研究了在Ka频段上,宽带微带到波导的转换技术。转换通过波导-脊波导-绝缘子探针-微带线的方式实现。这样的实现方式具有插入损耗小、可密封、装配一致性好、可靠性高的优点。文中给出了转换的设计方法及脊波导参数的计算公式以计算转换...研究了在Ka频段上,宽带微带到波导的转换技术。转换通过波导-脊波导-绝缘子探针-微带线的方式实现。这样的实现方式具有插入损耗小、可密封、装配一致性好、可靠性高的优点。文中给出了转换的设计方法及脊波导参数的计算公式以计算转换的各项参数。设计完成后采用电磁场软件进行优化仿真,并根据仿真结果制作实物进行测试。最后给出了转换实物的测试数据。从测试数据可以看到,转换在整个Ka频段内具有良好的性能,插入损耗小于0.3 d B,驻波小于1.5。还可针对具体使用频段进行优化,以进一步提高性能。文中提出的转换完全能够满足实际工程应用,具有良好的应用前景。展开更多
In view of the problems of completely depending on rain, low and unstable yield and complicated planting of dry land foxtail millet, the light simplified cultivation techniques of wide row and double ridge with filmin...In view of the problems of completely depending on rain, low and unstable yield and complicated planting of dry land foxtail millet, the light simplified cultivation techniques of wide row and double ridge with filming, fertilizing and sowing on one for foxtail millet was formed through the integration of plastic film mulching technology and mechanized production technology by Institute of Millet crops of Hebei Academy of Agriculture and Forestry Sciences, and the techniques were introduced from the key technologies of pre-sowing preparation, sowing, supporting equipment, field management, harvesting, plastic film recycling.展开更多
文摘研究了在Ka频段上,宽带微带到波导的转换技术。转换通过波导-脊波导-绝缘子探针-微带线的方式实现。这样的实现方式具有插入损耗小、可密封、装配一致性好、可靠性高的优点。文中给出了转换的设计方法及脊波导参数的计算公式以计算转换的各项参数。设计完成后采用电磁场软件进行优化仿真,并根据仿真结果制作实物进行测试。最后给出了转换实物的测试数据。从测试数据可以看到,转换在整个Ka频段内具有良好的性能,插入损耗小于0.3 d B,驻波小于1.5。还可针对具体使用频段进行优化,以进一步提高性能。文中提出的转换完全能够满足实际工程应用,具有良好的应用前景。
基金Supported by the National Key Technology R&D Program(2014BAD07B01-02)the Science and Technology Demonstration Project of Bohai Granary in Hebei Provincethe Special Fund for Agro-scientific Research in Public Interest(201303133-1-6)~~
文摘In view of the problems of completely depending on rain, low and unstable yield and complicated planting of dry land foxtail millet, the light simplified cultivation techniques of wide row and double ridge with filming, fertilizing and sowing on one for foxtail millet was formed through the integration of plastic film mulching technology and mechanized production technology by Institute of Millet crops of Hebei Academy of Agriculture and Forestry Sciences, and the techniques were introduced from the key technologies of pre-sowing preparation, sowing, supporting equipment, field management, harvesting, plastic film recycling.