CN204359208U - For monitoring the wearable device of assailant position - Google Patents
For monitoring the wearable device of assailant position Download PDFInfo
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- CN204359208U CN204359208U CN201420821423.5U CN201420821423U CN204359208U CN 204359208 U CN204359208 U CN 204359208U CN 201420821423 U CN201420821423 U CN 201420821423U CN 204359208 U CN204359208 U CN 204359208U
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- bullet
- wearable device
- assailant
- gunslinging
- information process
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Abstract
The utility model discloses a kind of wearable device for monitoring assailant position.Detected the direction of bullet hits by gunslinging monitoring means, and direction during described bullet hits is sent to described information process unit; Information process unit, according to direction during bullet hits, calculates speed during bullet hits, judges bullet type, determine the position of assailant; The position of assailant is sent to cloud service platform by described communication unit by information process unit.The wearable device for monitoring assailant position that the utility model provides, after victim under fire, the orientation, source of bullet is judged by wearable device, the position of assailant is monitored, cloud service platform for friendly troop provides information, thus adapts to the demand of future battlefield according to the positional information of assailant.
Description
Technical field
The utility model relates to areas of information technology, particularly relates to a kind of wearable device for monitoring assailant position.
Background technology
Flak jackets is one of modern common army and police equipment, and can absorb and dissipation bullet, fragmentation kinetic energy, prevention penetrates, the position that available protecting victim human body is protected.The bulletproof function of flak jackets is mainly reflected in following two aspects:
(1) shell fragment is prevented: the high speed shell fragment of various explosive as the blast such as bomb, land mine, shell and grenade produces is one of chief threat on battlefield.According to statistics, what the threat that faces in battlefield of soldier was maximum is exactly shell fragment.Therefore, prevent the function of shell fragment from being very important.
(2) prevent non-through from damaging: bullet can produce great impulsive force after hitting the mark, this impact force action in the injury that human body is produced be usually fatal.This injury does not present penetrability, but can cause internal injury, severe one threat to life.Therefore, preventing non-through from damaging also is the importance embodying and check flak jackets bulletproof function.
Existing flak jackets can only provide above-mentioned basic safeguard function for victim, after victim under fire, the orientation, source of bullet is not judged by flak jackets, the position of assailant is monitored, for friendly troop provides information, thus adapts to the demand of future battlefield.
Utility model content
Main purpose of the present utility model is to solve flak jackets in prior art can only provide above-mentioned basic safeguard function for victim, after victim under fire, the orientation, source of bullet is not judged by flak jackets, the position of assailant is monitored, for friendly troop provides information, thus adapt to the defect of the demand of future battlefield.
For achieving the above object, the utility model provides a kind of wearable device for monitoring assailant position.
Described wearable device comprises flak jackets body, also comprises gunslinging monitoring means, information process unit and communication unit:
Described gunslinging monitoring means, described information process unit and described communication unit are arranged on described flak jackets body;
Described gunslinging monitoring means, be electrically connected with described information process unit, comprise ground floor resistor network and second layer resistor network: described gunslinging monitoring means passes through the direction during position monitoring bullet hits of ground floor resistor network and second layer resistor network resistance variations;
Described information process unit, be electrically connected with described communication unit, for according to direction during bullet hits, calculate speed during bullet hits, judge bullet type, determine the position of assailant, and the position of assailant and bullet are punctured situation be sent to cloud service platform by described communication unit.
Preferably, described flak jackets body comprises burster course and absorbing sweat layer,
Described gunslinging monitoring means, described information process unit and described communication unit are all arranged between described burster course and absorbing sweat layer;
Ground floor resistor network and the second layer resistor network of described gunslinging monitoring means are arranged at the outside of described burster course according to sequencing.
Preferably, described flak jackets body comprises three layers:
Outermost layer is hard material, and intermediate layer is textile fiber material, and innermost layer is absorbing sweat material;
Described gunslinging monitoring means, information process unit and communication unit are all located between described intermediate layer and innermost layer.
Further, described wearable device also comprises positioning unit:
Described positioning unit, is electrically connected with described information process unit, for obtaining the current geographical location information of victim, and described geographical location information is sent to cloud service platform by described communication unit.
The utility model adopts technique scheme, and the technique effect brought is: the direction being detected bullet hits by gunslinging monitoring means, and direction during described bullet hits is sent to described information process unit; Information process unit, according to direction during bullet hits, calculates speed during bullet hits, judges bullet type, determine the position of assailant; The position of assailant is sent to cloud service platform by described communication unit by information process unit.After victim under fire, judged the orientation, source of bullet by flak jackets, monitor the position of assailant, cloud service platform for friendly troop provides information, thus adapts to the demand of future battlefield according to the positional information of assailant.
