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991.
电力线信道的阻抗特性、信号衰减特性及噪声特性导致电力线通信的可靠性成为制约其广泛应用的重要因素。分析了低压配电网的物理拓扑结构和逻辑拓扑结构,结合我国低压集中抄表系统应用的工程特点,提出了一种基于图论生成树的电力线通信自动路由方法。该方法能够有效地建立起电力线通信网络路由,并根据信道变化动态地维护路由,保证了电力线网络的可靠性。实验测试表明了该路由方法的有效性、可靠性和实用性。 相似文献
992.
采用粒子群优化算法,以电压增益、共模抑制比、输入电阻平方根的三者乘积对输出电阻的比作为适应度函数,对差分 共射两级直接耦合电压串联负反馈放大电路中的电阻做自适应优化。结果显示,只要对电路交流指标加以约束,适应度函数值总会减小。当分别对增大电压增益和减小输出电阻进行限制后,电压增益总是尽量小,输出电阻总是尽量大,以使适应度函数在给定约束下取得最大。经EWB软件对优化参数仿真,结果满足线性放大要求。同时说明了可以调整适应度函数形式,找到最佳电路参数,以满足工程上对放大器指标的不同需求。 相似文献
993.
无线多媒体传感器网络WMSN因感知视频等信息的优势而被广泛应用,但受天气、光照等外因干扰,所采集视频图像常含有较为严重的噪声。因此,在低信噪比条件下进行视频图像去噪是保证WMSN视频监测有效性和可靠性的关键。在分析WMSN视频图像特征的基础上,首先对其进行周期性采集、分帧及帧差等预处理;然后对关键帧运用K SVD训练DCT冗余字典以充分稀疏表示图像特征,并采用基于残差比的改进型Batch OMP实现关键帧去噪及重构,而对残差帧则基于DCT冗余字典进行稀疏去噪处理;最后,叠加去噪后的关键帧和残差帧,从而整体上实现低信噪比WMSN视频图像的去噪及重构。实验表明,本算法能更加有效地、较为快速地滤除视频图像噪声,适用于低信噪比WMSN视频图像去噪。 相似文献
994.
提出了一种适用于无源射频识别RFID电子标签中多次可编程MTP非易失性存储器NVM的新型电流灵敏放大器结构。该电路在不增加面积的情况下具有低功耗、高速度、高可靠性和高灵敏度的优越性能。基于GSMC 0.13μm CMOS工艺下的仿真结果表明,新型灵敏放大器在-40℃~80℃的环境下具有很高的读取速度,且能够工作在低电压(0.8 V)下。在1.2 V工作电压、27℃室温下电路的读出延时是10.5 ns,平均功耗为6.1 μW@25MHz,分辨率可达到33 nA。 相似文献
995.
F. Bergaya 《Journal of Porous Materials》1995,2(1):91-96
Pillared clays (PC) generally present textural complexity, geometrical constraints and possible chemical heterogeneity by pillaring. As far as surface area and porosity measurements by physical adsorption of nitrogen are concerned, this overall complexity introduces interpretation difficulties. We consider two aspects of this problem in pillared clays.The textural complexity stems from the distribution of charge density, from the deformation of the host layers and from their entanglement. The microtexture is controlled by the wet preparation chemistry, to a large extent by the drying method as examplified by the titanium pillared montmorillonites.The geometrical constraints arise from the fact that the interlamellar space of the PC is (so far) microporous or just mesoporous. The small distance between the layers, of the order of one or a few molecular diameters, is therefore expected to perturb the arrangement of the pore filling molecules. The molecular confinement is a major source of underestimation of the total pore volume in the interlamellar space. It makes the surface area determination difficult and of little physical significance. Probably microporosity values are more valuable criterion of pillaring as shown in the titanium pillared samples.In addition to these two aspects, one has also to consider a possible chemical heterogeneity arising from the simultaneous presence of pillars, exchangeable ions and precipitated species. This can lead to a complex behaviour of surface area and microporosity as examplified by the mixed aluminium-iron pillared laponites. 相似文献
996.
