CN103762877A - Nine-level single-phase inverter - Google Patents

Nine-level single-phase inverter Download PDF

Info

Publication number
CN103762877A
CN103762877A CN201410048233.9A CN201410048233A CN103762877A CN 103762877 A CN103762877 A CN 103762877A CN 201410048233 A CN201410048233 A CN 201410048233A CN 103762877 A CN103762877 A CN 103762877A
Authority
CN
China
Prior art keywords
power switch
power
power supply
switch
emitter
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201410048233.9A
Other languages
Chinese (zh)
Inventor
夏抒
曾繁鹏
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
NINGBO GREENTECH ENERGY-SAVING TECHNOLOGY Co Ltd
Original Assignee
NINGBO GREENTECH ENERGY-SAVING TECHNOLOGY Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by NINGBO GREENTECH ENERGY-SAVING TECHNOLOGY Co Ltd filed Critical NINGBO GREENTECH ENERGY-SAVING TECHNOLOGY Co Ltd
Priority to CN201410048233.9A priority Critical patent/CN103762877A/en
Publication of CN103762877A publication Critical patent/CN103762877A/en
Pending legal-status Critical Current

Links

Landscapes

  • Inverter Devices (AREA)

Abstract

The invention discloses a nine-level single-phase inverter which comprises an AC adapter port, a reactor, a power switch circuit and four DC power supplies. The AC adapter port is provided with a port a and a port b. The power switch circuit comprises ten power switches. One end of the reactor is connected with the port a of the AC adapter port, and the other end of the reactor and the port b of the AC adapter port are electrically connected with the power switch circuit respectively. The nine-level single-phase inverter can output nine different level combinations and has the advantage that the number of the power switches is small, the control switch stress is small, power consumption is little, efficiency is high and work is more stable. A filter circuit does not need to be independently arranged, the harmonic content of the AC output voltage is little, output currents can be approximately taken as ideal sinusoidal currents without harmonic waves, and the nine-level single-phase inverter can be widely applied to precise measurement device, precise communication device, precise medical device and other precise instruments of which the requirement for a power grid is high.

