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81.
传统呼叫中心升级到IP网络呼叫中心,往往采用H.323协议。而采用H.323在IP网络呼叫中心实现CSTA呼叫模型有一定难度。本提出H.450和H.245两种实现方式,并对两进行分析和比较。 相似文献
82.
With the continuous improvement of Synthetic Aperture Radar (SAR) resolution,interpreting the small targets like aircraft in SAR images becomes possible and turn out to be a hot spot in SAR application research.However,due to the complexity of SAR imaging mechanism,interpreting targets in SAR images is a tough problem.This paper presents a new aircraft interpretation method based on the joint time-frequency analysis and multi-dimensional contrasting of basic structures.Moreover,SAR data acquisition experiment is designed for interpreting the aircraft.Analyzing the experiment data with our method,the result shows that the proposed method largely makes use of the SAR data information.The reasonable results can provide some auxiliary support for the SAR images manual interpretation. 相似文献
83.
GEIS(Grid Based Emergency Inter-Act System)是一个基于主体网格的城市应急联动与社会综合服务系统,通过主体网格和通信系统将治安、消防、卫生急救、交通、公共设施,自然灾害等突发事件的应急联动与综合服务,调度集成在一个管理平台中,通过共享指挥平台和基础信息,实现统一接处警,统一指挥,联合行动,快速反应,为市民提供更加便捷的紧急救援及相关服务,为政府科学决策和处置各种紧急与灾害事件提供技术支持为城市公共安全提供技术保障。GEIS的一个突出优势是将范例推理(Case Base Reasoning,CBR)与规则推理(Rule Base Reasoning,RBR)两种人工智能技术相结合,实现了快速预案支持,为科学决策打下良好基础,目前,GEIS已经应用到抗洪抢险和交通事故处理中,效果表明它具有跨平台性好,稳定性强,响应速度快,易操作的独特优势。 相似文献
84.
Baoju Li Zitao Wang Zhuangzhuang Gao Jinquan Suo Ming Xue Yushan Yan Valentin Valtchev Shilun Qiu Qianrong Fang 《Advanced functional materials》2023,33(16):2300219
Covalent organic frameworks (COFs) are proposed as promising candidates for engineering advanced molecular sieving membranes due to their precise pore sizes, modifiable pore environment, and superior stability. However, COFs are insoluble in common solvents and do not melt at high temperatures, which presents a great challenge for the fabrication of COF-based membranes (COFMs). Herein, for the first time, a new synthetic strategy is reported to prepare continuous and intact self-standing COFMs, including 2D N-COF membrane and 3D COF-300 membrane. Both COFMs show excellent selectivity of H2/CO2 mixed gas (13.8 for N-COF membrane and 11 for COF-300 membrane), and especially ultrahigh H2 permeance (4319 GPU for N-COF membrane and 5160 GPU for COF-300 membrane), which is superior to those of COFMs reported so far. It should be noted that the overall separation performance of self-standing COFMs exceeds the Robeson upper bound. Furthermore, a theoretical study based on Grand Canonical Monte Carlo (GCMC) simulation is performed to explain the excellent separation of H2/CO2 through COFMs. Thus, this facile preparation method will provide a broad prospect for the development of self-standing COFMs with highly efficient H2 purification. 相似文献
85.
某电磁屏蔽方舱的优化设计 总被引:1,自引:0,他引:1
介绍方舱舱体的屏蔽要求、屏蔽原理、屏蔽效能的测试及计算方法,对某电磁屏蔽方舱进行了测试,针对方舱的门屏蔽效能不足的问题进行了详细的分析,并提出改进建议,比对改进前后的测试结果,提出进一步优化设计的设想. 相似文献
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Rong Zhang Xiujun Wang Zhen Zhang Wendi Zhang Junqi Lai Siqi Zhu Yunfei Li Yong Zhang Kecheng Cao Song Qiu Qi Chen Lixing Kang Qingwen Li 《Advanced functional materials》2023,33(41):2301864
High current carrying capacity and high conductivity are two important indicators for materials used in microscale electronics and inverters. However, it is challenging to obtain high conductivity and high current carrying capacity at the same time since high conductivity requires a weakly bonded system to provide free electrons, while high current carrying capacity requires a strongly bonded system. In this paper, CuI@SWCNT networks by filling the single-walled carbon nanotubes (SWCNTs) with CuI is ingeniously prepared. CuI@SWCNT shows good stability due to the confinement protection of SWCNTs. Through the host-guest hybridization, CuI@SWCNT networks exhibit a current carrying capacity of 2.04 × 107 A cm−2 and a conductivity of 31.67 kS m−1. Their current carrying capacity and conductivity are significantly improved compared with SWCNT. The Kelvin probe force microscopy measurements show a drop of surface potential energy after SWCNT filled with CuI, indicating that the CuI guest molecules regulate the position of the Fermi level of SWCNTs, increasing carrier concentration, achieving high conductivity and high current carrying capacity. This study offers ideas and solutions for the regulation of high-performance carbon tube networks, which hold great promise for future applications in carbon-based electronic devices. 相似文献
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