Vehicle image recording system

The vehicle image recording system addresses the complexity of managing multiple camera data by using a control unit to distribute video data based on camera locations, enhancing data recording efficiency across multiple media.

JP7853159B2Active Publication Date: 2026-04-28YAZAKI ENERGY SYSTEM CORP
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
YAZAKI ENERGY SYSTEM CORP
Filing Date
2022-06-08
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing vehicle image recording systems face complexity in managing recording destinations for multiple video images and data captured by multiple cameras, leading to inefficient data management.

Method used

A vehicle image recording system with multiple cameras and a main unit that detachably holds recording media, utilizing a control unit to determine recording destinations based on camera installation locations through weighting, ensuring appropriate distribution of video data across multiple media.

Benefits of technology

The system effectively records multiple motion image data from multiple cameras onto multiple recording media, optimizing data management and reducing the need for manual setting of recording destinations.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To provide a vehicle image recording system that can properly record multiple moving image data obtained by multiple cameras on multiple recording media.SOLUTION: A vehicle image recording system 1 includes a first camera 2A to an eighth camera 2H, which are mounted on a vehicle V and capture moving images to acquire moving image data, and a main unit 3 that removably holds a first recording medium 4A and a second recording medium 4B. The main unit 3 has a control unit 10 that records eight pieces of moving image data acquired by the first camera 2A to the eighth camera 2H onto the first recording medium 4A and the second recording medium 4B. The first camera 2A to the eighth camera 2H have set values related to the moving images according to their installation locations in the vehicle V. The control unit 10 determines the recording destination of each moving image data from the first recording medium 4A and the second recording medium 4B based on the weighting according to the installation locations of the first camera 2A to the eighth camera 2H.SELECTED DRAWING: Figure 1
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Description

Technical Field

[0001] The present invention relates to a vehicle image recording system.

Background Art

[0002] There is an in-vehicle device such as a so-called drive recorder that is mounted on a vehicle and records the situation outside or inside and outside the vehicle on a recording medium or the like with a camera attached to a front window, dashboard, or the like. In conventional in-vehicle devices, an SD card is used as an example of the recording medium.

[0003] For example, Patent Documents 1 to 4 describe a system for storing images captured by one camera with respect to at least two recording media and in-vehicle electronic devices. Further, Patent Document 5 describes an in-vehicle electronic device that detects the occurrence of an event based on a determination condition for determining that an event has occurred in a vehicle and transmits transmission data including vehicle information and video data to a server on a network via wireless communication means.

Prior Art Documents

Patent Documents

[0004]

Patent Document 1

Patent Document 2

Patent Document 3

Patent Document 4

Patent Document 5

Summary of the Invention

Problems to be Solved by the Invention

[0005] By the way, while mounting multiple cameras on a vehicle makes it possible to photograph a variety of subjects, there is room for improvement in setting the recording destinations for the multiple video images and data captured, as this becomes complicated.

[0006] The present invention aims to provide a vehicle image recording system that can appropriately record multiple motion image data obtained from multiple cameras onto multiple recording media. [Means for solving the problem]

[0007] To achieve the above objective, the vehicle image recording system according to the present invention comprises a plurality of cameras mounted on a vehicle that capture moving images and acquire moving image data, and a main unit that detachably holds a plurality of recording media, wherein the main unit has a control unit that records the plurality of moving image data acquired by the plurality of cameras onto the plurality of recording media, each of the cameras has setting values ​​related to the moving images according to its installation location in the vehicle, and the control unit determines the recording destination of each of the moving image data from the plurality of recording media based on weighting according to the installation location of each camera. [Effects of the Invention]

[0008] The vehicle image recording system according to the present invention has the effect of being able to appropriately record multiple motion image data obtained from multiple cameras onto multiple recording media. [Brief explanation of the drawing]

[0009] [Figure 1] Figure 1 is a block diagram showing a schematic configuration of a vehicle image recording system according to an embodiment. [Figure 2] Figure 2 is a basic flowchart showing an example of the recording process of a vehicle image recording system according to the embodiment. [Figure 3] Figure 3 is a subflowchart showing an example of the recording process of the vehicle image recording system according to the embodiment. [Figure 4] Figure 4 is a table showing the relationship between camera placement and weighting. [Figure 5] Figure 5 is a table showing an example of settings related to the camera's video capabilities. [Modes for carrying out the invention]

[0010] Embodiments of the present invention will be described in detail below with reference to the drawings. However, the present invention is not limited to the embodiments described below. That is, the components in the embodiments described below include those that are easily conceivable by those skilled in the art, or that are substantially the same, and various omissions, substitutions, and modifications can be made without departing from the spirit of the invention.