Description

Nine level single-phase inverters
Technical field
The present invention relates to a kind of inverter, refer in particular to a kind of nine level single-phase inverters.
Background technology
Semiconductor Converting Technology can convert the electric energy of other energy conversions such as storage battery, solar cell and fuel cell thereof to AC energy also and grid network, realizes the grid-connected of energy.Therefore, Semiconductor Converting Technology is the Main Topics of power electronic technology, also becomes the key technology of new forms of energy, at the development field of new forms of energy, has and important effect, has in recent years obtained numerous scholars' concern.
Conventionally the circuit of converting direct-current power into alternating-current power is called to inverter circuit, consider control system etc., be referred to as inverter.Mostly the main circuit of present many inverters is to adopt traditional H bridge circuit structure, this kind of circuit can produce three different level at AC and export and utilize these three level combinations equivalence to go out required alternating voltage, simple in structure, dependable performance, but total percent harmonic distortion is higher, characteristic harmonics in waveform is comparatively obvious, and needs larger filter reactance.In order to improve output current wave, need to adopt improved multi-electrical level inverter structure: one is multiple inverter configuration, by multiple inverter cooperatings, utilize the multiplex of main circuit to reduce the harmonic content of output voltage, a distinct disadvantage of the method be circuit structure too complexity and efficiency lower; Another kind is the novel circuit structure of research, output level by the side of increasing exchanges reduces total harmonic distortion, typically there are diode clamp type multi-electrical level inverter, capacitor pincers bit-type multi-electrical level inverter, cascade multilevel inverter etc., but for special application scenario, it is too complicated that these structures still seem, efficiency is lower, because power switch is more and bring difficulty to Control System Design.
Summary of the invention
In order to solve, existing multi-electrical level inverter topological structure is too complicated, a fairly large number of problem of power switch, the present invention proposes a kind of nine level single-phase inverters, can export nine different level combinations, have advantages of that power switch is few, control strategy is simple, stable.
The technical solution adopted in the present invention is: a kind of nine level single-phase inverters, comprise interchange transit ports, reactor, power switch circuit and DC power supply V1, DC power supply V2, DC power supply V3 and DC power supply V4, described interchange transit ports is provided with a end and b end, and described power switch circuit comprises power switch Q1, power switch Q2, power switch Q3, power switch Q4, power switch Q5, power switch Q6, power switch Q7, power switch Q8, power switch Q9 and power switch Q10, one end of described reactor connects a end that exchanges transit ports, the emitter of the other end of reactor and power switch Q1, the collector electrode electrical connection of power switch Q4, exchanges the b end of transit ports and the emitter of power switch Q2, the collector electrode electrical connection of power switch Q3, the collector electrode of power switch Q1, the collector electrode of power switch Q2, the collector electrode of power switch Q5, the emitter electrical connection of power switch Q6, the collector electrode of power switch Q6, the collector electrode of power switch Q7, the emitter electrical connection of power switch Q8, the emitter of power switch Q3, the emitter of power switch Q4, the emitter of power switch Q9, the collector electrode electrical connection of power switch Q10, the positive pole of DC power supply V1 is electrically connected with the collector electrode of power switch Q8, the negative pole of DC power supply V1, the positive pole of DC power supply V2 is electrically connected with the emitter of power switch Q7 respectively, the negative pole of DC power supply V2, the positive pole of DC power supply V3 is electrically connected with the emitter of power switch Q5 respectively, the negative pole of DC power supply V3, the positive pole of DC power supply V4 is electrically connected with the collector electrode of power switch Q9 respectively, and the negative pole of DC power supply V4 is electrically connected with the emitter of power switch Q10.
The present invention can export nine different level combinations, has advantages of that power switch is few, it is simple to control, stable.
As preferably, described reactor is smoothing reactor.
As preferably, described power switch Q1, power switch Q2, power switch Q3, power switch Q4, power switch Q5, power switch Q6, power switch Q7, power switch Q8, power switch Q9 and power switch Q10 are IGBT.
Preferred as another, described power switch Q1, power switch Q2, power switch Q3, power switch Q4, power switch Q5, power switch Q6, power switch Q7, power switch Q8, power switch Q9 and power switch Q10 are MOSFET.MOSFET element is applicable to small-power occasion.
As preferably, described DC power supply V1, DC power supply V2, the magnitude of voltage of DC power supply V3, DC power supply V4 are identical.The circuit of design has asymmetry like this.
