CN108879797A - A kind of active distribution network port PQ control method - Google Patents

A kind of active distribution network port PQ control method Download PDF

Info

Publication number
CN108879797A
CN108879797A CN201810922226.5A CN201810922226A CN108879797A CN 108879797 A CN108879797 A CN 108879797A CN 201810922226 A CN201810922226 A CN 201810922226A CN 108879797 A CN108879797 A CN 108879797A
Authority
CN
China
Prior art keywords
pcc
power
active
port
distribution network
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.)
Granted
Application number
CN201810922226.5A
Other languages
Chinese (zh)
Other versions
CN108879797B (en
Inventor
项基
杨振铨
周关连
沈祥
顾丰
顾一丰
莫晓明
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.)
Zhejiang University ZJU
Shaoxing Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
Original Assignee
Zhejiang University ZJU
Shaoxing Power Supply Co of State Grid Zhejiang Electric Power 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 Zhejiang University ZJU, Shaoxing Power Supply Co of State Grid Zhejiang Electric Power Co Ltd filed Critical Zhejiang University ZJU
Priority to CN201810922226.5A priority Critical patent/CN108879797B/en
Publication of CN108879797A publication Critical patent/CN108879797A/en
Application granted granted Critical
Publication of CN108879797B publication Critical patent/CN108879797B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J3/00Circuit arrangements for ac mains or ac distribution networks
    • H02J3/38Arrangements for parallely feeding a single network by two or more generators, converters or transformers
    • H02J3/46Controlling of the sharing of output between the generators, converters, or transformers

Landscapes

  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Supply And Distribution Of Alternating Current (AREA)

Abstract

The invention discloses a kind of active distribution network port PQ control methods, include the following steps:(1) three-phase voltage and electric current inputted at active distribution network port is acquired;(2) active-power P inputted at active distribution network port is calculated according to the voltage and current that step (1) acquisition obtainsPCCAnd reactive power QPCC;(3) the port reference active power of setting is calculatedWith active-power PPCCBetween difference DELTA PPCC, by Δ PPCCIt inputs in PI control module, obtains port active power deviation compensation amount δ PPCC;(4) the port reference reactive power of setting is calculatedWith reactive power QPCCBetween difference DELTA QPCC, by Δ QPCCIt inputs in PI control module, obtains port reactive power deviation compensation amount δ QPCC;(5) by port active and reactive power deviation compensation amount δ PPCC、δQPCCIt is delivered separately to each distributed generation resource;(6) distributed generation resource generates real power control signal;(7) distributed generation resource generates idle control signal;(8) each distributed generation resource is inputted active and Reactive Power Control signal as the control of respective inverter.

