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Renewable and Storage Energy Integration for Smart Grid Housing
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作者 A.R.Al-Ali Ayman El-Hag +2 位作者 Mujib Bahadiri Mustafa Harbaji Yousef Ali El Haj 《Journal of Electronic Science and Technology》 CAS 2012年第1期7-14,共8页
This paper presents the design, implementation and testing of an embedded system that integrates solar and storage energy resources to smart homes within the smart mierogrid. The proposed system provides the required ... This paper presents the design, implementation and testing of an embedded system that integrates solar and storage energy resources to smart homes within the smart mierogrid. The proposed system provides the required home energy by installing renewable energy and storage devices. It also manages and schedules the power flow during peak and off-peak periods. In addition, a two-way communication protocol is developed to enable the home owners and the utility service provider to improve the energy flow and the consumption efficiency. The system can be an integral part for homes in a smart grid or smart microgrid power networks. A prototype for the proposed system was designed, implemented and tested by using a controlled load bank to simulate a scaled random real house consumption behavior. Three different scenarios were tested and the results and findings are reported. Moreover, data flow security among the home, home owners and utility server is developed to minimize cyber-attaeks. 展开更多
关键词 Automatic meter reading energy manage- ment system smart gird smart home smart microgrid smart grid security solar energy.
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合成孔径声纳系统中基于目标表面统计描述的高效声散射模型 被引量:1
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作者 Nahid Nadimi Reza Javidan Kamran Layeghi 《Journal of Marine Science and Application》 CSCD 2020年第3期494-507,共14页
Acoustic scattering as the perturbation of an incident acoustic field from an arbitrary object is a critical part of the targetrecognition process in synthetic aperture sonar(SAS)systems.The complexity of scattering m... Acoustic scattering as the perturbation of an incident acoustic field from an arbitrary object is a critical part of the targetrecognition process in synthetic aperture sonar(SAS)systems.The complexity of scattering models strongly depends on the size and structure of the scattered surface.In accurate scattering models including numerical models,the computational cost significantly increases with the object complexity.In this paper,an efficient model is proposed to calculate the acoustic scattering from underwater objects with less computational cost and time compared with numerical models,especially in 3D space.The proposed model,called texture element method(TEM),uses statistical and structural information of the target surface texture by employing non-uniform elements described with local binary pattern(LBP)descriptors by solving the Helmholtz integral equation.The proposed model is compared with two other well-known models,one numerical and other analytical,and the results show excellent agreement between them while the proposed model requires fewer elements.This demonstrates the ability of the proposed model to work with arbitrary targets in different SAS systems with better computational time and cost,enabling the proposed model to be applied in real environment. 展开更多
关键词 Underwater acoustic scattering Synthetic aperture sonar(SAS) TEXTURE Local binary pattern(LBP) Target strength(TS) Discretization method
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