[0011] [Embodiment] The vehicle image recording system 1 according to this embodiment, shown in Figure 1, is mounted on a vehicle V such as an automobile, and uses multiple cameras to capture images of the exterior and interior of the vehicle V and record dynamic image data related to the vehicle's condition.

[0012] Here, the vehicle V to which the vehicle image recording system 1 is applied is a moving object that travels on a road surface, etc. For example, a truck transporting goods. In the following explanation, vehicle V will be described as a transport truck.

[0013] As shown in Figure 1, the vehicle image recording system 1 comprises a first camera 2A, a second camera 2B, a third camera 2C, a fourth camera 2D, a fifth camera 2E, a sixth camera 2F, a seventh camera 2G, and an eighth camera 2H, a main unit 3, and a first recording medium 4A and a second recording medium 4B.

[0014] Cameras 1A to 8H each capture moving images and acquire moving image data. Specifically, cameras 1A to 8H are installed at predetermined locations on vehicle V and capture images of the exterior and interior of vehicle V.

[0015] The first camera 2A is installed, for example, at the front of the vehicle V and captures the scenery in front of the vehicle as the shooting target. This shooting target includes the preceding vehicle of the host vehicle V, oncoming vehicles, crossing vehicles, pedestrians, crossers, signs, markings, etc. The second camera 2B is installed, for example, on the right side of the vehicle V and captures the scenery on the right side of the vehicle as the shooting target. This shooting target includes other vehicles running parallel to the host vehicle V, other vehicles running in the oncoming lane, pedestrians, etc. The third camera 2C is installed, for example, on the left side of the vehicle V and captures the scenery on the left side of the vehicle as the shooting target. This shooting target includes bicycles, motorcycles, pedestrians, etc. running on the left side of the host vehicle V. The fourth camera 2D is installed, for example, in the luggage compartment of the vehicle V and captures the luggage, etc. placed in the luggage compartment as the shooting target. The fifth camera 2E is installed, for example, in front of the vehicle interior of the vehicle V and captures the state in front of the vehicle interior as the shooting target. The sixth camera 2F is installed, for example, behind the vehicle interior of the vehicle V and captures the state behind the vehicle interior. The seventh camera 2G is installed, for example, inside the meter unit in front of the driver's seat of the vehicle V or on the upper part of the column cover and captures the state of the driver as the shooting target. The eighth camera 2H is installed, for example, at the rear front of the vehicle V and captures the scenery behind the vehicle as the shooting target. This shooting target includes the following vehicles of the host vehicle V, motorcycles, bicycles, pedestrians, etc.

[0016] The first camera 2A to the eighth camera 2H in this embodiment are assumed to have the same structure and the same function. The first camera 2A to the eighth camera 2H are each electrically connected to the main body device 3 by a wiring material such as an electric wire or a cable wired to the vehicle V, and output the moving images captured by each camera as moving image data to the main body device 3. The moving images captured by the first camera 2A to the eighth camera 2H may be monochrome or color.

[0017] The first camera 2A to the eighth camera 2H are each set for moving images according to the installation location and shooting target in the vehicle V. As shown in the setting value table 21 of FIG. 5, the settings of each camera include, for example, the frame rate, compression rate, and resolution related to the moving image. The frame rate, compression rate, and resolution are set according to the installation location and the like of each camera. The settings of each camera are set by the control unit 10 described later according to operations by, for example, the vehicle V, the administrator of this system, the driver, etc., but are not limited thereto. For example, the settings of each camera may be configured to be performed by a server provided outside the vehicle V and communicable with the main body device 3, or a PC (Personal Computer) communicable with the server. In this case, the PC may be able to record and hold the operation record data recorded in the main body device 3 via a recording medium such as an SD card, or may be able to analyze the operation record data by communicating with the server. The set values set for each camera are stored in a predetermined storage area in the non-volatile memory in the main body device 3, but are not limited thereto. For example, the set values set for each camera may be stored in the non-volatile memory (for example, HDD (Hard Disc Drive)) in the server.

