Intelligence is cover and vehicle

文档序号:219493 发布日期:2021-11-09 浏览:17次 中文

阅读说明:本技术 一种智能把套及车辆 (Intelligence is cover and vehicle ) 是由 赵炎君 王亭 于 2021-09-15 设计创作,主要内容包括:一种智能把套及车辆,涉及车辆技术领域。该智能把套用于套设在车辆的把手上,包括把套本体,把套本体内设置有控制器以及分别与控制器电连接的心率传感器、血氧传感器、温度传感器和告警器,心率传感器用于获取人体的心率信息,血氧传感器用于获取人体的血氧信息,温度传感器用于获取人体的温度信息,控制器用于根据心率传感器获取的心率信息、血氧传感器获取的血氧信息和温度传感器获取的温度信息控制告警器的工作。该车辆包括车辆本体、把手以及上述的智能把套,把手固定设置在车辆本体上,智能把套套设在把手上。该智能把套及车辆能够感知人体的身体状况,更好地为用户提供相关的监测和告警服务。(An intelligent handlebar sleeve and a vehicle relate to the technical field of vehicles. This intelligence is established on the handle of vehicle is used for the cover to establish, including the cover body, this internal controller that is provided with of cover and heart rate sensor who is connected with the controller electricity respectively, blood oxygen sensor, temperature sensor and alarm, heart rate sensor is used for acquireing human rhythm of the heart information, blood oxygen sensor is used for acquireing human blood oxygen information, temperature sensor is used for acquireing human temperature information, the controller is used for according to the rhythm of the heart information that heart rate sensor acquireed, blood oxygen information that blood oxygen sensor acquireed and the work of the temperature information control alarm that temperature sensor acquireed. The vehicle comprises a vehicle body, a handle and the intelligent handlebar sleeve, wherein the handle is fixedly arranged on the vehicle body, and the intelligent handlebar sleeve is sleeved on the handle. The intelligent handlebar sleeve and the vehicle can sense the physical condition of a human body and provide related monitoring and warning services for a user better.)

1. The utility model provides an intelligence is cover for the cover is established on the handle of vehicle, a serial communication port, including the cover body, this internal controller that is provided with of cover and respectively with heart rate sensor, blood oxygen sensor, temperature sensor and the alarm that the controller electricity is connected, heart rate sensor is used for acquireing human rhythm of the heart information, blood oxygen sensor is used for acquireing human blood oxygen information, temperature sensor is used for acquireing human temperature information, the controller be used for the basis rhythm of the heart information that heart rate sensor acquireed, blood oxygen information that blood oxygen sensor acquireed with the temperature information control that temperature sensor acquireed the work of alarm.

2. The intelligent handle grip of claim 1, wherein the handle grip body is provided with a gripping portion for gripping by a human body, the gripping portion is provided with a plurality of detection holes, the plurality of detection holes are respectively arranged in one-to-one correspondence with the heart rate sensor, the blood oxygen sensor and the temperature sensor, and the heart rate sensor, the blood oxygen sensor and the temperature sensor are respectively exposed out of the handle grip body through the detection holes.

3. The intelligent handle sleeve of claim 1, wherein the controller is configured to control the operation of the alarm device according to a comparison result between the heart rate information obtained by the heart rate sensor and a preset heart rate value, a comparison result between the blood oxygen information obtained by the blood oxygen sensor and a preset blood oxygen value, and a comparison result between the temperature information obtained by the temperature sensor and a preset temperature value.

4. The intelligent handle grip of claim 3, wherein the predetermined heart rate value is an average value of a normal range of heart rate of the human body, and the predetermined blood oxygen value is an average value of a normal range of blood oxygen of the human body.

5. The intelligent handle sleeve of claim 3, further comprising a control terminal in signal connection with the controller, wherein the control terminal is configured to receive heart rate information obtained by the heart rate sensor, blood oxygen information obtained by the blood oxygen sensor, and temperature information obtained by the temperature sensor, and/or the control terminal is configured to send an instruction signal to the controller, and the instruction signal includes the preset heart rate value, the preset blood oxygen value, and the preset temperature value.

6. The intelligent handle sleeve of claim 5, further comprising a heater, wherein a temperature threshold is disposed in the controller, and the controller is further configured to control the operation of the heater according to a comparison result between the temperature information obtained by the temperature sensor and the temperature threshold.

