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L4-engine development for a super-ultra-low emissions vehicle

机译:L4-Engine开发用于超超低排放车辆

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Honda has developed technology to fulfill the strictest emissions standards to date. That is, we have developed the technology necessary to satisfy the state of California's SULEV (LEV-II) regulations. We were able to move from the conventional 600-cell, 4.3 mil three-way catalyst to a 1200-cell, 2.0 mil catalyst through the application of new canning technology. We were also able to achieve early catalyst light-off and improved conversion performance without increasing the precious metal content. However, it was not possible to satisfy the SULEV standards using only these improvements to the catalyst. It was also necessary for us to develop new emission control technology for the various stages of engine operation: cold, warm-up and post warm-up. Specifically, we developed technology that dramatically increases catalyst light-off speed by controlling intake air and ignition timing. Further, we developed technology to reduce exhaust emissions to the ultimate degree possible when the engine is cold and the catalyst is inactive. Also, in order to further improve the conversion performance of the catalyst once it is active, we developed a Secondary O2 Feedback Control System. This feedback system is an extremely high precision system that utilizes an adaptive sliding mode controller to identify various catalyst models in real time and predict the post-catalyst HEGO sensor output. The above technologies were used in combination to achieve the SULEV emissions standards.
机译:本田已开发出迄今为止最严格排放标准的技术。也就是说,我们开发了满足加利福尼亚州Sulev(Lev-II)法规所需的技术。我们能够通过应用新的罐头技术从传统的600池4.3密耳的三元催化剂从传统的600-19米隆的三元催化剂从常规的600-14密耳的三元催化剂移至1200℃。我们还能够在不增加贵金属含量的情况下达到早期催化剂脱离和改善的转化性能。然而,仅通过对催化剂的这些改进来满足SULEV标准。我们还有必要为发动机运行的各个阶段开发新的排放控制技术:寒冷,热身和预热后。具体地,我们开发了通过控制进气和点火正时显着提高催化剂脱离速度的技术。此外,当发动机冷却时,我们开发了技术以减少终极程度的终极程度,催化剂是无活性的。此外,为了进一步提高催化剂的转换性能,一旦它有效,我们开发了次级O2反馈控制系统。该反馈系统是一种极其高精度的系统,利用自适应滑动模式控制器实时识别各种催化剂模型并预测后催化剂Hego传感器输出。上述技术组合使用以实现SULEV排放标准。

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