当卫星有效载荷的新需求满足新的滤波器结构和技术时

H. Leblond, J. Villemazet, J. Cazaux, D. Pacaud, J. Herren, L. Rigaudeau, L. Lapierre, D. Baillargeat, P. Blondy, S. Bila, S. Verdeyme, C. Delage, C. Quendo, J. Favennec, B. Potelon, É. Rius, F. Seyfert, S. Pacchini
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引用次数: 6

摘要

为了应付市场的经济和技术需求,并与地面网络竞争,卫星营办商和制造商将需要升级其卫星和服务。目前,大多数商业卫星的有效载荷都是为预定服务而设计的,缺乏灵活性。未来的通信卫星必须变得更加灵活,并应以最低的成本提供能力。即将到来的新需求将对卫星有效载荷级别的体系结构产生重大影响。射频和微波滤波器是受衍生设备规格影响最大的滤波器之一。所需的接近有用带宽的带外抑制将变得更加严格(优于40 dBc),同时与目前使用的重型机械腔相比,尺寸和质量将节省30%以上。先进的技术,如陶瓷3D立体光刻或表面集成波导技术在本文中提出的是非常有前途的解决方案,以克服这些要求。此外,可调滤波器可以通过在频率计划和/或带宽上提供更大的灵活性来简化有效负载架构。目前,柔性滤波器还不能用于空间设备,但本文提出的一些新技术,如MEMS技术或基于陶瓷的柔性滤波器,现在已经具备了适应空间环境约束的能力。最后,新的合成方法技术可以帮助节省未来OMUX设备的质量(30%或更多)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
When new needs for satellite payloads meet with new filters architecture and technologies
To cope with the economical and technical demands of the market and to compete with terrestrial networks, satellite operators and manufacturers will need to upgrade their satellites and services. Nowadays, most of commercial satellite payloads are designed for a predetermined service and lack flexibility. Future communication satellites have to become more flexible and shall provide capacity at the lowest cost. The upcoming new needs lead to a major impact on the architecture at satellite payload level. RF and microwave filters are one of the most affected by the derived equipment specifications. The required out-of-band rejection close to the useful bandwidth will become more stringent (better than 40 dBc) while saving size and mass by more than 30% compared to the heavy mechanical cavities used today. Advanced technologies, like ceramic 3D stereolithography or Surface Integrated Waveguide technology presented in this paper are very promising solutions to overcome these requirements. Moreover, tunable filters could be a relevant option to simplify payload architectures by giving more flexibility on the frequency plan and/or bandwidth. Today, agile filters are not available in space equipments but some new technologies presented in this paper, such as MEMS technologies or ceramic based flexible filters, have now the capability to comply with space environment constraints. Finally, new synthesis method techniques could help saving mass (by 30% or more) of future OMUX equipments.
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