As preferably, described DC power supply V1, DC power supply V2, the two ends of DC power supply V3, DC power supply V4 are connected with DC capacitor respectively.DC capacitor is used for supporting direct voltage.
As preferably, described reactor is connected with diode and filter capacitor with exchanging between port, the anodal linked reactor of described diode, the negative pole of diode connects a end that exchanges transit ports, and the two ends of described filter capacitor connect respectively the positive pole and the b end that exchanges transit ports of diode.Diode is used for preventing pouring in down a chimney of AC network energy, and while preventing that busbar voltage is lower, power network current flows to inverter side; Filter capacitor is for the filtering of inverter circuit, elimination high-frequency current component.
The invention has the beneficial effects as follows: there is power switch negligible amounts, control switch stress is less, power loss is little, efficiency is higher, work more stable, without filter circuit is set separately, ac output voltage harmonic content is little, output current can be similar to the ideal sinusoidal electric current of thinking without harmonic wave, the instruments such as the accurate measurement that can be widely used in electrical network to have relatively high expectations, communication and Medical Devices.
Accompanying drawing explanation
Fig. 1 is a kind of circuit diagram of the present invention;
Fig. 2 is another kind of circuit diagram of the present invention.
Embodiment
Below in conjunction with drawings and Examples, the present invention is described in further detail.
Embodiment 1
As shown in Figure 1, a kind of nine level single-phase inverters, comprise and exchange transit ports J1, reactor L1, power switch circuit and DC power supply V1, DC power supply V2, DC power supply V3 and DC power supply V4, exchange transit ports J1 and be provided with a end and b end, and power switch circuit comprises power switch Q1, power switch Q2, power switch Q3, power switch Q4, power switch Q5, power switch Q6, power switch Q7, power switch Q8, power switch Q9 and power switch Q10, one end of reactor L1 connects a end that exchanges transit ports J1, the emitter of the other end of reactor L1 and power switch Q1, the collector electrode electrical connection of power switch Q4, exchanges the b end of transit ports J1 and the emitter of power switch Q2, the collector electrode electrical connection of power switch Q3, the collector electrode of power switch Q1, the collector electrode of power switch Q2, the collector electrode of power switch Q5, the emitter electrical connection of power switch Q6, the collector electrode of power switch Q6, the collector electrode of power switch Q7, the emitter electrical connection of power switch Q8, the emitter of power switch Q3, the emitter of power switch Q4, the emitter of power switch Q9, the collector electrode electrical connection of power switch Q10, the positive pole of DC power supply V1 is electrically connected with the collector electrode of power switch Q8, the negative pole of DC power supply V1, the positive pole of DC power supply V2 is electrically connected with the emitter of power switch Q7 respectively, the negative pole of DC power supply V2, the positive pole of DC power supply V3 is electrically connected with the emitter of power switch Q5 respectively, the negative pole of DC power supply V3, the positive pole of DC power supply V4 is electrically connected with the collector electrode of power switch Q9 respectively, and the negative pole of DC power supply V4 is electrically connected with the emitter of power switch Q10.Exchange transit ports J1 and be used for connecting load, can be for inductive load can be also the loads higher to power requirement such as resistive load in practical application, the present invention can produce the required voltage waveform of user in this load-side.
Wherein, reactor L1 is smoothing reactor, and for flat ripple effect, choosing of smoothing reactor can be chosen according to direct voltage and AC voltage, and its value can be selected the 5%-10% of the frequency inverter capacity of capacity.DC power supply V1, DC power supply V2, DC power supply V3, DC power supply V4 are the DC power supply that magnitude of voltage is vdc, be responsible for balance direct voltage, and AC energy is provided.Parallel connection direct electric capacity all can be distinguished in the two ends of DC power supply V1, DC power supply V2, DC power supply V3, DC power supply V4.
Power switch circuit consists of ten power switchs, by adopting suitable PWM to control, can produce required voltage waveform at AC.Power switch Q1, power switch Q2, power switch Q3, power switch Q4, power switch Q5, power switch Q6, power switch Q7, power switch Q8, power switch Q9 and power switch Q10 all adopt IGBT, the power that the choosing of IGBT mainly need to be changed according to circuit and the electric current of inverter are chosen, and will consider certain surplus.Power switch Q1, power switch Q2, power switch Q3, power switch Q4 are responsible for the commutation of control inverter output, utilize PWM principle can simulate any waveform.Power switch Q5 and power switch Q6, power switch Q7 and power switch Q8, power switch Q9 and power switch Q10 form respectively three pairs of complementary power switchs, be responsible for the variation of the amplitude of control inverter output end voltage, can increase the true to nature degree of output waveform to reference waveform, reduce the harmonic wave in inverter output current, reduce power switch loss, improve the service behaviour of inverter.The present invention can produce nine different level outputs at AC incoming end by controlling the combination of different power switch: 0, vdc ,-vdc, 2vdc ,-2vdc, 3vdc ,-3vdc, 4vdc and-4vdc.
