WO2020124466A1 - 一种沙发及其调节方法 - Google Patents
一种沙发及其调节方法 Download PDFInfo
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- WO2020124466A1 WO2020124466A1 PCT/CN2018/122238 CN2018122238W WO2020124466A1 WO 2020124466 A1 WO2020124466 A1 WO 2020124466A1 CN 2018122238 W CN2018122238 W CN 2018122238W WO 2020124466 A1 WO2020124466 A1 WO 2020124466A1
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- sofa
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47C—CHAIRS; SOFAS; BEDS
- A47C17/00—Sofas; Couches; Beds
- A47C17/04—Seating furniture, e.g. sofas, couches, settees, or the like, with movable parts changeable to beds; Chair beds
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- the invention relates to the field of intelligent equipment, in particular to a sofa and its adjusting method.
- the intelligent sofa can automatically adjust the angle of the sofa back according to user instructions, which brings convenience to people's lives.
- the existing smart sofa generally adjusts the backrest to move forward or backward at a fixed speed during the process of lying and raising after adjustment, and cannot be intelligently adjusted in conjunction with the user's physical condition.
- one of the purposes of the present invention is a sofa adjustment method to adjust the movement rate of the sofa according to the user's physical condition.
- the second object of the present invention is to provide a sofa to adjust the movement rate according to the user's physical condition.
- a sofa adjustment method the sofa includes a sofa body, an adjustment mechanism, an input device, and a physiological parameter detection device, the physiological parameter detection device and the adjustment mechanism are provided in the sofa body, and the input device is provided in the An outer surface of the sofa body; the input device is used to generate an adjustment instruction in response to a user's input operation, the adjustment instruction includes an adjustment direction and an adjustment rate; the physiological parameter detection device is used to detect a user sitting on the sofa Physiological data; the adjustment method includes:
- the physical state includes a normal state and an abnormal state
- the adjustment rate is changed according to the physiological data, and the adjustment mechanism is controlled according to the changed adjustment rate to adjust the sofa body to perform corresponding movements.
- a sofa includes a sofa body, an adjustment mechanism, an input device, a physiological parameter detection device, a processor, and a memory.
- the physiological parameter detection device and the adjustment mechanism are provided in the sofa body, and the input device is provided in the An outer surface of the sofa body; the input device is used to generate an adjustment instruction in response to a user's input operation, the adjustment instruction includes an adjustment direction and an adjustment rate; the physiological parameter detection device is used to detect a user sitting on the sofa Physiological data; the memory stores a sofa adjustment program that implements the above sofa adjustment method when the sofa adjustment program is executed by the processor.
- the beneficial effect of the present invention lies in: judging the user's physical state by acquiring physiological data, if it is abnormal, changing the adjustment rate of the sofa, and controlling the adjustment mechanism according to the changed adjustment rate to the sofa body accordingly Adjustment, so that the intelligent sofa can be adjusted according to the user's physical condition.
- FIG. 1 is an application scenario diagram of a sofa adjusting method in an embodiment of the present invention
- FIG. 2 is a flowchart of a sofa adjustment method provided by an embodiment of the present invention.
- FIG. 3 is a flowchart of determining a user’s physical state based on physiological data according to an embodiment of the present invention
- Figure 5 is the relationship between blood pressure and various age groups
- Figure 6 is the relationship between blood oxygen and various age groups
- Figure 7 is a graph of the relationship between heart rate and various age groups
- FIG. 8 is a flowchart of a sofa adjustment method according to another embodiment of the present invention.
- FIG. 1 is an application environment diagram of a method for adjusting a movement rate of a smart sofa in an embodiment of the present invention.
- the sofa adjusting method is applied to a sofa.
- the sofa includes a sofa body 1, an adjustment mechanism 2, an input device 3, a physiological parameter detection device 4, a processor 5, and a memory 6.
- the physiological parameter detection device 4 and the adjustment mechanism 2 are provided on the sofa body 1.
- the input device 3 is provided on the outer surface of the sofa body 1; the input device 3 is used to generate an adjustment instruction in response to the user's input operation, the adjustment instruction includes the adjustment direction and the adjustment rate; the physiological parameter detection device 4 is used to detect the sitting on the sofa
- Physical state includes normal state and abnormal state. When the user's physical state is in an abnormal state, the processor 5 changes the adjustment rate according to the physiological data, and controls the adjustment mechanism 2 to adjust the sofa body 1 to perform the corresponding movement according to
- the input device 3 includes a flexible touch screen 31 that senses input operation information applied by the user and generates an adjustment instruction.
