


全文预览已结束
下载本文档
版权说明:本文档由用户提供并上传,收益归属内容提供方,若内容存在侵权,请进行举报或认领
文档简介
Semiconductor switches are very important and crucial components in power electronic systems.these switches are meant to be the substitutions of the mechanical switches,but they are severely limited by the properties of the semiconductor materials and process of manufacturing. 在电力电子系统,中半导体开关是非常重要和关键部件。半导体开关将要替换机械开关,但半导体材料的性质和生产过程严重限制了他们。Switching losses开关损耗Power losses in the power eletronic converters are comprised of the Switching losses and parasitic losses. 电力电子转换器的功率损耗分为开关损耗和寄生损耗the parasitic losses account for the losses due to the winding resistances of the inductors and transformers,the dielectric losses of capacitors,the eddy and the hysteresis losses. 寄生损失的绕组电感器、变压器的阻力、介电损耗的电容器,涡流和磁滞损耗the switching losses are significant and can be managed. 这个开关损耗是非常重要的,可以被处理。they can be further divided into three components:(a)the on-state losses,(b)the off-state losses and the losses in the transition states. 他们可以分为三个部分: 通态损耗,断态损耗和转换过程中产生的损耗。On-State Losses通态损耗:The electrical switches conduct heavy current and have nonzero voltage across the switch in the on-state.The on-state power losses are given by Pon=Uson if.这个电子开关能导通大电流,并且在通态时有非零的压降。这个通态功率损耗的公式为Pon=Uson if.The Uson and If are respectively the switch voltage in the on-state and the forward current through the switch.For example,the typical power diodes and the power transistors have nearly 0.5 to l volt across them in the on-state.The forward currents can be hundreds to thousands of amperes.The on-state power losses are very significant. 其中Uson是通态时开关上的压降,if是流过开关的电流。例如,典型的功率二极管和功率晶体管有近似0.51伏的通态压降。而电流会有数百到数千安培。这个通态损耗非常重要。Off-State Losses断态损耗The electrical switches withstand high voltages and have nonzero leakage current through the switch in the off-state.The off-state power lesses are given by Poh=Uoff ir在关断状态时,电子开关到经受得起高电压,并会有非零的漏电流。断态损耗的公式为Poh=Uoff ir.The Usoff and Ir are respectively the reverse bias voltage in the off-state and the reverse current through the switch.For example,the typical power diodes and the power transistors have high reverse voltages in hundreds to thousands of volts and microamps to milliamps through them in the off state. 其中Uoff在断态时的反向偏置电压,ir是流过开关的反向漏电流。例如,典型的功率二极管和功率晶体管有很高的反向压降几百到几千伏和几微安到几毫安的漏电流。Transition-State Losses转换损耗:The practical switching devices have limited capabilities of rate of voltage transition and the rate of current steering.These nonabrupt transition rates give rise to power losses in the switching devices.We will examine these switching losses in two cases separately:the inductive and capacitive loads. 在实际的开关装置限制了电压变换率和电流变化率。非突变引起了开关装置的功率损耗。我们测试开关损耗时分两种情况:感性负载和容性负载。Switching with Inductive Load接感性负载的开关:The indutor is assumed to be large so that the current through it in steady state is nearly constant Io.Assume that initially the switch is off.The inductor current is +Io and freewheels through diode V1.When the switch is turned on,the current through the switch begins to build up linearly(an assumption)to+Io while the diode V1is still on.The on diode has zero voltage across it(an ideal diode),hence,the voltage on the switch is held constant at+Us.When the current buildup is over,the diode V1 ceases to conduct and the voltage on the switch ramps linearly(again an assumption)down to zero. 