...T设计(Encounter Test Solution) 逻辑综合与静态时序分析 (Encounter RTL-Compiler) 形式验证 (Verplex) 门级仿真验证(Incisive) 层次化物理实现 (SOC Encounter) 主要任务:层次化Floorplan设计与模块划 分,下层子模块实现和顶层模块实现。
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The simulation has proved its advantage.
通过仿真验证了该方法的正确性。
参考来源 - 配电网单相接地故障检测技术研究·2,447,543篇论文数据,部分数据来源于NoteExpress
LOP电路设计采用VHDL语言门级描述,已通过逻辑仿真验证,并在浮点加法器的设计中得到应用。
The LOP circuit module is described in gate level with VHDL, which has passed the logic simulation and verification. It is applied to the design of floating-point adder.
最后本文采用定子磁场定向的矢量控制策略,结合转速扰动功率观测的控制算法对转子侧进行了仿真验证。
Finally, simulating experiment for the whole system is carried through with the stator flux-oriented vector strategy and control arithmetic of rotor speed perturb and power observation.
建立其数学模型,并进行计算机仿真验证,其结果显示出该方法可以有效地提高目标的位置精度与可靠性。
A mathematical model is established and validated with computer imitation. The results show that the method can effectively improve accuracy of object position and reliability.
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