采用线性低密度聚乙烯(LLDPE)、低密度聚乙烯(LDPE)作为阻燃体系的主体,用表面处理过的氢氧化镁(Mg(OH)2)作主阻燃剂,微胶囊化红磷作阻燃增效剂,重点探讨了Mg(OH)2和微胶囊化红磷的阻燃效果。结果表明:Mg(OH)2与红磷并用具有良好的协同效应,是LLDPE/LDPE的高效阻燃体系。 相似文献
997.
实验室试验表明,添加助剂的低汽气比一氧化碳低温变换催化剂,在保证活性和稳定性的基础上,明显地提高了选择性,其甲醇生成量可降为原来的1/4左右。 相似文献
998.
In a field study P and K uptake by two corn (Zea mays L.) genotypes which differed in root growth was investigated. The effect of differences in root growth on P and K uptake was assessed using a mechanistic-mathematical model which describes nutrient uptake by growing plant roots in soil. Nitrogen was applied at 0 and 227 kg ha–1 to Pioneer 3732 and B73xMo17 corn grown on Raub silt loam (fine-silty, mixed, mesic Aquic Argiudoll) and at 227 kg N ha–1 to these two genotypes on Chalmers silt loam (finesilty, mixed, mesic, Typic Haplaquoll). Root growth and P and K uptake by the two corn genotypes was measured 31, 47, 75 and 91 d after planting on the Raub and 31, 47, 61 and 75 d after planting on the Chalmers soil.Root growth and P and K uptake by B73xMo17 was greater than that of Pioneer 3732 on N-fertilized Raub soil. On Chalmers soil the difference in root growth between the two genotypes resulted in an increase in K but not P uptake. The higher soil P level of the Chalmers appears to have offset possible differences in P uptake due to root size. There were no differences between the two genotypes in either the percentage of roots with root hairs, or the density or length of root hairs. Phosphorus and K uptake calculated with the simulation models for both corn genotypes on both soils over each of three growth periods agreed with observed P (Y = 0.68X + 1.71; r = 0.944**) and K (Y = 0.88X + 15.52; r = 0.928**) uptake. Differences in P and K uptake between B73xMo17 and Pioneer 3732 resulted primarily from the difference in root growth in the topsoil. A high correlation was found between root surface area and P (r = 0.893**) and K (r = 0.928**) uptake by both corn genotypes on both the soils.Journal paper No. 10,316 Purdue Univ. Agric. Exp. Stn., W. Lafayette, In 47906. Contribution from the Dep. of Agron. This paper was supported in part by a grant from the Tennessee Valley Authority. 相似文献
999.
本文探索了一种煤矸石脱杂的新方法,考察了煤矸石粒度、焙烧温度、浸出温度、浸出剂浓度和浸出时间等条件对脱杂效果的影响。结果表明,低温焙烧盐酸浸出能有效地提高煤矸石中杂质的活性并加以脱除。 相似文献
1000.
John W. Drazin James A. Wollmershauser Heonjune Ryou Mason A. Wolak Edward P. Gorzkowski 《Journal of the American Ceramic Society》2020,103(1):60-69
Pressureless sintering approaches provide a simple avenue to manufacture dense ceramic parts with minimal processing equipment, but current pressureless sintering techniques have yet to demonstrate capabilities of producing dense ceramics while maintaining sub-50 nm grain sizes. Nanocrystalline yttria stablized zirconia ceramics were process from 4 mol% yttria stablized zirconia (4YSZ) nanopowders with a crystallite size of 7.5 nm using dry cold isostatic pressing (CIP) where powders are dried immediately prior to green compact formation and CIP vacuum bagging. It is shown that CIP pressures >75 000 psi (517 MPa) effectively remove pores larger than 100 nm and that pressureless sintering occurs at reduced temperatures for green densities ≥50%. Though the sintering kinetics are shown to be similar to other zirconia nanopowder sintering studies, the small initial crystallize size and reduced sintering temperature allowed densities as high as 97.2%, while retaining a ceramic grain size at or below 40 nm. Produced nanocrystalline 4YSZ ceramics with a grain size of 30.3 nm and a density of 96.3% had Vicker's hardnesses as high as 14.2 GPa and Vicker's indentation fracture resistance of 3.43 MPa·, demonstrating that simple processing approaches can be refined to fabricate nanocrystalline ceramics while maintaining high hardness and indentation fracture resistance. 相似文献