外围模块用途消息处理单元 (MHU) 配置处理器间中断。带 FIFO 的串行通信接口 (SCIFA) 执行标准串行通信,发送和接收控制台消息。中断控制器 (INTC) 配置中断设置;处理器将在缓冲串行通信期间接收中断,并在触发处理器间中断时在 MHU 模块中接收中断。时钟脉冲发生器 (CPG) 配置主 CPU 时钟。通用输入输出 (GPIO) 配置串行通信使用的 I/O 线。通用计时器 (GTM) 配置 FreeRTOS 的滴答。
针对此类问题,我们发布了瑞萨RZ/V系列入门级新品RZ/V2L。搭载瑞萨原创AI加速器DRP-AI(AI动态可重构处理器),实现高精度AI推理和业界领先的能效。
描述页面摘要 1.00 2023 年 4 月 21 日 - 已发布。2.00 2023 年 8 月 31 日 - 更新了 AI SDK 中使用的以下软件包版本。• RZ/V2L DRP-AI 支持包至 v7.40。• RZ/V2L Linux 包至 v3.0.4。• RZ/V2L 图形库至 v1.1.0。• RZ/V2L 视频编解码器库至 v1.1.0。将 Poky 版本更新至 v3.1.21。添加了清单文件,而不是提供组件列表。P6 由于笔误,删除了 Vulkan。2.10 2023 年 11 月 10 日 - 在发布项目中添加了 AI SDK 源代码。将 zip 文件分成两个文件并重新排列文件内容。(OSS 包已移至 AI SDK 源代码。)5.00 2024 年 10 月 31 日 - 更新了 AI SDK 中使用的以下软件包版本。• RZ/V2L DRP-AI 支持包至 v7.50。• RZ/V2L Linux 包至 v3.0.6。• RZ/V2L 图形库至 v1.2.2。• RZ/V2L 视频编解码器库至 v1.2.2。将 Poky 版本更新至 v3.1.31。
data AIMAC 的工作区 data_out 放置最终推理结果的内存区域。DRP-AI 示例应用程序将从此区域读取数据以获得 DRP-AI 输出。 work DRP weight 的工作区 放置神经网络权重数据的内存区域。DRP-AI 示例应用程序将通过 DRP-AI 驱动程序将权重数据写入此区域。 drp_config 放置 DRP 配置数据的内存区域。DRP-AI 示例应用程序将通过 DRP-AI 驱动程序将 DRP 配置数据写入此区域。 drp_param 放置 DRP 参数的内存区域。DRP-AI 示例应用程序将通过 DRP-AI 驱动程序将 DRP 参数写入此区域。 desc_aimac 放置 AIMAC 描述符的内存区域。DRP-AI 示例应用程序将通过 DRP-AI 驱动程序将 AIMAC 描述符写入此区域。 desc_drp 放置 DRP 描述符的内存区域。DRP-AI 示例应用程序将通过 DRP-AI 驱动程序将 DRP 描述符写入此区域。
v2x功能:EV5包括启动(所有版本)中的内部2400W V2L插座和来自电荷端口的V2L(仅接地和GT线)。注意:V2X是涵盖从电池中获得230V AC电源的选项并将其提供为:•V2L:装载的车辆(可从汽车中使用230V电源)•V2H:V2H:车辆到家(通过特殊连接供应家)连接)房屋充电注意事项
摘要的分期夹带被认为可以在全球范围内坐落在不同结构(例如海马和新皮层)跨不同结构的活性。在识别和决策过程中,最佳处理感觉输入可能需要此协调。In quadruple-area ensemble recordings from male rats engaged in a multisensory discrimination task, we investigated phase entrainment of cells by theta oscillations in areas along the corticohippocampal hierarchy: somatosensory barrel cortex (S1BF), secondary visual cortex (V2L), perirhinal cortex (PER), and dorsal hippocampus (DHC)。大鼠区分以仅触觉,仅视觉或触觉和视觉方式呈现的两个3D对象。在任务参与期间,S1BF,V2L,PER和DHC LFP信号显示出连贯的theta波段活性。我们发现单细胞尖峰活性的相位夹带到S1BF,V2L,PER和DHC中的局部记录以及海马theta活性。虽然在任务试验的持续时期期间发生海马尖峰的阶段夹带发生在局部theta振荡中,并且对行为和模态的行为和模态,体感和视觉皮质细胞无可置疑,仅在刺激效果期间被置于刺激期间,主要是在其首选模式中(S1BF,触觉,crossit crossit; v2;刺激表现(S1BF:Visual; V2L:触觉)。这种效果无法通过发射速率或theta振幅的调制来解释。因此,海马细胞是长时间时期的相夹具,而感觉和周围神经元在感觉刺激呈现过程中被选择性地夹住,为活动协调提供了短暂的时间窗口。
Torres EVX 配备高输出三合一 EV 传动系统,扭矩为 339Nm,电机功率为 52.2 kW,可实现高效平稳的驾驶。此外,三合一电源转换模块结合了电源分配单元、车载充电器和低 DC-DC V2L(车辆到负载)连接器,可优化车辆电源管理。
图3-11:MATLAB SIMULINK模拟设计的电池。 .................... 40 Figure 3-12 MATLAB SIMULINK simulation of battery comparison. ................. 41 Figure 3-13: SOC results of comparison simulation................................................ 42 Figure 3-14: OCV results of first order RC batteries comparison. ...............................................................................................................................................................................................................................................................................................................................................................................................二阶RC电池比较的OCV结果。 ..................... 43 Figure 4-1 Traditional bridge-type PWM inverter. (a)拓扑。 (b)波形[30]。 .......................................................................................................................... 45 Figure 4-2 LC Filter equivalent circuit. ................................................................... 46 Figure 4-3: The V2L electrical circuit. .................................................................... 49 Figure 4-4: The equivalent circuit of the V2L system. ............................................ 49 Figure 4-5 Bode Plot of the voltage plant. ............................................................... 52 Figure 4-6: Bode Plot of the current plant. .............................................................. 53 Figure 4-7 the block diagram of the outer voltage control loop with the inner current loop. .......................................................................................................................... 54 Figure 4-8: MATLAB SIMULINK simulation of complete system. .................................................... 57 Figure 4-11 Inductor current result of the system. 。图3-11:MATLAB SIMULINK模拟设计的电池。.................... 40 Figure 3-12 MATLAB SIMULINK simulation of battery comparison.................. 41 Figure 3-13: SOC results of comparison simulation................................................ 42 Figure 3-14: OCV results of first order RC batteries comparison................................................................................................................................................................................................................................................................................................................................................................................................二阶RC电池比较的OCV结果。 ..................... 43 Figure 4-1 Traditional bridge-type PWM inverter. (a)拓扑。 (b)波形[30]。 .......................................................................................................................... 