WO2018094557A1 - 线控装置及用户终端的线控方法 - Google Patents

线控装置及用户终端的线控方法 Download PDF

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Publication number
WO2018094557A1
WO2018094557A1 PCT/CN2016/106756 CN2016106756W WO2018094557A1 WO 2018094557 A1 WO2018094557 A1 WO 2018094557A1 CN 2016106756 W CN2016106756 W CN 2016106756W WO 2018094557 A1 WO2018094557 A1 WO 2018094557A1
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WIPO (PCT)
Prior art keywords
axis
flexible body
control
control device
detecting
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PCT/CN2016/106756
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English (en)
French (fr)
Inventor
陈爽新
Original Assignee
深圳市柔宇科技有限公司
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Publication date
Application filed by 深圳市柔宇科技有限公司 filed Critical 深圳市柔宇科技有限公司
Priority to PCT/CN2016/106756 priority Critical patent/WO2018094557A1/zh
Priority to CN201680038054.4A priority patent/CN107995968B/zh
Priority to EP16922487.0A priority patent/EP3547708A1/en
Priority to US16/303,264 priority patent/US10768715B2/en
Publication of WO2018094557A1 publication Critical patent/WO2018094557A1/zh

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    • 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
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/0338Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor with detection of limited linear or angular displacement of an operating part of the device from a neutral position, e.g. isotonic or isometric joysticks
    • 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
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0414Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means using force sensing means to determine a position
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/163Wearable computers, e.g. on a belt
    • 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
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0416Control or interface arrangements specially adapted for digitisers
    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03KPULSE TECHNIQUE
    • H03K17/00Electronic switching or gating, i.e. not by contact-making and –breaking
    • H03K17/94Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the way in which the control signals are generated
    • H03K17/945Proximity switches
    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03KPULSE TECHNIQUE
    • H03K17/00Electronic switching or gating, i.e. not by contact-making and –breaking
    • H03K17/94Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the way in which the control signals are generated
    • H03K17/96Touch switches
    • H03K17/9625Touch switches using a force resistance transducer
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R1/00Details of transducers, loudspeakers or microphones
    • H04R1/10Earpieces; Attachments therefor ; Earphones; Monophonic headphones
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R1/00Details of transducers, loudspeakers or microphones
    • H04R1/10Earpieces; Attachments therefor ; Earphones; Monophonic headphones
    • H04R1/1041Mechanical or electronic switches, or control elements
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/041Indexing scheme relating to G06F3/041 - G06F3/045
    • G06F2203/04102Flexible digitiser, i.e. constructional details for allowing the whole digitising part of a device to be flexed or rolled like a sheet of paper
    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03KPULSE TECHNIQUE
    • H03K17/00Electronic switching or gating, i.e. not by contact-making and –breaking
    • H03K17/94Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the way in which the control signals are generated
    • H03K17/945Proximity switches
    • H03K2017/9455Proximity switches constructional details

Definitions

  • the present invention relates to the field of electronic technologies, and in particular, to a wire control device and a wire control method for a user terminal.
  • the line control brings great convenience to the use of user terminals such as smartphones and tablets.
  • the user terminal can be functionally controlled by the wire control device, for example, answering or hanging up the phone, switching songs, adjusting the volume, and the like.
  • the existing wire control devices (such as wire-controlled earphones) are mostly button-type wire-controlled devices made of hard materials, or touch-type wire-controlled devices with touch panels on hard materials, using these types of wires.
  • the control device performs function control on the user terminal, a specific key combination or a touch gesture is needed to implement the corresponding function.
  • the user When the position of the remote control device is outside the line of sight of the user, the user needs to locate the corresponding button through the touch.
  • the position or the position of the touchpad limits the efficiency of the wire-controlled operation, and the existing remote control device has fewer gestures and cannot achieve richer function control.
  • the embodiments of the present invention provide a wire control device and a wire control method for a user terminal, which enrich operation gestures for performing function control on the user terminal, and improve user experience.
  • a wire control device for controlling a user terminal comprising: a flexible body, a control module disposed in the flexible body, and a first deformation detection disposed along a first axis of the flexible body a module, the first deformation detecting module is electrically connected to the control module, configured to detect a deformation state of the flexible body relative to the first axis, and the control module is configured to be used according to the flexible body The deformation state of the first axis controls the user terminal.
  • a wire control method for a user terminal comprising:
  • the control module of the wire control device is triggered to control the user terminal according to the deformation state of the flexible body relative to the first axis.
  • the wire control device can detect a deformation state of the flexible body relative to the first axis by the first deformation detecting module by providing a first deformation detecting module along the first axis on the flexible body, And triggering, by the control module, the control module to control the user terminal according to a deformation state of the flexible body relative to the first axis, and therefore, in a process of performing function control on the user terminal by using the wire control device,
  • the pressure along the first axis can be directly applied to the flexible body without considering the position of the button or the position of the touch panel, thereby facilitating the enrichment of the operation gesture of the line control, improving the efficiency of the line control operation and the user experience.
  • FIG. 1 is a first schematic structural diagram of a wire control device according to an embodiment of the present invention.
  • FIG. 2 is a second schematic structural diagram of a wire control device according to an embodiment of the present invention.
  • FIG. 3 is a third schematic structural diagram of a wire control device according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a first use state of a wire control device according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of a second use state of the wire control device according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of a third use state of the wire control device according to an embodiment of the present invention.
  • FIG. 7 is a schematic diagram of a fourth use state of the wire control device according to an embodiment of the present invention.
  • FIG. 8 is a fourth schematic structural diagram of a wire control device according to an embodiment of the present invention.
  • FIG. 9 is a first schematic flowchart diagram of a method for controlling a line of a user terminal according to an embodiment of the present disclosure.
  • FIG. 10 is a second schematic flowchart of a method for controlling a line of a user terminal according to an embodiment of the present invention.
  • a wire control device 10 for connecting to a user terminal (not shown) for controlling the user terminal.