[0018] The main body device 3 inputs moving image data from each of the first camera 2A to the eighth camera 2H and records the plurality of moving image data on the first recording medium 4A and the second recording medium 4B. The main body device 3 has the first recording medium 4A, the second recording medium 4B, and the control unit 10. The main body device 3 detachably holds the first recording medium 4A and the second recording medium 4B.

[0019] The first recording medium 4A and the second recording medium 4B are each so-called memory cards, and are composed of, for example, SD cards that can be attached to and removed from the main unit 3. The first recording medium 4A and the second recording medium 4B each have the same amount of data written per unit time and storage capacity as an SD card. In other words, the first recording medium 4A and the second recording medium 4B can continuously record multiple video data up to their storage capacity based on their respective amounts of data written per unit time. In this embodiment, the first recording medium 4A and the second recording medium 4B have the same specifications regarding the amount of data written per unit time and storage capacity.

[0020] The control unit 10 performs the process of recording eight video data files acquired by the first camera 2A to the eighth camera 2H onto the first recording medium 4A and the second recording medium 4B. This process is, for example, the process shown in Figures 2 and 3. The control unit 10 is composed of, for example, a central processing unit such as a CPU or MPU, and electronic circuits including interfaces for sending and receiving various information with each part. In addition to controlling the recording of multiple video data files to the first recording medium 4A and the second recording medium 4B, the control unit 10 also controls the first camera 2A to the eighth camera 2H and each part of the main unit 3.

[0021] The control unit 10 determines the recording destination for each video data from either the first recording medium 4A or the second recording medium 4B based on weighting according to the installation locations of the first cameras 2A to the eighth cameras 2H. In this embodiment, as shown in the weighting table 20 in Figure 4, weighting is applied according to the installation locations of the first cameras 2A to the eighth cameras 2H. For each of the eight installation locations, a weighting value of 1, 2, 3, 4, and 5 is set.

[0022] The weighting values ​​are assigned to each installation location in descending order of size, from 5 to 1. In this embodiment, as shown in the weighting table 20 in Figure 4, the installation locations: front of the vehicle and rear of the vehicle are assigned the highest weighting value of 5. The first camera 2A and the eighth camera 2H are installed at the installation locations assigned the highest weighting value. The settings for the video images of the first camera 2A and the eighth camera 2H are set higher than the standard. Specifically, the settings for the video images of the first camera 2A and the eighth camera 2H are set higher than the standard for, for example, frame rate, compression rate, and resolution. Therefore, the video image data acquired by the first camera 2A and the eighth camera 2H is relatively larger in data size than the video image data acquired by the other cameras among the first camera 2A to the eighth camera 2H, excluding the first camera 2A and the eighth camera 2H.

[0023] On the other hand, in this embodiment, as shown in the weighting table 20, the smallest weight value, 1, is assigned to the installation location: vehicle garage. The fourth camera 2D is installed in the installation location assigned the smallest weight value. The settings for the video of this fourth camera 2D are set lower than the standard. Specifically, the settings for the video of the fourth camera 2D are set lower than the standard for, for example, frame rate, compression rate, and resolution. Therefore, the video data acquired by the fourth camera 2D has a relatively smaller data size than the video data acquired by the other cameras among the first cameras 2A to the eighth cameras 2H, excluding the fourth camera 2D.

[0024] The control unit 10 repeatedly executes the second process in accordance with the number of recording media for the remaining weights, after excluding the weight values ​​that have already been combined by the first and second processes described later, to allocate the recording destination for each video data.

[0025] The first process involves combining the maximum weight value and the minimum weight value from among multiple weights corresponding to the installation locations of multiple cameras, and assigning the recording destination of the two video data acquired by the two cameras corresponding to this combination to one of the multiple recording media. Specifically, the control unit 10 refers to the weighting table 20 shown in Figure 4, combines the maximum weight value: 5 and the minimum weight value: 1, and assigns the recording destination of the two video data acquired by the two cameras corresponding to this combination (for example, the first camera 2A and the fourth camera 2D) to the first recording media 4A, which is one of the first recording media 4A and the second recording media 4B.

[0026] The second process involves selecting the maximum weight value and the minimum weight value from among the multiple weights excluding the already combined weight values, creating a new combination, and assigning the recording destination of the two video data acquired by the two cameras corresponding to this new combination to one of the multiple recording media. Specifically, the control unit 10 refers to the weight table 20 shown in Figure 4, and from the six weights (3,3,2,2,1,5) excluding the already combined weight value (5,1), selects the maximum weight value: 5 and the minimum weight value: 1 to create a new combination, and assigns the recording destination of the two video data acquired by the two cameras (seventh camera 2G, eighth camera 2H) corresponding to this new combination to the second recording media 4B, which is the other of the first recording media 4A and the second recording media 4B.