- the input operation is a touch glide operation
- the flexible touch screen 31 generates an adjustment instruction according to the slide track and the slide speed of the touch glide operation.
- the physiological parameter detection device 4 includes an infrared sensor 41 and a data collection component 42.
- the data collection component 42 is used to collect physiological data of the human body when the infrared sensor 41 senses the human body.
- the infrared sensor 41 is provided on the sofa On the armrest, when the user sits on the sofa and places his hand on the armrest, the infrared sensor 41 senses the human body, and the data collection component 42 starts to collect physiological data of the human body.
- the infrared sensor 41 can also be disposed at a position where the user sits.
- the sofa further includes a communication unit 7 that communicates with the mobile terminal.
- the communication unit 7 is used to send physiological data to the mobile terminal, so that the user can easily view his own physiological data.
- the invention provides a sofa, which adjusts the movement rate of the intelligent sofa according to the user's physical state and adjustment instructions to adapt to the user's physical condition.
- the program may be stored in a computer-readable storage medium.
- the storage medium mentioned above may be a read-only memory, a hard disk or an optical disk.
- a sofa adjustment method provided by an embodiment of the present invention may be executed by the processor 5 and may include the following steps:
- Step S101 Acquire the adjustment instruction generated by the input device.
- the input device may be provided on the armrest, may be a flexible input device such as a flexible touch screen for the user to input touch glide operation information, or may be an input device provided with a key for the user to input the pressing operation information, the input device according to the user's touch
- the sliding operation or the key operation generates a corresponding adjustment instruction, and the processor obtains the adjustment instruction and executes the sofa adjustment method.
- the input device is a flexible input device
- acquiring the adjustment instruction generated by the input device includes: acquiring an input operation applied to the flexible input device, and generating the adjustment instruction according to the input operation.
- the input operation is a touch glide operation.
- the touch glide operation includes a sliding trajectory and a sliding speed of the touch operation
- generating an adjustment instruction according to the input operation includes calculating an adjustment direction according to the sliding trajectory and calculating the adjustment speed according to the sliding speed.
- the adjustment direction includes the movement direction and movement distance of the backrest of the sofa body.
- the movement direction includes the backrest moving forward and the backrest moving backward.
- Calculating the adjustment direction according to the sliding track includes: calculating the moving direction according to the sliding direction of the sliding track; and calculating the moving distance according to the length of the sliding track.
- one finger slides from left to right to adjust the sofa back to move forward, and one finger slides from right to left to adjust the sofa back to move backward, which can be calculated according to the initial coordinates and end coordinates of the sliding track Out of the sliding direction.
- the length of the sliding trajectory can be calculated according to the initial coordinates and the end coordinates, and a length value corresponds to a moving distance of the backrest.
- the speed of setting the finger sliding speed corresponds to the speed of the adjustment rate
- the adjustment rate of one gear corresponds to the finger sliding speed of a preset range.
- the obtained adjustment instruction is to adjust the backrest to move backward according to the speed of one gear, and it is calculated according to the sliding length The distance the backrest moves backward.
- Step S102 Obtain physiological data detected by the physiological parameter detection device.
- the physiological data detected by the physiological parameter detection device includes blood pressure value, blood oxygen value and heart rate value.
- Step S103 Determine the user's physical state according to the physiological data, the physical state includes a normal state and an abnormal state.
- step S103 specifically includes:
- Step S201 Determine whether the physiological data matches the reference data.
- the reference data is physiological data of normal users.
- the sofa adjustment method provided in this embodiment further includes: controlling the physiological parameter detection device to obtain physiological data of a user with a normal body in advance, and storing the physiological data as reference data in the memory.
- the physiological data includes the values of multiple health indicators
- the reference data includes the correspondence between the values of each health indicator and the age group of users with normal health.
- step S201 includes:
- Step S301 Calculate the age range where each of the health indicators in the physiological data is based on the reference data.
- different age groups correspond to different blood pressure values, blood oxygen values, and heart rate ranges.
- the processor obtains the blood pressure values of users sitting on the sofa, The corresponding relationship between the blood oxygen value and the heart rate value and the blood pressure value, blood oxygen value, and heart rate value in the reference data and the age group calculates the age group where each physiological data of the user sitting on the sofa is located.