  • the wire control device 10 includes: a flexible body 11 , a control module 13 disposed in the flexible body 11 , a first deformation detecting module 15 disposed along a first axis 111 of the flexible body 11 , and a along the flexible body 11
  • the second deformation detecting module 17 is disposed on the second axis 113. The first deformation detecting module 15 and the second deformation detecting module 17 are electrically connected to the control module 13.
  • the first deformation detecting module 15 is used by the first deformation detecting module 15 Detecting a deformation state of the flexible body 11 with respect to the first axis 111, and triggering the control module 13 to control the user terminal according to a deformation state of the flexible body 11 with respect to the first axis 111
  • the second deformation detecting module 17 is configured to detect a deformation state of the flexible body 11 with respect to the second axis 113, and trigger the according to a deformation state of the flexible body 11 with respect to the second axis 113.
  • Control module 13 Controlling said user terminal; wherein the second axis intersects the first axis 113 111.
  • the wire control device 10 can be applied to the wire-controlled earphone and established with the user terminal through a wired (for example, a 3.5 mm earphone interface, a USB Type-C interface or a Lighting interface) or a wireless (for example, Bluetooth) communication interface. Communication connection.
  • the user terminal can be a smart phone, a tablet, or the like.
  • the flexible body 11 may be made of a flexible material such as polyvinyl chloride (PVC), polyethylene (PE), polyperfluoroethylene propylene (F46), neoprene, silicone rubber or the like.
  • control module 13 can control the user terminal according to the deformation state of the flexible body 11 relative to the first axis 111 or the second axis 113, but is not limited to volume control, song switching, Pause/play songs, start voice assistants, launch custom apps, and more.
  • the deformation state may be characterized by a degree of bending of the flexible body 11 relative to the first axis 111 or the second axis 113, or may be by the flexible body 11 along the first axis 111 or the The proximity of the two ends of the second axis 113 is characterized.
  • the control module 13 , the first deformation detecting module 15 , and the second deformation detecting module 17 may be encapsulated in the flexible body 11 and integrally formed with the flexible body 11 . It can be understood that since the control module 13 is of a rigid material, it can be placed at the center of the flexible body 11 to prevent damage by the deformation pressure of the flexible body 11. It can be understood that, in an embodiment, the remote control device 10 can further include a flexible touch screen 19 electrically connected to the control module 13 , the flexible touch screen 19 at least partially covering the flexible body 11 . a surface for receiving a touch control instruction for the wire control device 10, and triggering the control module 13 to control the user terminal according to the touch control command.
  • the flexible touch screen 19 can be disposed on the top surface, the bottom surface, the side surface of the flexible body 11, or fully cover the surface of the flexible body 11, and the touch control instruction can be, but not limited to, clicking and double clicking.
  • the control module 13 controls the user terminal according to the touch control instruction, such as, but not limited to, volume control, song switching, pausing/playing songs, starting voice assistant, and starting customization. Application, etc.
  • the first deformation detecting module 15 is a first bending sensor, and the first bending sensor is disposed along the first axis 111 for:
  • the degree of curvature determines a first deformation state of the flexible body 11 relative to the first axis 111;
  • the degree of curvature determines a second deformed state of the flexible body 11 relative to the first axis 111.
  • the second direction is opposite to the first direction, for example, the first direction and the second direction may be perpendicular to a plane of the first axis 111 and the second axis 113 and opposite directions The two directions.
  • the first deformed state of the flexible body 11 relative to the first axis 111 is as shown in FIG. 4, and the second deformed state of the flexible body 11 relative to the first axis 111 is as shown in FIG. 5 is shown.
  • control module 13 can include a processor, a memory, and peripheral signal processing circuits (not shown).
  • a corresponding deformation state detecting program may be pre-configured in the memory for the processor to call and execute.
  • a corresponding deformation state determination threshold such as a curvature threshold, may be pre-set in the memory, when the flexibility of the flexible body 11 in the first direction relative to the first axis 111 is greater than or equal to
  • the curvature threshold it can be determined that the flexible body 11 is in a first deformation state with respect to the first axis 111; when the flexibility of the flexible body 11 in the second direction is greater than the first axis 111 is greater than Or equal to the curvature threshold, the same can be determined
  • the flexible body 11 is in a second deformed state with respect to the first axis 111.
  • the control module 13 is further configured to:
  • the first control instruction and the second control instruction are respectively used to control opposite functions of the user terminal, such as volume addition and subtraction, previous/next song, and the like.
  • the control module 13 when it is determined that the flexible body 11 is in a first deformation state with respect to the first axis 111, the control module 13 is triggered to send a control instruction for switching the next song to the user terminal; when determining the flexible body When the first axis 111 is in the second deformation state, the control module 13 is triggered to send a control instruction for switching the previous song to the user terminal.
  • the second deformation detecting module 17 is a second bending sensor, and the second bending sensor is disposed along the second axis 113 for:
  • the degree of curvature determines a first deformation state of the flexible body 11 relative to the second axis 113;
  • Detecting a curvature of the flexible body 11 relative to the second axis 113 in a second direction and triggering the control module 13 to be relative to the second axis 113 in a second direction according to the flexible body 11 The degree of curvature determines a second deformed state of the flexible body 11 relative to the second axis 113.
  • the second direction is opposite to the first direction, for example, the first direction and the second direction may be perpendicular to a plane of the first axis 111 and the second axis 113 and opposite directions The two directions.
  • the first deformed state of the flexible body 11 relative to the second axis 113 is as shown in FIG. 6, and the second deformed state of the flexible body 11 relative to the second axis 113 is as shown in FIG. 7 is shown.
  • control module 13 can determine the deformation state of the flexible body 11 relative to the second axis 113 according to a preset curvature threshold. For example, when the flexible body 11 is in the first When the curvature of the second axis 113 is greater than or equal to the curvature threshold, the flexible body 11 is determined to be in a first deformation state with respect to the second axis 113; when the flexible body When the curvature of the second axis 113 relative to the second axis 113 is greater than or equal to the curvature threshold, the flexible body 11 is determined to be in a second deformed state with respect to the second axis 113.
