WO2016090684A1 - 用于监测被攻击者受伤情况的智能防弹设备及其监测方法 - Google Patents

用于监测被攻击者受伤情况的智能防弹设备及其监测方法 Download PDF

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Publication number
WO2016090684A1
WO2016090684A1 PCT/CN2014/095200 CN2014095200W WO2016090684A1 WO 2016090684 A1 WO2016090684 A1 WO 2016090684A1 CN 2014095200 W CN2014095200 W CN 2014095200W WO 2016090684 A1 WO2016090684 A1 WO 2016090684A1
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WO
WIPO (PCT)
Prior art keywords
bullet
unit
information processing
processing unit
attacker
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Application number
PCT/CN2014/095200
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English (en)
French (fr)
Inventor
张贯京
陈兴明
葛新科
张少鹏
方静芳
高伟明
克里斯基捏普拉纽克
古列莎艾琳娜
波达别特伊万
梁昊原
Original Assignee
深圳市前海安测信息技术有限公司
深圳市易特科信息技术有限公司
深圳市贝沃德克生物技术研究院有限公司
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Application filed by 深圳市前海安测信息技术有限公司, 深圳市易特科信息技术有限公司, 深圳市贝沃德克生物技术研究院有限公司 filed Critical 深圳市前海安测信息技术有限公司
Publication of WO2016090684A1 publication Critical patent/WO2016090684A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41HARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
    • F41H1/00Personal protection gear
    • F41H1/02Armoured or projectile- or missile-resistant garments; Composite protection fabrics

Definitions

  • the present invention relates to the field of information technology, and in particular, to an intelligent bulletproof device for monitoring an injured person's injury situation and a monitoring method thereof.
  • the bulletproof vest is one of the common military and police equipments in modern times. It can absorb and dissipate the warhead, fragment kinetic energy, prevent penetration, and effectively protect the protected part of the attacked human body.
  • the bulletproof function of bulletproof vests is mainly reflected in the following two aspects:
  • the existing body armor can only provide the above-mentioned basic protective functions for the attacker, and can not monitor the injury of the attacked person in order to obtain timely rescue.
  • the main object of the present invention is to overcome the prior art that the bulletproof vest can only provide the basic protection function for the attacker, and can not monitor the injury situation of the attacker in order to obtain the defect of timely rescue.
  • the present invention provides an intelligent ballistic resistant apparatus for monitoring an injured person's injury.
  • the intelligent ballistic protection device comprises a body armor body, and further comprises a gun monitoring unit, an information processing unit and a communication unit:
  • the shooting monitoring unit, the information processing unit, and the communication unit are disposed on the body armor body;
  • the shooting monitoring unit is electrically connected to the information processing unit for detecting a bullet-proof situation of the bullet-proof body and a body part hit by the bullet, and transmitting the bullet and the body part hit by the bullet To the information processing unit;
  • the information processing unit is electrically connected to the communication unit, and is configured to determine an injury situation of the attacker according to the bullet breakdown condition and the body part hit by the bullet, and pass the injury condition through the communication unit. Send to the cloud service platform.
  • the smart bulletproof device further includes an alarm unit:
  • the alarm unit is electrically connected to the information processing unit for receiving an injury situation of another attacker sent by the cloud service platform, and issuing an alarm message.
  • the shot monitoring unit includes a resistor network, detecting whether the body armor body is broken by a bullet through a change in the resistance of the resistor network, and detecting that the attacker is hit by the bullet through the position change of the resistance network resistance The body part.
  • the smart bulletproof device further includes an alarm unit:
  • the alarm unit is electrically connected to the information processing unit for receiving an injury situation of another attacker sent by the cloud service platform, and issuing an alarm message.
  • the smart bulletproof device further includes a vital sign monitoring unit:
  • the physical condition monitoring unit is electrically connected to the information processing unit, configured to collect an attacker's heart rate value and a body temperature value, and send the heart rate value and the body temperature value to the information processing unit for the information processing.
  • the unit is sent to the cloud service platform.
  • the smart bulletproof device further includes an alarm unit:
  • the alarm unit is electrically connected to the information processing unit for receiving an injury situation of another attacker sent by the cloud service platform, and issuing an alarm message.
  • the body armor body comprises a bulletproof layer and a sweat absorbing layer,
  • the shot monitoring unit, the information processing unit, the communication unit, and the vital sign monitoring unit are both disposed between the bulletproof layer and the sweat absorbing layer.
  • the smart bulletproof device further includes an alarm unit:
  • the alarm unit is electrically connected to the information processing unit for receiving an injury situation of another attacker sent by the cloud service platform, and issuing an alarm message.
  • the smart bulletproof device further includes a positioning unit:
  • the positioning unit is electrically connected to the information processing unit, and is configured to acquire current geographic location information of the attacker, and send the geographic location information to the cloud service platform by using the communication unit.
  • the present invention also provides a method of monitoring an injured person's injury, the method comprising the following steps:
  • the shooting monitoring unit detects that the body armor body is broken by the bullet and the body part hit by the bullet, and sends the bullet breakdown condition and the body part hit by the bullet to the information processing unit;
  • the information processing unit determines the injury situation of the attacker according to the bullet breakdown condition and the body part hit by the bullet, and sends the injury condition to the cloud service platform through the communication unit.
  • step S1 includes the following steps:
  • the shooting monitoring unit detects whether the body of the body armor is broken by a bullet through a change in resistance of the resistance network disposed between the bulletproof layer and the sweat absorption layer of the body armor body;
  • the shooting monitoring unit detects the body part hit by the attacker by the position of the resistance network resistance change between the bulletproof layer and the sweat absorbing layer of the body armor body;
  • the shooting monitoring unit transmits the bullet breakdown condition and the body part hit by the bullet to the information processing unit.
  • the method further includes the following steps:
  • the vital sign monitoring unit collects the heart rate value and the body temperature value of the attacker, and sends the heart rate value and the body temperature value to the information processing unit;
  • the information processing unit sends the heart rate value and the body temperature value to the cloud service platform through the communication unit.
  • the method further includes the following steps:
  • the cloud service platform sends rescue information to the rescue platform according to the injury situation of the attacker and the heart rate value and the body temperature value.
  • the intelligent ballistic protection device includes a body armor body, and further includes a gun monitoring unit, an information processing unit, and a communication unit, and the bullet impact monitoring unit detects the bullet breakdown of the body armor body and the body part hit by the bullet.
  • the information processing unit is configured to determine the injury situation of the attacker according to the bullet breakdown condition and the body part hit by the bullet, and send the injury condition to the cloud service platform through the communication unit, and the cloud service platform receives After the attacker is injured, the injury information is sent to the rescue platform near the attacker to provide timely rescue to the attacker.
  • FIG. 1 is a schematic structural view of a first preferred embodiment of an intelligent ballistic resistant device according to the present invention
  • FIG. 2 is a schematic structural view of a second preferred embodiment of the intelligent ballistic resistant device of the present invention.
