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RISAT- First Planned SAR Mission of ISRO

机译:RISAT-ISRO的第一个计划搜救任务

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SAR Payload of RISAT (Radar Imaging Satellite), the first SAR satellite from ISRO, is currently under development. This payload is based on active antenna technology, and it supports variety of resolution and swath requirements in C-band. Both conventional stripmap and scanSAR modes are supported with dual polarization operation. Additionally a quad polarization stripmap mode is provided for availing additional resource classification. In all these modes resolutions from 3m-50 m can be achieved with swath ranging 30 km -240 km. On experimental basis, a sliding spotlight mode is also available. The payload hardware is organized in such a way that that co and cross polarization images are available for any operating modes. Additionally, a quad polarization mode is also supported. Active array configuration of this payload called for development of many new technologies ranging from MMICS, TR modules, miniaturised power supplies, high speed digitisers, dual polarized printed antenna and distributed control systems. A completely new bus is being designed for aiding the payload operation. The RISAT spacecraft is configured around the payload to minimize the spacecraft weight, suitable for launching by ISRO's PSLV launcher. RISAT will be placed on dawn to dusk sun-synchronous polar orbit to ensure maximum solar power availability. All the basic building blocks have already crossed design stage and have undergone rigorous space qualification program. Presently a complete SAR with one tile has been integrated as design verification model and is under rigorous testing. This development ensured demonstration of end to end hardware, on-board control software and beam control behavior.
机译:ISRO的第一颗SAR卫星RISAT(雷达成像卫星)的SAR有效载荷目前正在开发中。该有效载荷基于有源天线技术,并且支持C波段中各种分辨率和条带要求。双极化操作支持传统的带状图和scanSAR模式。另外,提供了四极化带状图模式以利用附加的资源分类。在所有这些模式下,测距范围30 km -240 km均可实现3m-50 m的分辨率。在实验的基础上,还可以使用滑动聚光灯模式。有效负载硬件的组织方式使得共极化图像和交叉极化图像可用于任何操作模式。此外,还支持四极化模式。这种有效负载的有源阵列配置要求开发许多新技术,包括MMICS,TR模块,小型化电源,高速数字化仪,双极化印刷天线和分布式控制系统。正在设计一种全新的总线来辅助有效负载操作。 RISAT航天器围绕有效载荷进行配置,以最小化航天器的重量,适用于ISRO的PSLV发射器进行发射。 RISAT将被放置在从黎明到黄昏的太阳同步极地轨道,以确保最大限度地利用太阳能。所有基本构建块均已超过设计阶段,并经过了严格的空间鉴定计划。目前,已经集成了具有一个图块的完整SAR作为设计验证模型,并且正在严格测试中。这一发展确保了端到端硬件,车载控制软件和光束控制行为的演示。

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