  • the control module 13 is further configured to:
  • the third control instruction and the fourth control instruction are respectively used to control different functions of the user terminal.
  • the different functions of the control user terminal may control the user terminal to launch different custom applications, and the custom application may be a music application and a voice assistant application, when determining the flexible body 11 relative to the second axis
  • the control module 13 is triggered to send a control instruction for opening the music application to the user terminal; when it is determined that the flexible body 11 is in the second deformation state with respect to the second axis 113, triggering The control module 13 sends a control instruction to the user terminal to enable the voice assistant application.
  • a wire control device 20 including: a flexible body 21 , a control module 23 disposed in the flexible body 21 , and a first axis along the flexible body 21 .
  • the first deformation detecting module 25 disposed at 211 and the second deformation detecting module 27 disposed along the second axis 213 of the flexible body 21, the first deformation detecting module 25 and the second deformation detecting module 27 are both
  • the control module 23 is electrically connected, and the first deformation detecting module 25 is configured to detect a deformation state of the flexible body 21 with respect to the first axis 211, and according to the flexible body 21 with respect to the first axis
  • the deformation state of 211 triggers the control module 23 to control the user terminal;
  • the second deformation detection module 27 is configured to detect a deformation state of the flexible body 21 with respect to the second axis 213, and according to the The deformation state of the flexible body 21 relative to the second axis 213 triggers the control module 23 to
  • the wire control device 20 is different from the wire control device 10 shown in FIG. 1 in that the first deformation detecting module 25 includes a first proximity sensor 251 and a second proximity sensor 253, The first proximity sensor 251 and the second proximity sensor 253 are oppositely disposed at two ends of the flexible body 21 along the first axis 211 and intersecting the first axis 211 for:
  • Detecting the proximity of the flexible body 21 along the two ends of the first axis 211 when the flexible body 21 is bent in the second direction, and triggering the control module 23 according to the flexible body 21 along both ends of the first axis 211 The proximity determines a second deformed state of the flexible body 21 relative to the first axis 211.
  • the second deformation detecting module 27 includes a third proximity sensor 271 and a fourth proximity sensor 273, and the third proximity sensor 271 and the fourth proximity sensor 273 are disposed opposite to the flexible body 21
  • the second axis 213 and the two ends intersecting the second axis 213 are used for:
  • the proximity determines a second deformed state of the flexible body 21 relative to the second axis 213.
  • the second direction is opposite to the first direction, for example, the first direction and the second direction may be perpendicular to a plane of the first axis 211 and the second axis 213 and opposite directions The two directions.
  • control module 23 can determine the deformation state of the flexible body 21 relative to the first axis 211 or the second axis 113 according to a preset proximity threshold. For example, the proximity of the two ends of the first axis 211 is large when the flexible body 21 is bent in the first direction At or equal to the proximity threshold, it can be determined that the flexible body 21 is in a first deformed state with respect to the first axis 211; along the first when the flexible body 21 is bent in the second direction When the proximity of the two ends of the axis 211 is greater than or equal to the proximity threshold, the flexible body 21 is determined to be in a second deformed state with respect to the first axis 211.
  • a method for controlling a line of a user terminal including:
  • Step 901 detecting a deformation state of the flexible body of the wire control device relative to the first axis of the flexible body;
  • Step 902 Trigger the control module of the wire control device to control the user terminal according to the deformation state of the flexible body relative to the first axis.
  • the deformation state of the flexible body of the detection wire control device relative to the first axis of the flexible body includes:
  • the deformation state of the flexible body of the detection wire control device relative to the first axis of the flexible body includes:
  • the method further includes:
  • Step 903 detecting a deformation state of the flexible body of the wire control device relative to the second axis of the flexible body;
  • Step 904 trigger a control module of the wire control device to control the user terminal according to a deformation state of the flexible body relative to the second axis; wherein the second axis intersects the first axis.
  • the deformation state of the flexible body of the detection wire control device relative to the second axis of the flexible body includes:
  • the deformation state of the flexible body of the detection wire control device relative to the second axis of the flexible body includes:
  • the controlling module of the remote control device triggers the control module of the remote control device to control the user terminal according to the deformation state of the flexible body with respect to the first axis, including:
  • the first control instruction and the second control instruction are respectively used to control an opposite function of the user terminal.
  • the controlling module of the remote control device triggers control of the user terminal according to the deformation state of the flexible body with respect to the second axis, including:
  • the third control instruction and the fourth control instruction are respectively used to control different functions of the user terminal.
  • the method further includes:
  • the wire control device and the wire control method of the user terminal can detect the flexible body relative to the flexible deformation body by the first deformation detecting module by providing a first deformation detecting module along the first axis a deformation state of the first axis, and triggering the control module to control the user terminal according to the deformation state of the flexible body relative to the first axis, and therefore, the user terminal is passed through the wire control device During the function control, the pressure along the first axis can be directly applied to the flexible body without considering the position of the button or the position of the touch panel, thereby facilitating the enrichment of the operation gesture of the line control and improving the efficiency of the line control operation. And user experience.
  • a along B in the present invention means that the extending direction of A is the same as or similar to the extending direction of B, that is, the extending direction of A and the extending direction of B are less than 90 degrees, which can also be considered as " A along B".