- Step S302 Determine whether the age groups where the values of each health indicator are consistent are consistent.
- the corresponding age groups corresponding to the three physiological data are all elderly, and the physiological data matches the reference data. If the detected heart rate is 80, the blood pressure is 135/85, and the blood oxygen is 75, and the corresponding age groups corresponding to the three physiological data are middle-aged, elderly, and old, respectively, the physiological data does not match the reference data.
- Step S303 If yes, it is determined that the physiological data matches the reference data.
- Step S304 If not, it is determined that the physiological data does not match the reference data.
- Step S202 If the physiological data does not match the reference data, it is determined that the user's physical state is in an abnormal state.
- Step S203 If the physiological data matches the reference data, it is determined that the user's physical state is in a normal state.
- the sofa can be adjusted according to the adjustment instruction to end the current operation; if the user's physical state is determined to be abnormal according to the physiological data, step S104 is executed.
- Step S104 If the user's physical state is in an abnormal state, change the adjustment rate according to the physiological data and control the adjustment mechanism to adjust the sofa body to perform corresponding movements according to the changed adjustment rate.
- changing the adjustment rate according to the physiological data may be to reduce the adjustment rate in the adjustment instruction, so as to avoid accidents for users with potential safety hazards.
- the movement distance can be changed according to the physiological data, and the adjustment mechanism can be controlled to adjust the adjustment mechanism to adjust the movement distance after the movement of the sofa body is changed at the changed adjustment rate. For example, for users with abnormalities, limit the distance the sofa back moves forward or backward.
- the sofa adjustment method provided by the embodiment of the present invention acquires the physiological data of the user sitting on the sofa to judge the user's physical state. If the user's body is abnormal, the adjustment rate in the adjustment instruction is changed, and the sofa is controlled to perform corresponding movements.
- the method further includes sending physiological data to the mobile terminal, and the sofa and the mobile terminal establish a communication connection via Bluetooth or WIFI.
- the mobile terminal may be, but not limited to, a personal computer, a notebook computer, a smartphone, a tablet computer, and a portable Wear the device to facilitate users to adjust their diet and exercise habits based on physiological data.
- a sofa adjustment method provided by another embodiment of the present invention includes:
- Step S401 Obtain the adjustment instruction generated by the input device.
- Step S402 Monitor whether the physiological parameter detection device is in a triggered state.
- Step S403 If the physiological parameter detection device is in a triggered state, acquire physiological data detected by the physiological parameter detection device.
- the hand is placed at a specific position on the armrest, and when the infrared sensor on the physiological parameter detection device senses the human body, the data collection component collects the human physiological data and sends it to the processor, if the user’s hand does not Placed in a specific location, the infrared sensor does not sense the human body, and the data collection component does not perform data collection operations.
- Step S404 Determine the user's physical state according to the physiological data, the physical state includes a normal state and an abnormal state.
- Step S405 If the user's physical state is in an abnormal state, change the adjustment rate according to the physiological data and control the adjustment mechanism to adjust the sofa body to perform corresponding movements according to the changed adjustment rate.
- Step S406 If the user's physical state is in a normal state, or the physiological parameter detection device is not in a triggered state, then the adjustment mechanism is controlled according to the adjustment instruction to adjust the sofa body to perform corresponding movements.
- the sofa is adjusted according to the adjustment direction and speed of the backrest of the sofa corresponding to the adjustment instruction.
- Steps S401-S402 and steps S404-S405 in this embodiment are the same as steps S101-S104 in the above embodiment, and will not be repeated here.
- the user's physiological data is obtained. If the user's physical state is normal, the smart sofa is adjusted according to the adjustment instructions. If the user's physical state is abnormal, the intelligence is changed. After adjusting the rate of the sofa, the smart sofa is adjusted according to the changed rate to adapt to the user's physical condition.
