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Dual ECU for aftermarket conversions of vehicles and boats to oxy-hydrogen or hybrid fuels

机译:双ECU,用于汽车和轮船的售后市场转换为氢氧或混合燃料

摘要

Modern ECU's control fuel flow and efficiency of high performance vehicles. Converting a standard fossil fuel vehicle or boat to oxy-hydrogen requires monitoring of additional factors such as oxy-hydrogen burn rates, oxy-hydrogen flow, oxy-hydrogen temperature, oxy-hydrogen production rates and overall factors such as barometric pressure, altitude, humidity, ambient temperatures etc. When a vehicle operating as a hybrid, experiences difficulties with oxy-hydrogen production, burn rate, fuel flow, or operating temperature, the ECU must compensate and revert back to fossil fuel operating status, or suffer engine failure and potentially costly mechanical damages.;The herein described invention compensates for the combined mixture of oxy-hydrogen and fossil fuels to give a highly fuel efficient clean burning engine under normal operations, and automatically reverts back to fossil fuel parameter ECU mapping, if the oxy-hydrogen system should fail to deliver the required volume of oxy-hydrogen gas, or various types of hybrid fuels are used from time to time to increase fuel efficiency, and reduce costs, the herein described dual ECU system will thereby allow the vehicle to continue to operate normally, under all types of conditions, climates, temperature changes or changes in altitude.
机译:现代ECU控制高性能车辆的燃油流量和效率。将标准的化石燃料汽车或轮船转换为氢氧,需要监控其他因素,例如氢氧燃烧速率,氢氧流量,氢氧温度,氢氧产生速率以及总体因素,例如气压,海拔高度,湿度,环境温度等。当车辆作为混合动力汽车行驶时,遇到氢氧产生,燃烧速率,燃料流量或工作温度方面的困难时,ECU必须进行补偿并恢复到化石燃料的工作状态,否则会导致发动机故障和在此描述的本发明补偿了氢氧和化石燃料的混合混合物,从而在正常操作下提供了一种高燃料效率的清洁燃烧发动机,如果氧-化的话,它会自动恢复为化石燃料参数ECU映射。氢气系统应无法提供所需量的氢氧气,或不时使用各种类型的混合燃料来增加为了提高燃料效率并降低成本,本文所述的双ECU系统将因此使车辆在所有类型的条件,气候,温度变化或海拔高度变化的情况下继续正常运行。

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