7. The intelligent barrer according to claim 6, wherein the command signal further comprises the temperature threshold.

8. The intelligent handle sleeve of claim 2, wherein a six-axis sensor electrically connected with the controller is arranged in the handle sleeve body; the six-axis sensors are arranged in the corresponding detection holes and used for acquiring the running information of the vehicle, and the controller is also used for controlling the operation of the alarm according to the running information acquired by the six-axis sensors.

9. The intelligent handle sleeve of claim 1, wherein a display electrically connected with the controller is arranged on the handle sleeve body, and the display is used for displaying heart rate information obtained by the heart rate sensor, blood oxygen information obtained by the blood oxygen sensor and temperature information obtained by the temperature sensor, which are sent by the controller.

10. A vehicle is characterized by comprising a vehicle body, a handle and the intelligent handlebar sleeve of any one of claims 1 to 9, wherein the handle is fixedly arranged on the vehicle body, and the intelligent handlebar sleeve is sleeved on the handle.

Technical Field

The invention relates to the technical field of vehicles, in particular to an intelligent handlebar sleeve and a vehicle.

Background

With the continuous improvement of living standard, people pay more and more attention to physical conditions. With the continuous development of scientific technology, vehicles such as bicycles, electric vehicles and the like gradually go on the road of intelligent development, so that the life of people becomes more convenient.

In the prior art, vehicles such as bicycles, electric vehicles and the like cannot sense the physical condition of a human body, cannot better provide related monitoring and warning services for users, and cannot adapt to the rapid development of the intelligent era.

Disclosure of Invention

The invention aims to provide an intelligent handlebar sleeve and a vehicle, which can sense the physical condition of a human body and better provide related monitoring and warning services for a user.

The embodiment of the invention is realized by the following steps:

in one aspect of the embodiment of the invention, an intelligent handlebar sleeve is provided, which comprises a handlebar sleeve body, wherein a controller, a heart rate sensor, a blood oxygen sensor, a temperature sensor and an alarm device are arranged in the handlebar sleeve body, the heart rate sensor, the blood oxygen sensor, the temperature sensor and the alarm device are respectively and electrically connected with the controller, the heart rate sensor is used for acquiring heart rate information of a human body, the blood oxygen sensor is used for acquiring blood oxygen information of the human body, the temperature sensor is used for acquiring temperature information of the human body, and the controller is used for controlling the operation of the alarm device according to the heart rate information acquired by the heart rate sensor, the blood oxygen information acquired by the blood oxygen sensor and the temperature information acquired by the temperature sensor. The intelligent handle sleeve can sense the physical condition of a human body and better provide related monitoring and warning services for a user.

Optionally, be provided with the gripping portion that is used for human gripping on the handle cover body, be provided with a plurality of inspection holes on the gripping portion, it is a plurality of the inspection hole respectively with heart rate sensor, blood oxygen sensor with temperature sensor is the one-to-one setting, heart rate sensor, blood oxygen sensor with temperature sensor passes through respectively inspection hole part exposes outside the handle cover body.

Optionally, the controller is configured to control the operation of the alarm device according to a comparison result between the heart rate information obtained by the heart rate sensor and a preset heart rate value, a comparison result between the blood oxygen information obtained by the blood oxygen sensor and a preset blood oxygen value, and a comparison result between the temperature information obtained by the temperature sensor and a preset temperature value.

Optionally, the preset heart rate value is an average value of a normal range of heart rate of the human body, and the preset blood oxygen value is an average value of a normal range of blood oxygen of the human body.

Optionally, the blood oxygen monitoring system further comprises a control terminal in signal connection with the controller, wherein the control terminal is configured to receive heart rate information obtained by the heart rate sensor, blood oxygen information obtained by the blood oxygen sensor, and temperature information obtained by the temperature sensor, and/or the control terminal is configured to send an instruction signal to the controller, and the instruction signal includes the preset heart rate value, the preset blood oxygen value, and the preset temperature value.

Optionally, the heating system further comprises a heater, a temperature threshold is arranged in the controller, and the controller is further configured to control the operation of the heater according to a comparison result between the temperature information acquired by the temperature sensor and the temperature threshold.

Optionally, the command signal further comprises the temperature threshold.

Optionally, a six-axis sensor electrically connected with the controller is arranged in the handle grip body; the six-axis sensors are arranged in the corresponding detection holes and used for acquiring the running information of the vehicle, and the controller is also used for controlling the operation of the alarm according to the running information acquired by the six-axis sensors.

