CN207677882U - Drive recorder - Google Patents

Drive recorder Download PDF

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Publication number
CN207677882U
CN207677882U CN201721534595.4U CN201721534595U CN207677882U CN 207677882 U CN207677882 U CN 207677882U CN 201721534595 U CN201721534595 U CN 201721534595U CN 207677882 U CN207677882 U CN 207677882U
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China
Prior art keywords
storage space
image
resolution
storage
time point
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Active
Application number
CN201721534595.4U
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Chinese (zh)
Inventor
黄慕真
戴雅丽
江昱娴
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shanghai Blue Power Technology Co Ltd
Shanghai XPT Technology Ltd
British Cayman Archipelago Businessman Maddie Created A Polytron Technologies Inc
Original Assignee
Shanghai Blue Power Technology Co Ltd
British Cayman Archipelago Businessman Maddie Created A Polytron Technologies Inc
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Application filed by Shanghai Blue Power Technology Co Ltd, British Cayman Archipelago Businessman Maddie Created A Polytron Technologies Inc filed Critical Shanghai Blue Power Technology Co Ltd
Priority to CN201721534595.4U priority Critical patent/CN207677882U/en
Priority to TW107111821A priority patent/TWI757467B/en
Priority to TW107204405U priority patent/TWM563707U/en
Application granted granted Critical
Publication of CN207677882U publication Critical patent/CN207677882U/en
Priority to US16/191,457 priority patent/US10869012B2/en
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Abstract

A kind of drive recorder, including an image acquiring module are used to be obtained the dynamic image of a vehicle periphery with one first resolution;One storage element is used in the dynamic image of one first storage space storage with first resolution;An and processing unit.Wherein the processing unit is used to that the resolution of one section of image before one second time point in the dynamic image in first storage space to be switched to one second resolution in a first time point, and controls this section image of the storage element storage with second resolution in one second storage space.Wherein the processing unit is additionally operable to when receiving a trigger signal at a third time point, and one section of image in the dynamic image in first storage space between the third time point and one the 4th time point is stored in a third storage space with first resolution.

