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Effective Data Representation and Compression in Ground Data Systems

机译:地面数据系统中有效的数据表示和压缩

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Storing vast amounts of multidimensional telemetry data presents a challenge. Telemetry data being relayed from sensors to the ground station comes in the form of text, images, audio, and various other formats. Compressing this data would optimize bandwidth usage during transmission and reduce storage resources needed at the ground level. However, the multitude of heterogeneous data types present in telemetry data and the need for data precision makes compression quite difficult. The application of a single compression technique for all data types usually yields ineffective results. We will present a telemetry data compression algorithm that utilizes Discrete Fourier Transforms (DFTs) along with different compression algorithms for different data types, including Lempel-Ziv-Welch (LZW) and Flate (which combines LZW with adaptive Huffman coding) for textual and numerical data and JPEG coding for images. Although these algorithms do not yield the greatest compression ratios, the Portable Document Format (PDF) standard supports decoding of all of them, which allows us to write our encoded data streams directly to a PDF file. This approach alleviates the need for traditional database storage systems. It also standardizes and simplifies the data retrieval, decoding, and viewing process. This work results in packets-oriented telemetry data encapsulated with multiple compression stream algorithms, which can be decoded, rendered and viewed by any standard PDF viewer. This paper presents the aforementioned algorithms and its development status as applicable proof-of-concept prototypes.
机译:存储大量多维遥测数据呈现出挑战。从传感器转换到地面站的遥测数据以文本,图像,音频和各种其他格式的形式出现。压缩此数据将优化传输期间的带宽使用,并减少在地面所需的存储资源。然而,遥测数据中存在的多种异构数据类型以及对数据精度的需求使得压缩非常困难。对所有数据类型的单个压缩技术的应用通常产生无效结果。我们将介绍一个遥测数据压缩算法,它利用离散傅里叶变换(DFT)以及不同数据类型的不同压缩算法,包括LEMPEL-ZIV-WELCH(LZW)和流动(将LZW与Adaptive Huffman编码组合)用于文本和数值数据和JPEG编码图像。虽然这些算法不产生最大的压缩比,但是便携式文档格式(PDF)标准支持所有这些标准,但是所有这些都支持解码,这允许我们将编码的数据流直接写入PDF文件。这种方法减轻了对传统数据库存储系统的需求。它还标准化并简化了数据检索,解码和查看过程。这项工作导致针对具有多个压缩流算法封装的分组遥测数据,其可以由任何标准PDF查看器渲染和查看可以解码和查看。本文介绍了上述算法及其发展地位,作为适用的概念验证原型。

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