Optionally, a display electrically connected to the controller is disposed on the handle grip body, and the display is configured to display the heart rate information obtained by the heart rate sensor, the blood oxygen information obtained by the blood oxygen sensor, and the temperature information obtained by the temperature sensor, which are sent by the controller.

In another aspect of the embodiment of the invention, a vehicle is provided, which includes a vehicle body, a handle and the above-mentioned intelligent handle sleeve, wherein the handle is fixedly arranged on the vehicle body, and the intelligent handle sleeve is sleeved on the handle. The intelligent handle sleeve can sense the physical condition of a human body and better provide related monitoring and warning services for a user.

The embodiment of the invention has the beneficial effects that:

this intelligence is cover including the cover body, this internal controller that is provided with of cover and the heart rate sensor who is connected with the controller electricity respectively, blood oxygen sensor, temperature sensor and alarm, heart rate sensor is used for acquireing human rhythm of the heart information, blood oxygen sensor is used for acquireing human blood oxygen information, temperature sensor is used for acquireing human temperature information, after various sensors obtain human physiology information, the controller is used for the heart rate information of acquireing according to heart rate sensor, the blood oxygen information that blood oxygen sensor acquireed and the temperature information control alarm's that temperature sensor acquireed work. For example, when the physiological information of the human body is normal, the controller may control the alarm device to be in a closed state, and when the physiological information of the human body is abnormal, the controller may control the alarm device to be in an open state, so that the alarm device can give an alarm, thereby reminding people to timely treat the abnormal condition of the human body. The intelligent handle sleeve can sense the physical condition of a human body and better provide related monitoring and warning services for a user.

Drawings

In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings needed to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present invention and therefore should not be considered as limiting the scope, and for those skilled in the art, other related drawings can be obtained according to the drawings without inventive efforts.

Fig. 1 is a schematic structural diagram of an intelligent handle grip according to an embodiment of the present invention;

fig. 2 is a second schematic structural diagram of the intelligent grip sleeve according to the embodiment of the present invention.

Icon: 100-intelligent handle sleeve; 10-handle sleeve body; 11-a grip portion; 12-a detection well; 20-a controller; 21-heart rate sensor; 22-a blood oxygen sensor; 23-a temperature sensor; 24-an alarm; 25-six axis sensors; 26-a display; and 30-controlling the terminal.

Detailed Description

In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. The components of embodiments of the present invention generally described and illustrated in the figures herein may be arranged and designed in a wide variety of different configurations.

Thus, the following detailed description of the embodiments of the present invention, presented in the figures, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

It should be noted that: like reference numbers and letters refer to like items in the following figures, and thus, once an item is defined in one figure, it need not be further defined and explained in subsequent figures.

In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings or the orientations or positional relationships that the products of the present invention are conventionally placed in use, and are only used for convenience in describing the present invention and simplifying the description, but do not indicate or imply that the devices or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," "third," and the like are used solely to distinguish one from another and are not to be construed as indicating or implying relative importance.

Furthermore, the terms "horizontal", "vertical" and the like do not imply that the components are required to be absolutely horizontal or pendant, but rather may be slightly inclined. For example, "horizontal" merely means that the direction is more horizontal than "vertical" and does not mean that the structure must be perfectly horizontal, but may be slightly inclined.

In the description of the present invention, it should also be noted that, unless otherwise explicitly specified or limited, the terms "disposed," "mounted," "connected," and "connected" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; either directly or indirectly through intervening media, or may be internal to both elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.

Referring to fig. 1 and fig. 2, the present embodiment provides a vehicle, including a vehicle body, a handle and an intelligent handlebar sheath 100, where the handle is fixedly disposed on the vehicle body, and the intelligent handlebar sheath 100 is sleeved on the handle. The intelligent handle sleeve 100 can sense the physical condition of a human body and better provide related monitoring and warning services for a user.

