握持状态在内的解锁控制参数对所述触摸屏进行解锁。 优选地, 所述握持传感器为人体感应传感器。 优选地, 所述握持传感器为多个, 所述根据握持传感器采集到的握持传感信号获 取握持状态包括: 获取所有握持传感器的握持传感信号; 根据所有握持传感信号判断所有所述握持传感器表面是否均被人体覆盖, 获取第 一判断结果; 在所述第一判断结果表明所有所述握持传感器表面均被人体覆盖时, 确定所述装 置的握持状态为被握持状态; 否则, 确定所述装置的握持状态为没有被握持状态。 优选地, 所述解锁控制参数还包括触控信号, 所述根据包括所述握持状态在内的 解锁控制参数对所述触摸屏进行解锁包括: 当所述装置的握持状态为被握持状态时解锁所述触摸屏; 当所述装置的握持状态为没有被握持状态时, 根据所述触控信号判断解锁条件是 否成立, 获取第二判断结果; 第二判断结果表明所述解锁条件成立时, 解锁所述触摸屏, 否则维持所述触摸屏 锁定。 本发明实施例还提供了一种触摸屏解锁系统, 应用于包括触摸屏的装置, 包括握 持传感器, 所述解锁系统还包括: 状态识别单元, 设置为根据握持传感器采集到的握持传感信号获取握持状态; 信号处理单元, 设置为根据包括所述握持状态在内的解锁控制参数对所述触摸屏 进行解锁。 优选地, 所述握持传感器设置在所述装置两侧的握持位置。 优选地, 所述触摸屏解锁系统还包括: 传感器单元, 设置为获取所有握持传感器的握持传感信号; 握持识别单元, 设置为根据所有握持传感信号判断所有所述握持传感器表面是否 均被人体覆盖, 获取第一判断结果; 握持状态判断单元, 在所述第一判断结果表明所有所述握持传感器表面均被人体 覆盖时, 确定所述装置的握持状态为被握持状态; 否则, 确定所述装置的握持状态为 没有被握持状态。 优选地, 所述触摸屏解锁系统还包括: 解锁控制单元, 设置为采集包括触控信号在内的解锁控制参数。 优选地, 所述触摸屏解锁系统还包括: 解锁单元, 设置为当所述装置的握持状态为被握持状态时解锁所述触摸屏; 解锁识别单元, 设置为当所述装置的握持状态为没有被握持状态时, 根据所述触 控信号判断解锁条件是否成立, 获取第二判断结果; 解锁判断单元, 设置为第二判断结果表明所述解锁条件成立时,解锁所述触摸屏, 否则维持所述触摸屏锁定。 本发明实施例还提供了一种电子设备, 所述装置包括上述权利要求所述的触摸屏 解锁系统。 和现有技术相比, 本发明的技术方案的有益效果如下:
1.本发明实施例通过握持传感信号和解锁控制参数对触摸屏进行解锁控制, 无需 繁琐的解锁步骤就可对触摸屏解锁, 解锁过程简单, 解锁时间短;
2.本发明实施例的触摸屏解锁方法无需物理按键参与, 避免了物理损耗, 节约了 维护成本。 附图说明 图 1表示实施例 1对应的方法流程图; 图 2表示实施例 2对应的系统结构图; 图 3表示实施例 4对应的正视图; 图 4表示实施例 4对应的左视图; 图 5表示实施例 4对应的右视图。 具体实施方式 下面结合附图和实施例, 对本发明的具体实施方式作进一步详细描述。 以下实施 例用于说明本发明, 但不用来限制本发明的范围。 为了解决现有触摸屏设备存在的触摸屏解锁步骤多, 解锁过程需要物理按键等问 题, 本发明提供了触摸屏解锁方法、 触摸屏解锁系统及电子设备。 实施例 1
一种触摸屏解锁方法, 该方法适用于包括触摸屏的装置, 如手机、 平板电脑、 触 屏电脑等设备。 实施例 1对应的方法流程图如图 1所示, 本发明的解锁方法包括以下 步骤:
S1 : 根据握持传感器采集到的握持传感信号获取握持状态;
S2: 根据包括上述握持状态在内的解锁控制参数对上述触摸屏进行解锁。 本发明通过握持传感信号和解锁控制参数对触摸屏进行解锁控制, 无需繁琐的解 锁步骤就可对触摸屏解锁, 解锁过程简单, 解锁时间短; 另外, 本发明的触摸屏解锁 方法无需物理按键参与, 避免了物理损耗, 节约了维护成本。 本发明首先根据握持传感器采集到的握持传感信号获取握持状态, 具体包括以下 步骤:
S11 : 获取所有握持传感器的握持传感信号; 上述握持传感器可选范围较广,常见的有电阻式压力传感器和电容式压力传感器。 但为了精确捕捉人体触碰的信号, 本发明采用的是人体感应传感器; 握持传感器一般 选择多个, 设置在上述包括触摸屏的装置的握持位置或其他位置上。 握持传感器可以 根据用户的使用习惯设置或更换, 也可在一部设备上设置不同类型的握持传感器, 具 体视实际需要而定。 如习惯用左手握持的用户可以针对左手握持的方式开启特定位置 的握持传感器, 关闭其他无需检测握持传感信号的握持传感器。 对握持传感信号检测时, 要查看是否所有开启的握持传感器都检测到了握持传感 信号。 若不是所有的握持传感器都打开, 则要检查是否握持传感器或其他线路出现故 障。
S12:根据所有握持传感信号判断所有上述握持传感器表面是否均被人体覆盖,获 取第一判断结果; 实际使用时, 所有开启的握持传感器实时检测是否有握持传感信号。 若某个握持 传感器检测到有握持传感信号, 则认为该握持传感器被人体覆盖; 否则, 认为该握持 传感器没有被人体覆盖。 通过实时检测获得是否被握持的判断结果。 检测完成后, 根据检测的握持传感信号判断设备是否被握持。
S13 :在上述第一判断结果表明所有上述握持传感器表面均被人体覆盖时,确定上 述装置的握持状态为被握持状态; 否则,确定上述装置的握持状态为没有被握持状态。 当所有开启的握持传感器都检测到了握持传感信号时, 说明上述装置被握持; 只 要有一个握持传感器没有检测到握持传感信号, 就判断上述装置没有被握持。 还可以 设置握持传感器的优先级, 若优先级高的握持传感器没有全部检测到握持传感信号, 则说明设备一定没有被握持;若所有优先级高的握持传感器都检测到的握持传感信号, 其他优先级的握持传感器没有检测到对应的握持传感信号,这时, 也认为设备被握持。 然后,根据包括上述握持状态在内的解锁控制参数对上述触摸屏进行解锁,包括: S21 : 当上述装置的握持状态为被握持状态时解锁上述触摸屏; 当上述装置的握持状态为被握持状态时, 设备通过处理器控制点亮上述触摸屏。 同时, 上述触摸屏被解锁。 解锁后的触摸屏可进入系统的用户界面, 也可进入其他设 定的操作界面, 以便于应对实际需要。
S22: 当上述装置的握持状态为没有被握持状态时,根据上述解锁控制参数包括的 上述触控信号判断解锁条件是否成立, 获取第二判断结果; 当上述装置的握持状态为没有被握持状态时, 查看触摸屏是否检测到触控信号, 上述触控信号为用户预先自定义的触摸信号, 如在触摸屏表面双击等。 也可以为触摸 屏上的任意图形的触控信号, 如在触摸屏和水平面垂直放置时, 单手指在触摸屏中部 快速划出"一"字型或其他类似的触摸信号。 S23 : 第二判断结果表明上述解锁条件成立时, 解锁上述触摸屏, 否则维持上述触 摸屏锁定。 当触摸屏检测到用户自定义的触控信号后, 控制点亮上述触摸屏, 上述触摸屏解 锁。 并可进入设定的操作界面。 实施例 2 本发明还提供了一种触摸屏解锁系统, 应用于包括触摸屏的装置, 包括握持传感 器, 上述握持传感器设置在上述装置两侧的握持位置。 上述解锁系统还包括: 1.状态识别单元, 设置为根据握持传感器采集到的握持传感信号获取握持状态; 状态识别单元接收上述握持传感器的握持传感信号, 对握持状态进行判断。
2.信号处理单元, 设置为根据包括上述握持状态在内的解锁控制参数对上述触摸 屏进行解锁。 其中, 状态识别单元还包括:
11.传感器单元, 设置为获取所有握持传感器的握持传感信号;
12.握持识别单元, 设置为根据所有握持传感信号判断所有上述握持传感器表面是 否均被人体覆盖, 获取第一判断结果;
13.握持状态判断单元, 在上述第一判断结果表明所有上述握持传感器表面均被人 体覆盖时, 确定上述装置的握持状态为被握持状态; 否则, 确定上述装置的握持状态 为没有被握持状态。 信号处理单元包括:
21.解锁控制单元, 设置为采集包括触控信号在内的解锁控制参数。
22.解锁单元, 设置为当上述装置的握持状态为被握持状态时解锁上述触摸屏; 23.解锁识别单元, 设置为当上述装置的握持状态为没有被握持状态时, 根据上述 触控信号判断解锁条件是否成立, 获取第二判断结果;