[0027] In the weighting table 20 of this embodiment, there are two entries each for the maximum weighting value: 5 and the minimum weighting value: 1. In this case, it is necessary to select one value in the first and second processes described above. For example, the control unit 10 selects one of two installation locations (e.g., the front of the vehicle and the rear of the vehicle) that have the maximum weighting value of 5, based on a predetermined rule. This rule is, for example, to select the camera with the smaller number assigned to the camera corresponding to the installation location. In other words, the control unit 10 selects the first camera 2A from the first camera 2A and the eighth camera 2H corresponding to the two installation locations that have the maximum weighting value of 5. Note that this rule is not limited to the above.

[0028] In this embodiment, the control unit 10 repeatedly executes the second process for the remaining weights, after excluding the weight values ​​already combined by the first and second processes, according to the number of recording media:2, to allocate a recording destination for each video data. In this way, the control unit 10 allocates a recording destination for all eight video data acquired by the eight first cameras 2A to the eighth camera 2H.

[0029] Furthermore, the control unit 10 simultaneously records multiple video data files to the recording medium determined as the recording destination for the video data files. Specifically, the control unit 10 simultaneously records eight video data files to the first recording medium 4A and the second recording medium 4B, which have been determined as the recording destinations for the video data files.

[0030] Furthermore, when the control unit 10 records multiple video data files onto a recording medium, if the recording capacity of the recording medium is exceeded, it overwrites older video data files recorded on the recording medium. Specifically, when the control unit 10 records eight video data files onto the first recording medium 4A and the second recording medium 4B, if the recording capacity of the first recording medium 4A and the second recording medium 4B is exceeded, it overwrites older video data files recorded on the first recording medium 4A and the second recording medium 4B, respectively.

[0031] The control unit 10 is configured to include a first determination unit 11 and a second determination unit 12. The first determination unit 11 and the second determination unit 12 are, for example, part of the functions in the program executed by the control unit 10. The first determination unit 11 and the second determination unit 12 perform the following control in the processes shown in Figures 2 and 3.

[0032] The first determination unit 11 determines whether the total amount of video data acquired per unit time from the eight first cameras 2A to the eighth camera 2H exceeds the amount of single data that can be written per unit time to one of the first recording media 4A (or the second recording media 4B). Here, the total amount of video data acquired per unit time from the eight first cameras 2A to the eighth camera 2H is the sum of the video data acquired per unit time from the eight cameras. The amount of single data that can be written per unit time is the amount of data that can be written to one recording media per unit time. In this embodiment, the first recording media 4A and the second recording media 4B are assumed to have the same amount of data that can be written per unit time and the same storage capacity.

[0033] If the first determination unit 11 determines that the total amount of motion image data exceeds the amount of data that can be written to a single recording medium, the second determination unit 12 determines whether the total amount of motion image data exceeds the sum of the total amount of data that can be written to each of the first recording medium 4A and the second recording medium 4B per unit time. Here, the total amount of data that can be written to each of the first recording medium 4A and the second recording medium 4B per unit time is the sum of the amount of data that can be written to each of the two recording media per unit time.

[0034] If the control unit 10 determines that the total amount of video data does not exceed the sum of the total amount of data written, it determines the recording destination for each video data from the first recording medium 4A and the second recording medium 4B based on the weighting. On the other hand, if the control unit 10 determines that the total amount of video data exceeds the sum of the total amount of data written, it changes the settings set for the first camera 2A to the eighth camera 2H so that the amount of video data decreases. In this case, the control unit 10 refers to, for example, the weighting table 20 shown in Figure 4 and the setting value table 21 shown in Figure 5, and lowers the setting value of the camera corresponding to the installation location with the maximum weighting value relatively from the current setting value. If the setting values ​​include the frame rate, compression rate, and resolution for video, the control unit 10 changes the frame rate setting value from "high" to "standard". Alternatively, the control unit 10 may change the compression rate setting value from "high" to "standard" or change the resolution setting value from "high" to "standard". In other words, if there are multiple settings related to the moving image, the control unit 10 modifies at least one of the settings to a relatively lower value so that the total amount of data written decreases.