For example, the vehicle may be a common vehicle in the prior art, such as a bicycle (including a shared bicycle), an electric vehicle (including a shared electric vehicle), a scooter, a spinning bike, various wheelchairs, or various automobiles, and at this time, the vehicle body and the handle may be reasonably selected and designed with reference to a common structure of a vehicle in the prior art, and the actual structure of the vehicle body and the handle is not particularly limited. For example, when the vehicle is an electric vehicle (including a shared electric vehicle), the handle may be in a straight-line structure and fixed at the front end of the vehicle body (i.e., the handle of the electric vehicle in the prior art); when the vehicle is various wheelchairs, the handles can be in a C-shaped structure and are fixed on two sides of the vehicle body (namely, the armrests of the wheelchairs in the prior art); when the vehicle is a car of various types, the handle can be in a circular ring structure and fixed inside the car body (i.e. the steering wheel of the car in the prior art).

Specifically, as shown in fig. 1 and fig. 2, the intelligent handle grip 100 includes a handle grip body 10, a controller 20, a heart rate sensor 21, a blood oxygen sensor 22, a temperature sensor 23 and an alarm 24 are disposed in the handle grip body 10, the heart rate sensor 21 is electrically connected to the controller 20, the blood oxygen sensor 22 is used for acquiring blood oxygen information of a human body, the temperature sensor 23 is used for acquiring temperature information of the human body, and the controller 20 is used for controlling the operation of the alarm 24 according to the heart rate information acquired by the heart rate sensor 21, the blood oxygen information acquired by the blood oxygen sensor 22 and the temperature information acquired by the temperature sensor 23.

For example, the grip body 10 may be a cylindrical structure so that the grip body 10 can be sleeved on the handle, and of course, the actual structure of the grip body 10 may be designed differently according to the handle of different vehicles, and is not limited in this respect. In addition, the grip body 10 may be a plastic product with a certain hardness to provide a supporting and fixing function for the controller 20 and various sensors therein, and at the same time, the use feeling of the user in contact and grasping can be improved.

As shown in fig. 1 and 2, a controller 20, a heart rate sensor 21, a blood oxygen sensor 22, a temperature sensor 23 and an alarm 24 are disposed in the handle grip body 10, the heart rate sensor 21 may be used to obtain heart rate information of a human body, such as a heart rate value of the human body, the blood oxygen sensor 22 may be used to obtain blood oxygen information of the human body, such as a blood oxygen saturation level of the human body, and the temperature sensor 23 may be used to obtain temperature information of the human body, such as a body temperature of the human body. After the physiological information of the human body is obtained by the various sensors, the controller 20 may be configured to control the operation of the alarm 24 according to the heart rate information obtained by the heart rate sensor 21, the blood oxygen information obtained by the blood oxygen sensor 22, and the temperature information obtained by the temperature sensor 23, for example, when the physiological information of the human body is normal, the controller 20 may control the alarm 24 to be in a closed state, and when the physiological information of the human body is abnormal, the controller 20 may control the alarm 24 to be in an open state, so that the alarm 24 can give an alarm, thereby reminding people to timely handle the abnormal condition of the body, for example, people may slow down the driving speed of the vehicle, or stop the vehicle in a safe area to have a rest, or even directly contact with family or medical staff to take a doctor.

Besides the heart rate sensor 21, the blood oxygen sensor 22 and the temperature sensor 23, sensors in the prior art such as a blood pressure sensor, a humidity sensor and an ion concentration sensor which are respectively electrically connected with the controller 20 can be further arranged in the handle grip body 10, the blood pressure sensor can be used for acquiring blood pressure information of a human body, for example, a blood pressure value of the human body, the humidity sensor can be used for acquiring sweat information of the human body, for example, sweat amount and sweat speed of the human body, so as to provide data support for reminding people of supplementing moisture, the ion concentration sensor can be used for acquiring salt concentration information in sweat of the human body, for example, a salt concentration value in the sweat of the human body, so as to remind people of supplementing moisture or salt when the salt concentration value is higher.

The controller 20 may include an information receiving unit, an information processing unit, an information storage unit, an information sending unit, and other functional modules commonly used in the prior art, and those skilled in the art should be able to make reasonable selection and design according to actual situations, and are not limited herein. The alarm 24 may be an acoustic alarm 24, a light alarm 24 or an acousto-optic alarm 24 to alert people to notice that they are in an abnormal state, thereby learning to grasp their own physical condition. In addition, the specific principle of various sensors for acquiring physiological information of a human body should be able to be acquired by those skilled in the art from the prior art, and is not explained here.

