A unified parameterization technique for TFT-LCD panel design optimization

Hsuan-Ming Huang, Yiming Li
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引用次数: 4

Abstract

Display is the most power-hungry component in electronics industry. Power-efficient design is strongly required in thin film transistor liquid-crystal display (TFT-LCD) portable products. This work proposes a unified parameterization technique for modeling and multi-objective optimization of TFT-LCD panel using a two-stage response surface model (RSM) and genetic algorithm (GA). To achieve designing specification in circuit and system levels with minimal power consumption simultaneously, a power-delay product is considered as the object function of the TFT-LCD panel optimization. Simulation-validated RSMs and GA are thus implemented into a unified optimization framework for the design optimization problem. Comparing with the conventional design flow using CAD tools, a 21.5% reduction in the power-delay of TFT-LCD panel is achieved with 95% accuracy. Moreover, the time required for the optimization process is significantly reduced by 288 times. We notice that the proposed unified parameterization technique is object flexible and can further optimize the multi-objective system performances (i.e. crosstalk, leakage current, brightness, etc.). The unified parameterization framework may benefit the high performance display panel design in the photonics industry.
TFT-LCD面板设计优化的统一参数化技术
显示器是电子工业中最耗电的部件。薄膜晶体管液晶显示(TFT-LCD)便携式产品对节能设计提出了强烈的要求。本文提出了一种基于两阶段响应面模型(RSM)和遗传算法(GA)的TFT-LCD面板统一参数化建模和多目标优化技术。为了以最小的功耗同时达到电路级和系统级的设计要求,将功率延迟积作为TFT-LCD面板优化的目标函数。仿真验证的rsm和遗传算法被实现到一个统一的优化框架中,用于设计优化问题。与使用CAD工具的传统设计流程相比,TFT-LCD面板的功率延迟降低了21.5%,精度达到95%。此外,优化过程所需的时间显著减少了288倍。我们注意到,所提出的统一参数化技术具有对象柔性,可以进一步优化多目标系统性能(如串扰、漏电流、亮度等)。统一的参数化框架将有利于光电子工业中高性能显示面板的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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