The present invention utilizes different power switch combinations and forms 14 kinds of mode of operations, and can have nine kinds of different direct voltage outputs in these 14 kinds of mode of operations: power switch Q1, power switch Q6, power switch Q8, power switch Q10 and power switch Q3 conducting, when other power switchs disconnect, DC power supply V1, DC power supply V2, DC power supply V3, DC power supply V4 output current simultaneously, ac output voltage is now 4vdc; Power switch Q1, power switch Q6, power switch Q8, power switch Q9 and power switch Q3 conducting, when other power switchs disconnect, DC power supply V1, DC power supply V2, DC power supply V3 output current simultaneously, DC power supply V4 is in vacant state, and ac output voltage is now 3vdc; Power switch Q1, power switch Q6, power switch Q7, power switch Q10 and power switch Q3 conducting, when other power switchs disconnect, DC power supply V2, DC power supply V3, DC power supply V4 output current simultaneously, DC power supply V1 is in vacant state, and ac output voltage is now 3vdc; Power switch Q1, power switch Q6, power switch Q7, power switch Q9 and power switch Q3 conducting, when other power switchs disconnect, DC power supply V1, DC power supply V2 output current, DC power supply V3, DC power supply V4 are in vacant state, and ac output voltage is now 2vdc; Power switch Q1, power switch Q5, power switch Q10 and power switch Q3 conducting, when other power switchs disconnect, DC power supply V3, DC power supply V4 output current, DC power supply V1, DC power supply V2 are in vacant state, and ac output voltage is now 2vdc; Power switch Q1, power switch Q5, power switch Q9 and power switch Q3 conducting, when other power switchs disconnect, DC power supply V3 output current, DC power supply V1, DC power supply V2, DC power supply V3 are in vacant state, and ac output voltage is now vdc; Power switch Q1, power switch Q2 conducting, when other power switchs disconnect, DC power supply V1, DC power supply V2, DC power supply V3, DC power supply V4 are all in vacant state, and ac output voltage is now 0; Power switch Q4, power switch Q10, power switch Q8, power switch Q6 and power switch Q2 conducting, when other power switchs disconnect, DC power supply V1, DC power supply V2, DC power supply V3, DC power supply V4 be output current simultaneously, and for oppositely, ac output voltage is now-4vdc; Power switch Q4, power switch Q10, power switch Q7, power switch Q6 and power switch Q2 conducting, when other power switchs disconnect, DC power supply V2, DC power supply V3, DC power supply V4 output current simultaneously, for oppositely, DC power supply V1 is in vacant state, and ac output voltage is now-3vdc; Power switch Q4, power switch Q10, power switch Q5 and power switch Q2 conducting, when other power switchs disconnect, DC power supply V3, DC power supply V4 be output current simultaneously, for oppositely, DC power supply V1, DC power supply V2 are in vacant state, and ac output voltage is now-2vdc; Power switch Q4, power switch Q9, power switch Q8, power switch Q6 and power switch Q2 conducting, when other power switchs disconnect, DC power supply V1, DC power supply V2, DC power supply V3 output current simultaneously, for oppositely, DC power supply V4 is in vacant state, and ac output voltage is now-3vdc; Power switch Q4, power switch Q9, power switch Q7, power switch Q6 and power switch Q2 conducting, when other power switchs disconnect, DC power supply V2, DC power supply V3 be output current simultaneously, for oppositely, DC power supply V1, DC power supply V4 are in vacant state, and ac output voltage is now-2vdc; Power switch Q4, power switch Q10, power switch Q5 and power switch Q2 conducting, when other power switchs disconnect, DC power supply V3 output current, for oppositely, DC power supply V1, DC power supply V2, DC power supply V4 are in vacant state, and ac output voltage is now-vdc; Power switch Q4, power switch Q3 conducting, when other power switchs disconnect, DC power supply V1, DC power supply V2, DC power supply V3, DC power supply V4 are all in vacant state, and ac output voltage is now 0.
Embodiment 2
In embodiment 2, as shown in Figure 2, reactor L1 is connected with diode D1 and filter capacitor C1 with exchanging between port J1, the anodal linked reactor L1 of diode D1, the negative pole of diode D1 connects a end that exchanges transit ports, the two ends of filter capacitor C1 connect respectively the positive pole and the b end that exchanges transit ports J1 of diode D1, diode D1 is used for preventing pouring in down a chimney of AC network energy, while preventing that busbar voltage is lower, power network current flows to inverter side, filter capacitor C1 is for the filtering of inverter circuit, elimination high-frequency current component.Power switch Q1, power switch Q2, power switch Q3, power switch Q4, power switch Q5, power switch Q6, power switch Q7, power switch Q8, power switch Q9 and power switch Q10 are MOSFET.Identical in other and embodiment 1.
Above embodiment only, for explanation technological thought of the present invention, can not limit protection scope of the present invention with this, every technological thought proposing according to the present invention, and any change of doing on technical scheme basis, within all falling into protection scope of the present invention.