24.解锁判断单元, 设置为第二判断结果表明上述解锁条件成立时, 解锁上述触摸 屏, 否则维持上述触摸屏锁定。 实施例 2对应的系统结构图如图 2所示。本实施例和实施例 1属于同一发明构思, 本实施例通过各单元对触摸屏进行解锁控制,无需繁琐的解锁步骤就可对触摸屏解锁, 解锁过程简单, 解锁时间短; 另外, 本发明的触摸屏解锁方法无需物理按键参与, 避 免了物理损耗, 节约了维护成本。 实施例 3
一种电子设备, 其中, 上述装置包括实施例 2上述的触摸屏解锁系统。 本实施例中的触摸屏解锁系统和实施例 2中的内容相同, 此处不再赘述。 实施例 4 下面通过一个实际的场景对本发明进行描述: 本实施例通过手机对本发明进行说明。 本实施例对应的正视图、 左视图和右视图 分别如图 3、 图 4和图 5所示 图 3中, 手机主要包括触摸屏 1、 第一握持传感器 2、 第二握持传感器 3、 第三握 持传感器 4。 此外, 还包括触摸屏 1上方的听筒、 听筒右侧的摄像头、 摄像头上方的 电源键、 触摸屏 1下方的 3个功能键以及第三握持传感器 4上方的音量按键。 首先, 在手机的外壳, 如手机侧面边框、 手机背面电池壳等, 布置用户握持传感 器, 来识别用户的握持动作。 图 3中, 握持感应区 A、 握持感应区 B和握持感应区 C 分别配备第一握持传感器 2、第二握持传感器 3和第三握持传感器 4, 当用户握持手机 后, 会引起人体感应传感器指标的变化, 手机通过检测这些指标的变化, 来判断用户 的握持姿态。 手机将根据用户的握持姿态, 选择直接解锁手机, 或者使能触摸屏 1识 别用户接下来的点触轨迹进行解锁。 如手机判断用户的握持姿态, 或用户对触摸屏 1 的点触轨迹, 不符合手机解锁条件, 手机将重新进入锁定休眠状态。 用户手边桌面上, 放有一台智能手机, 处于锁定、 休眠状态。 该手机长 135mm、 宽 66mm、 厚 l lmm, 配备有 4.5寸 Super AMOLDE材质 960x540分辨率横向电场效 应显示技术 (In-Plane-Switching liquid crystal, 简称为 IPS ) 电容触摸屏 1 (支持多点 触控)、 Android 4.0系统, 单核 1GHZ CPU、 2000mAh锂电池等。 此处人体感应传感器选用高灵敏电容式传感器。该手机的左侧面和右侧面壳体内, 在握持感应区 A、 B、 C分别贴有三个高灵敏电容式传感器, 高灵敏电容式传感器感应 面尺寸为 15x7mm, 用来感应用户的皮肤与手机壳体的接触 (贴合), 如图 3所示。 这 三个高灵敏电容式传感器在手机处于锁定状态时, 处于使能状态。 此时, 在当手机被 放在桌面上时, 手机没有被握持, 握持感应区 A、 B、 C对应的三个高灵敏电容式传感 器的电容值分别为 C 、 C1B、 Cie。 用户接着用右手 (可以类比推测出左手的情形, 下同) 拿起手机, 拿起后, 用户 右手的无名指、 小拇指面放在手机左侧面的握持感应区 C的高灵敏电容式传感器的感 应面上, 用户的手掌贴合在手机右侧面的握持感应区 B的高灵敏电容式传感器的感应 面上, 用户的大拇指面放在手机右侧面的握持感应区 A的高灵敏电容式传感器的感应 面上。用户手指及手掌对握持感应区 、 B、 C的高灵敏电容式传感器的电容值产生影 响, 对应握持感应区 A、 B、 C的高灵敏电容式传感器的电容值变为 C,4、 C1 R、 Cir, 其电容值的变化为八^ = 2^— Cu、 ACB = C2B - ClB , ACC = C2C - C1C。 A ^、 ACB , ACe分别达到了高灵敏电容式传感器输出信号的阀值, 故握持感应区 A、 B、 C的高灵敏电容式传感器均向 CPU (相当于实施例 2中的信号处理单元) 发出电平信 号, 并使 CPU中断触摸屏 1的休眠状态。 CPU中断休眠状态后, 首先重新检测握持感应区 A、 B、 C对应的三路高灵敏电 容式传感器发出的电平信号, 根据电平信号判断是否直接解除手机的锁定状态。 CPU 根据之前的用户设置, 判断出不满足直接解锁条件, 则使能手机触摸屏 1, 等待识别 及接收用户对手机触摸屏 1的触控信号。 手机触摸屏 1在接下来的 3秒 (时间长短可 自行设定) 时间窗口, 被使能。 3秒之后, 如果 CPU判断用户对手机屏幕的触控信号 仍不满足解锁条件, 则 CPU将控制手机重新进入锁定、 休眠状态。 若用户设定的触控信号为手机屏幕中部水平方向 "一"字形, 且进入的是拍照模式 (触控信号可以为其他手机能识别出来的触摸信号, 且通过触控信号解锁后进入的界 面可自行设定), 则用户在手机触摸屏 1的 3秒使能时间窗口内,在手机触摸屏 1上沿 手机屏幕中部水平方向划出 "一"字形时, 触摸屏 1将用户的该点触轨迹记录并传送给 CPU。 CPU根据之前的用户设置, 即当用户沿手机屏幕中部水平方向划"一"字形, 则 手机解锁并进入拍照模式, 则 CPU会唤醒摄像头、 显示屏幕等部件, 并对手机进行解 锁, 并直接进入拍照模式。 本发明有以下功能单元:
1.人体感应单元, 相当于握持传感器。 人体感应单元能够识别用户手指及手掌对 手机机身的握持动作, 并能够将代表用户握持的电平信号, 向 CPU传输。 同时, 高灵 敏电容式传感器可被 CPU选择性控制,使能或关闭其中的一个或几个特定位置上的高 灵敏电容式传感器;
2.触控识别单元, 相当于状态识别单元。 触控识别单元能够识别用户手指对屏幕 的点触轨迹, 并能够将轨迹信息, 向 CPU传输。 同时, 手机触摸屏 1可被 CPU控制, 使能或关闭;
3.应用处理单元, 即上述提到的手机 CPU, 可使能及控制人体感应单元、 触控识 别单元, 能判断来高灵敏电容式传感器的信号变化, 并通过信号的变化判断用户的握 持状态, 可根据握持状态判断是否直接解锁, 同时, 也能接收和判断来自手机触摸屏 1 的信号, 解析出用户对屏幕的操作轨迹, 进而依据解锁条件, 对手机进行解锁并进 入对应的功能菜单, 以及当不符合解锁条件后, 使手机继续进入锁定、 休眠状态。 上述场景中的上述的智能手机的应用处理单元, 可以与智能手机的基带处理芯片 进行合并, 使智能手机的基带处理芯片也具有该应用处理单元的相关功能。 本领域普通技术人员将会理解, 本发明的各个方面、 或各个方面的可能实现方式 可以被具体实施为系统、 方法或者计算机程序产品。 因此, 本发明的各方面、 或各个 方面的可能实现方式可以采用完全硬件实施例、 完全软件实施例 (包括固件、 驻留软件 等等), 或者组合软件和硬件方面的实施例的形式, 在这里都统称为"电路"、 "模块 "或 者"系统"。 此外, 本发明的各方面、 或各个方面的可能实现方式可以采用计算机程序 产品的形式, 计算机程序产品是指存储在计算机可读介质中的计算机可读程序代码。 计算机可读介质可以是计算机可读信号介质或者计算机可读存储介质。 计算机可 读存储介质包含但不限于电子、 磁性、 光学、 电磁、 红外或半导体系统、 设备或者装 置, 或者前述的任意适当组合, 如随机存取存储器 (Random Access Memory, 简称为 RAM)、 只读存储器 (Read Only Memory, 简称为 ROM)、 可擦除可编程只读存储器 (Erasable Programmable Read Only Memory,简称为 EPROM或者快闪存储器)、光纤、 便携式只读存储器 (CD-ROM)。 计算机中的处理器读取存储在计算机可读介质中的计算机可读程序代码, 使得处 理器能够执行在流程图中每个步骤、 或各步骤的组合中规定的功能动作; 生成实施在 框图的每一块、 或各块的组合中规定的功能动作的装置。 计算机可读程序代码可以完全在用户的计算机上执行、 部分在用户的计算机上执 行、 作为单独的软件包、 部分在用户的计算机上并且部分在远程计算机上, 或者完全 在远程计算机或者服务器上执行。 也应该注意, 在某些替代实施方案中, 在流程图中 各步骤、 或框图中各块所注明的功能可能不按图中注明的顺序发生。 例如, 依赖于所 涉及的功能, 接连示出的两个步骤、 或两个块实际上可能被大致同时执行, 或者这些 块有时候可能被以相反顺序执行。 以上所述仅是本发明的优选实施方式, 应当指出, 对于本技术领域的普通技术人 员来说, 在不脱离本发明技术原理的前提下, 还可以做出若干改进和替换, 这些改进 和替换也应视为本发明的保护范围。 工业实用性 本发明提供的上述技术方案, 可以应用于触摸屏解锁的过程中, 采用根据握持传 感器采集到的握持传感信号获取握持状态; 根据包括所述握持状态在内的解锁控制参 数对所述触摸屏进行解锁的技术手段, 解决了相关技术中, 触摸屏设备存在的触摸屏 解锁步骤多, 解锁过程需要物理按键, 维护成本过高的问题。