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Abstract
一种沙发及其调节方法,方法包括:获取输入装置(3)所生成的调节指令(S101);获取生理参数检测装置(4)检测到的生理数据(S102);根据生理数据判断用户的身体状态,身体状态包括正常状态和异常状态(S103);若用户的身体状态处于异常状态,则根据生理数据改变调节速率并根据改变后的调节速率控制调节机构(2)调节沙发本体(1)进行相应的运动(S104)。沙发及其调节方法可以根据生理数据调节沙发的运动速率,以适应用户的身体状况。
Description
本发明涉及智能设备领域,尤其涉及一种沙发及其调节方法。
智能沙发可以根据用户指令自动调节沙发靠背的角度,给人们的生活带来了便利。但是,现有的智能沙发在调节后躺和升起过程中,一般是固定速度调节靠背向前或者向后运动,不能结合用户的身体状况进行智能调节。
发明内容
为了克服现有技术的不足,本发明的目的之一沙发的调节方法,以根据用户的身体状况调节沙发的运动速率。
本发明的目的之二在于提供一种沙发,以根据用户的身体状况调节运动速率。
本发明的目的之一采用如下技术方案实现:
一种沙发调节方法,所述沙发包括沙发本体、调节机构、输入装置和生理参数检测装置,所述生理参数检测装置和所述调节机构设置于所述沙发本体内,所述输入装置设置于所述沙发本体的外表面;所述输入装置用于响应用户的输入操作生成调节指令,所述调节指令包括调节方向和调节速率;所述生理参数检测装置用于检测坐于所述沙发上的用户的生理数据;所述调节方法包括:
获取所述输入装置所生成的调节指令;
获取所述生理参数检测装置检测到的生理数据;
根据所述生理数据判断用户的身体状态,所述身体状态包括正常状态和异常状态;
若用户的身体状态处于异常状态,则根据所述生理数据改变所述调节速率并根据改变后的调节速率控制所述调节机构调节所述沙发本体进行相应的运动。
本发明的目的之二采用如下技术方案实现:
一种沙发,包括沙发本体、调节机构、输入装置、生理参数检测装置、处理器和存储器,所述生理参数检测装置和所述调节机构设置于所述沙发本体内,所述输入装置设置于所述沙发本体的外表面;所述输入装置用于响应用户的输入操作生成调节指令,所述调节指令包括调节方向和调节速率;所述生理参数检测装置用于检测坐于所述沙发上的用户的生理数据;所述存储器存储有沙发调节程序,所述沙发调节程序被所述处理器执行时实现上述沙发调节方法。
相比现有技术,本发明的有益效果在于:通过获取生理数据,判断用户的身体状态,若是异常状态,改变沙发的调节速率,并根据改变后的调节速率控制调节机构对沙发本体进行相应的调节,从而可以根据用户的身体状况调节智能沙发。
图1为本发明实施例中沙发调节方法的应用场景图;
图2为本发明一实施例提供的沙发调节方法流程图;
图3为本发明实施例提供的根据生理数据判断用户的身体状态的流程图;
图4为本发明实施例提供的判断所述生理数据与参照数据是否匹配的流程图;
图5为血压与各年龄段的关系图;
图6为血氧与各年龄段的关系图;
图7为心率与各年龄段的关系图;
图8为本发明另一实施例提供的沙发调节方法流程图。
下面,结合附图以及具体实施方式,对本发明做进一步描述,需要说明的是,在不相冲突的前提下,以下描述的各实施例之间或各技术特征之间可以任意组合形成新的实施例。
图1为本发明实施例中智能沙发运动速率的调节方法的应用环境图。该沙发调节方法应用于沙发中,沙发包括沙发本体1、调节机构2、输入装置3、生理参数检测装置4、处理器5和存储器6,生理参数检测装置4和调节机构2设置于沙发本体1内,输入装置3设置于沙发本体1的外表面;输入装置3用于响应用户的输入操作生成调节指令,调节指令包括调节方向和调节速率;生理参数检测装置4用于检测坐于沙发上的用户的生理数据;处理器5根据生理参数检测装置4所检测到的生理数据判断用户的身体状态。身体状态包括正常状态和异常状态。当用户的身体状态处于异常状态,处理器5根据生理数据改变调节速率,并根据改变后的调节速率控制调节机构2调节沙发本体1进行相应的运动。
