基于LSTM-DDPG的車速預測對增程式汽車能量管理研究
中圖分類號:U461 收稿日期:2025-02-12 DOI: 10.19999/j.cnki.1004-0226.2025.05.001
Study on Speed Prediction for Energy Management of Add-on Vehicles Based on LSTM-DDPG
Tang Jianxing Yang Chao Yue Zhigang Luo Jiaxin Yu Hengbin Sun Guoyang Automotive Technology Co.,Ltd.,Beijing 10260o,China
Abstract:Inordertoenhancetheenergy management eficiencyofanad-onelectricvehicle(EREV),thepaperfirstlyuses a longshort-term memory(LSTM)neuralnetwork topredictthevehiclesped.Basedonthispredictionresult,thepowerdemandrequiredatfuture momentsisfurthercalculatedandcombinedwiththepowerdemandatthecurent moment,andthesedataare fedto getherintothedeepdeterministicplicygadient (DDPG)intellgence.Tisintellgentbodyisesponsibleforeneratingctrolcommands,andsubsequentlysimulationexperimentsareconductedtoverifytheeal-tieresponsivenessoftheproposedcontrolstrategy. TheexperimentalresultsshowthattheLSTM-DDPGenergymanagement strategyproposed inthisstudyreduces theequivalent fuel consumption by 0.613kg , 0.350kg ,and 0.607kg ,respectively,compared with the DDPG strategy only,the deep Q-network(DQN) strategy,andtheconventionalpower-folowingcontrolstrategyundertheworldheavycommercialvehicletransientcycling(WTVC) operating conditions. In addition, the difference in equivalent fuel consumption is only 0.128kg when compared to the dynamic programming (DP)control strategy,which showsthe advantagesand high eficiencyof this strategy interms ofenergy saving.
Key words: Incremental electric vehicles;Long andshor-term memory neural networks;Deepreinforcement learing;Energy management
1前言
增程式電動汽車(EREV)作為一種新能源汽車技術(shù),正受到越來越多的關(guān)注。(剩余8151字)
- 基于LSTM-DDPG的車速預...
- 基于國標和美標的滑行阻力底盤測...
- 2024年國內(nèi)環(huán)衛(wèi)車市場回顧及...
- 2024年我國皮卡市場分析和2...
- 基于成渝地區(qū)的汽車動力蓄電池回...
- 輕卡轉(zhuǎn)向盤對中控制技術(shù)的研究與...
- 乘用車后背門玻璃精致感知控制方...
- 基于“五性一化”的巴哈賽車設(shè)計...
- 某新型無人加油裝備的研究與設(shè)計...
- 某除雪車轉(zhuǎn)向機械結(jié)構(gòu)改進以及液...
- 單/雙流增壓器對柴油機高原性能...
- 某重型電動商用車電磁兼容輻射發(fā)...
- 典型路面不平度研究...
- 基于AHP-BN的新能源電池試...
- 基于CAN網(wǎng)絡(luò)的智能網(wǎng)聯(lián)汽車線...
- 具有弱勢交通參與者響應(yīng)功能的A...
- 基于D2P平臺純電動汽車行車上...
- 某轎車乘客安全氣囊和側(cè)氣簾靜態(tài)...
- 純電動商用車能量流測試分析...
- 基于V2X技術(shù)緩解快速路交通擁...
- 新能源汽車動力電池管理的核心與...
- 新能源汽車自動駕駛中Pytho...
- 智能駕駛領(lǐng)域中人工智能技術(shù)的融...
- 基于層次分析法的制造業(yè)器件供應(yīng)...
- 基于區(qū)間二型模糊系統(tǒng)的主動懸架...
- 固態(tài)鋰電池材料篩選與性能優(yōu)化研...
- 基于5G技術(shù)的智能汽車維修系統(tǒng)...
- 基于FMEA失效分析法的車間調(diào)...
- 汽車頂蓋沖壓成形缺陷與模具調(diào)試...
- 機器視覺技術(shù)在車用制動盤質(zhì)量檢...
- 基于產(chǎn)教融合理念的新能源汽車專...
- 新能源電動汽車行業(yè)后市場人才培...