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Digital Control of an Interleaving Operated Buck-Boost Synchronous Converter Used in a Low-Cost Testing System for an Automotive Powertrain

机译:用于汽车动力总成的低成本测试系统的交织操作降压 - 升压同步转换器的数字控制

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摘要

Based on the standardization in the automotive industry, systems require extensive testing, which represents significant costs regarding personnel and equipment. The testing systems must be built in such a way that a bidirectional power flow is possible between the power source and the tested system. Additionally, applied testing systems have to possess high disturbance immunity. Classical current programmed control performed using an analogue approach suffers from low disturbance rejection during switching operation. The digital control of DC–DC converter can solve this problem with the use of digital integration in a measurement chain. The integrals of values are obtained by using a Voltage Control Oscillator (VCO) and appropriate counters. Digital control of an interleaving operated bidirectional buck-boost synchronous converter can be applied in the testing system for automotive powertrains. The voltage and current measurements with the application of an integral-measurement principle act as low-pass filters, which remove the disturbances from the measured values. The digital implementation of a compensation ramp (current mode control) and method for choice of control parameters are described. All the tasks for measurements, as well as current and voltage control, were implemented within the FPGA (Field Programmable Gate Array). The presented converter can operate as a close to ideal voltage or current source, and satisfies the requirements of testing electric motor drive-trains with bidirectional DC–AC converters that are applied in automotive applications. The proposed system was verified by simulation and experiments.
机译:基于汽车行业的标准化,系统需要大量测试,这代表了有关人员和设备的重大成本。必须以这样的方式建立测试系统,使得在电源和测试系统之间可以进行双向电力流动。另外,应用测试系统必须具有高扰动免疫力。使用模拟方法执行的经典电流编程控制在切换操作期间遭受低扰动抑制。 DC-DC转换器的数字控制可以通过在测量链中使用数字集成来解决这个问题。通过使用电压控制振荡器(VCO)和适当的计数器来获得值的积分。交织操作双向降压-Boost同步转换器的数字控制可以应用于汽车电力的测试系统。通过应用积分测量原理的电压和电流测量充当低通滤波器,其从测量值中取出干扰。描述了补偿斜坡(电流模式控制)的数字实现和用于选择控制参数的方法。测量的所有任务以及电流和电压控制在FPGA(现场可编程门阵列)内实现。所提出的转换器可以作为接近理想的电压或电流源操作,并满足使用在汽车应用中应用的双向DC-AC转换器测试电动机驱动器的要求。所提出的系统通过模拟和实验验证。

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