Description

A kind of active distribution network port PQ control method
Technical field
The present invention relates to power distribution network port power control technology field, in particular to a kind of active distribution network port PQ control Method.
Background technique
As society and expanding economy, people constantly increase the demand of the energy, the shortage of fossil energy and people To the attention of environmental protection so that various countries increasingly pay close attention to the development and utilization of new energy.Therefore, as distributed energy is big Amount access power distribution network, traditional power distribution network has become active distribution network, and the trend at its port is showed and do not known greatly Property.This causes difficulty to the stable operation of bulk power grid and power dispatching.In order to solve this problem, it is necessary to active distribution Net port power is controlled.
In the prior art, control active distribution network port power mostly uses inverter or energy storage to compensate control, such as discloses Number a kind of control method of power grid distributed generation resource based on hybrid energy-storing is disclosed for the patent document of CN 102983589A, Include the following steps:The topological structure of optimization design distributed generation resource;It is assisted by DC/DC convertor controls mode normalization creep function Regulate and control DC power-supply system processed;Exchange the power grid self adaptive control of side DC/AC inverter.The distributed generation resource both may be incorporated into big electricity Net operation reduces influence of the intermittent renewable energy electricity generation grid-connecting to power grid, and provides voltage and frequency support to power grid; Also it may be incorporated into micro-capacitance sensor, the group net unit as off-network type micro-capacitance sensor is run, and maintains the voltage of off-network type micro-capacitance sensor and frequency steady It is fixed;When external electrical network breaks down, which can also realize the double mode switching of grid-connected/isolated island, improve system The power supply reliability of middle important load.Above-mentioned distributed generation resource is utilized by energy type and the cooperation of power-type energy-storage system, is improved Whole system technical performance and economic performance.In another example the patent document of Publication No. CN104701849B discloses a kind of master The dynamic full distributed self-discipline voltage control method of power distribution network, is divided into two stages:First stage is to establish voltage-controlled convex loose mould Type;Feeder line is divided into several control zones, a control zone can be one or several buses and be articulated in power generation above Machine and reactive power compensator;The overall situation is acquired using alternating direction multipliers method using the local and communication with neighbours in each control zone The optimal local control amount of voltage's distribiuting;Second stage is transformer substation side by the adjusting to feeder line root node voltage magnitude, is made The safety margin for obtaining voltage magnitude distribution is as big as possible.Two stage iteration operations, until not new optimization operation.On Method is stated suitable for the distribution network voltage control after large-scale distributed power grid, the data of control zone can be protected well Privacy, the control method have very high agility and flexibility.
But above-mentioned control mode both increases equipment cost, and again without point made full use of in active distribution network The power supply of cloth.It is therefore proposed that new active distribution network port PQ control method, does not need to add additional inverter or energy storage Equipment, and distributed generation resource existing in power distribution network is made full use of, become particularly significant and significant.
Summary of the invention
The present invention provides a kind of active distribution network port PQ control methods, have not both needed to add at active distribution network port Add additional inverter or energy storage device, and can make full use of distributed generation resource existing in power distribution network.
A kind of active distribution network port PQ control method, includes the following steps:
(1) the three-phase voltage v inputted at active distribution network port (PCC) is acquiredabcWith electric current iabc
(2) active power inputted at active distribution network port is calculated according to the voltage and current that step (1) acquisition obtains PPCCAnd reactive power QPCC
(3) the port reference active power of setting is calculatedThe active-power P being calculated with step (2)PCCBetween Difference DELTA PPCC, by Δ PPCCIt inputs in PI control module, obtains port active power deviation compensation amount δ PPCC
(4) the port reference reactive power of setting is calculatedThe reactive power Q being calculated with step (2)PCCBetween Difference DELTA QPCC, by Δ QPCCIt inputs in PI control module, obtains port reactive power deviation compensation amount δ QPCC
(5) by port active and reactive power deviation compensation amount δ PPCC、δQPCCIt is delivered separately to each in active distribution network Distributed generation resource;
(6) each distributed generation resource is receiving the active power deviation compensation amount δ P transmitted at portPCCAfterwards, had according to itself Function output power limit generates real power control signal.It is active by taking any one distributed generation resource i in active distribution network as an example Control signal is Pi-ref
(7) each distributed generation resource is receiving the reactive power deviation compensation amount δ Q transmitted at portPCCAfterwards, according to itself nothing Function output power limit generates idle control signal.It is idle by taking any one distributed generation resource i in active distribution network as an example Control signal is Qi-ref
