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2021 | OriginalPaper | Buchkapitel

Holistic Optimization of Energy Consumption of a Hybrid Powertrain with an “Equivalent Fuel Consumption Minimization Strategy” Algorithm

verfasst von : Michael Zagun

Erschienen in: 21. Internationales Stuttgarter Symposium

Verlag: Springer Fachmedien Wiesbaden

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Abstract

Modern hybrid powertrains consist of several energy storage and energy converters and allow multiple operating modes to propel a vehicle. In the context of energy management these operating modes are crucial for the consumption of fossil fuel and the recuperation of kinetic energy. A supervisory control strategy is mandatory to meet the driver expectations and to control the energy flow in an efficient manner. Their applicability should cover all possible driving maneuvers, respect component limits and minimize fossil fuel consumption. The “Equivalent Consumption Minimization Strategy” algorithm, as a local optimal control strategy, is derived from literature and applied to a holistic system simulation model of a hybrid powertrain and a thermal management system in the form of an embedded supervisory controller. The objective is to minimize fossil fuel consumption and to include the response dynamics and the thermal effects of the underlying components and subsystems. A special attention is given to the formulation of the cost function which includes three modifications to the well-known [1] equivalent consumption equation. The derived optimal control strategy and the simulation results of the system model are discussed regarding their applicability and the resulting energy economy to an a priori known maneuver. The proposed modifications and extensions prove their applicability in the virtual test environment and recommend themselves for the utilization in further application areas.

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Literatur
1.
Zurück zum Zitat Onori, S., Serrao, L., Rizzoni, G.: Hybrid Electric Vehicles - Energy Management Strategies. Springer, London (2016)CrossRef Onori, S., Serrao, L., Rizzoni, G.: Hybrid Electric Vehicles - Energy Management Strategies. Springer, London (2016)CrossRef
2.
Zurück zum Zitat Krauß, M., Gregori, H., Möllmann, J., Marschall, T.: The Drivetrain of the New BMW 225xe iPerformance Active Tourer. MTZ, 17–20, (Sep. 2016) Krauß, M., Gregori, H., Möllmann, J., Marschall, T.: The Drivetrain of the New BMW 225xe iPerformance Active Tourer. MTZ, 17–20, (Sep. 2016)
3.
Zurück zum Zitat Technologies, G.: „Reference Manual,“ in FiniteStateManager - Discrete State Machine. Gamma Technologies, Chicago (2020) Technologies, G.: „Reference Manual,“ in FiniteStateManager - Discrete State Machine. Gamma Technologies, Chicago (2020)
4.
Zurück zum Zitat Paganelli, G., Guerra,T. M., Delprat, S., Santin, J.-J., Delhom M., Combes, E.: Simulation and Assessment of Power Control Strategies for a Parallel Hybrid Car,"SAGE Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering, 705–717 (2000) Paganelli, G., Guerra,T. M., Delprat, S., Santin, J.-J., Delhom M., Combes, E.: Simulation and Assessment of Power Control Strategies for a Parallel Hybrid Car,"SAGE Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering, 705–717 (2000)
5.
Zurück zum Zitat Paganelli, G., Tateno, M., Brahma, A., Rizzoni, G., Guezennec, Y.: Control Development for a Hybrid-electric Sport-Utility Vehicle: Strategy, Implementation and Field Test Results. IEEE Proceedings of the 2001 American Control Conference, 968–973 (2001). Paganelli, G., Tateno, M., Brahma, A., Rizzoni, G., Guezennec, Y.: Control Development for a Hybrid-electric Sport-Utility Vehicle: Strategy, Implementation and Field Test Results. IEEE Proceedings of the 2001 American Control Conference, 968–973 (2001).
6.
Zurück zum Zitat Musardo, C., Rizzoni, G., Guezennec, Y., Staccia, B.: A-ECMS: An Adaptive Algorithm for Hybrid Electric Vehicle Energy Management. Eur. J. Control. 11, 509–524 (2005)MathSciNetCrossRef Musardo, C., Rizzoni, G., Guezennec, Y., Staccia, B.: A-ECMS: An Adaptive Algorithm for Hybrid Electric Vehicle Energy Management. Eur. J. Control. 11, 509–524 (2005)MathSciNetCrossRef
7.
Zurück zum Zitat Sciarretta, A., Back, M., Guzzela, L.: „Optimal Control of Parallel Hybrid Electric Vehicles,“ IEEE Transactions on Control Systems Technology, vol. XII 3, 352–363 (2004) Sciarretta, A., Back, M., Guzzela, L.: „Optimal Control of Parallel Hybrid Electric Vehicles,“ IEEE Transactions on Control Systems Technology, vol. XII 3, 352–363 (2004)
8.
Zurück zum Zitat Sciarretta, A., Guzzela, L., Back, M.: A Real-time Optimal Control Strategy for Parallel Hybrid Vehicles with On-board Estimation of Control Parameters. IFAC Advances in Automotive Control, 489–494 (2004) Sciarretta, A., Guzzela, L., Back, M.: A Real-time Optimal Control Strategy for Parallel Hybrid Vehicles with On-board Estimation of Control Parameters. IFAC Advances in Automotive Control, 489–494 (2004)
Metadaten
Titel
Holistic Optimization of Energy Consumption of a Hybrid Powertrain with an “Equivalent Fuel Consumption Minimization Strategy” Algorithm
verfasst von
Michael Zagun
Copyright-Jahr
2021
DOI
https://doi.org/10.1007/978-3-658-33521-2_18