Description

Drive recorder
Technical field
The utility model is to be relevant to a kind of drive recorder and driving recording method, and espespecially one kind can recall high-res The drive recorder and driving recording method of image.
Background technology
General drive recorder has the function of that the resolution of acquired dynamic image can be set, if setting obtains high solution The dynamic image of analysis degree, since the occupied storage space of the image of high-res is larger, the storage of drive recorder is empty Between in can not store the dynamic images of prolonged high-res.If setting obtain low-res dynamic image, it is possible because For too fuzzy relevant information (such as the number-plate number of vehicle, the vehicle caused in image of acquired dynamic image Style etc.) it can not recognize.
Utility model content
The purpose of this utility model is to provide a kind of drive recorder and driving recording methods, to solve the prior art Problem.
The utility model drive recorder includes an image acquiring module, a storage element and a processing unit.The figure Dynamic image as acquisition module for obtaining a vehicle periphery with one first resolution, the storage element include one first storage Space, one second storage space and a third storage space, which, which is used for the storage in first storage space, has The dynamic image of first resolution, the processing unit are electrically connected to the storage element and the image acquiring module.Wherein, The processing unit is used for before a first time point is by one second time point in the dynamic image in first storage space The resolution of one section of image switch to one second resolution, and control the section of storage element storage with second resolution Image is in second storage space, and second time point is earlier than the one first predetermined time length of first time point, first solution Analysis degree is higher than second resolution.Wherein the processing unit is additionally operable to when receiving a trigger signal at a third time point, will One section of image in the dynamic image in first storage space between the third time point and one the 4th time point with this One resolution is stored in the third storage space, and the 4th time point is earlier than the one second predetermined time length of third time point.
The utility model driving recording method includes providing a storage element, which includes that one first storage is empty Between, one second storage space and a third storage space;One image acquiring module obtains vehicle week with one first resolution The dynamic image enclosed;The storage element is in the dynamic image of first storage space storage with first resolution;At one Unit is managed in a first time point by one section of shadow before one second time point in the dynamic image in first storage space The resolution of picture switchs to one second resolution, and controls this section image of the storage element storage with second resolution at this Second storage space, wherein second time point are earlier than the one first predetermined time length of first time point, first resolution Higher than second resolution;And the processing unit is when receiving a trigger signal at a third time point, this first is stored One section of image in the dynamic image in space between the third time point and one the 4th time point is stored up with first resolution There are the third storage spaces, and wherein the 4th time point is earlier than the one second predetermined time length of third time point.
Compared to prior art, the utility model drive recorder can convert acquired high-res dynamic image To store after the dynamic image compared with low-res, avoid causing storage space since the archives of high-res dynamic image are too big It is insufficient.When vehicle is collided, the utility model drive recorder can recall and store the high parsing of a predetermined time length Dynamic image is spent, avoids the picture of acquired collision associated dynamic image too fuzzy and the details number of image can not be recognized According to.Recall in addition, the utility model drive recorder can also be triggered by a button and store high-res dynamic image, therefore User can put the high-res dynamic image for storing the predetermined time length at any time.
Description of the drawings
Fig. 1 is the schematic diagram of the utility model drive recorder;
Fig. 2 is the schematic diagram that the utility model drive recorder stores dynamic image when event occurs;
Fig. 3 is the schematic diagram that the utility model drive recorder stores dynamic image when event occurs;
Fig. 4 is the flow chart of the utility model driving recording method.
Reference numeral:
10:Drive recorder;12:Image collection module;14:Storage element;141:First storage space;142:Second storage Deposit space;143:Third storage space;16:Processing unit;18:Trigger device;20:Wireless communication module;300:Vehicle;200: Dynamic image;400:Flow chart;410 to 450:Step;T1:First time point;T2:Second time point;T3:Third time point; T4:4th time point;TF:Time-axis direction;TD1:First predetermined time length;TD2:Second predetermined time length;TD3:The Three predetermined time length.
Specific implementation mode
Referring to FIG. 1, Fig. 1 is the schematic diagram of the utility model drive recorder.As shown in Figure 1, the utility model is driven a vehicle Logger 10 is for being arranged in a vehicle 300, and drive recorder 10 includes an image acquiring module 12, a storage element 14, a processing unit 16 and a trigger device 18.Storage element 14 includes that the storage of one first storage space 141, one second is empty Between 142 and a third storage space 143.For example, the first storage space 141 is a temporary storage space, the second storage Space 142 is a removable storage space, and third storage space 143 is a non-removable storage space.Image acquiring module 12 For obtaining the dynamic image around vehicle 300 with one first resolution (such as highest resolution), and storage element 14 is used It is stored in the first storage space 141 in there will be the dynamic image of first resolution.It is single that processing unit 16 is electrically connected to storage Member 14 and image acquiring module 12 store dynamic image for controlling storage element 14.
Referring to FIG. 2, simultaneously together with reference to figure 1.Fig. 2 is that the utility model drive recorder is stored when event occurs The schematic diagram of dynamic image.As shown in Figs. 1-2, dynamic image 200 is the dynamic image for being stored in the first storage space 141, Middle first time point T1 is the time point of current acquired dynamic image, and the second time point T2 is earlier than first time point T1 1 the One predetermined time length TD1, and dynamic image 200 with image acquiring module 12 persistently record dynamic image and along the time axis Direction TF increases, and first time point T1 and the second time point T2 can also be moved direction TF as the time changes and along the time axis It is dynamic.Processing unit 16 is used for the second time point T2 in the dynamic image 200 in the first storage space 141 in first time point T1 The resolution of one section of image before switchs to one second resolution, and (in the present embodiment, the first resolution is higher than the second parsing Degree), and storage element 14 is controlled by this section of image storage with the second resolution in the second storage space 142.In other words It says, when the time span that image acquiring module 12 obtains dynamic image is more than the first predetermined time length TD1, processing unit 16 For the dynamic image previously obtained to be switched to the dynamic image compared with low-res, and controlling storage element 14 will be after this section conversion Dynamic image be stored in another storage space.Since the second resolution is less than the first resolution, the second storage can be made Space 142 can store the dynamic image of longer time.Wherein, the second storage space 142 is a removable storage space, when second When all dynamic images reach a predetermined archives size in storage space 142, the dynamic image obtained earliest can be deleted.