  • FIG. 3 is a schematic structural view of a third preferred embodiment of the intelligent ballistic resistant device of the present invention.
  • FIG. 4 is a schematic structural view of a fourth preferred embodiment of the smart ballistic resistant device of the present invention.
  • FIG. 5 is a schematic flow chart of a first preferred embodiment of a method for monitoring an injured person's injury according to the present invention
  • step S1 is a schematic diagram showing the refinement process of step S1 in the first preferred embodiment of the method for monitoring an injured person according to the present invention
  • FIG. 7 is a schematic flow chart of a second preferred embodiment of a method for monitoring an injured person's injury according to the present invention.
  • FIG. 8 is a schematic flow chart of a third preferred embodiment of a method for monitoring an injured person's injury according to the present invention.
  • the main object of the present invention is to overcome the prior art that the bulletproof vest can only provide the basic protection function for the attacker, and can not monitor the injury situation of the attacker in order to obtain the defect of timely rescue.
  • the present invention provides an intelligent ballistic resistant apparatus for monitoring an injured person's injury.
  • FIG. 1 is a schematic structural view of a first preferred embodiment of an intelligent ballistic resistant device according to the present invention
  • the smart bulletproof device includes a body armor body 1 , and further includes a gunbing monitoring unit 2, an information processing unit 3, and a communication unit 4:
  • the shot monitoring unit 2, the information processing unit 3, and the communication unit 4 are disposed on the body armor body 1;
  • the body armor body 1 is a body armor in the prior art.
  • the body armor is mainly composed of a jacket and a bulletproof layer.
  • the sleeves are usually made of chemical fiber fabrics, which are usually used for sweat absorption;
  • the bulletproof layer is commonly used for metal (special steel, aluminum alloy, titanium alloy), ceramic sheet (corundum, boron carbide, silicon carbide, alumina), glass steel, nylon (PA), Kay KEVLAR, ultra high molecular weight polyethylene fiber (DOYENTRONTEX) Fiber), liquid protective materials and other materials, constitute a single or composite protective structure.
  • the bulletproof layer can absorb the kinetic energy of the warhead or the shrapnel, and has obvious protective effect on the low speed warhead or shrapnel, and can reduce the damage to the chest and abdomen of the human body under the control of a certain depression.
  • Body armor includes infantry body armor, flight officer body armor and artillery body armor. According to the appearance, it can be divided into bulletproof vests, full protective bulletproof vests, and women's bulletproof vests.
  • the embodiment of the present invention does not limit the form of the body armor body, as long as it can protect the warhead or the shrapnel from harming the human body.
  • the shot monitoring unit 2, the information processing unit 3, and the communication unit 4 are all disposed on the body armor body 1, preferably disposed between the sleeve and the bulletproof layer to avoid bullets. Or a single piece causes damage to the shooting monitoring unit 2, the information processing unit 3, and the communication unit 4.
  • the gun monitoring unit 2 is electrically connected to the information processing unit 3 for detecting the bullet-down condition of the body armor body 1 and the body part hit by the bullet, and hitting the bullet and hitting the bullet
  • the body part is sent to the information processing unit 3;
  • the shooting monitoring unit 2 is disposed under the bulletproof layer of the body armor body, and when the bulletproof layer of the body armor body is broken by the bullet, the shooting monitoring unit 2 passes the power sensing device.
  • the body part hit by the bullet is of course able to detect that the body armor body is broken by the bullet at this time; when the bulletproof layer of the body armor body is not broken by the bullet, the shot monitoring unit 2 does not detect In the change of the power, it is considered that the body armor body 1 is not broken by the bullet.
  • the principle of the power sensing by the shooting monitoring unit 2 is that the shooting monitoring unit sets a pressure sensor network around the body armor body 1 to detect the change position and the magnitude of the pressure of the pressure sensor network in real time, and the network pressure through the pressure sensor The change position and the magnitude of the change reflect the bullet-down condition of the body armor body 1 and the body part hit by the bullet, and transmit the bullet breakdown condition and the body part hit by the bullet to the information processing unit 3.
  • the shooting monitoring unit 2 senses the body part hit by the bullet through a resistance, and of course, it can also detect that the body of the body armor is broken by the bullet; when the body of the body armor is bulletproof When the layer is not broken by the bullet, the shot monitoring unit 2 does not detect a change in resistance, and it is considered that the body armor body 1 is not broken by the bullet.
  • the principle of resistance sensing by the shooting monitoring unit 2 is that the shooting monitoring unit sets a resistance network around the body armor body 1 to detect the change position and the magnitude of the resistance of the resistor network in real time, and the change position of the resistor through the resistor network. And changing the magnitude of the bullet-proof body 1 by the bullet breakdown and the body part hit by the bullet, and transmitting the bullet breakdown and the body part hit by the bullet to the information processing unit 3.
  • the information processing unit 3 is electrically connected to the communication unit 4, and is configured to determine an injury situation of the attacker according to the bullet breakdown condition and the body part hit by the bullet, and pass the injury condition through the The communication unit 4 is sent to the cloud service platform.
  • the information processing unit 3 receives the bullet breakdown condition sent by the gun detection unit 2 and the body part information hit by the bullet, according to the bullet breakdown condition and the bullet hitting a part of the body, determining whether the attacker is currently being broken by the bullet, where the body part hit by the bullet is, and transmitting the injury condition to the cloud service platform through the communication unit 4, according to the cloud service platform.
  • the attacker's location information and the physical information are forwarded together to nearby friendly or medical personnel to facilitate rescue.
  • the intelligent ballistic protection device includes a body armor body, and further includes a gun monitoring unit, an information processing unit, and a communication unit, and the bullet impact monitoring unit detects the bullet breakdown of the body armor body and the body part hit by the bullet.
  • the information processing unit is configured to determine the injury situation of the attacker according to the bullet breakdown condition and the body part hit by the bullet, and send the injury condition to the cloud service platform through the communication unit, and the cloud service platform receives After the attacker is injured, the injury information is sent to the rescue platform near the attacker to provide timely rescue to the attacker.
  • the shot monitoring unit includes a resistor network, and detecting, by the change in the resistance of the resistor network, whether the body of the body armor is broken by a bullet, and detecting the position of the resistor by the resistance of the resistor network is detected by the attacker. The part of the body that the bullet hits.
  • the resistor network is a resistor network formed by a plurality of equal-value resistors, each intersection having a corresponding resistance value, when a part of the body armor body (ie, a body part)
  • the shooting monitoring unit determines whether the body armor body is broken by the bullet by detecting the change of the resistance network resistance, and the resistance network is passed through the resistor network.
  • the position of the resistance change to detect the body part hit by the attacker by the bullet.
  • the gun monitoring unit continuously monitors the change in the resistance of the resistor network and the position of the resistance change, and transmits the change in the resistance of the resistor network and the position of the resistance change to the information processing unit.
