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Advanced high speed Parallel Frame Synchronizer for high data rate Indian Remote sensing satellite series

机译:先进的高速并行帧同步器,用于高数据速率印度遥感卫星系列

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The Video data from remote sensing satellite is transmitted serially frame after frame. To mark the beginning of video data a known unique code is embedded at the beginning of the video data frame. This is known as Frame Synchronizer code. Pseudo-Noise sequences are chosen as frame synchronizer codes as they are easy to generate, detect and have auto correlation property. Generally, for all Indian Remote sensing satellite series 127 bits Pseudo-Noise sequence is chosen as frame synchronizer code. On-board the satellite, the video data buffering is in serial fashion and for appropriate processing it is required to be formatted in data packets. Hence, data formatting is done onboard the satellite and then the Pulse Coded Modulated data is transmitted to ground station. The previous Indian Remote Sensing Satellites series has data rate of 105 Mbps. The Present data rate of Radar imaging satellite-1 (RISAT-1) is 640MBps. In order to accommodate such high data rates in the limited bandwidths, the video data is transmitted in Right hand Circular Polarization (RHCP) and Left Hand Circular Polarization (LHCP). The QPSK modulation is used for video data transmission. Hence at such high data rates an advanced high speed frame synchronizer is required to cater to such high data rates. The advanced parallel processing technique of frame synchronism, detection and monitoring is unique as it doubles the operating frequency of the Frame synchronizer. Also with the same hardware, the frequency response of the hardware circuit can be doubled. If the maximum operating frequency is ‘f’ Hz then using Advanced Parallel Frame synchronizer technique, the operating frequency response is doubled to ‘2f’ Hz using the same hardware chip. In this paper Advanced frame synchronizer circuit is been implemented and is put to use to archive video data from Indian Radar Imaging Satellite-1.
机译:来自遥感卫星的视频数据逐帧串行传输。为了标记视频数据的开始,在视频数据帧的开始处嵌入了一个已知的唯一代码。这称为帧同步器代码。选择伪噪声序列作为帧同步器代码,因为它们易于生成,检测并具有自动相关属性。通常,对于所有印度遥感卫星系列,选择127位伪噪声序列作为帧同步器代码。在卫星上,视频数据缓冲是以串行方式进行的,并且为了进行适当的处​​理,需要将其格式化为数据包。因此,在卫星上完成数据格式化,然后将脉冲编码调制数据发送到地面站。先前的印度遥感卫星系列的数据速率为105 Mbps。雷达成像卫星1(RISAT-1)的当前数据速率为640MBps。为了在有限的带宽中容纳如此高的数据速率,视频数据以右旋圆极化(RHCP)和左旋圆极化(LHCP)传输。 QPSK调制用于视频数据传输。因此,在这样的高数据速率下,需要先进的高速帧同步器来迎合这样的高数据速率。帧同步,检测和监视的先进并行处理技术是独特的,因为它使帧同步器的工作频率加倍。同样在相同的硬件下,硬件电路的频率响应也可以加倍。如果最大工作频率为“ f” Hz,则使用高级并行帧同步器技术,使用相同的硬件芯片,工作频率响应将翻倍至“ 2f” Hz。本文实现了高级帧同步器电路,并将其用于存档来自印度雷达成像卫星1号的视频数据。

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