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  • Theoretical Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Human Computer Interaction (AREA)
  • General Physics & Mathematics (AREA)
  • Acoustics & Sound (AREA)
  • Signal Processing (AREA)
  • Computer Hardware Design (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

一种线控装置(10)及用户终端的线控方法,用于对用户终端进行控制,所述线控装置(10)包括:柔性本体(11)、设于所述柔性本体(11)内的控制模块(13)和沿所述柔性本体(11)的第一轴线(111)设置的第一形变检测模块(15),所述第一形变检测模块(15)与所述控制模块(13)电性连接,用于检测所述柔性本体(11)相对于所述第一轴线(111)的形变状态,所述控制模块(13)用于根据所述柔性本体(11)相对于所述第一轴线(111)的形变状态对所述用户终端进行控制。所述线控装置(10)可以丰富对所述用户终端的线控交互操作手势。

Description

线控装置及用户终端的线控方法 技术领域
本发明涉及电子技术领域,尤其涉及一种线控装置及一种用户终端的线控方法。
背景技术
线控作为一种便捷的控制方式,为智能手机、平板电脑等用户终端的使用带来了极大的便利。例如,通过在用户终端的耳机线上设置线控装置,即可通过该线控装置对用户终端进行功能控制,例如,接听或挂断电话、切换歌曲、调节音量等。目前已有的线控装置(例如线控耳机)大都是采用硬质材料制成的按键式线控装置,或者是在硬质材料上设置触摸板的触摸式线控装置,采用这些类型的线控装置对用户终端进行功能控制时,需要采用特定的按键组合或者触摸手势来实现对应的功能,当线控装置的位置处于用户的视线范围之外时,则需要用户通过触觉来定位对应的按键位置或者触摸板的位置,使得线控操作的效率受到限制,而且现有的线控装置操作手势较少,无法实现更丰富的功能控制。
发明内容
鉴于现有技术中存在的上述问题,本发明实施例提供一种线控装置及一种用户终端的线控方法,以丰富对用户终端进行功能控制的操作手势,提升用户体验。
一种线控装置,用于对用户终端进行控制,所述线控装置包括:柔性本体、设于所述柔性本体内的控制模块和沿所述柔性本体的第一轴线设置的第一形变检测模块,所述第一形变检测模块与所述控制模块电性连接,用于检测所述柔性本体相对于所述第一轴线的形变状态,所述控制模块用于根据所述柔性本体相对于所述第一轴线的形变状态对所述用户终端进行控制。
一种用户终端的线控方法,包括:
检测线控装置的柔性本体相对于所述柔性本体的第一轴线的形变状态;
根据所述柔性本体相对于所述第一轴线的形变状态触发所述线控装置的控制模块对用户终端进行控制。
所述线控装置通过在所述柔性本体上设置沿第一轴线的第一形变检测模块,从而可以通过所述第一形变检测模块检测所述柔性本体相对于所述第一轴线的形变状态,并根据所述柔性本体相对于所述第一轴线的形变状态触发所述控制模块对所述用户终端进行控制,因此,在通过所述线控装置对所述用户终端进行功能控制的过程中,无需考虑按键位置或触摸板的位置,直接对所述柔性本体施加沿所述第一轴线的压力即可,从而有利于丰富线控的操作手势,提升线控操作效率和用户体验。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍。
图1是本发明实施例提供的线控装置的第一结构示意图;
图2是本发明实施例提供的线控装置的第二结构示意图;
图3是本发明实施例提供的线控装置的第三结构示意图;
图4是本发明实施例提供的线控装置的第一使用状态示意图;
图5是本发明实施例提供的线控装置的第二使用状态示意图;
图6是本发明实施例提供的线控装置的第三使用状态示意图;
图7是本发明实施例提供的线控装置的第四使用状态示意图;
图8是本发明实施例提供的线控装置的第四结构示意图;
图9是本发明实施例提供的用户终端的线控方法的第一流程示意图;
图10是本发明实施例提供的用户终端的线控方法的第二流程示意图。
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做出创造 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。
请一并参阅图1和图2,在本发明一个实施例中,提供一种线控装置10,用于连接至一用户终端(图未示),以对所述用户终端进行控制,所述线控装置10包括:柔性本体11、设于所述柔性本体11内的控制模块13、沿所述柔性本体11的第一轴线111设置的第一形变检测模块15及沿所述柔性本体11的第二轴线113设置的第二形变检测模块17,所述第一形变检测模块15及所述第二形变检测模块17均与所述控制模块13电性连接,所述第一形变检测模块15用于检测所述柔性本体11相对于所述第一轴线111的形变状态,并根据所述柔性本体11相对于所述第一轴线111的形变状态触发所述控制模块13对所述用户终端进行控制;所述第二形变检测模块17用于检测所述柔性本体11相对于所述第二轴线113的形变状态,并根据所述柔性本体11相对于所述第二轴线113的形变状态触发所述控制模块13对所述用户终端进行控制;其中,所述第二轴线113与所述第一轴线111相交。