Accompanying drawing explanation
Fig. 1 is the utility model wearable device first preferred embodiment structural representation;
Fig. 2 is the utility model wearable device second preferred embodiment structural representation.
The realization of the utility model object, functional characteristics and advantage will in conjunction with the embodiments, are described further with reference to accompanying drawing.
Detailed description of the invention
Should be appreciated that specific embodiment described herein only in order to explain the utility model, and be not used in restriction the utility model.
Main purpose of the present utility model is to solve flak jackets in prior art can only provide above-mentioned basic safeguard function for victim, after victim under fire, the orientation, source of bullet is not judged by flak jackets, the position of assailant is monitored, for friendly troop provides information, thus adapt to the defect of the demand of future battlefield.
For achieving the above object, the utility model provides a kind of wearable device for monitoring assailant position.
Reference Fig. 1, Fig. 1 are the utility model wearable device first preferred embodiment structural representation;
In one embodiment, as shown in Figure 1, described wearable device comprises flak jackets body 1, also comprises gunslinging monitoring means 2, information process unit 3 and communication unit 4:
Described gunslinging monitoring means 2, described information process unit 3 and described communication unit 4 are arranged on described flak jackets body 1;
In one embodiment, described flak jackets body 1 is flak jackets of the prior art, and in prior art, flak jackets is primarily of clothing cover and burster course two parts composition.The conventional chemical fibre fabric of clothing cover makes, and is generally used for absorbing sweat; Burster course common metal (special steel, aluminium alloy, titanium alloy), potsherd (corundum, boron carbide, carborundum, aluminium oxide), fiberglass, nylon (PA), Kev draw the material such as (KEVLAR), superhigh molecular weight polyethylene fibers (DOYENTRONTEX Fiber), liquid-state protective material, form single or compound safeguard structure.The kinetic energy of burster course Absorbable rod bullet or shell fragment, has obvious protection effect to low speed bullet or shell fragment, in the injury controlling can alleviate in certain depression situation human body chest, belly.Flak jackets comprises infantry's flak jackets, aircrew's flak jackets and artilleryman's flak jackets etc.Also bullet-proof vest can be divided into, full protection flak jackets, the types such as Ms's flak jackets according to outward appearance.The form of the utility model embodiment to flak jackets body does not limit, as long as can protect bullet or shell fragment to the injury of human body.
In one embodiment, described gunslinging monitoring means 2, information process unit 3 and communication unit 4 are all arranged on described flak jackets body 1, in preferred situation, be arranged between clothing cover and burster course, avoid bullet or monolithic to cause damage to described gunslinging monitoring means 2, information process unit 3 and communication unit 4.
Described gunslinging monitoring means 2, is electrically connected with described information process unit 3, for detecting the direction of bullet hits, and direction during described bullet hits is sent to described information process unit 3;
In a preferred embodiment, the direction of bullet hits can react the positional information of assailant to a certain extent, described gunslinging monitoring means 2, comprises ground floor resistor network and second layer resistor network: described gunslinging monitoring means 2 passes through the direction during position monitoring bullet hits of ground floor resistor network and second layer resistor network resistance variations.Two-layer resistor network can be adopted realize to the detection in direction during bullet hits, first the position s1 of resistor network resistance variations during bullet hits ground floor resistor network is gathered, and the time t1 recorded when hitting, because its speed is fast, and have the deviation of directivity, the relative position that can change when hitting with ground floor resistor network because of the change in speed and direction when hitting second layer network, now, the position s2 of resistor network resistance variations during collection bullet hits second layer resistor network, and the time t2 recorded when hitting, can by hitting two-layer resistor network time resistance variations the source direction of position (s1 and s2) when judging bullet hits.Described position s1 and position s2 in the preferred case, select respectively two-layer resistor network by the centre position of damaging.
Described information process unit 3, be electrically connected with described communication unit 4, for according to direction during bullet hits, calculate speed during bullet hits, judge bullet type, determine the position of assailant, and the position of assailant and bullet are punctured situation and be sent to cloud service platform by described communication unit 3.