As described above, this intelligence barre 100 includes barre body 10, be provided with controller 20 in the barre body 10 and respectively with the heart rate sensor 21 that controller 20 electricity is connected, blood oxygen sensor 22, temperature sensor 23 and alarm 24, heart rate sensor 21 is used for acquireing human heart rate information, blood oxygen sensor 22 is used for acquireing human blood oxygen information, temperature sensor 23 is used for acquireing human temperature information, after various sensors obtained human physiology information, controller 20 is used for the work of heart rate information, the blood oxygen information that blood oxygen sensor 22 acquireed and the temperature information that temperature sensor 23 acquireed that acquire according to heart rate sensor 21 acquirees. For example, when the physiological information of the human body is normal, the controller 20 may control the alarm 24 to be in a closed state, and when the physiological information of the human body is abnormal, the controller 20 may control the alarm 24 to be in an open state, so that the alarm 24 can issue an alarm to remind people to deal with the abnormal condition of the body in time. The intelligent handle sleeve 100 can sense the physical condition of a human body and better provide related monitoring and warning services for a user.

As shown in fig. 1, a grip portion 11 for gripping a human body is disposed on the handle grip body 10, a plurality of detection holes 12 are disposed on the grip portion 11, the plurality of detection holes 12 are respectively disposed in one-to-one correspondence with the heart rate sensor 21, the blood oxygen sensor 22 and the temperature sensor 23, and the heart rate sensor 21, the blood oxygen sensor 22 and the temperature sensor 23 are respectively partially exposed out of the handle grip body 10 through the detection holes 12.

Illustratively, as shown in fig. 1, the grip portion 11 is in a structure of a Chinese character 'shan' shape, so as to better position and guide a specific position when the user grips the grip sleeve body 10 through the grip portion 11, the detection hole 12 may be provided at a position where a finger or a palm contacts the grip portion 11 when the user grips the grip portion 11, and a person skilled in the art should be able to reasonably select and design according to actual conditions, and only needs to enable the user to contact the sensor through the finger or the palm, etc. when gripping the grip portion 11, which is not particularly limited herein.

When the intelligent grip cover 100 further includes other sensors (e.g., a blood pressure sensor, a humidity sensor, an ion concentration sensor, etc.), the number of the detection holes 12 may be correspondingly increased. In addition, regarding the actual size of the detection hole 12, it is necessary that the detection hole 12 not only exposes the detection portion of each sensor, but also does not expose the sensors too much, so as to avoid the sensor from being separated from the grip body 10, or the sensor being easily lost due to contact with moisture or the like.

In this embodiment, the controller 20 is configured to control the operation of the alarm 24 according to a comparison result between the heart rate information obtained by the heart rate sensor 21 and the preset heart rate value, a comparison result between the blood oxygen information obtained by the blood oxygen sensor 22 and the preset blood oxygen value, and a comparison result between the temperature information obtained by the temperature sensor 23 and the preset temperature value.

In some embodiments, the preset heart rate value is an average value of a normal range of heart rates of the human body, for example, the normal range of heart rates of the human body is between 60 to 100 times/minute, the preset heart rate value may be 80 times/minute, the preset blood oxygen value is an average value of a normal range of blood oxygen of the human body, for example, the normal range of blood oxygen of the human body is between 95 to 97%, the preset blood oxygen value may be 96%, and the preset temperature value may be an average value of an ambient temperature range of the current region and the current month, for example, the preset temperature value may be 30 ℃.

In other embodiments, the intelligent handle grip 100 further comprises a control terminal 30 in signal connection with the controller 20, such as a mobile phone, a tablet, a bracelet, etc. connected to the controller 20 via bluetooth, the control terminal 30 is used to receive the heart rate information obtained by the heart rate sensor 21, the blood oxygen information obtained by the blood oxygen sensor 22, and the temperature information obtained by the temperature sensor 23, so as to collect, store and establish a physiological information base of the human body, so that people can better understand and master their own physical conditions, and/or the control terminal 30 is used for sending command signals to the controller 20, the command signals comprise a preset heart rate value, a preset blood oxygen value and a preset temperature value, so as to input a preset heart rate value, a preset blood oxygen value and a preset temperature value into the controller 20 through the control terminal 30, therefore, various preset values can be flexibly adjusted according to different users, different seasons, different environments and the like.