  • the bullet breakdown and the position of the bullet hit are judged, and the sensitivity is high, and when the same position is hit again, the attacker can be reflected again by the change of the resistance magnitude. Whether it was hit by bullets again.
  • the change of the magnitude of the resistance of the resistor network and the detection of the position of the resistance change can be realized by those skilled in the art through the knowledge of the circuit, and will not be described herein.
  • FIG. 2 is a schematic structural view of a second preferred embodiment of the intelligent ballistic resistant device of the present invention.
  • the smart bulletproof device further includes a vital sign monitoring unit 5:
  • the physical condition monitoring unit 5 is electrically connected to the information processing unit 3 for collecting the heart rate value and the body temperature value of the attacker, and transmitting the heart rate value and the body temperature value to the information processing unit for the The information processing unit sends to the cloud service platform.
  • the vital sign monitoring unit 5 includes a heart rate monitoring module and a body temperature monitoring module: the heart rate monitoring module is electrically connected to the information processing unit, preferably disposed at a heart auscultation area, for collecting an attacker.
  • the heart rate value is sent to the information processing unit;
  • the body temperature monitoring module is electrically connected to the information processing unit, preferably disposed at the armpit position, for collecting the body temperature value of the attacker.
  • the purpose of collecting the heart rate value and the body temperature value is to further understand the physical condition of the attacked person, so that the cloud service platform sends the heart rate value and the body temperature value together to the rescue platform near the attacker to provide timely rescue for the attacker. .
  • the body armor body 1 includes a bulletproof layer and a sweat absorbing layer (not shown), the shot monitoring unit 2, the information processing unit 3, and the communication unit. 4 and the vital sign monitoring unit 5 are disposed between the bulletproof layer and the sweat absorbing layer.
  • the ballistic layer may be made of a pure hard material such as metal (special steel, aluminum alloy, titanium alloy), ceramic sheet (corundum, boron carbide, silicon carbide, alumina) or glass steel; or pure soft material.
  • metal special steel, aluminum alloy, titanium alloy
  • ceramic sheet corundum, boron carbide, silicon carbide, alumina
  • glass steel or pure soft material.
  • nylon (PA), Kevlar (Kevlar), ultra high molecular weight polyethylene fiber (DOYENTRONTEX Fiber), liquid protective material, etc.; can also be set to two layers, the first layer is made of hard material, and the second layer is made of soft material, which can not only ensure the ballistic performance of the bulletproof layer of the body armor body, but also the entire ballistic layer. The material is too hard to put on.
  • the shooting monitoring unit 2, the information processing unit 3, the communication unit 4, and the vital sign monitoring unit 5 are disposed between the bulletproof layer and the sweat absorbing layer, and can prevent the bullet body from being hit by the bullet body
  • FIG. 3 is a schematic structural view of a third preferred embodiment of the intelligent ballistic resistant device of the present invention.
  • the smart bulletproof device further includes an alarm unit 6:
  • the alarm unit 6 is electrically connected to the information processing unit 3 for receiving an injury situation of other attackers sent by the cloud service platform, and issuing an alarm message. Specifically, the function of the alarm unit 6 is to send an alarm reminder when receiving the injury situation of other attackers sent by the cloud service platform, thereby obtaining the injury situation of the surrounding friendly forces, avoiding in time, and avoiding attacks by the bullets themselves. Or when it is known that the surrounding friendly forces are injured, they will promptly rescue the friendly forces.
  • the alarm information may include a friend's injury condition, an injured body part, a physical condition, and a geographical location.
  • the alarm mode can broadcast the alarm information through a voice alarm, and the wearer of the intelligent bulletproof device can listen to the voice alarm information through the earphone; the vibration bulletproof method can also be used to remind the wearer of the smart bulletproof device to view the alarm information through other devices carried.
  • FIG. 4 is a schematic structural view of a fourth preferred embodiment of the smart ballistic resistant device of the present invention.
  • the smart bulletproof device further includes a positioning unit 7:
  • the positioning unit 7 is electrically connected to the information processing unit 3, and is configured to acquire current geographic location information of the attacker, and send the geographic location information to the cloud service platform by using the communication unit.
  • the positioning unit may be a Beidou module, a GPS module, a GLONASS module, a Galileo module, etc., capable of receiving and transmitting a satellite positioning signal, acquiring current geographic location information of the attacker, and passing the geographical location information through the communication unit 4 Send to the cloud service platform, for the cloud service platform to send it to the rescue platform near the attacker, and inform the rescue platform of its specific geographical location to obtain timely rescue.
  • the present invention also provides a method of monitoring an injured person's injury.
  • FIG. 5 is a schematic flowchart diagram of a first preferred embodiment of a method for monitoring an injured person according to the present invention; the method includes the following steps:
  • the shooting monitoring unit detects that the body armor body is broken by the bullet and the body part hit by the bullet, and sends the bullet breakdown condition and the body part hit by the bullet to the information processing unit;
  • the shot monitoring unit is disposed under the bulletproof layer of the body armor body, and the shot monitoring unit senses the bullet by power when the bulletproof layer of the body armor body is broken by a bullet.
  • the hit body part can also detect that the body armor body is broken by the bullet at this time; when the bulletproof layer of the body armor body is not broken by the bullet, the gun monitoring unit does not detect the change of the power It is considered that the body of the body armor is not broken by bullets.
  • the principle of power sensing by the shooting monitoring unit is that the shooting monitoring unit detects the change position and the change of the pressure of the pressure sensor network by setting a pressure sensor network around the body of the body armor, and the pressure of the network through the pressure sensor changes. The position and the magnitude of the change reflect that the body armor body is broken by the bullet and the body part hit by the bullet, and the bullet breakdown condition and the body part hit by the bullet are transmitted to the information processing unit.
  • the shot monitoring unit senses the body part hit by the bullet through a resistance, and of course, it can also detect that the body armor body is broken by the bullet; when the bulletproof layer of the body armor body When the shot monitoring unit does not detect a change in resistance when it is not broken by the bullet, it is considered that the body armor body is not broken by the bullet.
  • the principle that the gun-monitoring unit passes the resistance sensing is that the gun-monitoring unit sets a resistance network around the body armor body to detect the change position and the change size of the resistance network resistance in real time, and the change position and change of the resistance through the resistor network. The size of the body armor is broken by the bullet and the body part hit by the bullet, and the bullet breakdown and the body part hit by the bullet are sent to the information processing unit.
  • the information processing unit determines the injury situation of the attacker according to the bullet breakdown condition and the body part hit by the bullet, and sends the injury condition to the cloud service platform through the communication unit.