其中,所述线控装置10可以应用于线控耳机中,并通过有线(例如3.5mm耳机接口、USB Type-C接口或Lighting接口)或无线(例如蓝牙)等通信接口与所述用户终端建立通信连接。所述用户终端可以为智能手机、平板电脑等。所述柔性本体11可以由柔性材料制成,例如聚氯乙烯(PVC),聚乙烯(PE),聚全氟乙丙烯(F46),氯丁橡皮,硅橡胶等。可以理解,所述控制模块13根据所述柔性本体11相对于所述第一轴线111或所述第二轴线113的形变状态对所述用户终端的控制可以是但不限于音量控制、歌曲切换、暂停/播放歌曲、启动语音助手、启动自定义应用等。所述形变状态可以由所述柔性本体11相对于所述第一轴线111或所述第二轴线113的弯曲程度来表征,也可以由所述柔性本体11沿所述第一轴线111或所述第二轴线113的两端的接近度来表征。
请参阅图3,所述控制模块13、所述第一形变检测模块15及所述第二形变检测模块17可以封装于所述柔性本体11内,并与所述柔性本体11一体成型。可以理解,由于所述控制模块13为刚性材质,因而可以将其设置于所述柔性本体11中心的位置,从而防止受所述柔性本体11的形变压力而损坏。可以理解,在一种实施方式中,所述线控装置10还可以包括与所述控制模块13电性连接的柔性触控屏19,所述柔性触控屏19至少部分覆盖所述柔性本体11 的表面,用于接收针对所述线控装置10的触摸控制指令,并根据所述触摸控制指令触发所述控制模块13对所述用户终端进行控制。可以理解,所述柔性触控屏19可以设置于所述柔性本体11的顶面、底面、侧面或全覆盖所述柔性本体11的表面,所述触摸控制指令可以是但不限于单击、双击、滑动、点滑、长按等指令,控制模块13根据所述触摸控制指令对所述用户终端的控制可以是但不限于音量控制、歌曲切换、暂停/播放歌曲、启动语音助手、启动自定义应用等。
请再次参阅图2,在一种实施方式中,所述第一形变检测模块15为第一弯曲传感器,所述第一弯曲传感器沿所述第一轴线111设置,用于:
检测所述柔性本体11在第一方向上相对于所述第一轴线111的弯曲度,并触发所述控制模块13根据所述柔性本体11在第一方向上相对于所述第一轴线111的弯曲度确定所述柔性本体11相对于所述第一轴线111的第一形变状态;或者
检测所述柔性本体11在第二方向上相对于所述第一轴线111的弯曲度,并触发所述控制模块13根据所述柔性本体11在第二方向上相对于所述第一轴线111的弯曲度确定所述柔性本体11相对于所述第一轴线111的第二形变状态。
其中,所述第二方向与所述第一方向相反,例如,所述第一方向和所述第二方向可以为垂直于所述第一轴线111和所述第二轴线113所在平面且朝向相反的两个方向。在本实施例中,所述柔性本体11相对于所述第一轴线111的第一形变状态如图4所示,所述柔性本体11相对于所述第一轴线111的第二形变状态如图5所示。
可以理解,所述控制模块13可以包括处理器、存储器及周边信号处理电路等(图未示)。所述存储器内可以预设有对应的形变状态检测程序,以供所述处理器调用和执行。同时,所述存储器内还可以预设有对应的形变状态确定阈值,例如弯曲度阈值,当所述柔性本体11在第一方向上相对于所述第一轴线111的弯曲度大于或等于所述弯曲度阈值时,即可确定所述柔性本体11相对于所述第一轴线111为第一形变状态;当所述柔性本体11在第二方向上相对于所述第一轴线111的弯曲度大于或等于所述弯曲度阈值时,即可确定所述 柔性本体11相对于所述第一轴线111为第二形变状态。
其中,所述控制模块13,还用于:
根据所述柔性本体11相对于所述第一轴线111的第一形变状态,向所述用户终端发送第一控制指令;
根据所述柔性本体11相对于所述第一轴线111的第二形变状态,向所述用户终端发送第二控制指令;
其中,所述第一控制指令与所述第二控制指令分别用于控制所述用户终端的相反的功能,如音量加减、上一首/下一首歌曲等。
例如,当确定所述柔性本体11相对于所述第一轴线111为第一形变状态时,触发所述控制模块13向所述用户终端发送切换下一曲的控制指令;当确定所述柔性本体11相对于所述第一轴线111为第二形变状态时,触发所述控制模块13向所述用户终端发送切换上一曲的控制指令。
所述第二形变检测模块17为第二弯曲传感器,所述第二弯曲传感器沿所述第二轴线113设置,用于:
检测所述柔性本体11在第一方向上相对于所述第二轴线113的弯曲度,并触发所述控制模块13根据所述柔性本体11在第一方向上相对于所述第二轴线113的弯曲度确定所述柔性本体11相对于所述第二轴线113的第一形变状态;或者
检测所述柔性本体11在第二方向上相对于所述第二轴线113的弯曲度,并触发所述控制模块13根据所述柔性本体11在第二方向上相对于所述第二轴线113的弯曲度确定所述柔性本体11相对于所述第二轴线113的第二形变状态。
其中,所述第二方向与所述第一方向相反,例如,所述第一方向和所述第二方向可以为垂直于所述第一轴线111和所述第二轴线113所在平面且朝向相反的两个方向。在本实施例中,所述柔性本体11相对于所述第二轴线113的第一形变状态如图6所示,所述柔性本体11相对于所述第二轴线113的第二形变状态如图7所示。
可以理解,所述控制模块13可以根据预设的弯曲度阈值来确定所述柔性本体11相对于所述第二轴线113的形变状态。例如,当所述柔性本体11在第 一方向上相对于所述第二轴线113的弯曲度大于或等于所述弯曲度阈值时,即可确定所述柔性本体11相对于所述第二轴线113为第一形变状态;当所述柔性本体11在第二方向上相对于所述第二轴线113的弯曲度大于或等于所述弯曲度阈值时,即可确定所述柔性本体11相对于所述第二轴线113为第二形变状态。
其中,所述控制模块13,还用于:
根据所述柔性本体11相对于所述第二轴线113的第一形变状态,向所述用户终端发送第三控制指令;
根据所述柔性本体11相对于所述第二轴线113的第二形变状态,向所述用户终端发送第四控制指令;
其中,所述第三控制指令与所述第四控制指令分别用于控制用户终端的不同的功能。