In a preferred embodiment, the time difference when ground floor resistor network of described information process unit 3 gunslinging monitoring means according to the distance between the ground floor resistor network of described gunslinging monitoring means 2 and second layer resistor network and bullet hits and second layer resistor network calculates speed during bullet hits.When designing ground floor resistor network and the second layer resistor network of described gunslinging monitoring means 2, can distance s between the two-layer resistor network of preset in advance, simultaneously, time according to bullet hits when ground floor resistor network and second layer resistor network can know that it hits the time difference of two-layer resistor network, the speed v 1=s/ (t2-t1) when calculating bullet hits by the distance s between two-layer resistor network and time difference (t2-t1) of hitting two-layer resistor network.
In a preferred embodiment, described information process unit 3 is according to its area damaged by bullet of change calculations of the ground floor resistor network of described gunslinging monitoring means 2 or second layer resistor network resistance value, and the damaged area of described damaged area from the different bullet types preset is compared, judge bullet type.In one embodiment, described resistor network is intersect by multiple substitutional resistance the resistor network formed, there is corresponding resistance in each crosspoint, the damaged area of resistor network when certain position (i.e. certain body part) the quilt attack of described flak jackets body is worn.In the utility model, resistor network is to the detection of the change of resistance sizes and the position of resistance variations, and those skilled in the art, by realizing the understanding of electric circuit knowledge, are not repeated herein.Because the gun of different model are due to its bullet calibre difference, go out thorax initial velocity different, local climate during attack is different, the speed that bullet produces when diverse location hits victim and the damaged area difference to flak jackets body, can in advance according to the gun of different model, simulation diverse location is attacked, when obtaining victim by bullet hits same victim different parts, the size of the wearable device damaged area of dress, and be stored in database.Therefore can be compared by the bullet area damaged and the damaged area prestored in a database according to contemporary wearable equipment, know bullet type.
In a preferred embodiment, described information process unit 3 according to corresponding bullet type go out thorax initial velocity v0, bullet hits time speed v 1, the on-site climatic information of victim, bullet hits time source direction, calculate the position of assailant.Climatic information comprises wind speed, wind direction, atmospheric density etc., by simulating the factor of influence to bullet direction under different wind speed, wind direction, atmospheric density, calculate the resistance f of bullet by air, in conjunction with bullet by terrestrial gravitation g, by mechanics composite calulation formula, the stressed size f0 of bullet in flight course can be calculated, the acceleration a of bullet in flight course can be calculated according to f0.Again according to bullet go out thorax initial velocity v0, bullet hits time speed v 1 and the acceleration a of bullet in flight course, a=(v1-v0)/t, t is the time of the flight calculating bullet, according to bullet go out thorax initial velocity v0, bullet hits time speed v 1 and the time t of flight of bullet, calculate distance L=v0+a × t, then determine assailant current location in conjunction with source direction during bullet hits.Owing to being arrange the factor of influence of climatic information to bullet direction in advance by the mode of simulation, the assailant's positional information therefore calculated has deviation, is learnt by simulated test, and deviation range is at ten meters ~ hundred meter levels.
In one embodiment, calculating for assailant current location can also be realized by cloud service platform, the information such as the area that the speed when direction during bullet hits detected by gunslinging monitoring means 2, bullet hits, flak jackets body are damaged by bullet send to cloud service platform, and cloud service platform is according to the position of the climatic information COMPREHENSIVE CALCULATING assailant of the information collected and current victim.
The utility model preferred embodiment detects the direction of bullet hits by gunslinging monitoring means 2, and direction during described bullet hits is sent to described information process unit 3; Information process unit 3, according to direction during bullet hits, calculates speed during bullet hits, judges bullet type, determine the position of assailant; The position of assailant is sent to cloud service platform by described communication unit by information process unit 3.After victim under fire, judged the orientation, source of bullet by wearable device, monitor the position of assailant, cloud service platform for friendly troop provides information, thus adapts to the demand of future battlefield according to the positional information of assailant.
In one embodiment, shown in composition graphs 2, described flak jackets body 1 comprises burster course and absorbing sweat layer (not shown), and described gunslinging monitoring means 2, described information process unit 3 and described communication unit 4 are all arranged between described burster course and absorbing sweat layer;
Described burster course can adopt pure hard material, such as metal (special steel, aluminium alloy, titanium alloy), potsherd (corundum, boron carbide, carborundum, aluminium oxide) or fiberglass etc.; Also can adopt pure soft material, such as nylon (PA), Kev draw (KEVLAR), superhigh molecular weight polyethylene fibers (DOYENTRONTEX Fiber), liquid-state protective material etc.Adopt pure hard material and pure soft material all can play to prevent the effect that bullet and shell fragment are attacked.