(8) each distributed generation resource is using the obtained active and Reactive Power Control signal in step (6) and (7) as respectively The control of inverter inputs, and realizes tracking of the inverter output power to power instruction.It, will step in a distributed manner for power supply i Suddenly P obtained in (6) and step (7)i-refAnd Qi-refControl signal as distributed electrical source inventer inputs inverter, real Existing tracking of the inverter output power to power instruction.Each distributed generation resource is indirectly realized pair by controlling itself output power The active control with reactive power in port, makes port input active-power PPCCAnd reactive power QPCCGiven reference value is tracked respectivelyWith
The present invention can be realized the given reference value of the tracking of the active and idle input power at active distribution network port, this Inventive method is by passing through a PI controller for the deviation of input power and given reference power at active distribution network port Port power thermal compensation signal is generated, and the thermal compensation signal is passed to all distributed generation resources in power distribution network.Each distributed electrical Source generates power control signal in conjunction with respective output power limit and inputs respective inverter, realizes inverter output power pair The tracking of power instruction.According to conservation of energy principle, input power and reference value are distributed there are when deviation at power distribution network port Formula power supply is compensated deviation, and the reference value that the input power tracking at power distribution network port gives may be implemented.
The method of the present invention is generating active power thermal compensation signal δ P at power distribution network portPCCWhen, a PI link is used, Reduce δ PPCCFluctuation, keep the variation of the active power during power compensation gentler.The method of the present invention is matched in generation Reactive power compensation signal δ Q at power grid portPCCWhen, a PI link is used, δ Q is reducedPCCFluctuation, make power compensation The variation of reactive power in the process is gentler.
The PI controller of active power is by a ratio controlling unit (K in the present inventionP-P) and an integration control linkIt composes in parallel;The PI controller of reactive power is by a ratio controlling unit (KP-Q) and an integration control linkIt composes in parallel.
In order to further make the variation of the active power during power compensation gentler, it is preferred that in step (3), By the active input power P in the port being calculatedPCCWith port reference active powerBetween difference DELTA PPCCInput PI control In molding block, port active power deviation compensation amount δ P is obtainedPCC, calculation formula is as follows:
Wherein:
KP-PFor ratio control parameter;
KI-PFor integration control parameter;
S is the complex variable in Laplace transform.
Choose KP-QWhen in order to obtain faster initial convergence speed, can choose value bigger than normal, it is preferred that KP-Q= 1~5.
KI-QValue can according to power tracking rate request and maximum overshoot limitation through examination gather to obtain, it is preferred that KI-Q= 0.1~0.5.
In order to further make the variation of the reactive power during power compensation gentler, it is preferred that in step (4), By the idle input power Q in the port being calculatedPCCWith port reference reactive powerBetween difference DELTA QPCCInput PI control In molding block, port reactive power deviation compensation amount δ Q is obtainedPCC, calculation formula is as follows:
Wherein:
KP-QFor ratio control parameter;
KI-QFor integration control parameter;
S is the complex variable in Laplace transform.
Choose KP-QWhen in order to obtain faster initial convergence speed, can choose value bigger than normal, it is preferred that KP-Q= 1~5.
KI-QValue can according to power tracking rate request and maximum overshoot limitation through examination gather to obtain, it is preferred that KI-Q= 0.1~0.5.
The method of the present invention is when generating distributed generation resource active power controller signal, it is contemplated that the wattful power of distributed generation resource Rate export-restriction enables distributed generation resource to operate normally in trouble free service section, it is preferred that each to be distributed in step (6) Formula power supply is receiving the active power deviation compensation amount δ P transmitted at portPCCAfterwards, it is generated according to itself active output power limit Real power control signal, by taking any one distributed generation resource i in active distribution network as an example, real power control signal Pi-refGeneration machine It makes as follows:
Wherein:
PiFor the measured value of the active output power of distributed generation resource i;
For the active output power of maximum of distributed generation resource i.
The method of the present invention is when generating distributed generation resource Reactive Power Control signal, it is contemplated that the idle function of distributed generation resource Rate export-restriction enables distributed generation resource to operate normally in trouble free service section, it is preferred that each to be distributed in step (7) Formula power supply is receiving the reactive power deviation compensation amount δ Q transmitted at portPCCAfterwards, it is generated according to own reactive output power limit Idle control signal, by taking any one distributed generation resource i in active distribution network as an example, idle control signal Qi-refGeneration machine It makes as follows:
Wherein:
QiFor the measured value of the idle output power of distributed generation resource i;
For the idle output power of maximum of distributed generation resource i;
For the maximum apparent energy of distributed generation resource i.
In conclusion not needing not only to pacify at port using active distribution network port PQ control method proposed by the present invention Additional control equipment is filled, and can quickly realize that port input power tracks given value.Each distribution in power distribution network Formula power supply also all works in trouble free service section.
