Apparatus and method for controlling operation of mobile terminal
09733757 ยท 2017-08-15
Assignee
Inventors
Cpc classification
G06F3/017
PHYSICS
G06F1/1615
PHYSICS
G06F2203/04808
PHYSICS
G06F2203/04104
PHYSICS
G06F1/1652
PHYSICS
G06F2203/04111
PHYSICS
G06F2203/04102
PHYSICS
G06F3/0416
PHYSICS
G06F1/169
PHYSICS
G06F2203/04804
PHYSICS
International classification
G06F3/041
PHYSICS
Abstract
A method of controlling the operation of a mobile terminal is provided. By dynamically selecting or setting a specific function of a mobile terminal according to a change in pressure or contact areas sensed by a plurality of touch sensors which cover the mobile terminal, a user can easily select or set a specific function of the mobile terminal according to his or her intention, and easily recognize information displayed on a screen of the mobile terminal.
Claims
1. A mobile phone comprising: at least one first sensor configured to detect a first pressure on a first surface of the mobile phone; at least one second sensor configured to detect a second pressure on a second surface of the mobile phone, the second surface being opposite to the first surface; a display; and a controller electrically coupled with the display, the at least one first sensor, and the at least one second sensor, the controller configured to, determine at least one first capacitance value corresponding to the detected first pressure, determine at least one second capacitance value corresponding to the detected second pressure, and perform a function from among a plurality of functions based on the at least one first capacitance value and the at least one second capacitance value.
2. The mobile phone of claim 1, wherein the controller is further configured to, identify a specific function from among the plurality of functions based on whether each of the at least one first capacitance value and the at least one second capacitance value is greater than a corresponding threshold, and perform the specific function.
3. A mobile phone, comprising: a display; a plurality of touch sensors configured to sense a plurality of pressure values of a user input on respective portions of the display; and at least one processor configured to, recognize a function from among a plurality of functions of the mobile phone, the function being a function corresponding to at least one pressure value, from among the plurality of sensed pressure values, sensed by at least one of the plurality of touch sensors; and operate the function.
4. The mobile phone of claim 3, wherein the plurality of touch sensors are a plurality of pressure touch sensors, which sense pressure applied to an outer surface portion of the mobile phone, or a plurality of capacitive touch sensors, capacitances of which change according to pressure applied to the outer surface portion of the mobile phone.
5. The mobile phone of claim 3, wherein the respective portions comprise a front surface portion of the mobile phone and a rear surface portion of the mobile phone.
6. The mobile phone of claim 3, wherein the at least one processor comprises, a storage configured to store information about the plurality of functions, the plurality of functions corresponding to a plurality of pressure value patterns, respectively, each of the plurality of pressure value patterns being a pattern of a set of at least one pressure value due to pressure to be collectively applied on the mobile phone, and a function recognizer configured to search for information about the function corresponding to the plurality of sensed pressure values in the storage, and provide found information about the function to the controller.
7. The mobile phone of claim 3, wherein the at least one processor is further configured to recognize the function from among the plurality of functions based on a determination as to whether a pattern of the plurality of sensed pressure values indicates that the mobile phone is being bent.
8. The mobile phone of claim 7, further comprising: a user interface configured to display a page, and wherein the mobile phone is configured to control the page displayed by the user interface to be reduced based on a result of the determination.
9. The mobile phone of claim 7, wherein the mobile phone is configured to determine whether the mobile phone is bent inward or outward based on an ordering of at least some of the plurality of sensed pressure values.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate exemplary embodiments of the invention, and together with the description serve to explain the aspects of the invention.
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENTS
(11) The invention is described more fully hereinafter with reference to the accompanying drawings, in which exemplary embodiments of the invention are shown. This invention may, however, be embodied in many different forms and should not be construed as limited to the exemplary embodiments set forth herein. Rather, these exemplary embodiments are provided so that this disclosure is thorough, and will fully convey the scope of the invention to those skilled in the art. In the drawings, the size and relative sizes of layers and regions may be exaggerated for clarity. Like reference numerals in the drawings denote like elements.