45 Figure 4-2 LC Filter equivalent circuit. ................................................................... 46 Figure 4-3: The V2L electrical circuit. .................................................................... 49 Figure 4-4: The equivalent circuit of the V2L system. ............................................ 49 Figure 4-5 Bode Plot of the voltage plant. ............................................................... 52 Figure 4-6: Bode Plot of the current plant. .............................................................. 53 Figure 4-7 the block diagram of the outer voltage control loop with the inner current loop. .......................................................................................................................... 54 Figure 4-8: MATLAB SIMULINK simulation of complete system. .................................................... 57 Figure 4-11 Inductor current result of the system. 。...............................................................................................................................................................................................................................................................................................................................................................................................二阶RC电池比较的OCV结果。..................... 43 Figure 4-1 Traditional bridge-type PWM inverter.(a)拓扑。(b)波形[30]。.......................................................................................................................... 45 Figure 4-2 LC Filter equivalent circuit.................................................................... 46 Figure 4-3: The V2L electrical circuit..................................................................... 49 Figure 4-4: The equivalent circuit of the V2L system............................................. 49 Figure 4-5 Bode Plot of the voltage plant................................................................ 52 Figure 4-6: Bode Plot of the current plant............................................................... 53 Figure 4-7 the block diagram of the outer voltage control loop with the inner current loop........................................................................................................................... 54 Figure 4-8: MATLAB SIMULINK simulation of complete system..................................................... 57 Figure 4-11 Inductor current result of the system.。...................... 55 Figure 4-9: Output voltage result of the system....................................................... 56 Figure 4-10: Output current result of the system.................................................... 57 Figure 4-12: PWM Waveforms of the system.............................................................................................................................................................................................................................................................................................................................................................................................................................................................................. 58图4-14输出和参考电压....................................................................................................................................... 60 Figure 5-2: Experimental Setup............................................................................... 61 Figure 5-3: Experimental setup; (1)variac,(2)3-φ整流器,(3)控制器,(4)电阻载荷,(5)逆变器,(6)DSP板和电平换挡器电路,(7)示波器,(8)LC滤波器。..................................................................................... 61 Figure 5-4: The connection diagram of the F28335 processor and the level shifter................................................................................................................................... 63 Figure 5-5: Experimental Setup Connection of DSP board and the Level Shifter.64图5-6:无过滤器的逆变器的输出电压。...................................... 65 Figure 5-7: Load voltage and current....................................................................... 66 Figure 5-8: Load Voltage.............................................................................................................................................................................. 71........................................................................................ 66 Figure 5-9 Transient Current and Voltage of Kettle ................................................ 67 Figure 5-10 Transient Current and Voltage of Microwave ..................................... 67 Figure 5-11 Steady-State Current and Voltage of Kettle ......................................... 68 Figure 5-12 Steady-State Current and Voltage of Microwave ................................ 68 Figure 6-1 CHAdeMO Connector and Pin Layout [45].
Hyundai Creta Electric的技术非常直观。注意力集中在您的便利上。V2L功能正是您在最喜欢的户外目的地时所需的。下次找不到车钥匙时,您可以使用数字钥匙并使用智能手机或智能手表解锁Creta Electric。即使现在可以在几秒钟内完成电动汽车充电的车内付款。,如果您觉得自己需要一些新鲜的空气和阳光,只需提供语音命令,启用语音的智能全景天窗将完成其余的工作。
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