较佳的,输入装置3包括柔性触摸屏31,柔性触摸屏31感测用户所施加的输入操作信息并产生调节指令。例如,输入操作为触摸滑行操作,柔性触摸屏31根据触摸滑行操作的滑动轨迹和滑动速度,以产生调节指令。
较佳的,生理参数检测装置4包括红外感应器41和数据采集组件42,数据采集组件42用于在红外感应器41感应到人体时采集人体生理数据,例如,红外感应器41设置于沙发的扶手上,当用户坐在沙发上,手放置在扶手上时,红外感应器41感应到人体,数据采集组件42开始采集人体生理数据。在其他实施方式中,该红外感应器41还可设置于用户落坐的位置处。
较佳的,沙发还包括与移动终端进行通信的通信单元7,通信单元7用于将生理数据发送到移动终端,便于用户查看自己的生理数据。
本发明提供沙发,根据用户的身体状态和调节指令对智能沙发的运动速率进行调节,以适应用户的身体状况。
本领域普通技术人员可以理解实现下述实施例的全部或部分步骤可以通过硬件来完成,也可以通过程序来指令相关的硬件完成,所述的程序可以存储于一种计算机可读存储介质中,上述提到的存储介质可以是只读存储器、硬盘或光盘等。
如图2所示,本发明一实施例提供的沙发调节方法,该方法可以由处理器5执行,可以包括以下步骤:
步骤S101:获取所述输入装置所生成的调节指令。
其中,输入装置可以设置在扶手上,可以是柔性输入装置例如柔性触摸屏以供用户输入触摸滑行操作信息,也可以是设置有按键的输入装置以供用户输入按压操作信息,输入装置根据用户的触摸滑行操作或按键操作生成对应的调节指令,处理器获取调节指令,执行沙发调节方法。
在一种实施方式中,输入装置为柔性输入装置,获取输入装置所生成的调节指令包括:获取施加于柔性输入装置上的输入操作,根据输入操作生成调节指令。其中,输入操作为触摸滑行操作,触摸滑行操作包括触摸操作的滑动轨迹和滑动速度,根据输入操作生成调节指令包括:根据滑动轨迹计算出调节方向,根据滑动速度计算出调节速度。其中,调节方向包括沙发本体的靠背的移动方向和移动距离,移动方向包括靠背向前移动和靠背向后移动,用户坐在沙发上后,靠背向前移动为靠背靠近人体移动,靠背向后运动为靠背远离人体移动。根据滑动轨迹计算出调节方向包括:根据滑动轨迹的滑动方向计算出移动 方向;根据所述滑动轨迹的长度计算出移动距离。
例如,设定柔性触摸屏上,单指从左向右滑动为调节沙发靠背向前移动,单指从右向左滑动为调节沙发靠背向后移动,根据滑动轨迹的初始坐标和终止坐标即可计算出滑动方向。同时根据初始坐标和终止坐标可以计算出滑动轨迹的长度,一个长度值对应一个靠背的移动距离。设定手指滑动速度的快慢对应调节速率的快慢,一个档位的调节速率对应一个预设范围的手指滑动速度。若用户的触摸滑行操作为单指从右向左滑动,且滑动速度对应的调节速率为一档,则获取到的调节指令为按照一档的速度调节靠背向后移动,并根据滑动长度计算出靠背向后移动的距离。
步骤S102:获取所述生理参数检测装置检测到的生理数据。
其中,所述生理参数检测装置所检测到的生理数据包括血压值、血氧值和心率值。
步骤S103:根据所述生理数据判断用户的身体状态,所述身体状态包括正常状态和异常状态。
在一实施方式中,如图3所示,步骤S103具体包括:
步骤S201:判断所述生理数据与所述参照数据是否匹配。
其中,参照数据为身体正常的用户的生理数据。本实施例提供的沙发调节方法还包括:控制所述生理参数检测装置预先获取身体正常的用户的生理数据,并将所述生理数据作为参照数据存储于所述存储器中。生理数据包括多个健康指标的数值,参照数据包括身体正常的用户的每个健康指标的数值与年龄段的对应关系。
如图4所示,步骤S201包括:
步骤S301:根据所述参照数据计算所述生理数据中每个所述健康指标的数 值所在的年龄段。
如图5-7所示,按照身体正常的用户的年龄段划分,不同的年龄段对应不同的血压值、血氧值和心率值范围,处理器获取到坐于沙发上的用户的血压值、血氧值和心率值,与参照数据中血压值、血氧值和心率值与年龄段的对应关系,计算出坐于沙发上的用户的每个生理数据所在的年龄段。
步骤S302:判断每个所述健康指标的数值所在的年龄段是否一致。
根据血压值、血氧值和心率值三个数据所在的年龄段是否一致来判断生理数据与参照数据是否匹配。