[0035] The control unit 10 determines, based on the video data acquired by each camera, whether the multiple cameras mounted on the vehicle V are installed in pre-set locations. For example, the control unit 10 uses known image recognition technology to perform image recognition processing on the video data acquired by each camera and estimates the installation location of each camera. Then, based on the estimation results, the control unit 10 determines whether each camera is installed in the location set in the weighting table 20. If the control unit 10 determines that there are cameras among the multiple cameras that are not installed in the location set in the weighting table 20, it notifies the vehicle V and the system administrator in a predetermined manner.

[0036] Next, the process of recording eight motion image data on the first recording medium 4A and the second recording medium 4B in the vehicle image recording system 1 will be explained with reference to the flowcharts shown in Figures 2 and 3. The vehicle image recording system 1 starts up, for example, when the ACC power supply of the vehicle V is turned ON, and repeats the process described below until the power supply is turned OFF.

[0037] In step S1 of Figure 2, the control unit 10 determines the installation locations of the multiple cameras. Specifically, based on each of the eight video data acquired by the first camera 2A to the eighth camera 2H, the control unit 10 determines whether the first camera 2A to the eighth camera 2H are installed according to the installation locations set in the weighting table 20.

[0038] Next, in step S2, the control unit 10 uses the first determination unit 11 to determine whether the total amount of motion image data acquired per unit time from the eight first cameras 2A to the eighth camera 2H exceeds the amount of individual data that can be written per unit time to the first recording medium 4A (or second recording medium 4B). If the result of this determination is that the total amount of motion image data exceeds the amount of individual data that can be written, the process proceeds to step S4. On the other hand, if the total amount of motion image data does not exceed the amount of individual data that can be written, the process proceeds to step S4.

[0039] In step S3, the control unit 10 records all video data of the first camera 2A to the eighth camera 2H to the first recording medium 4A and the second recording medium 4B in sequence, and then terminates the process. In this case, the control unit 10 records all video data of the first camera 2A to the eighth camera 2H to the first recording medium 4A, and as soon as the remaining recording capacity of the first recording medium 4A is depleted, it switches from the first recording medium 4A to the second recording medium 4B and records all video data of the first camera 2A to the eighth camera 2H to the second recording medium 4B. In this case, as soon as the remaining storage capacity of the second recording medium 4B is depleted, it switches from the second recording medium 4B to the first recording medium 4A and overwrites all video data of the first camera 2A to the eighth camera 2H to the first recording medium 4A.

[0040] In step S4, the control unit 10 uses the second determination unit 12 to determine whether the total amount of motion image data exceeds the sum of the total amount of data that can be written per unit time for both the first recording medium 4A and the second recording medium 4B. If the result of this determination is that the total amount of motion image data exceeds the sum of the total amount of data that can be written, the process proceeds to step S5. On the other hand, if the total amount of motion image data does not exceed the sum of the total amount of data that can be written, the process proceeds to step S10 in Figure 3.

[0041] In step S5, the control unit 10 changes the camera settings and returns to step S2. Specifically, as described above, the control unit 10 changes the settings set for the first camera 2A to the eighth camera 2H so that the amount of data in the moving image data decreases.

[0042] In step S10 of Figure 3, the control unit 10 assigns 1 to the variable N (N: a positive integer from 1 to N) and proceeds to step S11.

[0043] In step S11, the control unit 10 assigns the cameras corresponding to the Nth weight from the top and the Nth weight from the bottom to the first recording medium 4A. That is, the control unit 10 takes the maximum weight value and the minimum weight value from the eight weights corresponding to the installation locations of the eight cameras as one combination for the first recording medium 4A, and assigns the recording destination of the two video data acquired by the two cameras corresponding to this one combination to the first recording medium 4A of the first recording medium 4A and the second recording medium 4B (first process). Here, the control unit 10 determines whether N > 2, and if N > 2, it takes the maximum weight value and the minimum weight value from the multiple weights excluding the weights that have already been combined as another one combination, and assigns the recording destination of the two video data acquired by the two cameras corresponding to this other one combination to the first recording medium 4A. In this case, for example, the control unit 10 selects the maximum weight value: 3 and the minimum weight value: 2 from among the multiple weights (second camera: 3, third camera: 3, fifth camera: 2, sixth camera: 2), excluding the already combined weight values ​​(5, 1, 5, 1), as one combination, and assigns the recording destination of the two video data acquired by the second camera 2B and fifth camera 2E corresponding to this one combination to the first recording medium 4A.