  • the information processing unit receives the bullet breakdown condition sent by the gun detection unit and the body part information hit by the bullet, according to the bullet breakdown condition and the body part hit by the bullet Determining whether the attacker is currently being punctured by the bullet, where the body part hit by the bullet is, and transmitting the injury condition to the cloud service platform through the communication unit, the cloud service platform according to the attacker
  • the location information and the vital information of the attacked person are forwarded together to nearby friendly or medical personnel to facilitate the rescue.
  • the method for monitoring the injury of an attacker detects the breakdown of the bullet-proof body by the bullet and the body part hit by the bullet through a gun-monitoring unit provided on the smart bullet-proof device, and the information processing unit breaks down according to the bullet.
  • the situation and the body part hit by the bullet determine the injury situation of the attacker, and send the injury condition to the cloud service platform through the communication unit, and the cloud service platform receives the injury situation of the attacker,
  • the injury information is sent to the rescue platform near the attacker to provide timely rescue to the attacker.
  • FIG. 6 is a schematic diagram of a refinement process of step S1 in the first preferred embodiment of the method for monitoring an injured person according to the present invention.
  • step S1 includes the following steps:
  • the shooting monitoring unit detects whether the body of the body armor is broken by a bullet through a change in resistance of the resistance network disposed between the bulletproof layer and the sweat absorption layer of the body armor body;
  • the shooting monitoring unit detects the body part hit by the attacker by the position of the resistance network resistance change between the bulletproof layer and the sweat absorbing layer of the body armor body;
  • the shooting monitoring unit transmits the bullet breakdown condition and the body part hit by the bullet to the information processing unit.
  • the resistor network is a resistor network formed by a plurality of equal-value resistors, each intersection having a corresponding resistance value, when a part of the body armor body (ie, a body part)
  • the shooting monitoring unit determines whether the body armor body is broken by the bullet by detecting the change of the resistance network resistance, and the resistance network is passed through the resistor network.
  • the position of the resistance change to detect the body part hit by the attacker by the bullet.
  • the gun monitoring unit continuously monitors the change in the resistance of the resistor network and the position of the resistance change, and transmits the change in the resistance of the resistor network and the position of the resistance change to the information processing unit.
  • the bullet breakdown and the position of the bullet hit are judged, and the sensitivity is high, and when the same position is hit again, the attacker can be reflected again by the change of the resistance magnitude. Whether it was hit by bullets again.
  • the change of the magnitude of the resistance of the resistor network and the detection of the position of the resistance change can be realized by those skilled in the art through the knowledge of the circuit, and will not be described herein.
  • FIG. 7 is a schematic flowchart of a second preferred embodiment of a method for monitoring an attacker's injury according to the present invention; based on the first preferred embodiment shown in FIG. 5, the method in this embodiment further includes the following steps:
  • the vital sign monitoring unit collects the heart rate value and the body temperature value of the attacker, and sends the heart rate value and the body temperature value to the information processing unit;
  • the information processing unit sends the heart rate value and the body temperature value to the cloud service platform through the communication unit.
  • the steps S3, S4 are located between steps S1, S2.
  • the vital sign monitoring unit comprises a heart rate monitoring module and a body temperature monitoring module: the heart rate monitoring module is electrically connected to the information processing unit, preferably disposed at a location of the cardiac auscultation area, for collecting the attacker's a heart rate value, and the heart rate value is sent to the information processing unit; the body temperature monitoring module is electrically connected to the information processing unit, preferably disposed at a crotch position, for collecting a body temperature value of the attacker, and And sending the body temperature value to the information processing unit for the information processing unit to send to the cloud service platform.
  • the purpose of collecting the heart rate value and the body temperature value is to further understand the physical condition of the attacked person, so that the cloud service platform sends the heart rate value and the body temperature value together to the rescue platform near the attacker to provide timely rescue for the attacker. .
  • FIG. 8 is a schematic flow chart of a third preferred embodiment of a method for monitoring an injured person's injury according to the present invention. Based on the second preferred embodiment shown in FIG. 7, the method in this embodiment further includes the following steps:
  • the cloud service platform sends rescue information to the rescue platform according to the injury situation of the attacker and the heart rate value and the body temperature value.
  • the step S5 is after the step S2.
  • the cloud service platform sends the rescue information of the attacker and the heart rate value and the body temperature value and location information to the rescue platform of the surrounding friendly army, medical personnel or base platform.
  • the friend army, the medical soldier or the base platform is provided with a receiving unit, and after receiving the rescue information such as the injury situation, the physical sign information and the position information of the attacker through the receiving unit, the rescuer is rescued.
  • the intelligent bulletproof device is provided with an alarm unit, and the alarm unit sends an alarm reminder when receiving the injury situation of other attackers sent by the cloud service platform, thereby obtaining the injury situation of the surrounding friendly forces, avoiding in time, and avoiding being subjected to the alarm. Bullet attack.
  • the alarm information may include a friend's injury condition, an injured body part, a physical condition, and a geographical location.
  • the alarm mode can broadcast the alarm information through a voice alarm, and the wearer of the intelligent bulletproof device can listen to the voice alarm information through the earphone; the vibration bulletproof method can also be used to remind the wearer of the smart bulletproof device to view the alarm information through other devices carried.