Claims (7)

1. nine level single-phase inverters, is characterized in that: comprise interchange transit ports, reactor, power switch circuit and DC power supply V1, DC power supply V2, DC power supply V3 and DC power supply V4, described interchange transit ports is provided with a end and b end, and described power switch circuit comprises power switch Q1, power switch Q2, power switch Q3, power switch Q4, power switch Q5, power switch Q6, power switch Q7, power switch Q8, power switch Q9 and power switch Q10, one end of described reactor connects a end that exchanges transit ports, the emitter of the other end of reactor and power switch Q1, the collector electrode electrical connection of power switch Q4, exchanges the b end of transit ports and the emitter of power switch Q2, the collector electrode electrical connection of power switch Q3, the collector electrode of power switch Q1, the collector electrode of power switch Q2, the collector electrode of power switch Q5, the emitter electrical connection of power switch Q6, the collector electrode of power switch Q6, the collector electrode of power switch Q7, the emitter electrical connection of power switch Q8, the emitter of power switch Q3, the emitter of power switch Q4, the emitter of power switch Q9, the collector electrode electrical connection of power switch Q10, the positive pole of DC power supply V1 is electrically connected with the collector electrode of power switch Q8, the negative pole of DC power supply V1, the positive pole of DC power supply V2 is electrically connected with the emitter of power switch Q7 respectively, the negative pole of DC power supply V2, the positive pole of DC power supply V3 is electrically connected with the emitter of power switch Q5 respectively, the negative pole of DC power supply V3, the positive pole of DC power supply V4 is electrically connected with the collector electrode of power switch Q9 respectively, and the negative pole of DC power supply V4 is electrically connected with the emitter of power switch Q10.
2. nine level single-phase inverters according to claim 1, is characterized in that: described reactor is smoothing reactor.
3. nine level single-phase inverters according to claim 1, is characterized in that: described power switch Q1, power switch Q2, power switch Q3, power switch Q4, power switch Q5, power switch Q6, power switch Q7, power switch Q8, power switch Q9 and power switch Q10 are IGBT.
4. nine level single-phase inverters according to claim 1, is characterized in that: described power switch Q1, power switch Q2, power switch Q3, power switch Q4, power switch Q5, power switch Q6, power switch Q7, power switch Q8, power switch Q9 and power switch Q10 are MOSFET.
5. nine level single-phase inverters according to claim 1, is characterized in that: described DC power supply V1, DC power supply V2, the magnitude of voltage of DC power supply V3, DC power supply V4 are identical.
6. nine level single-phase inverters according to claim 1 or 5, is characterized in that: described DC power supply V1, DC power supply V2, the two ends of DC power supply V3, DC power supply V4 are connected with DC capacitor respectively.
7. nine level single-phase inverters according to claim 1, it is characterized in that: described reactor is connected with diode and filter capacitor with exchanging between port, the anodal linked reactor of described diode, the negative pole of diode connects a end that exchanges transit ports, and the two ends of described filter capacitor connect respectively the positive pole and the b end that exchanges transit ports of diode.
CN201410048233.9A 2014-02-12 2014-02-12 Nine-level single-phase inverter Pending CN103762877A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410048233.9A CN103762877A (en) 2014-02-12 2014-02-12 Nine-level single-phase inverter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410048233.9A CN103762877A (en) 2014-02-12 2014-02-12 Nine-level single-phase inverter