[0044] In step S12, the control unit 10 assigns N+1 to the variable N and proceeds to step S13.

[0045] In step S13, the control unit 10 assigns the cameras corresponding to the Nth weight from the top and the Nth weight from the bottom to the second recording medium 4B. That is, the control unit 10 selects the maximum weight value and the minimum weight value from among the multiple weights excluding the weights that have already been combined into one other combination, and assigns the recording destination of the two video data acquired by the two cameras corresponding to this other combination to the second recording medium 4B of the first recording medium 4A and the second recording medium 4B (second process). In the weighting table 20 of this embodiment, there are two maximum weight values: 5 and two minimum weight values: 1. Therefore, in step S13, if N=1+1=2, the control unit 10 selects the cameras corresponding to the second weight from the top and the second weight from the bottom, and selects the maximum weight value: 5 and the minimum weight value: 1 from among the multiple weights (3,3,2,2,1,5) excluding the weights that have already been combined into one other combination.

[0046] In step S14, the control unit 10 assigns N+1 to the variable N and proceeds to step S15.

[0047] In step S15, the control unit 10 determines whether either the first recording medium 4A or the second recording medium 4B is assigned to all eight first cameras 2A to eighth cameras 2H. In other words, the control unit 10 determines whether there are any cameras that are not assigned to either the first recording medium 4A or the second recording medium 4B as the recording destination for video data. If, as a result of this determination, either the first recording medium 4A or the second recording medium 4B is assigned to all eight first cameras 2A to eighth cameras 2H, the process proceeds to step S16. On the other hand, if neither the first recording medium 4A nor the second recording medium 4B is assigned to all eight first cameras 2A to eighth cameras 2H, the process returns to step S11. In this way, the processing in steps S11 to S14 is repeated, and the second process is repeatedly executed according to the number of recording media (2) for the remaining weights out of the eight weights, excluding the weights that have already been combined by the first and second processes, to assign a recording destination for each video data.

[0048] In step S16, the control unit 10 determines whether the total amount of video data acquired by the four cameras assigned to the first recording medium 4A in step S11 exceeds the amount of data written to the first recording medium 4A, and whether the total amount of video data acquired by the four cameras assigned to the second recording medium 4B in step S13 exceeds the amount of data written to the second recording medium 4B. If the result of this determination determines that the total amount of video data acquired exceeds the amount of data written to either the first recording medium 4A or the second recording medium 4B, the process proceeds to step S5 in Figure 2. On the other hand, if the result determines that the total amount of video data acquired does not exceed the amount of data written to either the first recording medium 4A or the second recording medium 4B, the process proceeds to step S17.

[0049] In step S17, the control unit 10 records the video data of the four cameras assigned to the first recording medium 4A and the second recording medium 4B, respectively, and then terminates the process. In this case, the control unit 10 records the video data of four of the first cameras 2A to eighth cameras 2H onto the first recording medium 4A, and records the video data of the other four cameras onto the second recording medium 4B. The control unit 10 records the video data of four of the first cameras 2A to eighth cameras 2H onto the first recording medium 4A, and as soon as the remaining recording capacity of the first recording medium 4A is exhausted, it overwrites the chronologically older video data recorded on the first recording medium 4A with the new video data without switching from the first recording medium 4A to the second recording medium 4B. Similarly, the control unit 10 records video data from the other four cameras among the first camera 2A to the eighth camera 2H onto the second recording medium 4B. As soon as the recording capacity of the second recording medium 4B is exhausted, it overwrites the older video data recorded on the second recording medium 4B with new video data without switching from the second recording medium 4B to the first recording medium 4A.

[0050] The vehicle image recording system 1 according to this embodiment, as described above, is mounted on a vehicle V and comprises a first camera 2A to an eighth camera 2H that captures moving images and acquires moving image data, and a main unit 3 that detachably holds a first recording medium 4A and a second recording medium 4B. The main unit 3 has a control unit 10 that records the eight moving image data acquired by the first camera 2A to the eighth camera 2H onto the first recording medium 4A and the second recording medium 4B. The control unit 10 refers to the weighting table 20 shown in Figure 4 and determines the recording destination for each moving image data from the first recording medium 4A and the second recording medium 4B based on weighting according to the installation locations of the first camera 2A to the eighth camera 2H.