In one embodiment, shown in composition graphs 2, described flak jackets body 1 comprises three layers: outermost layer is hard material, and intermediate layer is textile fiber material, and innermost layer is absorbing sweat material; Described gunslinging monitoring means 2, information process unit 3 and communication unit 4 are all located between described intermediate layer and innermost layer.Outermost layer adopts hard material, and intermediate layer adopts soft material, both can ensure the ballistic performance of the burster course of flak jackets body, be unlikely to again whole burster course material and too firmly put on uncomfortable.Described gunslinging monitoring means 2, described information process unit 3, described communication unit 4 and described sign monitoring means 5 are all arranged between described burster course and absorbing sweat layer, can prevent it from being damaged by bullet hits owing to playing clothing body.
Ground floor resistor network and the second layer resistor network of described gunslinging monitoring means 2 are arranged at the outside of described burster course according to sequencing.The position of assailant when bullet hits flak jackets body and do not hit, still can be monitored in the outside being arranged at described burster course by said method.
Reference Fig. 2, Fig. 2 are the utility model wearable device second preferred embodiment structural representation;
On the first preferred embodiment basis shown in Fig. 1, described wearable device also comprises positioning unit 5:
Described positioning unit 5, is electrically connected with described information process unit 3, for obtaining the current geographical location information of victim, and described geographical location information is sent to cloud service platform by described communication unit 4.Described positioning unit can be Big Dipper module, GPS module, GLONASS module, Galileo module etc., can receive and send satellite positioning signal, obtain the geographical location information that victim is current, and described geographical location information is sent to cloud service platform by described communication unit 4, the Succor plain stage near victim is sent it to for described cloud service platform, inform its concrete geographical position of Succor plain stage, rescue timely to obtain.
These are only preferred embodiment of the present utility model; not thereby the scope of the claims of the present utility model is limited; every utilize the utility model description and accompanying drawing content to do equivalent structure or equivalent flow process conversion; or be directly or indirectly used in other relevant technical fields, be all in like manner included in scope of patent protection of the present utility model.
Claims (4)
1. for monitoring a wearable device for assailant position, described wearable device comprises flak jackets body, it is characterized in that, described wearable device also comprises gunslinging monitoring means, information process unit and communication unit:
Described gunslinging monitoring means, described information process unit and described communication unit are arranged on described flak jackets body;
Described gunslinging monitoring means, be electrically connected with described information process unit, comprise ground floor resistor network and second layer resistor network: described gunslinging monitoring means passes through the direction during position monitoring bullet hits of ground floor resistor network and second layer resistor network resistance variations;
Described information process unit, be electrically connected with described communication unit, for according to direction during bullet hits, calculate speed during bullet hits, judge bullet type, determine the position of assailant, and the position of assailant and bullet are punctured situation be sent to cloud service platform by described communication unit.
2. wearable device as claimed in claim 1, it is characterized in that, described flak jackets body comprises burster course and absorbing sweat layer,
Described gunslinging monitoring means, described information process unit and described communication unit are all arranged between described burster course and absorbing sweat layer;
Ground floor resistor network and the second layer resistor network of described gunslinging monitoring means are arranged at the outside of described burster course according to sequencing.
3. wearable device as claimed in claim 2, it is characterized in that, described flak jackets body comprises three layers:
Outermost layer is hard material, and intermediate layer is textile fiber material, and innermost layer is absorbing sweat material;
Described gunslinging monitoring means, information process unit and communication unit are all located between described intermediate layer and innermost layer.
4. the wearable device as described in any one of claims 1 to 3, is characterized in that, described wearable device also comprises positioning unit:
Described positioning unit, is electrically connected with described information process unit, for obtaining the current geographical location information of victim, and described geographical location information is sent to cloud service platform by described communication unit.
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CN201420821423.5U CN204359208U (en) | 2014-12-19 | 2014-12-19 | For monitoring the wearable device of assailant position |
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CN201420821423.5U CN204359208U (en) | 2014-12-19 | 2014-12-19 | For monitoring the wearable device of assailant position |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104613820A (en) * | 2014-12-19 | 2015-05-13 | 深圳市前海安测信息技术有限公司 | Smart bulletproof equipment for monitoring location of attacker and monitoring method thereof |
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2014
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104613820A (en) * | 2014-12-19 | 2015-05-13 | 深圳市前海安测信息技术有限公司 | Smart bulletproof equipment for monitoring location of attacker and monitoring method thereof |
WO2016095269A1 (en) * | 2014-12-19 | 2016-06-23 | 深圳市前海安测信息技术有限公司 | Smart bulletproof device for monitoring position of attacker, and monitoring method therefor |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150527 Termination date: 20191219 |