例如,所述控制用户终端的不同的功能可以控制用户终端启动不同的自定义应用,所述自定义应用可以为音乐应用和语音助手应用,当确定所述柔性本体11相对于所述第二轴线113为第一形变状态时,触发所述控制模块13向所述用户终端发送开启音乐应用的控制指令;当确定所述柔性本体11相对于所述第二轴线113为第二形变状态时,触发所述控制模块13向所述用户终端发送开启语音助手应用的控制指令。
请参阅图8,在本发明一个实施例中,提供一种线控装置20,包括:柔性本体21、设于所述柔性本体21内的控制模块23、沿所述柔性本体21的第一轴线211设置的第一形变检测模块25及沿所述柔性本体21的第二轴线213设置的第二形变检测模块27,所述第一形变检测模块25及所述第二形变检测模块27均与所述控制模块23电性连接,所述第一形变检测模块25用于检测所述柔性本体21相对于所述第一轴线211的形变状态,并根据所述柔性本体21相对于所述第一轴线211的形变状态触发所述控制模块23对所述用户终端进行控制;所述第二形变检测模块27用于检测所述柔性本体21相对于所述第二轴线213的形变状态,并根据所述柔性本体21相对于所述第二轴线213的形变状态触发所述控制模块23对所述用户终端进行控制;其中,所述第二轴线213与所述第一轴线211正交。
在本实施例中,所述线控装置20与图1所示线控装置10的区别在于,所述第一形变检测模块25包括第一接近度传感器251和第二接近度传感器253,所述第一接近度传感器251和所述第二接近度传感器253相对设置于所述柔性本体21沿着所述第一轴线211并与所述第一轴线211相交的两端,用于:
检测所述柔性本体21在第一方向上弯曲时沿着所述第一轴线211的两端的接近度,并触发所述控制模块23根据所述柔性本体21沿着所述第一轴线211的两端的接近度确定所述柔性本体21相对于所述第一轴线211的第一形变状态;或者
检测所述柔性本体21在第二方向弯曲时沿着所述第一轴线211的两端的接近度,并触发所述控制模块23根据所述柔性本体21沿着所述第一轴线211的两端的接近度确定所述柔性本体21相对于所述第一轴线211的第二形变状态。
所述第二形变检测模块27包括第三接近度传感器271和第四接近度传感器273,所述第三接近度传感器271和所述第四接近度传感器273相对设置于所述柔性本体21沿着所述第二轴线213并与所述第二轴线213相交的两端,用于:
检测所述柔性本体21在第一方向弯曲时沿着所述第二轴线213的两端的接近度,并触发所述控制模块23根据所述柔性本体21沿着所述第二轴线213的两端的接近度确定所述柔性本体21相对于所述第二轴线213的第一形变状态;或者
检测所述柔性本体21在第二方向弯曲时沿着所述第二轴线213的两端的接近度,并触发所述控制模块23根据所述柔性本体21沿着所述第二轴线213的两端的接近度确定所述柔性本体21相对于所述第二轴线213的第二形变状态。其中,所述第二方向与所述第一方向相反,例如,所述第一方向和所述第二方向可以为垂直于所述第一轴线211和所述第二轴线213所在平面且朝向相反的两个方向。
可以理解,所述控制模块23可以根据预设接近度阈值来确定所述柔性本体21相对于所述第一轴线211或所述第二轴线113的形变状态。例如,当所述柔性本体21在第一方向上弯曲时沿着所述第一轴线211的两端的接近度大 于或等于所述接近度阈值时,即可确定所述柔性本体21相对于所述第一轴线211为第一形变状态;当所述柔性本体21在第二方向弯曲时沿着所述第一轴线211的两端的接近度大于或等于所述接近度阈值时,即可确定所述柔性本体21相对于所述第一轴线211为第二形变状态。
请参阅图9,在本发明一个实施例中,提供一种用户终端的线控方法,包括:
步骤901:检测线控装置的柔性本体相对于所述柔性本体的第一轴线的形变状态;
步骤902:根据所述柔性本体相对于所述第一轴线的形变状态触发所述线控装置的控制模块对用户终端进行控制。
其中,所述检测线控装置的柔性本体相对于所述柔性本体的第一轴线的形变状态,包括:
检测所述柔性本体在第一方向上相对于所述第一轴线的弯曲度,并根据所述柔性本体在第一方向上相对于所述第一轴线的弯曲度确定所述柔性本体相对于所述第一轴线的第一形变状态;或者
检测所述柔性本体在第二方向上相对于所述第一轴线的弯曲度,并根据所述柔性本体在第二方向上相对于所述第一轴线的弯曲度确定所述柔性本体相对于所述第一轴线的第二形变状态。
其中,所述检测线控装置的柔性本体相对于所述柔性本体的第一轴线的形变状态,包括:
检测所述柔性本体在第一方向上弯曲时沿所述第一轴线的两端的接近度,并根据所述柔性本体沿所述第一轴线的两端的接近度确定所述柔性本体相对于所述第一轴线的第一形变状态;或者
检测所述柔性本体在第二方向弯曲时沿所述第一轴线的两端的接近度,并根据所述柔性本体沿所述第一轴线的两端的接近度确定所述柔性本体相对于所述第一轴线的第二形变状态。
请参阅图10,在一种实施方式中,所述方法还包括:
步骤903:检测线控装置的柔性本体相对于所述柔性本体的第二轴线的形变状态;
步骤904:根据所述柔性本体相对于所述第二轴线的形变状态触发所述线控装置的控制模块对所述用户终端进行控制;其中,所述第二轴线与所述第一轴线相交。
其中,所述检测线控装置的柔性本体相对于所述柔性本体的第二轴线的形变状态,包括:
检测所述柔性本体在第一方向上相对于所述第二轴线的弯曲度,并根据所述柔性本体在第一方向上相对于所述第二轴线的弯曲度确定所述柔性本体相对于所述第二轴线的第一形变状态;或者
检测所述柔性本体在第二方向上相对于所述第二轴线的弯曲度,并根据所述柔性本体在第二方向上相对于所述第二轴线的弯曲度确定所述柔性本体相对于所述第二轴线的第二形变状态。
其中,所述检测线控装置的柔性本体相对于所述柔性本体的第二轴线的形变状态,包括:
