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1.3.3 搭建三相全桥不控整流器模型示例分析
例1-3:如何在MATLAB的Simulink中搭建三相全桥不控整流器模型?
图1-17所示为三相全桥不控整流装置的拓扑。假设输入线电压为380V(有效值),输出额定功率30kW,滤波电感Lm=1mH,滤波电容C=4700μF,下面讲解搭建整流器电源装置的建模方法与基本流程。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/17_01.jpg?sign=1739278608-bNgz3vSgFWlGa4uMx8FsH1ij4VBgo7Ut-0-f3058d3e505dc8a117542aa6ca759ab7)
图1-16 选择“IGBT”模块
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/17_02.jpg?sign=1739278608-hFlN2B1asvHEqk4aWSZMPcS23KNNWBik-0-b3dcbb4143b0bc3cf6785842afcdcc1c)
图1-17 三相全桥不控整流装置的拓扑
分析:
(1)直流母线电压的表达式为
U dc=1.35×380V=513V
(2)不考虑整流器的效率,则负载电阻的表达式为
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/17_03.jpg?sign=1739278608-4VeuGrJKry1KsC4mMG2E6XtAWDnLQrWA-0-05b994201fabf30c3a60587a1aac1f7a)
下面给出搭建整流器电源装置的建模方法与基本流程。现将不控整流器模型中各模块的调取方法简述如下:
(1)三相电源模块的调取,选择Simscape/Electrical/Specialized Power Systems/Fundamental Blocks/Electrical Sources,选择Three-Phase Source,如图1-18所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/17_04.jpg?sign=1739278608-0FHtWCZ0Y6EKIRfrZE8KANXDLXeJYYN2-0-f55d913e3c5dca1492bf986e6d68af46)
图1-18 三相电源模块的调取
(2)三相RLC模块的调取,选择Simscape/Electrical/Specialized Power Systems/Fundamental Blocks/Elements,选择Three-Phase Series RLC Branch,如图1-19所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/18_01.jpg?sign=1739278608-XLCsfB1KTOTb2uJLSouwzNPOFBaLg0cZ-0-5ba2e53f9f502f86e39aa1483a858c36)
图1-19 三相RLC模块的调取
(3)通用电桥模块的调取,选择Simscape/Electrical/Specialized Power Systems/Fundamental Blocks/Power Electronics,选择Universal Bridge,如图1-20所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/18_02.jpg?sign=1739278608-48g5Fk7VKpFmY41bYbSxoInjwGoMOgI5-0-0337c24240b97d7787adebfac19d25a5)
图1-20 通用电桥模块的调取
(4)电阻电感电容模块的调取,选择Simscape/Electrical/Specialized Power Systems/Fundamental Blocks/Elements,选择Series RLC Branch,如图1-21所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/19_01.jpg?sign=1739278608-BzVzn2s9Hv5YzNFTeVrhJDZ46OFxixS1-0-a891170d890af93d4ed02c164c85dd43)
图1-21 电阻电感电容模块的调取
(5)电压电流测量模块的调取,选择Simscape/Electrical/Specialized Power Systems/Fundamental Blocks/Measurements,选择Voltage Measurement、Current Measurement和Three-Phase V-I Measurement,如图1-22所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/19_02.jpg?sign=1739278608-pjWNId6aCiNAwNeEyu902X3X5dq5fgps-0-cfa53c3238adf93c727662a39634d78a)
图1-22 电压电流测量模块的调取
(6)示波器模块的调取,选择Simulink/Commonly Used Blocks,选择Scope,如图1-23所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/20_01.jpg?sign=1739278608-jDrRy6TzzkgKrc0JroQ8UbJBgQJjwvih-0-eb50f868c875551962b393d02d235d14)
图1-23 示波器模块的调取
(7)powergui模块的调取,选择Simscape/Electrical/Specialized Power Systems/Fundamental Blocks,选择powergui,如图1-24所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/20_02.jpg?sign=1739278608-qNJmBVfWcP0ABQMe1UF5wfTAQBXCp6IV-0-0ad486cd2bd8dc1495a6ca812f23d82a)
图1-24 powergui模块的调取
(8)设置各模块电气参数。
1)设置三相电源参数:线电压有效值380V,频率50Hz,如图1-25所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/21_01.jpg?sign=1739278608-9NTgaVvwfTnc5vGMkFA0wIjBC5ODckAr-0-d45ed3df5965f2884f89bbd0aeac2903)
图1-25 三相电源模块参数设置
2)设置三相电感参数:Lm=1mH,如图1-26所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/21_02.jpg?sign=1739278608-czKxivRYv3EaEYKBH9MLUv8kO0nTxKLF-0-92c20c863b973fe5f7a1b48050d627f3)
图1-26 三相电感参数设置
3)设置三相不控整流桥模块的参数,如图1-27所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/22_01.jpg?sign=1739278608-2tvuPGBMKdpV7SPZQRFdTfFf00WcLJ5g-0-b71d150fe85a0d8356d5463a7e90feab)
图1-27 三相不控整流桥模块的参数设置
4)设置直流支撑电容参数:C=4700μF,初始电压500V,如图1-28所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/22_02.jpg?sign=1739278608-qxwBfUk97xPEtW5YioFAx2dwjVw34juQ-0-73253a4a748a5b602756e771303f960d)
图1-28 支撑电容的参数设置
5)设置电阻负载:RL=8.77Ω,如图1-29所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/23_01.jpg?sign=1739278608-7RKrHmgHEsBAhLYMKgkqj3nACNDf0Xvt-0-08971daf337f7d16360e046a0e551c85)
图1-29 负载电阻参数设置
(9)获得不控整流电源装置的仿真模型,如图1-30所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/23_02.jpg?sign=1739278608-X58Nhz9pxLaZIxO3OSIDev6U5CJUv8pB-0-08f6c817a1dd5ed385cc02466dd8188d)
图1-30 不控整流电源装置的仿真模型
(10)设置仿真参数及其仿真结果。
仿真模式采用连续型,仿真时间取0.1s。
1)得到流过输入三相电感的电流仿真波形,如图1-31所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/23_03.jpg?sign=1739278608-nrbCBYviCsHiGU5kqqwoXYXPwjIe3dmk-0-a9a9bceb2868978065536c574511fe30)
图1-31 流过输入三相电感的电流仿真波形
2)得到加载在二极管的电压仿真波形和流过它的电流仿真波形,如图1-32和图1-33所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/24_01.jpg?sign=1739278608-0wUoB0CxqOsY4YEULvnmLv6Aqs3O9K3O-0-0d82e3c9028508d83d3aef279e095f2e)
图1-32 加载在二极管的电压仿真波形
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/24_02.jpg?sign=1739278608-1BG3CgQDdm3GFk15aVykzoJZWJeVoTPx-0-371a2fc1b4bea096fcc400888808a691)
图1-33 流过二极管的电流仿真波形
3)得到加载在负载电阻的电压仿真波形和流过它的电流仿真波形,如图1-34所示。
![](https://epubservercos.yuewen.com/3DE4A2/21570843701309806/epubprivate/OEBPS/Images/25_01.jpg?sign=1739278608-RUI6LJQAgWSIV1M1GxHfAfOZYbPB2Gmc-0-eb2d2009ccf4647b53c9e82b82d4a659)
图1-34 加载在负载电阻的电压仿真波形和流过它的电流仿真波形