(12)
(13) Referring to
(14) The sensor unit 10 is disposed on the outer surface of the mobile terminal, and includes a plurality of touch sensors. The touch sensors may be pressure touch sensors which sense pressure applied to the outer surface of the mobile terminal, or capacitive touch sensors whose capacitances change according to pressure applied to the outer surface of the mobile terminal.
(15)
(16) As illustrated in
(17) Exemplary arrangements of the touch sensors that cover the front and rear surfaces of the mobile terminal are shown in
(18) As illustrated in
(19) Also, an opaque touch sensor is disposed on the rear surface of the mobile terminal. The opaque touch sensor disposed on the rear surface of the mobile terminal may be a flexible opaque touch sensor.
(20) Meanwhile, in an arrangement of touch sensors illustrated in
(21) Returning to
(22) The recognition unit 12 recognizes a function corresponding to the information about the contact areas or pressure, on the basis of data stored in the storage unit 15, thereby recognizing the user's intention. That is, the storage unit 15 stores functions corresponding to information about contact areas or pressure.
(23) For example, the signal processor 11 determines whether the mobile terminal is grasped by a user, through the sensor unit 10, as illustrated in
(24)
(25)
(26)
(27)
(28)
(29)
(30)
(31)
(32)
(33) As described above, the recognition unit 12 recognizes the user's intention on the basis of function information corresponding to information about pressure or contact areas, which is stored in the storage unit 13.
(34) The recognition unit 12 can perform pattern recognition in order to recognize the user's intention, on the basis of the information about pressure and contact areas.
(35) General pattern recognition methods will be described below.
(36) First, a large amount of data about an input X and a class C is collected from a user. Second, the collected data is classified into learning data and test data. Third, the learning data is provided to a pattern recognition system to perform learning. Then, model parameters of the pattern recognition system are changed according to the learning data. Finally, only the input X is provided to the pattern recognition system, so that the pattern recognition system outputs the class C.
(37) A pattern recognition method according to a first embodiment of the present invention uses a neural network. A neural network, which is a model for simplifying a synaptic neurotransmission process of living things and mathematically interpreting the synaptic neurotransmission process, is used to analyze problems through a kind of learning process for adjusting the connection weights of neurons which are interconnected in a complex pattern while passing data through the neurons. The pattern recognition method is similar to the learning and memorizing process of the human brain, and deduction, classification, prediction, etc. can be performed through the pattern recognition method. In the neural network, a neuron corresponds to a node, and a connection strength between neurons corresponds to a weight connected to an arc between nodes. The neural network may be a multi-layer perceptron neural network consisting of a plurality of single-layer perceptrons.
(38) In a pattern recognition method according to a second embodiment of the present invention a user's motion pattern is recognized using a support vector machine (SVM). According to the pattern recognition method, a N-dimensional space is formed using characteristics of N motion signals, a proper hyperplane is created from the N-dimensional space using learning data, and a pattern is recognized from the hyperplane.
(39) In a pattern recognition method according to a third embodiment of the present invention a motion pattern is recognized using template matching. According to the pattern recognition method, patterns are classified on the basis of learning data to create template data, template data which is most similar in distance to an input value is searched for from among the template data, and a pattern is recognized from the search template data.
(40) A pattern recognition method according to a fourth embodiment of the present invention uses a hidden Markov model. The hidden Markov model is a finite state machine having transition probabilities between states, wherein each state cannot be directly observed, but can be recognized from observable states.
(41) Returning to
(42) The user interface unit 14 performs a specific function of the mobile terminal or an application operation which is being executed, according to the operation control signal.
(43) For example, if the user bends the mobile terminal inward, while a web page is displayed and executed on the screen of the mobile terminal, the web page can be reduced.
(44)
(45) As illustrated in
(46) At this point, the plurality of touch sensors may be a plurality of pressure touch sensors which sense pressure applied to the outer surface of the mobile terminal, or a plurality of capacitive touch sensors whose capacitances change according to pressure applied to the outer surface of the mobile terminal.
(47) If the plurality of touch sensors determine that the mobile terminal is gripped by the user, pressure applied to the mobile terminal or capacitance of the plurality of touch sensors is measured (operation S61). Then, it is determined whether a change in pressure or a change in contact areas due to a change in capacitance occurs according to the measurement result of the pressure or capacitance (operation S62).
