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Analyzing the Effect and Performance of Lossy Compression on Aeroacoustic Simulation of Gas Injector

机译:有损压缩对注气器空气声模拟的影响和性能分析

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Computational fluid dynamic simulations involve large state data, leading to performance degradation due to data transfer times, while requiring large disk space. To alleviate the situation, an adaptive lossy compression algorithm has been developed, which is based on regions of interest. This algorithm uses prediction-based compression and exploits the temporal coherence between subsequent simulation frames. The difference between the actual value and the predicted value is adaptively quantized and encoded. The adaptation is in line with user requirements, that consist of the acceptable inaccuracy, the regions of interest and the required compression throughput. The data compression algorithm was evaluated with simulation data obtained by the discontinuous Galerkin spectral element method. We analyzed the performance, compression ratio and inaccuracy introduced by the lossy compression algorithm. The post processing analysis shows high compression ratios, with reasonable quantization errors.
机译:计算流体动力学模拟涉及大量状态数据,由于数据传输时间而导致性能下降,同时需要较大的磁盘空间。为了缓解这种情况,已经开发了一种基于感兴趣区域的自适应有损压缩算法。该算法使用基于预测的压缩,并利用后续仿真帧之间的时间相干性。实际值和预测值之间的差被自适应地量化和编码。调整符合用户要求,包括可接受的不准确性,关注区域和所需的压缩吞吐量。使用通过不连续Galerkin谱元方法获得的模拟数据评估数据压缩算法。我们分析了有损压缩算法引入的性能,压缩率和不准确性。后处理分析显示出较高的压缩率,并具有合理的量化误差。

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