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Error Propagation Algorithm for Reduction of Errors Due to Total Load and Line Load in a Plasma Panel Display

机译:用于减少等离子面板显示器中总负载和线路负载引起的错误的错误传播算法

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The displayed gray level of a plasma display panel (PDP) is often different from the intended target gray level because the displayed level is affected by the load of the panel. The effect of the load on the displayed gray level is decomposed into three factors: total load; line load magnitude; and line load distribution. Previous attempts to reduce this difference (i.e., error) have achieved only limited success because they have not taken three factors into consideration altogether. This paper proposes a new method that compensates for the error caused by all three factors. The proposed method first attempts to compensate for the error caused by line load magnitude and distribution. To this end, the error generated by one sub-field of a PDP is propagated to and compensated for by the remaining sub-fields. The amount of the error is reduced for every incidence of error propagation and, consequently, the final amount of error is reduced to a negligible level. To reduce the computational complexity for the evaluation of the amount of the error caused by the line load distribution, an iterative method is proposed to derive the effect of line load distribution on each cell from its adjacent cell. When sub-field coding is completed for a whole cells on a panel, total load of each sub-field is obtained and the error caused by total load is compensated for by controlling the number of sustain pulses for each sub-field. A significant error reduction is achieved, which shown by simulations and experiments with a 42-in. PDP set, including 91.2% reduction of the mean absolute error obtained through simulations and 69.7% reduction of luminance variation range caused by the load variation in experiments.
机译:等离子显示面板(PDP)的显示灰度级通常与预期的目标灰度级不同,因为显示的灰度级受面板负载的影响。负载对显示的灰度级的影响被分解为三个因素:总负载;线路负载大小;和线路负载分配。先前减小这种差异(即错误)的尝试仅取得了有限的成功,因为它们没有完全考虑到三个因素。本文提出了一种新的方法来补偿由所有三个因素引起的误差。所提出的方法首先尝试补偿由线路负载幅度和分布引起的误差。为此,由PDP的一个子场产生的误差被传播到剩余子场并由剩余子场补偿。对于每次错误传播,错误的数量都会减少,因此,最终的错误数量会减少到可以忽略的水平。为了降低评估线负载分布引起的误差量的计算复杂度,提出了一种迭代方法,以从其相邻单元中得出线负载分布对每个单元的影响。当针对面板上的整个单元完成子场编码时,获得每个子场的总负载,并且通过控制每个子场的维持脉冲的数量来补偿由总负载引起的误差。通过42英寸的仿真和实验可以显着降低误差。 PDP设置包括通过仿真获得的平均绝对误差减少91.2%,以及由负载变化引起的亮度变化范围减少69.7%。

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