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Abstract

一种于监测被攻击者受伤情况的智能防弹设备及其监测方法。所述智能防弹设备包括防弹衣本体(1),还包括枪击监测单元(2)、信息处理单元(3)以及通讯单元(4),通过所述枪击监测单元(2)检测防弹衣本体(1)被子弹击穿情况以及子弹击中的身体部位,所述信息处理单元(3)用于根据所述子弹击穿情况以及子弹击中的身体部位,判断被攻击者的受伤情况,并将所述受伤情况通过所述通讯单元(4)发送至云服务平台,云服务平台收到被攻击者的受伤情况后,将所述受伤信息发送至被攻击者附近的救援平台,为被攻击者提供及时的救援。

Description

用于监测被攻击者受伤情况的智能防弹设备及其监测方法
技术领域
本发明涉及信息技术领域,尤其涉及一种用于监测被攻击者受伤情况的智能防弹设备及其监测方法。
背景技术
防弹衣是现代常见的军警装备之一,能吸收和耗散弹头、破片动能,阻止穿透,有效保护被攻击者人体受防护的部位。防弹衣的防弹功能主要体现在以下两个方面:
(1) 防止弹片:各种爆炸物如炸弹、地雷、炮弹和手榴弹等爆炸产生的高速弹片是战场上的主要威胁之一。据统计,士兵在战场中所面临的威胁最大的就是弹片。因此,防止弹片的功能是非常重要的。
(2) 防止非贯穿性损伤:子弹在击中目标后会产生极大的冲击力,这种冲击力作用于人体所生产的伤害常常是致命的。这种伤害不呈现出贯穿性,但会造成内伤,重者危及生命。因此,防止非贯穿性损伤也是体现和检验防弹衣防弹功能的一个重要方面。
现有的防弹衣只能为被攻击者提供上述基本的防护功能,不能对被攻击者的受伤情况进行监测,以便获得及时的救援。
发明内容
本发明的主要目的在于克服现有技术中防弹衣只能为被攻击者提供基本的防护功能,不能对被攻击者的受伤情况进行监测,以便获得及时的救援的缺陷。
为实现上述目的,本发明提供了一种用于监测被攻击者受伤情况的智能防弹设备。
所述智能防弹设备包括防弹衣本体,还包括枪击监测单元、信息处理单元以及通讯单元:
所述枪击监测单元、所述信息处理单元以及所述通讯单元设置于所述防弹衣本体上;
所述枪击监测单元,与所述信息处理单元电连接,用于检测防弹衣本体被子弹击穿情况以及子弹击中的身体部位,并将所述子弹击穿情况以及子弹击中的身体部位发送至所述信息处理单元;
所述信息处理单元,与所述通讯单元电连接,用于根据所述子弹击穿情况以及子弹击中的身体部位,判断被攻击者的受伤情况,并将所述受伤情况通过所述通讯单元发送至云服务平台。
进一步地,所述智能防弹设备还包括报警单元:
所述报警单元,与所述信息处理单元电连接,用于接收云服务平台发送的其他被攻击者的受伤情况,并发出报警信息。
优选地,所述枪击监测单元包括一电阻网络,通过所述电阻网络电阻大小的变化检测所述防弹衣本体是否被子弹击穿,通过所述电阻网络电阻变化的位置检测被攻击者被子弹击中的身体部位。
进一步地,所述智能防弹设备还包括报警单元:
所述报警单元,与所述信息处理单元电连接,用于接收云服务平台发送的其他被攻击者的受伤情况,并发出报警信息。
进一步地,所述智能防弹设备还包括体征监测单元:
所述体征监测单元,与所述信息处理单元电连接,用于采集被攻击者的心率值和体温值,并将所述心率值和体温值发送至所述信息处理单元,供所述信息处理单元发送至云服务平台。
进一步地,所述智能防弹设备还包括报警单元:
所述报警单元,与所述信息处理单元电连接,用于接收云服务平台发送的其他被攻击者的受伤情况,并发出报警信息。
优选地,所述防弹衣本体包括防弹层和吸汗层,
所述枪击监测单元、所述信息处理单元、所述通讯单元和所述体征监测单元均设置于所述防弹层和吸汗层之间。
进一步地,所述智能防弹设备还包括报警单元:
所述报警单元,与所述信息处理单元电连接,用于接收云服务平台发送的其他被攻击者的受伤情况,并发出报警信息。
进一步地,所述智能防弹设备还包括定位单元:
所述定位单元,与所述信息处理单元电连接,用于获取被攻击者当前的地理位置信息,并将所述地理位置信息通过所述通讯单元发送至云服务平台。
为实现上述目的,本发明还提供了一种监测被攻击者受伤情况的方法,所述方法包括如下步骤:
S1:枪击监测单元检测防弹衣本体被子弹击穿情况以及子弹击中的身体部位,并将所述子弹击穿情况以及子弹击中的身体部位发送至信息处理单元;
S2:信息处理单元根据所述子弹击穿情况以及子弹击中的身体部位,判断被攻击者的受伤情况,并将所述受伤情况通过所述通讯单元发送至云服务平台。
进一步地,所述步骤S1包括如下步骤:
S11:枪击监测单元通过设置于防弹衣本体防弹层和吸汗层之间的电阻网络电阻大小的变化检测所述防弹衣本体是否被子弹击穿;
S12:枪击监测单元通过设置于防弹衣本体防弹层和吸汗层之间的电阻网络电阻变化的位置检测被攻击者被子弹击中的身体部位;
S13:枪击监测单元将子弹击穿情况以及子弹击中的身体部位发送至所述信息处理单元。
进一步地,所述方法还包括如下步骤:
S3:体征监测单元采集被攻击者的心率值和体温值,并将所述心率值和体温值发送至信息处理单元;
S4:信息处理单元通过通讯单元将所述心率值和所述体温值发送至云服务平台。
进一步地,所述方法还包括如下步骤:
S5:云服务平台根据被攻击者受伤情况以及所述心率值和所述体温值,发出救助信息至救援平台。
本发明提供的智能防弹设备包括防弹衣本体,还包括枪击监测单元、信息处理单元以及通讯单元,通过所述枪击监测单元检测防弹衣本体被子弹击穿情况以及子弹击中的身体部位,所述信息处理单元用于根据所述子弹击穿情况以及子弹击中的身体部位,判断被攻击者的受伤情况,并将所述受伤情况通过所述通讯单元发送至云服务平台,云服务平台收到被攻击者的受伤情况后,将所述受伤信息发送至被攻击者附近的救援平台,为被攻击者提供及时的救援。
附图说明
图1为本发明智能防弹设备第一优选实施例结构示意图;
图2为本发明智能防弹设备第二优选实施例结构示意图;
图3为本发明智能防弹设备第三优选实施例结构示意图;
图4为本发明智能防弹设备第四优选实施例结构示意图;
图5为本发明监测被攻击者受伤情况的方法第一优选实施例的流程示意图;
图6为本发明监测被攻击者受伤情况的方法第一优选实施例中步骤S1的细化流程示意图;
图7为本发明监测被攻击者受伤情况的方法第二优选实施例的流程示意图;
图8为本发明监测被攻击者受伤情况的方法第三优选实施例的流程示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明的主要目的在于克服现有技术中防弹衣只能为被攻击者提供基本的防护功能,不能对被攻击者的受伤情况进行监测,以便获得及时的救援的缺陷。
