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The persistent haze weather in North China has aroused extensive attention to environmental protection. Among all pollution resources, the anthropogenic emission by fossil fuel power plants plays an important role. To assist the environmental protection administration monitoring fossil fuel power plants, we propose an effective approach in this paper to learn an integrated model for chimney and condensing...
The geometrical characteristic and low-level manually designed features are usually used to detect airports in optical remote sensing images. But it is insufficient to describe airport in low resolution and illumination environment. This paper presents a hard example mining algorithm to train the end-to-end deep convolutional neural network for airport detection in complex situation. Compared with...
Remote sensing images are with the characteristics of large width and sparse distribution of specific targets, so that the extraction of region proposal is necessary before detection. In this paper, we propose a new ship detection method on sea-background remote sensing images, which are generally influenced by clouds, waves and other inhomogeneities. Instead of exhaustive search, the core of our...
Reliable subpixel impervious surface area (ISA) mapping at medium resolution is essential but difficult due to the complexity of land cover patterns within the urban/peri-urban area. In this letter, we proposed a framework to optimize subpixel ISA mapping performance with adaptive integration of features from spectral, phenological, and spatial dimensions. We utilized the recursive feature elimination...
Ship target detection in optical remote sensing images has attracted more and more attention in the field of remote sensing. The ship target detection technology of optical remote sensing images is vulnerable to many factors, while the real data are difficult to contain various elements. In order to obtain the various situations in the large sea scenes, we develop a simulation system for high-resolution...
We present a design of a Compact Antenna Test Range (CATR) designed to operate from 50 up to 500 GHz, suitable for measuring high gains antennas, such as those required for mm-wave atmospheric remote sensing satellites. Drawing on experience from the QMUL CATR designed a decade ago, the team has electromagentically and mechanically designed a CATR with a 1 metre spherical dish and two small aspheric...
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