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Improving display quality by means of real-time image processing for multibeam CRTs

机译:通过多光束CRT的实时图像处理提高显示质量

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Abstract: In this paper we address the correction of the convergence error of a monochrome multi-beam Cathode Ray Tube (CRT) by means of digital video-signal processing. Correction of the convergence (horizontal misalignment) of the three electron beams with respect to each other in the CRT, will improve the resolution and brightness of the CRT. We apply the theory of fractional delay filtering to design a digital Finite Impulse Response (FIR) filter that is capable of interpolating the digital video signal. Emphasis is on small four-tap filters, to reduce the necessary amount of processing power. The variable filter has been implemented on a TMS320C80 signal processor to assess the performance of standard DSP hardware on this type of filtering. The analysis of four-tap fractional delay filters has led to useful designs in our application. The implementation on the TMS320C80 processor shows that the variable filter can be implemented with about 10 (parallel) instructions, yielding a maximum throughput of 16 M pixels/s on the TMS320C80 DSP at 40 MHz. We demonstrate (results of) a real-time DSP (TMS320C80) implementation of a variable delay video processing for horizontal convergence correction. The image quality, MTF and brightness are quite satisfactory and well in the diagnostic application area. !
机译:摘要:在本文中,我们通过数字视频信号处理解决了单色多光束阴极射线管(CRT)的会聚误差校正问题。在CRT中校正三个电子束相对于彼此的会聚(水平未对准)将提高CRT的分辨率和亮度。我们采用分数延迟滤波的理论来设计能够对数字视频信号进行插值的数字有限冲激响应(FIR)滤波器。重点是小型四抽头滤波器,以减少必要的处理能力。可变滤波器已在TMS320C80信号处理器上实现,以评估这种类型的滤波器上标准DSP硬件的性能。对四抽头分数延迟滤波器的分析导致了我们应用中的有用设计。在TMS320C80处理器上的实现表明,可变滤波器可以用大约10条(并行)指令来实现,从而在40 MHz的TMS320C80 DSP上产生16M像素/ s的最大吞吐量。我们演示了用于水平收敛校正的可变延迟视频处理的实时DSP(TMS320C80)实现。图像质量,MTF和亮度非常令人满意,并且在诊断应用领域中表现出色。 !

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