It please refers to Fig.1 and Fig. 3, Fig. 3 is that the utility model drive recorder stores dynamic image when event occurs Schematic diagram.As shown, the processing unit 16 when drive recorder 10 is received in time point T3 caused by trigger device 18 When one trigger signal, processing unit 16 is additionally operable to the dynamic image after the time point T4 earlier than time point T3 being stored in third Storage space 143.Wherein, time point T4 is earlier than the time point of T3 time point, length TD2 the second predetermined time.In other words, When processing unit 16 is when time point, T3 received trigger signal, processing unit 16, which controls storage element 14, will be stored in the first storage One section of image storage of time point T3 to time point T4 in the dynamic image 200 in space 141 is deposited in third storage space 143, is somebody's turn to do Section image is the image with the first resolution.Image due to the meeting of processing unit 16 by dynamic image 200 earlier than time point T2 The image of one second resolution is converted to, therefore the time span of the image for the first resolution that can be stored is up at the first time Length TD1, in other words, the time span for being stored in the dynamic image of third storage space 143 are the second predetermined time length TD2.In the present embodiment, third storage space 143 is a non-removable storage space, is accidentally deleted to avoid image data.By It is higher than the second resolution in the first resolution, therefore when processing unit 16 receives trigger signal, the utility model driving note Device 10 is recorded the image of higher resolution is stored in non-removable storage space, so that user obtains backtracking second in advance Image data around the vehicle 300 of length of fixing time TD2.In addition, when processing unit 16 receives triggering letter in time point T3 Number when, processing unit 16 can also control storage element 14 by the dynamic shadow of time point T3 third predetermined time length TD3 backward As being stored in third storage space 143 together with the dynamic image between time point T3 and time point T4 with the first resolution.Wherein, First predetermined time length TD1, the second predetermined time length TD2 and third predetermined time length TD3 can be a fixed value or by User's sets itself.The size of first storage space 141, the second storage space 142 and third storage space 143 is alternatively one Fixed value is set by user.
In the present embodiment, trigger device 18 can be a sensing unit, which is electrically connected to processing unit 16 And to sense whether vehicle 300 is collided, when sensing vehicle 300 and being collided, the sensing unit is tactile for generating Signal, make drive recorder 10 that can recall and store collision occur before image data, but the utility model not as Limit.Trigger device 18 or a button, the button are electrically connected to processing unit 16 and are touched for generating when pressed It signals, so that the visual demand of user is at any time by higher resolution image storage in non-removable storage space.In addition, this Utility model drive recorder 10 can further include that a wireless communication module 20 is electrically connected to storage element 14, wireless communication module 20 For the image in storage element 14 to be uploaded and is stored in a cloud server.
According to above-mentioned configuration, the utility model drive recorder 10 can obtain the dynamic image of high-res, and will be through Dynamic image after a predetermined time length is converted to dynamic image and storage compared with low-res, therefore can be in limited storage The dynamic image of long period is stored in space.In addition, when vehicle 300 is collided, the utility model drive recorder 10 It can recall and store vehicle 300 and be collided the high-res of previous predetermined time length (and collision latter predetermined time length) Dynamic image, thus user can be gone through by this section of high-res dynamic image vehicle 300 be collided it is front and back around Image.
Referring to FIG. 4, Fig. 4 is the flow chart 400 of the utility model driving recording method.The utility model driving recording side The flow of method such as the following steps:
Step 410:One storage element is provided, the storage element include one first storage space, one second storage space with An and third storage space;
Step 420:One image acquiring module obtains the dynamic image of a vehicle periphery with one first resolution;
Step 430:The storage element is in the dynamic image of first storage space storage with first resolution;
Step 440:One processing unit is in a first time point by the dynamic image in first storage space 1 The resolution of one section of image before two time points switchs to one second resolution, and control the storage element storage have this second This section of image of resolution is in second storage space, and wherein second time point is earlier than the pre- timing of the first time point one first Between length;And
Step 450:The processing unit, will be in first storage space when receiving a trigger signal at a third time point The dynamic image in one section of image between the third time point and one the 4th time point this is stored in first resolution Third storage space, wherein the 4th time point are earlier than the one second predetermined time length of third time point.
Compared to prior art, the utility model drive recorder can convert acquired high-res dynamic image To store after the dynamic image compared with low-res, avoid causing storage space since the archives of high-res dynamic image are too big It is insufficient.When vehicle is collided, the utility model drive recorder can recall and store the high parsing of a predetermined time length Dynamic image is spent, avoids the picture of acquired collision associated dynamic image too fuzzy and the details number of image can not be recognized According to.Recall in addition, the utility model drive recorder can also be triggered by a button and store high-res dynamic image, so User can put the high-res dynamic image for storing the predetermined time length at any time.
The above is only the preferred embodiment of the present invention, all equalizations done according to the utility model claims Variation and modification, should all belong to the covering scope of the utility model.

