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Copper, fiber-optic and carbon nanotube technologies for next generation military information systems

机译:用于下一代军事信息系统的铜,光纤和碳纳米管技术

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Key parameters such as power dissipation, switching delay, crosstalk and error rates are important for overall information system performance and next generation military applications such as communications, data transfer and beam forming networks for intelligence, surveillance and reconnaissance (ISR) platforms. For the DoD and aerospace community, the electronic battlespace has evolved to a wideband environment that continuously expands. Next-generation electronically scanned array (ESA) requirements will include receive apertures with high gain, low sidelobes, continuous wideband, dual polarization multifunctional output, transmit power similar to or greater than current systems and transmit/receive (T/R) modules located at the array element. RF photonics insertion into antenna systems may expand in areas including RF pre-processing and filtering, RF front-end technology, analog-to-digital conversion and beam forming networks for both manned and unmanned ISR applications. Microwave photonic and carbon nanotube (CNT) links may appear frequently in future military antenna systems as photonic and CNT link performance continues to improve, The selection and integration of next-generation high-speed interconnect technologies will include an intelligent combination of copper, fiber optics and the emerging field of carbon nanotube technology. We will present a comparison of the physical and electromagnetic properties of copper, fiber optics and carbon nanotubes and some of the requirements for next-generation high-speed interconnect technologies for manned and unmanned system applications.
机译:诸如功耗,切换延迟,串扰和错误率之类的关键参数对于信息系统的整体性能以及下一代军事应用(例如用于情报,监视和侦察(ISR)平台的通信,数据传输和波束形成网络)非常重要。对于国防部和航空航天界来说,电子战空间已经演变为不断扩展的宽带环境。下一代电子扫描阵列(ESA)要求将包括具有高增益,低旁瓣,连续宽带,双极化多功能输出的接收孔径,与当前系统相似或更高的发射功率以及位于以下位置的发射/接收(T / R)模块数组元素。将射频光子学插入天线系统的领域可能会扩大,包括用于有人和无人ISR应用的RF预处理和滤波,RF前端技术,模数转换和波束形成网络。随着光子和CNT链接性能的不断提高,微波光子和碳纳米管(CNT)链接可能会在未来的军用天线系统中频繁出现。下一代高速互连技术的选择和集成将包括铜,光纤的智能组合。以及碳纳米管技术的新兴领域。我们将对铜,光纤和碳纳米管的物理和电磁特性以及载人和无人系统应用的下一代高速互连技术的一些要求进行比较。

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