(48) When the change in pressure or the change in contact areas due to the change in capacitance is detected, a function corresponding to the changed pressure or the changed contact areas is searched for in a database, or a function corresponding to information about the changed pressure or the changed contact areas is recognized through pattern recognition (operation S63).
(49) The pattern recognition can be performed through a neural network, template matching, a hidden Markov model, a support vector machine (SVM), etc.
(50) Then, the mobile terminal generates an operation control signal corresponding to the function to control the function or the operation of an application which is being executed (operation S64).
(51) Hereinafter, a method for controlling the operation of a mobile terminal, according to an embodiment of the present invention, will be described by using as an example a case where 8 touch sensors are disposed on the mobile terminal. Here, the number of touch sensors is not limited to 8.
(52) An arrangement of the 8 touch sensors which cover the mobile terminal is illustrated in
(53) Referring to
(54)
(55) In the current embodiment, it is assumed that the mobile terminal has the arrangement of 8 touch sensors as illustrated in
(56) Referring to
(57) At this point, the 8 touch sensors 1 through 8 may be pressure touch sensors which sense pressure applied to the outer surface of the mobile terminal, or capacitive touch sensors whose capacitances change according to pressure applied to the outer surface of the mobile terminal. If it is determined through the 8 touch sensors 1 through 8 that the mobile terminal is gripped by a user, pressure applied to the mobile terminal or capacitance of the touch sensors 1 through 8 is measured through the 8 touch sensors 1 through 8 (operation S81). Then, it is determined whether a change in pressure or a change in contact areas due to a change in capacitance occurs according to the measurement result of the pressure or capacitance (operation S82). For example, it is determined whether values sensed by the touch sensors 2, 3, 5, and 8 are above a predetermined value, and values sensed by the touch sensors 1, 4, 6, and 7 are below the predetermined value.
(58) If the values sensed by the touch sensors 2, 3, 5, and 8 are above the predetermined value, and the values sensed by the touch sensors 1, 4, 6, and 7 are below the predetermined value, the mobile terminal determines that the user bends the mobile terminal inward, and controls an operation corresponding to the inward manipulation (operation S83).
(59) When the user bends the mobile terminal inward, changes in the states of the touch sensors 1 through 8 of the mobile terminal are illustrated in
(60) In
(61) Meanwhile, if it is determined in operation S83 that the pressure or capacitance values sensed by the touch sensors 2, 3, 5, and 8 are not above the predetermined value, and the pressure or capacitance values sensed by the touch sensors 1, 4, 6, and 7 are not below the predetermined value, it is determined whether the pressure or capacitance values sensed by the touch sensors 2, 3, 5, and 8 are below the predetermined value, and the pressure or capacitance values sensed by the touch sensors 1, 4, 6, and 7 are above the predetermined value (operation S84).
(62) If the pressure or capacitance values sensed by the touch sensors 2, 3, 5, and 8 are below the predetermined value, and the pressure or capacitance values sensed by the touch sensors 1, 4, 6, and 7 are above the predetermined value, the mobile terminal determines that the user bends the mobile terminal outward, and controls an operation corresponding to the outward manipulation (operation S85).
(63) When the user bends the mobile terminal outward, changes in the states of the touch sensors 1 through 8 of the mobile terminal are illustrated in
(64) In
(65) As described above, in an apparatus and method for controlling the operation of a mobile terminal, according to the present invention, by providing a new user interface for performing a specific function according to the user's intention recognized by sensing his or her manipulation, the user can easily select or set a specific function of the mobile terminal and easily recognize information which is displayed on a screen of the mobile terminal.
(66) That is, by dynamically selecting or setting a specific function of a mobile terminal according to a change in pressure or contact areas sensed by a plurality of touch sensors which cover the mobile terminal, a user can easily select or set a specific function of the mobile terminal according to his or her intention, and easily recognize information which is displayed on a screen of the mobile terminal.
(67) It will be apparent to those skilled in the art that various modifications and variations can be made in the present invention without departing from the spirit or scope of the invention. Thus, it is intended that the present invention covers the modifications and variations of this invention provided they come within the scope of the appended claims and their equivalents.