In order to improve compensation speed, it is preferred that in step (5), passed in active distribution network by way of broadcast Each distributed generation resource.Power distribution network port power deviation is transmitted to each distributed generation resource by the way of broadcast, makes it simultaneously Power compensation is carried out, has compensation speed fast, the good feature of robustness.
In the present invention using broadcast mode be by radio wave carry out information transmitting by the way of.The function of power distribution network port Rate deviation signal is transmitted to each distributed generation resource in active distribution network by way of radio communication.What this information was propagated Mode has speed fast, at low cost, the good feature of robustness.Each distributed generation resource in active distribution network can be made timely to obtain It obtains the compensated information of power distribution network port power and is compensated.It can also in addition, transmitting power deviation signal by the way of broadcast Keep each distributed generation resource with uniformity to the compensation of power distribution network port power, effectively prevents in distributed generation resource compensation process Because compensation direction is inconsistent and caused by the low problem of compensation efficiency.
Beneficial effects of the present invention:
(1) present invention can realize function at active distribution network port in the case where not increasing the equipment such as current transformer, energy storage Tracking of the rate to given reference value, saves equipment input cost.
(2) present invention considers the respective output power capacity limit of distributed generation resource, and ensure that distributed generation resource can By safe operation.
Detailed description of the invention
Fig. 1 is the wire frame flow chart of active distribution network port PQ control method of the invention.
Fig. 2 is the schematic diagram using the active distribution network of the method for the present invention.
Fig. 3 is the wire schematic diagram using the distributed generation resource overall control of the method for the present invention.
Specific embodiment
Present invention is further described in detail with reference to the accompanying drawing:
As shown in Fig. 1~2, the active distribution network port PQ control method of the present embodiment includes the following steps:
(1) the three-phase voltage v inputted at active distribution network port (PCC) is acquiredabcWith electric current iabc
(2) active-power P inputted at active distribution network port is calculatedPCCAnd reactive power QPCC
(3) the port reference active power of setting is calculatedWith active-power PPCCBetween difference DELTA PPCC, by Δ PPCC It inputs in PI control module, obtains port active power deviation compensation amount δ PPCC, δ PPCCValue be:
Wherein:
KP-PFor ratio control parameter;
KI-PFor integration control parameter;
S is the complex variable in Laplace transform.
(4) the port reference reactive power of setting is calculatedWith reactive power QPCCBetween difference DELTA QPCC, by Δ QPCC It inputs in PI control module, obtains port reactive power deviation compensation amount δ QPCC, δ QPCCValue be:
Wherein:
KP-QFor ratio control parameter;
KI-QFor integration control parameter;
S is the complex variable in Laplace transform.
(5) by port active and reactive power deviation compensation amount δ PPCC、δQPCCIt is passed to by way of broadcast respectively actively Each distributed generation resource in power distribution network;
(6) as shown in figure 3, the distributed generation resource receives by taking any one distributed generation resource i in active distribution network as an example Port active power deviation compensation amount δ PPCCAfterwards according to itself output power limit, active power controller signal P is generatedi-ref, Calculation formula is respectively:
Wherein:
PiFor the measured value of the active output power of distributed generation resource i;
For the active output power of maximum of distributed generation resource i.
(7) distributed generation resource receives port reactive power deviation compensation amount δ Q simultaneouslyPCCIt is limited afterwards according to itself output power System generates Reactive Power Control signal Qi-ref, calculation formula is respectively:
Wherein:
QiFor the measured value of the idle output power of distributed generation resource i;
For the idle output power of maximum of distributed generation resource i;
For the maximum apparent energy of distributed generation resource i.
(8) each distributed generation resource is using the obtained active and Reactive Power Control signal in step (6) and (7) as respectively The control of inverter inputs, and realizes tracking of the inverter output power to power instruction.It, will step in a distributed manner for power supply i Suddenly P obtained in (6) and step (7)i-refAnd Qi-refControl signal as distributed electrical source inventer inputs inverter, real Existing tracking of the inverter output power to power instruction.Each distributed generation resource is indirectly realized pair by controlling itself output power The active control with reactive power in port, makes port input active-power PPCCAnd reactive power QPCCGiven reference value is tracked respectivelyWith
In conclusion the present embodiment can realize active distribution network in the case where not increasing the equipment such as current transformer, energy storage Tracking of the power to given reference value at port.Save equipment input cost;The present embodiment is by the way of broadcast by distribution Net port power deviation is transmitted to each distributed generation resource, makes it while carrying out power compensation.Fast with compensation speed, robustness is good The characteristics of;The present embodiment considers the respective output power capacity limit of distributed generation resource, ensure that the reliable of distributed generation resource Safe operation.