In this embodiment, a method is further provided, and the controller 20 may integrate the comparison result between the heart rate information obtained by the heart rate sensor 21 and the preset heart rate value, the comparison result between the blood oxygen information obtained by the blood oxygen sensor 22 and the preset blood oxygen value, and the comparison result between the temperature information obtained by the temperature sensor 23 and the preset temperature value according to the method. The method comprises the following specific contents:

f=∣a-α∣x+∣b-β∣y+∣c-γ∣z(1)

wherein, a is heart rate information obtained by the heart rate sensor 21, b is blood oxygen information obtained by the blood oxygen sensor 22, and c is temperature information obtained by the temperature sensor 23; alpha is a preset heart rate value, beta is a preset blood oxygen value, and gamma is a preset temperature value; x is a coefficient set according to the age of the user, for example, 0.4 for 0 to 10 years old, 0.5 for 10 to 50 years old, and 0.65 for 50 years old or older; y is a fixed coefficient of 0.6; z is an ambient temperature coefficient, and z | -ambient temperature-25 | × 0.02. since the temperature sensor 23 can detect the external environment when the user is not gripping the grip portion 11, the initial temperature of the temperature sensor 23 can be regarded as the ambient temperature, or the user can input the ambient temperature into the controller 20 through the control terminal 30.

Illustratively, the age of the user is 36 years, the ambient temperature is 5 ℃, the heart rate value obtained by the heart rate sensor 21 is 100 times/min, the blood oxygen saturation obtained by the blood oxygen sensor 22 is 90%, the body temperature obtained by the temperature sensor 23 is 33 ℃, the preset heart rate value is 80 times/min, the preset blood oxygen value is 96%, and the preset temperature value is 30 ℃, at this time, the comparison result between the heart rate information obtained by the heart rate sensor 21 and the preset heart rate value, the comparison result between the blood oxygen information obtained by the blood oxygen sensor 22 and the preset blood oxygen value, and the comparison result between the temperature information obtained by the temperature sensor 23 and the preset temperature value may be integrated as follows:

f=∣100-80∣×0.5+∣90-96∣×0.6+∣33-30∣×∣5-25∣×0.02=10+3.6+6=14.8(2)

for example, when f > a specified value, the controller 20 may control the alarm 24 to alarm, and at the same time, the controller 20 may synchronize information to a mobile phone, and the mobile phone may push information that the body is in an abnormal condition; when f is more than 2 times of the designated value, the mobile phone can synchronize the related information to the emergency contact.

As shown in fig. 1 and fig. 2, in the present embodiment, the intelligent grip 100 further includes a heater (not shown in the figure), a temperature threshold is disposed in the controller 20, and the controller 20 is further configured to control the operation of the heater according to a comparison result between the temperature information obtained by the temperature sensor 23 and the temperature threshold. Wherein, the heater can be an electric heating wire. Optionally, the command signal further comprises a temperature threshold value to be input into the controller 20 via the control terminal 30. For example, the temperature threshold is 0 ℃ to 15 ℃, the controller 20 compares the temperature information acquired by the temperature sensor 23 with the temperature threshold, when the actual temperature is lower than the temperature threshold, the controller 20 controls the heater to start working so as to improve the comfort level of the user gripping the grip body 10, and when the actual temperature reaches or exceeds the temperature threshold, the controller 20 controls the heater to stop working.

As shown in fig. 1 and 2, in the present embodiment, a six-axis sensor 25 electrically connected to the controller 20 is provided in the grip body 10; the six-axis sensors 25 are disposed in the corresponding detection holes 12 to acquire the traveling information of the vehicle, and the controller 20 is further configured to control the operation of the alarm 24 according to the traveling information acquired by the six-axis sensors 25. Among them, the six-axis sensor 25 (including the three-axis acceleration and the three-axis gyroscope) can be used to acquire running information of the vehicle, such as a body posture and a running state, to provide data information of a vehicle toppling and running distance, a vehicle running speed, and the like, thereby facilitating a user's adjustment processing of the running condition of the vehicle.

As shown in fig. 1 and fig. 2, in the embodiment, a display 26 electrically connected to the controller 20 is disposed on the handle grip body 10, and the display 26 is used for displaying heart rate information acquired by the heart rate sensor 21, blood oxygen information acquired by the blood oxygen sensor 22, and temperature information acquired by the temperature sensor 23 sent by the controller 20, so that a user can observe his/her own physiological information in real time. The display 26 may have a backlight function, among other things, to facilitate viewing by a user when the light is dim or driving at night.

The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

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