Claims

权 利 要 求 书
1. 一种触摸屏解锁方法,应用于包括触摸屏的装置,所述解锁方法包括以下步骤:
根据握持传感器采集到的握持传感信号获取握持状态;
根据包括所述握持状态在内的解锁控制参数对所述触摸屏进行解锁。
2. 如权利要求 1所述的触摸屏解锁方法, 其中, 所述握持传感器为人体感应传感 器。
3. 如权利要求 1所述的触摸屏解锁方法, 其中, 所述握持传感器为多个, 所述根 据握持传感器采集到的握持传感信号获取握持状态包括:
获取所有握持传感器的握持传感信号; 根据所有握持传感信号判断所有所述握持传感器表面是否均被人体覆盖, 获取第一判断结果;
在所述第一判断结果表明所有所述握持传感器表面均被人体覆盖时, 确定 所述装置的握持状态为被握持状态; 否则, 确定所述装置的握持状态为没有被 握持状态。
4. 如权利要求 3所述的触摸屏解锁方法, 其中, 所述解锁控制参数还包括触控信 号, 所述根据包括所述握持状态在内的解锁控制参数对所述触摸屏进行解锁包 括- 当所述装置的握持状态为被握持状态时解锁所述触摸屏;
当所述装置的握持状态为没有被握持状态时, 根据所述触控信号判断解锁 条件是否成立, 获取第二判断结果;
第二判断结果表明所述解锁条件成立时, 解锁所述触摸屏, 否则维持所述 触摸屏锁定。
5. 一种触摸屏解锁系统, 应用于包括触摸屏的装置, 包括握持传感器, 所述解锁 系统还包括:
状态识别单元, 设置为根据握持传感器采集到的握持传感信号获取握持状 态; 信号处理单元, 设置为根据包括所述握持状态在内的解锁控制参数对所述 触摸屏进行解锁。
6. 如权利要求 5所述的触摸屏解锁系统, 其中, 所述握持传感器设置在所述装置 两侧的握持位置。
7. 如权利要求 5所述的触摸屏解锁系统, 其中, 所述触摸屏解锁系统还包括: 传感器单元, 设置为获取所有握持传感器的握持传感信号;
握持识别单元, 设置为根据所有握持传感信号判断所有所述握持传感器表 面是否均被人体覆盖, 获取第一判断结果;
握持状态判断单元, 在所述第一判断结果表明所有所述握持传感器表面均 被人体覆盖时, 确定所述装置的握持状态为被握持状态; 否则, 确定所述装置 的握持状态为没有被握持状态。
8. 如权利要求 7所述的触摸屏解锁系统, 其中, 所述触摸屏解锁系统还包括: 解锁控制单元, 设置为采集包括触控信号在内的解锁控制参数。
9. 如权利要求 7所述的触摸屏解锁系统, 其中, 所述触摸屏解锁系统还包括: 解锁单元,设置为当所述装置的握持状态为被握持状态时解锁所述触摸屏; 解锁识别单元, 设置为当所述装置的握持状态为没有被握持状态时, 根据 所述触控信号判断解锁条件是否成立, 获取第二判断结果;
解锁判断单元, 设置为第二判断结果表明所述解锁条件成立时, 解锁所述 触摸屏, 否则维持所述触摸屏锁定。
10. 一种电子设备, 所述装置包括权利要求 5-9任一所述的触摸屏解锁系统。
PCT/CN2013/087350 2013-08-27 2013-11-18 触摸屏解锁方法、触摸屏解锁系统及电子设备 WO2014134930A1 (zh)

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CN102566911A (zh) * 2011-12-15 2012-07-11 广东步步高电子工业有限公司 移动终端设备的解锁装置与方法
CN103076956A (zh) * 2013-01-05 2013-05-01 中兴通讯股份有限公司 一种终端锁定状态控制方法、装置及一种终端

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RU2630184C2 (ru) * 2015-01-13 2017-09-05 Сяоми Инк. Способ и устройство для разблокировки, а также терминал

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