首页> 外文期刊>Control Systems Technology, IEEE Transactions on >From Optimal to Real-Time Control of a Mechanical Hybrid Powertrain
【24h】

From Optimal to Real-Time Control of a Mechanical Hybrid Powertrain

机译:从机械混合动力系统的最优控制到实时控制

获取原文
获取原文并翻译 | 示例

摘要

This brief presents the design of an energy controller for a mechanical hybrid powertrain, which is suitable for implementation in real-time hardware. The mechanical hybrid powertrain uses a compact flywheel module to add hybrid functionalities to a conventional powertrain that consists of an internal combustion engine and a continuously variable transmission. The control objective is to minimize the overall fuel consumption for a given driving cycle. The design approach follows a generic framework to: 1) solve the optimization problem using optimal control; 2) make the optimal controller causal using a prediction of the future driving conditions; and 3) make the causal controller robust by tuning of one key calibration parameter. The highly constrained optimization problem is solved with dynamic programming. The future driving conditions are predicted using a model that smoothly approximates statistical data, and implemented in the receding model predictive control framework. The controller is made tunable by rule extraction from the model predictive controller, based on physical understanding of the system. The resulting real-time controller is transparent, causal, and robust, where the latter is shown by simulations for various driving cycles and start conditions.
机译:本简介介绍了适用于实时硬件的机械混合动力总成能量控制器的设计。机械混合动力总成使用紧凑型飞轮模块为传统动力总成增加了混合动力功能,该传统动力总成由内燃机和无级变速器组成。控制目标是在给定的驾驶循环中将总油耗降至最低。该设计方法遵循通用框架:1)使用最优控制解决优化问题; 2)使用对未来驾驶条件的预测来确定最佳控制器因果关系; 3)通过调整一个关键的校准参数,使因果控制器具有鲁棒性。动态规划解决了高度受限的优化问题。使用平滑逼近统计数据的模型来预测未来的驾驶条件,并在后退模型预测控制框架中实施。基于对系统的物理了解,可以通过从模型预测控制器中提取规则来使控制器可调。最终的实时控制器是透明的,因果的和鲁棒的,其中通过各种驾驶周期和启动条件的仿真来显示后者。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号