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Utilization of Turbocharger Speed Data to Increase Engine Power and Improve Air Path Control Strategy and Diagnostics

机译:利用涡轮增压器速度数据以增加发动机功率,提高航空路径控制策略和诊断

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Turbocharging is significantly changing design and control strategies for Diesel and gasoline engines. This paper will review new advances in the turbocharger speed measurement. Until recently, the highly accurate and fast turbocharger speed data, based on the physical speed sensor signal, has been mainly used to safely decrease conservative safety margins for turbocharger speed and surge limits. In addition to significantly increasing power and low end torque, new generation sensor technology is providing new opportunities to utilize turbocharger speed data. New, state-of-the-art active eddy current based speed sensor technologies, including a configurable high temperature Application Specific Integrated Circuit (ASIC), and the extremely fast delivery of accurate turbocharger speed data, will not only benefit engine and turbocharger performance but also improve control, allow for advanced diagnostics and enable the possibility to virtualize other powertrain sensors (e.g. mass air flow and exhaust gas temperature sensors). The resulting optimized engine efficiency will equate with lower emissions, fuel savings and increased reliability.
机译:涡轮增压是显着改变柴油和汽油发动机的设计和控制策略。本文将审查涡轮增压器速度测量的新进展。直到最近,基于物理速度传感器信号的高度准确和快速的涡轮增压器速度数据主要用于安全地降低涡轮增压器速度和浪涌限制的保守安全边缘。除了显着增加的功率和低端扭矩外,新一代传感器技术还提供了利用涡轮增压器速度数据的新机会。新的,最先进的主动涡流基于速度传感器技术,包括可配置的高温专用集成电路(ASIC),以及精确的涡轮增压器速度数据的极快交付,不仅会使发动机和涡轮增压器性能有益,但是还可以改善控制,允许高级诊断,并使能够虚拟化其他动力系传感器(例如质量空气流量和废气温度传感器)。由此产生的优化发动机效率将等同于排放,节省省油和增加的可靠性。

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