Claims (9)

1. a kind of drive recorder, including:
One image acquiring module, the dynamic image for obtaining a vehicle periphery with one first resolution;
One storage element, including one first storage space, one second storage space and a third storage space, the storage element For in the dynamic image of first storage space storage with first resolution;And
One processing unit, is electrically connected to the storage element and the image acquiring module, and wherein the processing unit is used for one the One time point turned the resolution of one section of image before one second time point in the dynamic image in first storage space For one second resolution, and it is empty in second storage to control this section image of the storage element storage with second resolution Between, second time point is earlier than the one first predetermined time length of first time point;Wherein the processing unit is additionally operable to one When three time points received a trigger signal, by the third time point in the dynamic image in first storage space and one One section of image between four time points is stored in the third storage space with first resolution, the 4th time point earlier than this Three time points, one second predetermined time length.
2. drive recorder according to claim 1, wherein first storage space is a temporary storage space, it is described Second storage space is a removable storage space, and the third storage space is a non-removable storage space, and this first The space size of storage space, second storage space and the third storage space can be a fixed value or be set by user It is fixed.
3. drive recorder according to claim 1, wherein first resolution is higher than second resolution.
4. drive recorder according to claim 1 further includes a sensing unit, it is electrically connected to the processing unit, it should Sensing unit is used to generate the trigger signal when sensing the vehicle and being collided.
5. drive recorder according to claim 4, wherein the processing unit is additionally operable to receiving the triggering letter Number when, control the storage element by the third time point toward latter third predetermined time length one section of image together with this This section of image between three time points and the 4th time point is stored in the third storage space with the first resolution.
6. drive recorder according to claim 1 further includes a button, it is electrically connected to the processing unit, the button For generating the trigger signal when pressed.
7. drive recorder according to claim 1 further includes a wireless communication module, it is single to be electrically connected to the storage Member, for the image in the storage element to be uploaded to a cloud server.
8. drive recorder according to claim 1, wherein the first predetermined time length, second predetermined time Length can be for a fixed value or by user's sets itself with third predetermined time length.
9. drive recorder according to claim 1, wherein all dynamic images reach one in second storage space When predetermined archives size, the processing unit is additionally operable to control the dynamic image that the storage element deletion obtains earliest.
CN201721534595.4U 2017-11-16 2017-11-16 Drive recorder Active CN207677882U (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
CN201721534595.4U CN207677882U (en) 2017-11-16 2017-11-16 Drive recorder
TW107111821A TWI757467B (en) 2017-11-16 2018-04-03 Traffic recorder and traffic recording method
TW107204405U TWM563707U (en) 2017-11-16 2018-04-03 Traffic recorder
US16/191,457 US10869012B2 (en) 2017-11-16 2018-11-15 Apparatus and method for recording and storing video

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721534595.4U CN207677882U (en) 2017-11-16 2017-11-16 Drive recorder

Publications (1)

Publication Number Publication Date
CN207677882U true CN207677882U (en) 2018-07-31

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CN201721534595.4U Active CN207677882U (en) 2017-11-16 2017-11-16 Drive recorder

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109803103A (en) * 2017-11-16 2019-05-24 英属开曼群岛商麦迪创科技股份有限公司 Drive recorder and driving recording method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109803103A (en) * 2017-11-16 2019-05-24 英属开曼群岛商麦迪创科技股份有限公司 Drive recorder and driving recording method

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