Publications (1)

Publication Number Publication Date
CN103762877A true CN103762877A (en) 2014-04-30

Family

ID=50530058

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410048233.9A Pending CN103762877A (en) 2014-02-12 2014-02-12 Nine-level single-phase inverter

Country Status (1)

Country Link
CN (1) CN103762877A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114337474A (en) * 2021-12-16 2022-04-12 拓尔微电子股份有限公司 Drive control circuit and motor control circuit

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013055830A (en) * 2011-09-05 2013-03-21 Chiba Univ Multilevel inverter circuit
CN203734563U (en) * 2014-02-12 2014-07-23 宁波绿凯节能科技有限公司 Nine-level single-phase inverter

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013055830A (en) * 2011-09-05 2013-03-21 Chiba Univ Multilevel inverter circuit
CN203734563U (en) * 2014-02-12 2014-07-23 宁波绿凯节能科技有限公司 Nine-level single-phase inverter

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
曾繁鹏: "多电平有源电力滤波器拓扑结构及控制方法研究", 《中国博士学位论文全文数据库》 *

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114337474A (en) * 2021-12-16 2022-04-12 拓尔微电子股份有限公司 Drive control circuit and motor control circuit
CN114337474B (en) * 2021-12-16 2023-03-10 拓尔微电子股份有限公司 Drive control circuit and motor control circuit

Similar Documents

Publication Publication Date Title
CN106655853B (en) A kind of three-level inverter
CN102097966A (en) Cascade megawatt photovoltaic grid-connected inverter
WO2012010053A1 (en) Transformer-less static synchronous compensator (statcom) topological structure based on modular multilevel converter (mmc)
CN103326606A (en) One-phase five-level inverter
CN103956927A (en) Voltage-active-clamping non-transformer-type single-phase photovoltaic inverter
CN104638971A (en) Photovoltaic grid-connected inverter and control method thereof
CN103427658A (en) High-voltage DC-DC conversion device based on multi-winding transformer
CN103312211A (en) Control method of single phase grid-connected inverter
CN103312210A (en) Three-phase four-wire type three-level photovoltaic grid-connected inverter
CN202183738U (en) Cascading multi-level inverting circuit capable of automatically generating cascading power source
CN102403920A (en) Three-level half-bridge photovoltaic grid connected inverter
CN102437761B (en) Single-phase full bridge three-level inverter and three-phase three-level inverter
CN101895205B (en) Transducer
CN204578373U (en) A kind of High Frequency Link many level DCs transformer for mesolow DC distribution
CN203734563U (en) Nine-level single-phase inverter
CN203734562U (en) Eleven-level single-phase inverter
CN103633867A (en) Seven-level single-phase inverter circuit
CN104167946A (en) Midpoint clamping type single-phase non-isolated photovoltaic inverter main circuit topology with follow current switch
CN203537260U (en) Seven-level single-phase inverter circuit
CN103762877A (en) Nine-level single-phase inverter
CN105281364B (en) A kind of photovoltaic generating system based on multi-phase inverter unit
CN204333978U (en) A kind of single-phase miniature photovoltaic combining inverter
CN108092536A (en) A kind of five flat current transformer of device mixed type active clamper
CN203537261U (en) Seven-level single-phase photovoltaic grid-connected inverter
CN203537259U (en) Five-level single-phase photovoltaic grid-connected inverter

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C02 Deemed withdrawal of patent application after publication (patent law 2001)
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20140430