检测所述柔性本体在第一方向弯曲时沿所述第二轴线的两端的接近度,并根据所述柔性本体沿所述第二轴线的两端的接近度确定所述柔性本体相对于所述第二轴线的第一形变状态;或者
检测所述柔性本体在第二方向弯曲时沿所述第二轴线的两端的接近度,并根据所述柔性本体沿所述第二轴线的两端的接近度确定所述柔性本体相对于所述第二轴线的第二形变状态。
其中,所述根据所述柔性本体相对于所述第一轴线的形变状态触发所述线控装置的控制模块对用户终端进行控制,包括:
根据所述柔性本体相对于所述第一轴线的第一形变状态,触发所述线控装置的控制模块向所述用户终端发送第一控制指令;或者
根据所述柔性本体相对于所述第一轴线的第二形变状态,触发所述线控装置的控制模块向所述用户终端发送第二控制指令;
其中,所述第一控制指令与所述第二控制指令分别用于控制所述用户终端的相反的功能。
其中,所述根据所述柔性本体相对于所述第二轴线的形变状态触发所述线控装置的控制模块对所述用户终端进行控制,包括:
根据所述柔性本体相对于所述第二轴线的第一形变状态,触发所述线控装置的控制模块向所述用户终端发送第三控制指令;或者
根据所述柔性本体相对于所述第二轴线的第二形变状态,触发所述线控装置的控制模块向所述用户终端发送第四控制指令;
其中,所述第三控制指令与所述第四控制指令分别用于控制用户终端的不同的功能。
其中,所述方法还包括:
通过柔性触控屏接收针对所述线控装置的触摸控制指令;
根据所述触摸控制指令触发所述线控装置的控制模块对所述用户终端进行控制。
可以理解,图9和图10所示方法实施例中各步骤的具体实现还可以参照图1至图7所示装置实施例中的相关描述,此处不再赘述。
所述线控装置及用户终端的线控方法通过在所述柔性本体上设置沿第一轴线的第一形变检测模块,从而可以通过所述第一形变检测模块检测所述柔性本体相对于所述第一轴线的形变状态,并根据所述柔性本体相对于所述第一轴线的形变状态触发所述控制模块对所述用户终端进行控制,因此,在通过所述线控装置对所述用户终端进行功能控制的过程中,无需考虑按键位置或触摸板的位置,直接对所述柔性本体施加沿所述第一轴线的压力即可,从而有利于丰富线控的操作手势,提升线控操作效率和用户体验。
可以理解地,本发明所称“A沿B”表示A的延伸方向与B的延伸方向相同或相似,即A的延伸方向与B的延伸方向呈小于90度的夹角,也可以认为是“A沿B”。
以上所揭露的仅为本发明的较佳实施例而已,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 (20)

  1. 一种线控装置,用于对用户终端进行控制,其特征在于,所述线控装置包括:柔性本体、设于所述柔性本体内的控制模块和沿所述柔性本体的第一轴线设置的第一形变检测模块,所述第一形变检测模块与所述控制模块电性连接,用于检测所述柔性本体相对于所述第一轴线的形变状态,所述控制模块用于根据所述柔性本体相对于所述第一轴线的形变状态对所述用户终端进行控制。
  2. 如权利要求1所述的线控装置,其特征在于,所述第一形变检测模块检测所述柔性本体相对所述第一轴线的弯曲程度,所述控制模块根据弯曲程度对所述用户终端进行控制。
  3. 如权利要求1所述的线控装置,其特征在于,所述第一形变检测模块为第一弯曲传感器,所述第一弯曲传感器沿所述第一轴线设置,用于:
    检测所述柔性本体在第一方向上相对于所述第一轴线的弯曲度,并触发所述控制模块根据所述柔性本体在第一方向上相对于所述第一轴线的弯曲度确定所述柔性本体相对于所述第一轴线的第一形变状态;或者
    检测所述柔性本体在第二方向上相对于所述第一轴线的弯曲度,并触发所述控制模块根据所述柔性本体在第二方向上相对于所述第一轴线的弯曲度确定所述柔性本体相对于所述第一轴线的第二形变状态。
  4. 如权利要求1所述的线控装置,其特征在于,所述第一形变检测模块包括第一接近度传感器和第二接近度传感器,所述第一接近度传感器和所述第二接近度传感器相对设置于所述柔性本体沿所述第一轴线的两端,用于:
    检测所述柔性本体在第一方向上弯曲时沿所述第一轴线的两端的接近度,并触发所述控制模块根据所述柔性本体沿所述第一轴线的两端的接近度确定所述柔性本体相对于所述第一轴线的第一形变状态;或者
    检测所述柔性本体在第二方向弯曲时沿所述第一轴线的两端的接近度,并 触发所述控制模块根据所述柔性本体沿所述第一轴线的两端的接近度确定所述柔性本体相对于所述第一轴线的第二形变状态。
  5. 如权利要求1所述的线控装置,其特征在于,所述线控装置还包括:沿所述柔性本体的第二轴线设置的第二形变检测模块,所述第二形变检测模块与所述控制模块电性连接,用于检测所述柔性本体相对于所述第二轴线的形变状态,所述控制模块还用于根据所述柔性本体相对于所述第二轴线的形变状态对所述用户终端进行控制;其中,所述第二轴线与所述第一轴线相交。
  6. 如权利要求5所述的线控装置,其特征在于,所述第二形变检测模块为第二弯曲传感器,所述第二弯曲传感器沿所述第二轴线设置,用于:
    检测所述柔性本体在第一方向上相对于所述第二轴线的弯曲度,并触发所述控制模块根据所述柔性本体在第一方向上相对于所述第二轴线的弯曲度确定所述柔性本体相对于所述第二轴线的第一形变状态;或者
    检测所述柔性本体在第二方向上相对于所述第二轴线的弯曲度,并触发所述控制模块根据所述柔性本体在第二方向上相对于所述第二轴线的弯曲度确定所述柔性本体相对于所述第二轴线的第二形变状态。
  7. 如权利要求5所述的线控装置,其特征在于,所述第二形变检测模块包括第三接近度传感器和第四接近度传感器,所述第三接近度传感器和所述第四接近度传感器相对设置于所述柔性本体沿所述第二轴线的两端,用于:
    检测所述柔性本体在第一方向弯曲时沿所述第二轴线的两端的接近度,并触发所述控制模块根据所述柔性本体沿所述第二轴线的两端的接近度确定所述柔性本体相对于所述第二轴线的第一形变状态;或者