Claims (8)

1. a kind of active distribution network port PQ control method, which is characterized in that include the following steps:
(1) the three-phase voltage v inputted at active distribution network port is acquiredabcWith electric current iabc
(2) active-power P inputted at active distribution network port is calculated according to the voltage and current that step (1) acquisition obtainsPCCWith Reactive power QPCC
(3) the port reference active power of setting is calculatedThe active-power P being calculated with step (2)PCCBetween difference ΔPPCC, by Δ PPCCIt inputs in PI control module, obtains port active power deviation compensation amount δ PPCC
(4) the port reference reactive power of setting is calculatedThe reactive power Q being calculated with step (2)PCCBetween difference ΔQPCC, by Δ QPCCIt inputs in PI control module, obtains port reactive power deviation compensation amount δ QPCC
(5) by port active and reactive power deviation compensation amount δ PPCC、δQPCCThe each distribution being delivered separately in active distribution network Formula power supply;
(6) each distributed generation resource is receiving the active power deviation compensation amount δ P transmitted at portPCCAfterwards, active defeated according to itself Power limit generates real power control signal out;
(7) each distributed generation resource is receiving the reactive power deviation compensation amount δ Q transmitted at portPCCAfterwards, defeated according to own reactive Power limit generates idle control signal out;
(8) each distributed generation resource is using the obtained active and Reactive Power Control signal in step (6) and (7) as respective inversion The control of device inputs, and realizes tracking of the inverter output power to power instruction.
2. active distribution network port PQ control method as described in claim 1, which is characterized in that in step (3), will calculate The active input power P in the port arrivedPCCWith port reference active powerBetween difference DELTA PPCCIt inputs in PI control module, Obtain port active power deviation compensation amount δ PPCC, calculation formula is as follows:
Wherein:
KP-PFor ratio control parameter;
KI-PFor integration control parameter;
S is the complex variable in Laplace transform.
3. active distribution network port PQ control method as described in claim 1, which is characterized in that in step (4), will calculate The port arrived is idle input power QPCCWith port reference reactive powerBetween difference DELTA QPCCIt inputs in PI control module, Obtain port reactive power deviation compensation amount δ QPCC, calculation formula is as follows:
Wherein:
KP-QFor ratio control parameter;
KI-QFor integration control parameter;
S is the complex variable in Laplace transform.
4. active distribution network port PQ control method as described in claim 1, which is characterized in that in step (6), each distribution Power supply is receiving the active power deviation compensation amount δ P transmitted at portPCCAfterwards, had according to itself active output power limit Power control signal, by taking any one distributed generation resource i in active distribution network as an example, real power control signal Pi-refGeneration mechanism It is as follows:
Wherein:
PiFor the measured value of the active output power of distributed generation resource i;
For the active output power of maximum of distributed generation resource i.
5. active distribution network port PQ control method as claimed in claim 4, which is characterized in that in step (7), each distribution Power supply is receiving the reactive power deviation compensation amount δ Q transmitted at portPCCAfterwards, nothing is generated according to own reactive output power limit Power control signal, by taking any one distributed generation resource i in active distribution network as an example, idle control signal Qi-refGeneration mechanism It is as follows:
Wherein:
QiFor the measured value of the idle output power of distributed generation resource i;
For the idle output power of maximum of distributed generation resource i;
For the maximum apparent energy of distributed generation resource i.
6. active distribution network port PQ control method as described in claim 1, which is characterized in that in step (5), pass through broadcast Mode pass to each distributed generation resource in active distribution network.
7. active distribution network port PQ control method as described in claim 3 or 4, which is characterized in that KP-Q=1~5.
8. active distribution network port PQ control method as described in claim 3 or 4, which is characterized in that KI-Q=0.1~0.5.
CN201810922226.5A 2018-08-14 2018-08-14 Active power distribution network port PQ control method Expired - Fee Related CN108879797B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810922226.5A CN108879797B (en) 2018-08-14 2018-08-14 Active power distribution network port PQ control method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201810922226.5A CN108879797B (en) 2018-08-14 2018-08-14 Active power distribution network port PQ control method