为实现上述目的,本发明提供了一种用于监测被攻击者受伤情况的智能防弹设备。
图1为本发明智能防弹设备第一优选实施例结构示意图;
请参考图1,所述智能防弹设备包括防弹衣本体1,还包括枪击监测单元2、信息处理单元3以及通讯单元4:
所述枪击监测单元2、所述信息处理单元3以及所述通讯单元4设置于所述防弹衣本体1上;
在一实施例中,所述防弹衣本体1,为现有技术中的防弹衣,现有技术中防弹衣主要由衣套和防弹层两部分组成。衣套常用化纤织品制作,通常用于吸汗;防弹层常用金属(特种钢、铝合金、钛合金)、陶瓷片(刚玉、碳化硼、碳化硅、氧化铝)、玻璃钢、尼龙(PA)、凯夫拉(KEVLAR)、超高分子量聚乙烯纤维(DOYENTRONTEX Fiber)、液体防护材料等材料,构成单一或复合型防护结构。防弹层可吸收弹头或弹片的动能,对低速弹头或弹片有明显的防护效果,在控制一定的凹陷情况下可减轻对人体胸、腹部的伤害。防弹衣包括步兵防弹衣、飞行人员防弹衣和炮兵防弹衣等。按照外观还可分为防弹背心,全防护防弹衣,女士防弹衣等类型。本发明实施例对防弹衣本体的形式不做限定,只要能够防护弹头或弹片对人体的伤害即可。
在一实施例中,所述的枪击监测单元2、信息处理单元3以及通讯单元4均设置于所述防弹衣本体1上,优选的情况下,设置于衣套和防弹层之间,避免子弹或单片对所述枪击监测单元2、信息处理单元3以及通讯单元4造成损坏。
所述枪击监测单元2,与所述信息处理单元3电连接,用于检测防弹衣本体1被子弹击穿情况以及子弹击中的身体部位,并将所述子弹击穿情况以及子弹击中的身体部位发送至所述信息处理单元3;
在一实施例中,所述的枪击监测单元2设置于所述防弹衣本体的防弹层下方,当所述防弹衣本体的防弹层被子弹击穿时,所述枪击监测单元2通过动力感知所述子弹击中的身体部位,当然此时也能够检测到所述防弹衣本体被子弹击穿;当所述防弹衣本体的防弹层没有被子弹击穿时,所述枪击监测单元2没有检测到动力的变化,则认为所述防弹衣本体1没有被子弹击穿。所述枪击监测单元2通过动力感知的原理是枪击监测单元通过环绕所述防弹衣本体1设置压力传感器网络,实时检测所述压力传感器网络压力的变化位置以及变化大小,通过所述压力传感器网络压力的变化位置以及变化大小反应所述防弹衣本体1被子弹击穿情况以及子弹击中的身体部位,并将所述子弹击穿情况以及子弹击中的身体部位发送至所述信息处理单元3。
在另外一个实施例中,所述枪击监测单元2通过电阻感知所述子弹击中的身体部位,当然此时也能够检测到所述防弹衣本体被子弹击穿;当所述防弹衣本体的防弹层没有被子弹击穿时,所述枪击监测单元2没有检测到电阻的变化,则认为所述防弹衣本体1没有被子弹击穿。所述枪击监测单元2通过电阻感知的原理是枪击监测单元通过环绕所述防弹衣本体1设置电阻网络,实时检测所述电阻网络电阻的变化位置以及变化大小,通过所述电阻网络电阻的变化位置以及变化大小反应所述防弹衣本体1被子弹击穿情况以及子弹击中的身体部位,并将所述子弹击穿情况以及子弹击中的身体部位发送至所述信息处理单元3。
所述信息处理单元3,与所述通讯单元4电连接,用于根据所述子弹击穿情况以及子弹击中的身体部位,判断被攻击者的受伤情况,并将所述受伤情况通过所述通讯单元4发送至云服务平台。
在一实施例中,所述信息处理单元3接收到所述枪击监测单元2发送的所述子弹击穿情况以及子弹击中的身体部位信息后,根据所述子弹击穿情况以及子弹击中的身体部位,判断被攻击者当前是否被子弹击穿,被子弹击中的身体部位是哪里,并将所述受伤情况通过所述通讯单元4发送至云服务平台,所述云服务平台根据所述被攻击者的受伤情况,在一优选实施例中,会将所述被攻击者的位置信息和体征信息一起转发给附近的友军或医务兵,以方便救援。
本发明提供的智能防弹设备包括防弹衣本体,还包括枪击监测单元、信息处理单元以及通讯单元,通过所述枪击监测单元检测防弹衣本体被子弹击穿情况以及子弹击中的身体部位,所述信息处理单元用于根据所述子弹击穿情况以及子弹击中的身体部位,判断被攻击者的受伤情况,并将所述受伤情况通过所述通讯单元发送至云服务平台,云服务平台收到被攻击者的受伤情况后,将所述受伤信息发送至被攻击者附近的救援平台,为被攻击者提供及时的救援。
基于上述实施例,所述枪击监测单元包括一电阻网络,通过所述电阻网络电阻大小的变化检测所述防弹衣本体是否被子弹击穿,通过所述电阻网络电阻变化的位置检测被攻击者被子弹击中的身体部位。
在一实施例中,所述电阻网络为由多个等值电阻交叉构成的电阻网络,每个交叉点都有对应的阻值,当所述防弹衣本体的某个部位(即某个身体部位)被子弹击穿时,所述电阻网络某个位置的阻值会发生变化,枪击监测单元通过检测电阻网络电阻大小的变化来判断所述防弹衣本体是否被子弹击穿,通过所述电阻网络电阻变化的位置来检测被攻击者被子弹击中的身体部位。枪击监测单元不断的监测所述电阻网络电阻大小的变化以及电阻变化的位置,并将所述电阻网络电阻大小的变化以及电阻变化的位置发送至所述信息处理单元。通过电阻网络电阻大小的变化以及电阻变化的位置来判断子弹击穿情况以及子弹击中的位置,其灵敏度高,且当再次被击中同一位置时,能够通过电阻大小的变化再次反映被攻击者是否再次被子弹击中。本发明中电阻网络对电阻大小的变化以及电阻变化的位置的检测,本领域技术人员通过对电路知识的了解可以实现,在此不赘述。
图2为本发明智能防弹设备第二优选实施例结构示意图;
基于图1所示的第一优选实施例,所述智能防弹设备还包括体征监测单元5:
所述体征监测单元5,与所述信息处理单元3电连接,用于采集被攻击者的心率值和体温值,并将所述心率值和体温值发送至所述信息处理单元,供所述信息处理单元发送至云服务平台。
在一实施例中,所述体征监测单元5包括心率监测模块和体温监测模块:所述心率监测模块,与所述信息处理单元电连接,优选设置于心脏听诊区位置,用于采集被攻击者的心率值,并将所述心率值发送至所述信息处理单元;所述体温监测模块,与所述信息处理单元电连接,优选设置于腋下位置,用于采集被攻击者的体温值,并将所述体温值发送至所述信息处理单元,供所述信息处理单元发送至云服务平台。采集心率值和体温值的目的是为了进一步了解被攻击者的身体状况,以便云服务平台将所述心率值和体温值一起发送至被攻击者附近的救援平台,为被攻击者提供及时的救援。
在一实施例中,结合图2所示,所述防弹衣本体1包括防弹层和吸汗层(图中未示出),所述枪击监测单元2、所述信息处理单元3、所述通讯单元4和所述体征监测单元5均设置于所述防弹层和吸汗层之间。