例如,若检测到心率为65,血压为130/82,血氧为80,三个生理数据对应对应的年龄段均为老年,生理数据与参照数据匹配。若检测到心率为80,血压为135/85,血氧为75,三个生理数据对应对应的年龄段分别为中年、老年、老年,则生理数据与参照数据不匹配。
步骤S303:若是,则判定所述生理数据与所述参照数据匹配。
步骤S304:若否,则判定所述生理数据与所述参照数据不匹配。
步骤S202:若所述生理数据与所述参照数据不匹配,判定用户的身体状态处于异常状态。
步骤S203:若所述生理数据与所述参照数据匹配,判定用户的身体状态处于正常状态。
在一种实施方式中,若根据生理数据判断出用户的身体状态为正常状态,可以根据调节指令调节沙发,结束当前操作;若根据生理数据判断出用户的身体状态为异常状态,执行步骤S104。
步骤S104:若用户的身体状态处于异常状态,则根据所述生理数据改变所述调节速率并根据改变后的调节速率控制所述调节机构调节所述沙发本体进行 相应的运动。
其中,根据生理数据改变调节速率可以是减小调节指令中的调节速率,以避免存在安全隐患的用户发生事故。
若用户的身体处于异常状态,也可以根据生理数据改变移动距离,并控制以改变后的调节速率控制调节机构调节沙发本体运动改变后的移动距离。例如,对于身体异常的用户,限制沙发靠背向前或向后移动的距离。
本发明实施例提供的沙发调节方法,获取坐于沙发的用户的生理数据以判断用户的身体状态,若用户身体异常,则改变调节指令中的调节速率,并控制沙发进行相应的运动。
较佳的,所述方法还包括将生理数据发送到移动终端,沙发与移动终端通过蓝牙或者WIFI建立通讯连接,移动终端可以但不限于是个人计算机、笔记本电脑、智能手机、平板电脑和便携式可穿戴设备,便于用户根据生理数据调整自己的饮食和运动习惯。
如图8所示本发明另一实施例提供的沙发调节方法,包括:
步骤S401:获取所述输入装置所生成的调节指令。
步骤S402:监测所述生理参数检测装置是否处于触发状态。
步骤S403:若所述生理参数检测装置处于触发状态,则获取所述生理参数检测装置检测到的生理数据。
例如,用户坐于沙发上后,手放置在扶手上的特定位置,生理参数检测装置上的红外感应器感应到人体时,数据采集组件采集人体生理数据并发送到处理器,若用户的手没有放置在特定位置,红外感应器未感应到人体,数据采集组件不执行采集数据操作。
步骤S404:根据所述生理数据判断用户的身体状态,所述身体状态包括正 常状态和异常状态。
步骤S405:若用户的身体状态处于异常状态,则根据所述生理数据改变所述调节速率并根据改变后的调节速率控制所述调节机构调节所述沙发本体进行相应的运动。
步骤S406:若用户的身体状态处于正常状态,或者所述生理参数检测装置未处于触发状态,则根据所述调节指令控制所述调节机构调节所述沙发本体进行相应的运动。
若用户为健康状态或者生理参数检测装置未被触发,根据调节指令对应的沙发的靠背调节方向和调节速度调节沙发。
本实施例中的步骤S401-S402和步骤S404-S405与上述实施例中的步骤S101-步骤S104相同,在此不再赘述。
本发明实施例提供的沙发调节方法,对沙发进行调节前,获取用户的生理数据,若用户为的身体状态为正常状态,按照调节指令调节智能沙发,若用户的身体状态处于异常状态,改变智能沙发的调节速率后按照改变后的速率调节智能沙发,以适应用户的身体状况。
上述实施方式仅为本发明的优选实施方式,不能以此来限定本发明保护的范围,本领域的技术人员在本发明的基础上所做的任何非实质性的变化及替换均属于本发明所要求保护的范围。
Claims (15)
- 一种沙发调节方法,其特征在于,所述沙发包括沙发本体、调节机构、输入装置和生理参数检测装置,所述生理参数检测装置和所述调节机构设置于所述沙发本体内,所述输入装置设置于所述沙发本体的外表面;所述输入装置用于响应用户的输入操作生成调节指令,所述调节指令包括调节方向和调节速率;所述生理参数检测装置用于检测坐于所述沙发上的用户的生理数据;所述调节方法包括:获取所述输入装置所生成的调节指令;获取所述生理参数检测装置检测到的生理数据;根据所述生理数据判断用户的身体状态,所述身体状态包括正常状态和异常状态;若用户的身体状态处于异常状态,则根据所述生理数据改变所述调节速率并根据改变后的调节速率控制所述调节机构调节所述沙发本体进行相应的运动。
