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First results of innovative mobile near-field antenna measurement system for extreme large DUTs

机译:适用于超大型DUT的创新型移动近场天线测量系统的首批成果

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Antenna measurement facilities face their physical limits with the growing size of today's large and narrow packed antenna farms of telecom satellites but also of large unfurlable reflector antennas for low frequency telecom applications. The special operational constraints that come along when measuring such large future antennas demand for new measurement approaches, especially if the availability or realization of present measurement systems with large anechoic chambers is not an option.This paper presents a new system called PAMS (Portable Antenna Measurement System). The most characteristic part of PAMS is that the RF instrumentation is installed inside a gondola that is positioned by an overhead crane. The gondola is equipped with one or several probes to scan the near-fields of the antenna under test. With a modified crane control the gondola can be placed anywhere within the working space of the crane, which is considered as being giant in comparison to measurement volumes of existing large antenna test facilities. The whole system supports but is not limited to common classical near-field scanning techniques. Thanks to new near-field to farfield transformations the system can deal with arbitrary free form scanning surfaces and probe orientations allowing measurements that have been constrained by the classical nearfield theory so far. The paper will explain the PAMS concept on system level and will give an overview of its operational features. First promising measurement results of the core technologies are shown. Verification measurements are currently on-going.
机译:随着当今大型和狭窄的电信卫星密集天线场以及用于低频电信应用的大型无翻折反射天线的规模不断扩大,天线测量设施面临其物理极限。在测量如此大的未来天线时会遇到特殊的操作限制,需要新的测量方法,尤其是在无法选择或不使用具有大消声室的现有测量系统的情况下。本文介绍了一种称为PAMS(便携式天线测量)的新系统。系统)。 PAMS最具特色的部分是,RF仪器安装在吊车内部,吊车由高架吊车定位。吊船配有一个或多个探头,可扫描被测天线的近场。使用改进的起重机控制装置,可以将吊船放置在起重机工作空间内的任何位置,与现有大型天线测试设备的测量量相比,该缆车被认为是巨大的。整个系统支持但不限于常见的经典近场扫描技术。由于采用了新的近场到远场转换技术,该系统可以处理任意自由形式的扫描表面和探头方向,从而可以进行迄今为止受经典近场理论约束的测量。本文将在系统级别上解释PAMS概念,并概述其操作功能。显示了核心技术的第一个有希望的测量结果。验证测量目前正在进行中。

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