    检测所述柔性本体在第二方向弯曲时沿所述第二轴线的两端的接近度,并触发所述控制模块根据所述柔性本体沿所述第二轴线的两端的接近度确定所述柔性本体相对于所述第二轴线的第二形变状态。
  8. 如权利要求3或4所述的线控装置,其特征在于,所述控制模块,还 用于:
    根据所述柔性本体相对于所述第一轴线的第一形变状态,向所述用户终端发送第一控制指令;或者
    根据所述柔性本体相对于所述第一轴线的第二形变状态,向所述用户终端发送第二控制指令。
  9. 如权利要求8所述的线控装置,其特征在于,所述第一控制指令与所述第二控制指令分别用于控制所述用户终端的相反的功能。
  10. 如权利要求6或7所述的线控装置,其特征在于,所述控制模块,还用于:
    根据所述柔性本体相对于所述第二轴线的第一形变状态,向所述用户终端发送第三控制指令;或者
    根据所述柔性本体相对于所述第二轴线的第二形变状态,向所述用户终端发送第四控制指令,所述第三控制指令与所述第四控制指令分别用于控制用户终端的不同的功能。
  11. 如权利要求1-7任意一项所述的线控装置,其特征在于,所述线控装置还包括与所述控制模块电性连接的柔性触控屏,所述柔性触控屏至少部分覆盖所述柔性本体的表面,用于接收针对所述线控装置的触摸控制指令,并根据所述触摸控制指令触发所述控制模块对所述用户终端进行控制。
  12. 一种用户终端的线控方法,其特征在于,包括:
    检测线控装置的柔性本体相对于所述柔性本体的第一轴线的形变状态;
    根据所述柔性本体相对于所述第一轴线的形变状态触发所述线控装置的控制模块对用户终端进行控制。
  13. 如权利要求12所述的方法,其特征在于,所述检测线控装置的柔性本体相对于所述柔性本体的第一轴线的形变状态,包括:
    检测所述柔性本体在第一方向上相对于所述第一轴线的弯曲度,并触发所述控制模块根据所述柔性本体在第一方向上相对于所述第一轴线的弯曲度确定所述柔性本体相对于所述第一轴线的第一形变状态;或者
    检测所述柔性本体在第二方向上相对于所述第一轴线的弯曲度,并触发所述控制模块根据所述柔性本体在第二方向上相对于所述第一轴线的弯曲度确定所述柔性本体相对于所述第一轴线的第二形变状态。
  14. 如权利要求12所述的方法,其特征在于,所述检测线控装置的柔性本体相对于所述柔性本体的第一轴线的形变状态,包括:
    检测所述柔性本体在第一方向上弯曲时沿所述第一轴线的两端的接近度,并触发所述控制模块根据所述柔性本体沿所述第一轴线的两端的接近度确定所述柔性本体相对于所述第一轴线的第一形变状态;或者
    检测所述柔性本体在第二方向弯曲时沿所述第一轴线的两端的接近度,并触发所述控制模块根据所述柔性本体沿所述第一轴线的两端的接近度确定所述柔性本体相对于所述第一轴线的第二形变状态。
  15. 如权利要求12-14任意一项所述的方法,其特征在于,所述方法还包括:
    检测线控装置的柔性本体相对于所述柔性本体的第二轴线的形变状态;
    根据所述柔性本体相对于所述第二轴线的形变状态触发所述线控装置的控制模块对所述用户终端进行控制;其中,所述第二轴线与所述第一轴线相交。
  16. 如权利要求15所述的方法,其特征在于,所述检测线控装置的柔性本体相对于所述柔性本体的第二轴线的形变状态,包括:
    检测所述柔性本体在第一方向上相对于所述第二轴线的弯曲度,并触发所述控制模块根据所述柔性本体在第一方向上相对于所述第二轴线的弯曲度确定所述柔性本体相对于所述第二轴线的第一形变状态;或者
    检测所述柔性本体在第二方向上相对于所述第二轴线的弯曲度,并触发所述控制模块根据所述柔性本体在第二方向上相对于所述第二轴线的弯曲度确 定所述柔性本体相对于所述第二轴线的第二形变状态。
  17. 如权利要求15所述的方法,其特征在于,所述检测线控装置的柔性本体相对于所述柔性本体的第二轴线的形变状态,包括:
    检测所述柔性本体在第一方向弯曲时沿所述第二轴线的两端的接近度,并触发所述控制模块根据所述柔性本体沿所述第二轴线的两端的接近度确定所述柔性本体相对于所述第二轴线的第一形变状态;或者
    检测所述柔性本体在第二方向弯曲时沿所述第二轴线的两端的接近度,并触发所述控制模块根据所述柔性本体沿所述第二轴线的两端的接近度确定所述柔性本体相对于所述第二轴线的第二形变状态。
  18. 如权利要求13或14所述的方法,其特征在于,所述根据所述柔性本体相对于所述第一轴线的形变状态触发所述线控装置的控制模块对用户终端进行控制,包括:
    根据所述柔性本体相对于所述第一轴线的第一形变状态,触发所述线控装置的控制模块向所述用户终端发送第一控制指令;或者
    根据所述柔性本体相对于所述第一轴线的第二形变状态,触发所述线控装置的控制模块向所述用户终端发送第二控制指令,所述第一控制指令与所述第二控制指令分别用于控制所述用户终端的相反的功能。
  19. 如权利要求16或17所述的方法,其特征在于,所述根据所述柔性本体相对于所述第二轴线的形变状态触发所述线控装置的控制模块对所述用户终端进行控制,包括:
    根据所述柔性本体相对于所述第二轴线的第一形变状态,触发所述线控装置的控制模块向所述用户终端发送第三控制指令;或者
    根据所述柔性本体相对于所述第二轴线的第二形变状态,触发所述线控装置的控制模块向所述用户终端发送第四控制指令,所述第三控制指令与所述第四控制指令分别用于控制用户终端的不同的功能。
  20. 如权利要求12所述的方法,其特征在于,所述方法还包括:
    通过柔性触控屏接收针对所述线控装置的触摸控制指令;
    根据所述触摸控制指令触发所述线控装置的控制模块对所述用户终端进行控制。
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