- 根据权利要求1所述的沙发调节方法,其特征在于,所述沙发还包括设于所述沙发本体内的存储器,所述调节方法还包括:控制所述生理参数检测装置预先获取身体正常的用户的生理数据,并将所述生理数据作为参照数据存储于所述存储器中。
- 根据权利要求2所述的沙发调节方法,其特征在于,所述根据所述生理数据判断用户的身体状态包括:判断所述生理数据与所述参照数据是否匹配;若所述生理数据与所述参照数据不匹配,判定用户的身体状态处于异常状态;若所述生理数据与所述参照数据匹配,判定用户的身体状态处于正常状态。
- 根据权利要求3所述的沙发调节方法,其特征在于,所述生理数据包括多个健康指标的数值,所述参照数据包括身体正常的用户的每个所述健康指标的数值与年龄段的对应关系,所述判断所述生理数据与所述参照数据是否匹配包括:根据所述参照数据计算所述生理数据中每个所述健康指标的数值所在的年龄段;判断每个所述健康指标的数值所在的年龄段是否一致;若是,则判定所述生理数据与所述参照数据匹配;若否,则判定所述生理数据与所述参照数据不匹配。
- 根据权利要求1所述的沙发调节方法,其特征在于,所述根据所述生理数据改变所述调节速率包括:减小所述调节指令中的所述调节速率。
- 根据权利要求1所述的沙发调节方法,其特征在于,所述生理数据包括血压值、血氧值和心率值。
- 根据权利要求1所述的沙发调节方法,其特征在于,所述输入装置为柔性输入装置,所述获取所述输入装置所生成的调节指令包括:获取施加于所述柔性输入装置上的输入操作;根据所述输入操作生成所述调节指令。
- 根据权利要求7所述的沙发调节方法,其特征在于,所述输入操作为触摸滑行操作,所述触摸滑行操作包括触摸操作的滑动轨迹和滑动速度,所述根据所述输入操作生成所述调节指令包括:根据所述滑动轨迹计算出所述调节方向;根据所述滑动速度计算出所述调节速度。
- 根据权利要求8所述的沙发调节方法,其特征在于,所述调节方向包括所述沙发本体的靠背的移动方向和移动距离,所述根据所述滑动轨迹计算出所述调节方向包括:根据所述滑动轨迹的滑动方向计算出所述移动方向;根据所述滑动轨迹的长度计算出所述移动距离。
- 根据权利要求9所述的沙发调节方法,其特征在于,若用户的身体状态处于异常状态之后还包括:根据所述生理数据改变所述移动距离,并控制以改变后的调节速率控制所述调节机构调节所述沙发本体运动所述改变后的移动距离。
- 根据权利要求1所述的沙发调节方法,其特征在于,获取所述生理参数检测装置检测到的生理数据之前还包括:监测所述生理参数检测装置是否处于触发状态;若所述生理参数检测装置处于触发状态,则获取所述生理参数检测装置检测到的生理数据;若所述生理参数检测装置未处于触发状态,根据所述调节指令控制所述调节机构调节所述沙发本体进行相应的运动。
- 根据权利要求1所述的沙发调节方法,其特征在于,所述根据所述生理数据判断用户的身体状态之后还包括:若用户的身体状态处于正常状态,则根据所述调节指令控制所述调节机构调节所述沙发本体进行相应的运动。
- 根据权利要求1所述的沙发调节方法,其特征在于,所述沙发还包括与移动终端进行通信的通信单元,所述调节方法还包括:将所述生理数据发送到所述移动终端。
- 一种沙发,其特征在于,包括沙发本体、调节机构、输入装置、生理参数检测装置、处理器和存储器,所述生理参数检测装置和所述调节机构设置于所述沙发本体内,所述输入装置设置于所述沙发本体的外表面;所述输入装置用于响应用户的输入操作生成调节指令,所述调节指令包括调节方向和调节速率;所述生理参数检测装置用于检测坐于所述沙发上的用户的生理数据;所述存储器存储有沙发调节程序,所述程序被所述处理器执行时实现如权利要求1-13任意一项所述的沙发调节方法。
- 根据权利要求14所述的沙发,其特征在于,所述生理参数检测装置包括红外感应器和数据采集组件,所述数据采集组件用于在所述红外感应器感应到人体时采集人体的生理数据。
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