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丘陵山地作业机械电动实时辅力系统设计与试验
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作者 杨睿 刘威 +1 位作者 聂昭成 李光林 《农机化研究》 北大核心 2025年第5期207-214,共8页
针对目前丘陵山区小型耕整机械动力弱、效率低、适用场景少的问题,研究了一套电动实时辅力系统装置。首先,采用双轴并联式定轴转矩动力耦合方案实现了柴油机与电动机的动力耦合;其次,引入超越离合器作为关键耦合部件,利用其单向传载原理... 针对目前丘陵山区小型耕整机械动力弱、效率低、适用场景少的问题,研究了一套电动实时辅力系统装置。首先,采用双轴并联式定轴转矩动力耦合方案实现了柴油机与电动机的动力耦合;其次,引入超越离合器作为关键耦合部件,利用其单向传载原理,有效解决了简单并联系统运行过程中的逆转冲击问题;最后,针对丘陵山区耕整作业复杂土壤环境下的动态变载荷特性,基于微处理器开发了一套电动实时辅力控制系统,运用模糊控制方法,有效克服了传统控制方法难以建立所需精确数学模型的难题,实现了电机对耕整作业动力需求的动态实时响应。田间试验表明:在开沟作业中,启用动力辅助装置后,平均沟深稳定性系数由92.8%提升至97.6%,平均作业油耗降低13.8%,平均工作效率提升18.7%。因此,设计研究的电动实时辅力系统通过使用电动机对内燃机提供辅助动力,在运行过程中实现对负载变化的动态响应,从而显著提升作业机械的动力性能、减少排放、降低能耗,提高整机作业效率,使其满足丘陵山地作业基本要求。 展开更多
关键词 丘陵山区 适用性 电动辅力 耦合装置 动态响应
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Development of hydraulic power unit and accumulator charging circuit for electricity generation,storage and distribution 被引量:2
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作者 姜继海 刘海昌 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2008年第1期60-64,共5页
It is the purpose of the present paper to convert hydraulic energy to electric energy and saves both the pressure and electrical energy for re - use during the next system upstroke using two secondary units coupled to... It is the purpose of the present paper to convert hydraulic energy to electric energy and saves both the pressure and electrical energy for re - use during the next system upstroke using two secondary units coupled to induction motor to drive cylinder loads. During upstroke operation, the variable pump/motor (P/M) driven by both electric motor and the second (P/M) works as hydraulic pump and output flow to the cylinders which drive the load. During load deceleration, the cylinders work as pump while the operation of the two secondary units are reversed, the variable (P/M) works as a motor generating a torque with the electric motor to drive the other (P/M) which transforms mechanical energy to hydraulic energy that is saved in the accumulator. When the energy storage capacity of the accumulator is attained as the operation continues, energy storage to the accumulator is thermostatically stopped while the induction motor begins to work as a generator and generates electricity that is stored in the power distribution unit. Simulations were performed using a limited PT2 Block, i.e. 2nd-order transfer function with limitation of slope and signal output to determine suitable velocity of the cylinder which will match high performance and system stability. A mathematical model suited to the simulation of the hydraulic accumulator both in an open-or close-loop system is presented. The quest for improvement of lower energy capacity storage, saving and re-utilization of the conventional accumulator resulting in the short cycle time usage of hydraulic accumulators both in domestic and industrial purposes necessitates this research. The outcome of the research appears to be very efficient for generating fluctuation free electricity, power quality and reliability, energy saving/reutilization and system noise reduction. 展开更多
关键词 electricity generation accumulator charging circuit hydraulic accumulator energy-reutilization
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