[0051] With the above configuration, the vehicle image recording system 1 eliminates the need for setting recording destinations, which is necessary for appropriately recording multiple captured video data onto multiple recording media. Furthermore, with the above configuration, the vehicle image recording system 1 can appropriately record multiple video data obtained from multiple cameras onto multiple recording media.

[0052] Furthermore, the vehicle image recording system 1 is configured such that the control unit 10 includes a first determination unit 11 and a second determination unit 12. If the second determination unit 12 determines that the total amount of motion image data does not exceed the total amount of data to be written, it refers to the weighting table 20 shown in Figure 4 and determines the recording destination for each motion image data from the first recording medium 4A and the second recording medium 4B based on the weighting set according to the installation location. This allows the vehicle image recording system 1 to easily determine the recording destination for multiple motion image data.

[0053] Furthermore, in the vehicle image recording system 1, the control unit 10 repeatedly executes the second process according to the number of first recording media 4A and second recording media 4B for the remaining weights after excluding the weight values ​​that have already been combined by the first and second processes described above, thereby allocating the recording destination for each video data file. This allows the vehicle image recording system 1 to easily determine the recording destination for multiple video data files.

[0054] In the above embodiment, the vehicle image recording system 1 is equipped with eight first cameras 2A to eighth cameras 2H, but it is not limited to this number; it may be seven or fewer, or nine or more. Also, the vehicle image recording system 1 is equipped with two first recording media 4A and two second recording media 4B, but it is not limited to this number; it may be equipped with three or more recording media.

[0055] Furthermore, in the above embodiment, the control unit 10 determines the recording destination for each video data from the first recording medium 4A and the second recording medium 4B based on weights set corresponding to the installation location, as shown in Figure 3, but is not limited to this. For example, the control unit 10 may be configured to determine a combination of multiple weight values ​​so as to approximate the average value obtained by dividing the sum of the weight values ​​set for each of the multiple installation locations by the number of multiple recording media, and to allocate the recording destination for each video data based on the determined combination. Specifically, the control unit 10 may be configured to determine a combination of eight weight values ​​so as to approximate the average value obtained by dividing the sum of the weight values ​​set for each of the eight installation locations (22) by the number of first recording media 4A and second recording media 4B (2) (11), and to allocate the recording destination for each video data based on the determined combination.

[0056] For example, as described above, the control unit 10 combines the maximum weight value: 5 and the minimum weight value: 1 into one combination, and assigns the recording destination of the two video data acquired by the first camera 2A and the fourth camera 2D corresponding to this combination to the first recording medium 4A. On the other hand, as described above, the control unit 10 combines the maximum weight value: 5 and the minimum weight value: 1 into another combination from among the multiple weights (second camera: 3, third camera: 3, fifth camera: 2, sixth camera: 2, seventh camera: 1, eighth camera: 5) excluding the already combined weight value (5,1), and assigns the recording destination of the two video data acquired by the eighth camera 2H and the seventh camera 2G corresponding to this other combination to the second recording medium 4B.

[0057] Furthermore, the control unit 10 selects the maximum weight value: 3 and the minimum weight value: 2 from among the multiple weights (second camera: 3, third camera: 3, fifth camera: 2, sixth camera: 2), excluding the already combined weight values ​​(5, 1, 5, 1), and assigns the recording destination of the two video data acquired by the second camera 2B and fifth camera 2E corresponding to this single combination to the first recording medium 4A. On the other hand, the control unit 10 selects the maximum weight value: 3 and the minimum weight value: 2 from among the multiple weights (third camera: 3, sixth camera: 2), excluding the already combined weight values ​​(5, 1, 5, 1, 3, 2), and assigns the recording destination of the two video data acquired by the third camera 2C and sixth camera 2F corresponding to this single combination to the second recording medium 4B. As a result, the control unit 10 records four motion image data files on the first recording medium 4A, corresponding to the weighting value combination of 5,1 from the first camera 2A and the fourth camera 2D, and the weighting value combination of 3,2 from the second camera 2B and the fifth camera 2E. The control unit 10 also records four motion image data files on the second recording medium 4B, corresponding to the weighting value combination of 5,1 from the eighth camera 2H and the seventh camera 2G, and the weighting value combination of 3,2 from the third camera 2C and the sixth camera 2F. In this way, the vehicle image recording system 1 can evenly record multiple motion image data files obtained from multiple cameras onto multiple recording media.

