The present invention relates to a house change judgment method, a house change judgment program, a method of generating an image for house change judgment, and an image for house change judgment.
The below-mentioned documents propose using aerial surveying technology to make a judgment or the like as to whether or not a fixed asset has been changed. Conventionally, a high-resolution image or digital surface model (DSM) data is acquired from an aircraft or the like at two different time points, and those images or pieces of data of the two time points are compared to each other, to thereby judge whether or not a house has been changed between the two time points.
In comparing high-resolution images, there is a problem that registration is difficult to perform with high accuracy, and also, there is a problem that it is difficult to set a threshold for judging whether or not there is a variation because pixel data, such as brightness value, varies depending on an image-taking condition or the like even if no variation has occurred in a house. For this reason, it is difficult to accurately perform automatic judgment regarding a house change, and a person may need to perform a task of spotting a variation in house by making a visual check of the entire image, which is troublesome.
Further, in order to make a judgment regarding a house change by comparing high-resolution images or DSMs, image-taking or data acquisition from above by an aircraft or the like needs to be performed not only at a time point at which a judgment result is required but also at a past time point, such as one year ago or so. Accordingly, there is a problem that, in a region for which the image-taking or the data acquisition has been performed for the first time, it is impossible to make a judgment regarding a house change until the image-taking or the data acquisition is performed again, for example, one year later.
The present invention has been made in order to solve the above-mentioned problems, and therefore has an object to provide a house change judgment method, a house change judgment program, a method of generating an image for house change judgment, and an image for house change judgment, which enable detection of a house change with a relatively low task load, even in a case where image-taking or data acquisition from above has been performed only once.
A house change judgment method according to the present invention includes: a house region extraction step of extracting a house region in which a house exists from a judgment target region based on house shape data acquired in advance; a feature region extraction step of extracting, based on digital surface model data expressed by an altitude of an above-ground surface including a feature, a feature region in which the feature exists, the digital surface model data being acquired from above with regard to each point within the judgment target region; and a candidate region presentation step of comparing the house region and the feature region to obtain a difference region therebetween, and presenting the difference region, to a person who makes a judgment regarding a house change, as a candidate region of house change occurrence between a time point at which the house shape data is acquired and a time point at which the digital surface model data is acquired.
The feature region extraction step may include a normalization step of subtracting, from the altitude indicated by the digital surface model data, an altitude of a ground surface excluding the feature, and generating height data of the feature, and the feature region extraction step may include extracting the feature region based on the height data of the feature.
In addition, the candidate region presentation step may include displaying a ground surface image photographed from above in the candidate region in a selective manner.
A house change judgment program according to the present invention causes a computer to execute: a house region extraction procedure of extracting a house region in which a house exists from a judgment target region based on house shape data acquired in advance; a feature region extraction procedure of extracting, based on digital surface model data expressed by an altitude of an above-ground surface including a feature, a feature region in which the feature exists, the digital surface model data being acquired from above with regard to each point within the judgment target region; and a candidate region presentation procedure of comparing the house region and the feature region to obtain a difference region therebetween, and presenting, to a person who makes a judgment regarding a house change, the difference region as a candidate region of house change occurrence between a time point at which the house shape data is acquired and a time point at which the digital surface model data is acquired.
A method of generating an image for house change judgment according to the present invention includes: a house region extraction step of extracting a house region in which a house exists from a judgment target region based on house shape data acquired in advance; a feature region extraction step of extracting, based on digital surface model data expressed by an altitude of an above-ground surface including a feature, a feature region in which the feature exists, the digital surface model data being acquired from above with regard to each point within the judgment target region; and an image-for-house-change-judgment generation step of comparing the house region and the feature region to obtain a difference region therebetween, setting the difference region as a candidate region of house change occurrence between a time point at which the house shape data is acquired and a time point at which the digital surface model data is acquired, and generating the image for house change judgment in which the candidate region is displayed in a discriminable manner in a ground surface image photographed from above.
The feature region extraction step may include a normalization step of subtracting, from the altitude indicated by the digital surface model data, an altitude of a ground surface excluding the feature, and generating height data of the feature, and the feature region extraction step may include extracting the feature region based on the height data of the feature.
The image for house change judgment may be an image in which the ground surface image is displayed in the candidate region in a selective manner, and the ground surface image is hidden in a region other than the candidate region.
An image for house change judgment according to the present invention is generated by the method of generating an image for house change judgment described above.
According to the present invention, by using the house shape data acquired in advance, it is possible to extract the candidate region in which the house has been changed based on the digital surface model (DSM) data obtained at a single time point. In general, the person who makes a judgment regarding a house change only needs to judge whether or not a house change has occurred in the candidate region, and hence a reduced task load may be achieved.
Hereinafter, description is given of a mode for carrying out the present invention (hereinafter, referred to as embodiment) with reference to the drawings.
Next, as illustrated in
Meanwhile, with regard to the judgment target region, house polygon data 40 is acquired in advance at a time point T0 which precedes T1 (
Note that although description has been given of a configuration in which house shape data acquired in advance serves as the house polygon data 40, the house shape data may be the house raster data 46. For example, if the house raster data 46 generated from the house polygon data 40 is stored, and, in the following house change judgment processing, the house raster data 46 is used as the house shape data, there is no need to perform the rasterization processing S44 for each house change judgment processing.
Next, the binarized NDSM 36 and the house raster data 46 are compared to obtain difference regions between the two (differencing processing S50 of
The candidate region data 52 is displayed as an image on an image display device 60, and the candidate regions are presented to a person who makes a judgment regarding a house change. With this configuration, the person who makes a judgment regarding a house change can essentially detect a house change by examining a portion corresponding to the candidate region in a high-resolution above-ground image or the like. In other words, there is no need to examine the entirety of a high-resolution image, and hence the workload for the person who makes a judgment regarding a house change may be reduced. For example, at the time of displaying the candidate region data 52 as an image, the candidate region of new construction and the candidate region of disappearance may be displayed in a discriminable manner by using different colors, which allows the person who makes a judgment regarding a house change to perform the change judgment more easily.
Further, in this embodiment, a composite image may be generated based on the image representing the candidate region data 52 and, for example, an orthoimage representing orthoimage data 70 of the above-ground features which is created when the DSM is acquired at the time point T1 (composite image generation processing S72 illustrated in
Note that for the composite image, another mode may be employed, such as a mode in which the outline of the candidate region is superimposed onto the orthoimage for display.
The above-mentioned house change judgment method may be implemented as a program to be executed on a computer. By executing the program, the computer extracts the feature region 38 in which a feature exists from the judgment target region based on the DSM 20 acquired by an aircraft or the like, and on the other hand, extracts the house region 48 in which a house exists from the judgment target region based on the house polygon data 40. Then, the computer compares the house region 48 and the feature region 38, and then displays, on the image display device 60, a difference region therebetween as a candidate region of house change occurrence between the time point T0 at which the house polygon data 40 is acquired and the time point T1 at which the DSM 20 is acquired, to thereby present the candidate region to the person who makes a judgment regarding a house change. On this occasion, the computer may also perform processing in which an orthoimage of an above-ground feature which is obtained from the orthoimage data 70 is combined with the candidate region for display in a selective manner.
Further, in the above-mentioned embodiment, description has been given of a case where the composite image to be presented to the person who makes a judgment regarding a house change (image for house change judgment) is displayed on the image display device 60 such as a display, but the image for house change judgment may be printed on such a medium as paper.
Number | Date | Country | Kind |
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2007-281276 | Oct 2007 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2008/069610 | 10/29/2008 | WO | 00 | 4/26/2010 |