所述防弹层可以采用纯硬质材料,例如金属(特种钢、铝合金、钛合金)、陶瓷片(刚玉、碳化硼、碳化硅、氧化铝)或玻璃钢等;也可采用纯软质材料,例如尼龙(PA)、凯夫拉(KEVLAR)、超高分子量聚乙烯纤维(DOYENTRONTEX Fiber)、液体防护材料等;还可以设置为两层,第一层采用硬质材料,第二层采用软质材料,能够既保证防弹衣本体的防弹层的防弹性能,又不至于整个防弹层材质太硬穿上不舒服。所述枪击监测单元2、所述信息处理单元3、所述通讯单元4和所述体征监测单元5均设置于所述防弹层和吸汗层之间,能够防止其由于弹衣本体被子弹击中而损坏。
图3为本发明智能防弹设备第三优选实施例结构示意图;
在图2所示第二优选实施例基础上,所述智能防弹设备还包括报警单元6:
所述报警单元6,与所述信息处理单元3电连接,用于接收云服务平台发送的其他被攻击者的受伤情况,并发出报警信息。具体地,所述报警单元6的作用是通过接收云服务平台发送的其他被攻击者的受伤情况时,发出报警提醒,从而获知周围友军的受伤情况,及时躲避,避免自身受到子弹的攻击。或者当获知周围友军受伤后,及时对友军实施救援。所述报警信息可以包括友军受伤情况、受伤身体部位、体征情况以及所在地理位置等。报警方式可以通过语音报警,播报所述报警信息,智能防弹设备穿着者通过耳机听取语音报警信息;也可以通过振动的方式提醒智能防弹设备穿着者通过携带的其他设备查看报警信息。
图4为本发明智能防弹设备第四优选实施例结构示意图;
在图2所示第二优选实施例基础上,所述智能防弹设备还包括定位单元7:
所述定位单元7,与所述信息处理单元3电连接,用于获取被攻击者当前的地理位置信息,并将所述地理位置信息通过所述通讯单元发送至云服务平台。所述定位单元可以是北斗模块、GPS模块、GLONASS模块、伽利略模块等,能够接收和发送卫星定位信号,获取被攻击者当前的地理位置信息,并将所述地理位置信息通过所述通讯单元4发送至云服务平台,供所述云服务平台将其发送给被攻击者附近的救援平台,告知救援平台其具体的地理位置,以获得及时的救援。
为实现上述目的,本发明还提供了一种监测被攻击者受伤情况的方法。
图5为本发明监测被攻击者受伤情况的方法第一优选实施例的流程示意图;所述方法包括如下步骤:
S1:枪击监测单元检测防弹衣本体被子弹击穿情况以及子弹击中的身体部位,并将所述子弹击穿情况以及子弹击中的身体部位发送至信息处理单元;
在一实施例中,所述的枪击监测单元设置于所述防弹衣本体的防弹层下方,当所述防弹衣本体的防弹层被子弹击穿时,所述枪击监测单元通过动力感知所述子弹击中的身体部位,当然此时也能够检测到所述防弹衣本体被子弹击穿;当所述防弹衣本体的防弹层没有被子弹击穿时,所述枪击监测单元没有检测到动力的变化,则认为所述防弹衣本体没有被子弹击穿。所述枪击监测单元通过动力感知的原理是枪击监测单元通过环绕所述防弹衣本体设置压力传感器网络,实时检测所述压力传感器网络压力的变化位置以及变化大小,通过所述压力传感器网络压力的变化位置以及变化大小反应所述防弹衣本体被子弹击穿情况以及子弹击中的身体部位,并将所述子弹击穿情况以及子弹击中的身体部位发送至所述信息处理单元。
在另外一个实施例中,所述枪击监测单元通过电阻感知所述子弹击中的身体部位,当然此时也能够检测到所述防弹衣本体被子弹击穿;当所述防弹衣本体的防弹层没有被子弹击穿时,所述枪击监测单元没有检测到电阻的变化,则认为所述防弹衣本体没有被子弹击穿。所述枪击监测单元通过电阻感知的原理是枪击监测单元通过环绕所述防弹衣本体设置电阻网络,实时检测所述电阻网络电阻的变化位置以及变化大小,通过所述电阻网络电阻的变化位置以及变化大小反应所述防弹衣本体被子弹击穿情况以及子弹击中的身体部位,并将所述子弹击穿情况以及子弹击中的身体部位发送至所述信息处理单元。
S2:信息处理单元根据所述子弹击穿情况以及子弹击中的身体部位,判断被攻击者的受伤情况,并将所述受伤情况通过所述通讯单元发送至云服务平台。
在一实施例中,所述信息处理单元接收到所述枪击监测单元发送的所述子弹击穿情况以及子弹击中的身体部位信息后,根据所述子弹击穿情况以及子弹击中的身体部位,判断被攻击者当前是否被子弹击穿,被子弹击中的身体部位是哪里,并将所述受伤情况通过所述通讯单元发送至云服务平台,所述云服务平台根据所述被攻击者的受伤情况,在一优选实施例中,会将所述被攻击者的位置信息和体征信息一起转发给附近的友军或医务兵,以方便救援。
本发明提供的监测被攻击者受伤情况的方法,通过设置在智能防弹设备上的枪击监测单元检测防弹衣本体被子弹击穿情况以及子弹击中的身体部位,信息处理单元根据所述子弹击穿情况以及子弹击中的身体部位,判断被攻击者的受伤情况,并将所述受伤情况通过所述通讯单元发送至云服务平台,云服务平台收到被攻击者的受伤情况后,将所述受伤信息发送至被攻击者附近的救援平台,为被攻击者提供及时的救援。
图6为本发明监测被攻击者受伤情况的方法第一优选实施例中步骤S1的细化流程示意图;所述步骤S1包括如下步骤:
S11:枪击监测单元通过设置于防弹衣本体防弹层和吸汗层之间的电阻网络电阻大小的变化检测所述防弹衣本体是否被子弹击穿;
S12:枪击监测单元通过设置于防弹衣本体防弹层和吸汗层之间的电阻网络电阻变化的位置检测被攻击者被子弹击中的身体部位;
S13:枪击监测单元将子弹击穿情况以及子弹击中的身体部位发送至所述信息处理单元。
在一实施例中,所述电阻网络为由多个等值电阻交叉构成的电阻网络,每个交叉点都有对应的阻值,当所述防弹衣本体的某个部位(即某个身体部位)被子弹击穿时,所述电阻网络某个位置的阻值会发生变化,枪击监测单元通过检测电阻网络电阻大小的变化来判断所述防弹衣本体是否被子弹击穿,通过所述电阻网络电阻变化的位置来检测被攻击者被子弹击中的身体部位。枪击监测单元不断的监测所述电阻网络电阻大小的变化以及电阻变化的位置,并将所述电阻网络电阻大小的变化以及电阻变化的位置发送至所述信息处理单元。通过电阻网络电阻大小的变化以及电阻变化的位置来判断子弹击穿情况以及子弹击中的位置,其灵敏度高,且当再次被击中同一位置时,能够通过电阻大小的变化再次反映被攻击者是否再次被子弹击中。本发明中电阻网络对电阻大小的变化以及电阻变化的位置的检测,本领域技术人员通过对电路知识的了解可以实现,在此不赘述。
图7为本发明监测被攻击者受伤情况的方法第二优选实施例的流程示意图;基于图5所示的第一优选实施例,本实施例所述的方法还包括如下步骤:
S3:体征监测单元采集被攻击者的心率值和体温值,并将所述心率值和体温值发送至信息处理单元;
S4:信息处理单元通过通讯单元将所述心率值和所述体温值发送至云服务平台。
优选情况下,所述步骤S3、S4位于步骤S1、S2之间。
在一实施例中,所述体征监测单元包括心率监测模块和体温监测模块:所述心率监测模块,与所述信息处理单元电连接,优选设置于心脏听诊区位置,用于采集被攻击者的心率值,并将所述心率值发送至所述信息处理单元;所述体温监测模块,与所述信息处理单元电连接,优选设置于腋下位置,用于采集被攻击者的体温值,并将所述体温值发送至所述信息处理单元,供所述信息处理单元发送至云服务平台。采集心率值和体温值的目的是为了进一步了解被攻击者的身体状况,以便云服务平台将所述心率值和体温值一起发送至被攻击者附近的救援平台,为被攻击者提供及时的救援。
图8为本发明监测被攻击者受伤情况的方法第三优选实施例的流程示意图。基于图7所示的第二优选实施例,本实施例所述方法还包括如下步骤:
S5:云服务平台根据被攻击者受伤情况以及所述心率值和所述体温值,发出救助信息至救援平台。
优选情况下,所述步骤S5位于步骤S2之后。
在一实施例中,所述云服务平台将被攻击者受伤情况以及所述心率值和所述体温值、位置信息等救助信息,发送至周围的友军、医务兵或基地平台等救援平台,所述友军、医务兵或基地平台设置有接收单元,通过接收单元获取被攻击者的受伤情况、体征信息以及位置信息等救助信息后,对被攻击者实施救援。优选情况下,在智能防弹设备设置报警单元,所述报警单元通过接收云服务平台发送的其他被攻击者的受伤情况时,发出报警提醒,从而获知周围友军的受伤情况,及时躲避,避免自身受到子弹的攻击。或者当获知周围友军受伤后,及时对友军实施救援。所述报警信息可以包括友军受伤情况、受伤身体部位、体征情况以及所在地理位置等。报警方式可以通过语音报警,播报所述报警信息,智能防弹设备穿着者通过耳机听取语音报警信息;也可以通过振动的方式提醒智能防弹设备穿着者通过携带的其他设备查看报警信息。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (13)

  1. 一种用于监测被攻击者受伤情况的智能防弹设备,所述智能防弹设备包括防弹衣本体,其特征在于,所述智能防弹设备还包括枪击监测单元、信息处理单元以及通讯单元:
    所述枪击监测单元、所述信息处理单元以及所述通讯单元设置于所述防弹衣本体上;
    所述枪击监测单元,与所述信息处理单元电连接,用于检测防弹衣本体被子弹击穿情况以及子弹击中的身体部位,并将所述子弹击穿情况以及子弹击中的身体部位发送至所述信息处理单元;
    所述信息处理单元,与所述通讯单元电连接,用于根据所述子弹击穿情况以及子弹击中的身体部位,判断被攻击者的受伤情况,并将所述受伤情况通过所述通讯单元发送至云服务平台。
  2. 如权利要求1所述的智能防弹设备,其特征在于,所述智能防弹设备还包括报警单元:
    所述报警单元,与所述信息处理单元电连接,用于接收云服务平台发送的其他被攻击者的受伤情况,并发出报警信息。
  3. 如权利要求1所述的智能防弹设备,其特征在于,所述枪击监测单元包括一电阻网络,通过所述电阻网络电阻大小的变化检测所述防弹衣本体是否被子弹击穿,通过所述电阻网络电阻变化的位置检测被攻击者被子弹击中的身体部位。
  4. 如权利要求3所述的智能防弹设备,其特征在于,所述智能防弹设备还包括报警单元:
    所述报警单元,与所述信息处理单元电连接,用于接收云服务平台发送的其他被攻击者的受伤情况,并发出报警信息。
  5. 如权利要求3所述的智能防弹设备,其特征在于,所述智能防弹设备还包括体征监测单元:
    所述体征监测单元,与所述信息处理单元电连接,用于采集被攻击者的心率值和体温值,并将所述心率值和体温值发送至所述信息处理单元,供所述信息处理单元发送至云服务平台。
  6. 如权利要求5所述的智能防弹设备,其特征在于,所述智能防弹设备还包括报警单元:
    所述报警单元,与所述信息处理单元电连接,用于接收云服务平台发送的其他被攻击者的受伤情况,并发出报警信息。
  7. 如权利要求5所述的智能防弹设备,其特征在于,所述防弹衣本体包括防弹层和吸汗层,
    所述枪击监测单元、所述信息处理单元、所述通讯单元和所述体征监测单元均设置于所述防弹层和吸汗层之间。
  8. 如权利要求7所述的智能防弹设备,其特征在于,所述智能防弹设备还包括报警单元:
    所述报警单元,与所述信息处理单元电连接,用于接收云服务平台发送的其他被攻击者的受伤情况,并发出报警信息。
  9. 如权利要求1所述的智能防弹设备,其特征在于,所述智能防弹设备还包括定位单元:
    所述定位单元,与所述信息处理单元电连接,用于获取被攻击者当前的地理位置信息,并将所述地理位置信息通过所述通讯单元发送至云服务平台。
  10. 一种利用权利要求1所述的智能防弹设备监测被攻击者受伤情况的方法,其特征在于,所述方法包括如下步骤:
    S1:枪击监测单元检测防弹衣本体被子弹击穿情况以及子弹击中的身体部位,并将所述子弹击穿情况以及子弹击中的身体部位发送至信息处理单元;
    S2:信息处理单元根据所述子弹击穿情况以及子弹击中的身体部位,判断被攻击者的受伤情况,并将所述受伤情况通过所述通讯单元发送至云服务平台。
  11. 如权利要求10所述的确定被攻击者受伤情况的方法,其特征在于,所述步骤S1包括如下步骤:
    S11:枪击监测单元通过设置于防弹衣本体防弹层和吸汗层之间的电阻网络电阻大小的变化检测所述防弹衣本体是否被子弹击穿;
    S12:枪击监测单元通过设置于防弹衣本体防弹层和吸汗层之间的电阻网络电阻变化的位置检测被攻击者被子弹击中的身体部位;
    S13:枪击监测单元将子弹击穿情况以及子弹击中的身体部位发送至所述信息处理单元。
  12. 如权利要求10所述的确定被攻击者受伤情况的方法,其特征在于,所述方法还包括如下步骤:
    S3:体征监测单元采集被攻击者的心率值和体温值,并将所述心率值和体温值发送至信息处理单元;
    S4:信息处理单元通过通讯单元将所述心率值和所述体温值发送至云服务平台。
  13. 如权利要求12所述的确定被攻击者受伤情况的方法,其特征在于,所述方法还包括如下步骤:
    S5:云服务平台根据被攻击者受伤情况以及所述心率值和所述体温值,发出救助信息至救援平台。
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