[0058] Furthermore, in the above embodiment, the control unit 10 repeatedly executes the second process according to the number of recording media to allocate recording destinations for each video data, for the remaining weights after excluding the weight values ​​that have already been combined by the first and second processes described later, but it is not limited to this. For example, if the number of weights corresponding to the installation locations of the multiple cameras is an even number Na (Na: 1 to Na) and the number of recording media is 2, the control unit 10 may determine a combination of the nth (n: 1 to Na / 2) weight value from the top and the nth weight value from the bottom among the weights assigned in order of magnitude from Na to 1, and then alternately allocate the recording destinations for the two video data acquired by the two cameras corresponding to the determined combination to the two recording media. Furthermore, the control unit 10 may be configured such that, if the number of weights assigned according to the installation locations of the multiple cameras is an odd number Nb (Nb: 1 to Nb), and the number of recording media is 2, it determines a combination of the nth weight from the top (n: 1 to (Nb+1) / 2) and the nth weight from the bottom among the weights assigned in order of magnitude from Nb to 1, and alternately allocates the recording destinations of the two video image data acquired by the two cameras corresponding to the determined combination to the two recording media. [Explanation of Symbols]

[0059] 1. Vehicle image recording system 2A Camera 1 2B Second Camera 2C Third Camera 2D 4th Camera 2E Fifth Camera 2F Camera No. 6 2G 7th Camera 2H Camera 8 4A First recording medium 4B Second recording medium 3. Main unit 10 Control Unit 11 1st Judgment Section 12 Second Judgment Section V Vehicle

Claims

1. Multiple cameras mounted on the vehicle capture moving images and acquire moving image data, It comprises a main unit that detachably holds multiple recording media, The main unit device is The control unit records the multiple motion image data acquired by the multiple cameras onto the multiple recording media. Each of the aforementioned cameras The settings for the video are determined according to the installation location in the vehicle. The control unit, The recording destination for each video data is determined from a plurality of recording media based on weighting according to the installation location of each camera. A vehicle image recording system characterized by the following features.

2. The control unit, A first determination unit determines whether the total amount of video data acquired per unit time from multiple cameras exceeds the amount of single data that can be written per unit time to one of the multiple recording media, If the first determination unit determines that the total amount of motion image data exceeds the amount of data written to a single recording medium, the system includes a second determination unit that determines whether the total amount of motion image data exceeds the sum of the total amount of data that can be written per unit time to all of the multiple recording media, If the second determination unit determines that the total amount of motion image data does not exceed the sum of the total amount of data to be written, the recording destination for each motion image data is determined from the plurality of recording media based on the weighting. The vehicle image recording system according to claim 1.

3. The control unit, If the second determination unit determines that the total amount of video data exceeds the total amount of data to be written, the setting value set for each camera is changed so that the amount of video data decreases. The vehicle image recording system according to claim 2.

4. The control unit, The combination of multiple weight values ​​is determined so as to approximate the average value obtained by dividing the sum of the weight values ​​set for each of the multiple installation locations by the number of the multiple recording media, and the recording destination for each of the video data is allocated based on the determined combination. The vehicle image recording system according to claim 1.

5. The control unit, A first process involves combining the maximum weight value and the minimum weight value from among the multiple weights corresponding to the installation locations of the multiple cameras, assigning the recording destination of the two video data images acquired by the two cameras corresponding to that combination to one of the multiple recording media, The second process involves taking the maximum weight value and the minimum weight value from among the multiple weights, excluding the weight values ​​that have already been combined, to form another combination, and assigning the recording destination of the two video data images acquired by the two cameras corresponding to that other combination to another of the multiple recording media, Of the multiple weights, the second process is repeatedly executed for the remaining weights, excluding the weights already combined by the first and second processes, in accordance with the number of multiple recording media, to allocate the recording destination for each of the video data. The vehicle image recording system according to any one of claims 1 to 4.

6. The control unit, Multiple video data files are recorded simultaneously on the recording medium determined to be the recording destination for the aforementioned video data files. When recording multiple video data images onto the recording medium, if the recording capacity of the recording medium is exceeded, the video data images recorded on the recording medium will be overwritten with the oldest video data images recorded in chronological order. The vehicle image recording system according to any one of claims 1 to 4.

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