假设电感无穷大,即在稳定时流经电感的电流是恒定的Io,假定开始时开关处于关断状态。电感电流为+Io惯性流过二极管V1。当开关闭合后,电流流经开关开始建立线性上升+Io此时二极管扔导通。二极管压降为0,此时开关两端电压维持在+Us当电流建立完成后,二极管V1截止,开关两端电压线性下降为0。When the switch is turned off ,the voltage begins to build up linearly to +us while the diode V1 is off. while the diode is off the current through the switch equals the inductor current,which is constant I0 After the switch voltage reaches aero, the current through the switch begins to decrease below I0,as the remaining current is now steered through the diode V1 which has now turned on The current through the swithch ramps down to zero ultimately. Switching waveforms with inductive load are shown in Fig.3-1开关打开后,开关两端电压线性上升至Us。此时二极管仍截止,二极管截止,流过开关的电流相当于流过电感的电流,维持在恒定的Io。开关电压到0时,通过开关的电流开始上升到Io以下。此时余留的电流正转向二极管V1,V1导通。最终通过开关的电流下降到0,开关过程的波形的电感负载波形见图3-1 The switching losses are given by : Psw=1/2UsIo.fs开关损耗的公式是Psw=1/2UsIo.fs The switching power losses increase linearly with the switching requency like in the resistive case but about six times more. The upper bound on the switching frequency is also about half. 开关功率损耗线性增加随着开关频率 此时的损耗要比阻性负载损耗的6倍还多。当f取最大时 Psw=1/2UsIo。Switching with capacitive Load开关接有容性负载The capacitor is assumed to be large so that the voltage through is in stedy state is nearly constant U0.Assume that initially the switch is on,hence,the cuttent through the switch is IS.The capacitor voltage is U the voltage across the switch is zero and the diode V1is reverse biased.When the switch is turned off,the switch voltage begins to ramp up to+U0 while the diode V1 is still off.During this buildup,the current through the switch is held constant at Is.Wheng the voltage buildup is over,the diode V1begins to conduct and the voltage on the switch is clamped at U0,and the current through the switch ramps linearly(again an assumption)down to zero. 假设电容器很大,致使在稳定状态下其两端电压接近为常数Uo。假使开关初始状态为闭合,则通过开关的电流为Is。电容器的电压为Uo开关两端的电压为零,二极管V1反向偏置。当开关打开后,开关两端电压开始上升到Uo,此时二极管一直关断。当电压等于Uo时,二极管V1开始导通并且开关两端电压被钳位在Uo。流过开关的电流线性下降到零。When the switch is closed,the current begins to build up linearly to Is while the diode V1 is still on .The voltage on the switch remains clamped at U0.After the switchcurrent reaches Is ,the diode turns off and the voltage on the switch begins to ramp down to zero. 当开关闭合,电流开始上升至Is,此时V1仍然导通,开关两端电位被钳位在Uo。当开关电流等于Is时,二极管关断并且开关两端电压线性下降至0。The switching power losses in the case of capacitive load also have simi
温馨提示
- 1. 本站所有资源如无特殊说明,都需要本地电脑安装OFFICE2007和PDF阅读器。图纸软件为CAD,CAXA,PROE,UG,SolidWorks等.压缩文件请下载最新的WinRAR软件解压。
- 2. 本站的文档不包含任何第三方提供的附件图纸等,如果需要附件,请联系上传者。文件的所有权益归上传用户所有。
- 3. 本站RAR压缩包中若带图纸,网页内容里面会有图纸预览,若没有图纸预览就没有图纸。
- 4. 未经权益所有人同意不得将文件中的内容挪作商业或盈利用途。
- 5. 人人文库网仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对用户上传分享的文档内容本身不做任何修改或编辑,并不能对任何下载内容负责。
- 6. 下载文件中如有侵权或不适当内容,请与我们联系,我们立即纠正。
- 7. 本站不保证下载资源的准确性、安全性和完整性, 同时也不承担用户因使用这些下载资源对自己和他人造成任何形式的伤害或损失。
最新文档
- 家具厂溯源管理制度
- 家淘宝平台管理制度
- 形象进度与管理制度
- 径向井安全管理制度
- 德鲁纳酒店管理制度
- 志愿团规章管理制度
- 快速充电站管理制度
- 性少数群体管理制度
- 总经理巡检管理制度
- 意向金转正管理制度
- 职业技能等级认定考试保密协议书
- 2025年安全月主题宣贯课件
- 广东省深圳市2025年高三年级下学期第二次调研考试语文试题(含答案)
- 一种砂仁精油的应用
- 浙江省宁波市慈溪市部分校2025届数学五年级第二学期期末考试模拟试题含答案
- 大模型备案-落实算法安全主体责任基本情况
- 犊牛腹泻防控课件
- 整形医院AI智能设备行业深度调研及发展战略咨询报告
- 学校护学岗制度
- 天津市静海区第四中学2024-2025学年高二下学期3月月考英语试题(原卷版+解析版)
- 人工智能艺术风格-深度研究
评论
0/150
提交评论