Publications (2)

Publication Number Publication Date
CN108879797A true CN108879797A (en) 2018-11-23
CN108879797B CN108879797B (en) 2020-12-15

Family

ID=64318031

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201810922226.5A Expired - Fee Related CN108879797B (en) 2018-08-14 2018-08-14 Active power distribution network port PQ control method

Country Status (1)

Country Link
CN (1) CN108879797B (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110061526A (en) * 2019-05-27 2019-07-26 浙江大学 A kind of schedulable inverter droop control method
CN110829423A (en) * 2019-11-18 2020-02-21 浙江大学 Distributed power system stabilizer and method
CN112467799A (en) * 2021-01-25 2021-03-09 国网江西省电力有限公司电力科学研究院 Grid-connected control method and device for battery energy storage system

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104158229A (en) * 2014-07-17 2014-11-19 浙江大学 Secondary control method suitable for micro-grid system comprising various distributed power supplies
CN104779640A (en) * 2015-04-15 2015-07-15 上海追日电气有限公司 System for preventing distributed power generation system from reversing electric power to power grid and control method

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104158229A (en) * 2014-07-17 2014-11-19 浙江大学 Secondary control method suitable for micro-grid system comprising various distributed power supplies
CN104779640A (en) * 2015-04-15 2015-07-15 上海追日电气有限公司 System for preventing distributed power generation system from reversing electric power to power grid and control method

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110061526A (en) * 2019-05-27 2019-07-26 浙江大学 A kind of schedulable inverter droop control method
CN110829423A (en) * 2019-11-18 2020-02-21 浙江大学 Distributed power system stabilizer and method
CN112467799A (en) * 2021-01-25 2021-03-09 国网江西省电力有限公司电力科学研究院 Grid-connected control method and device for battery energy storage system

Also Published As

Publication number Publication date
CN108879797B (en) 2020-12-15

Similar Documents

Publication Publication Date Title
CN103138290B (en) Microgrid seamless switching control method based on improving phase control under peer mode
Zhang et al. Fully distributed coordination of multiple DFIGs in a microgrid for load sharing
Ahmad et al. DQ-axis synchronous reference frame based PQ control of grid connected AC microgrid
CN110198045B (en) VSC-MTDC additional frequency adaptive droop control method
CN104659804A (en) Micro power grid with hybrid energy storage, and control method of micro power grid
CN104659802B (en) A kind of VSC-HVDC alternating voltage-frequency coordination control method improving AC system transient stability
CN105794066A (en) Multivariable modulator controller for power generation facility
CN107994588A (en) Lift the idle control strategy of wind power plant of wind power integration light current net transient stability
CN108879797A (en) A kind of active distribution network port PQ control method
CN109888786A (en) A kind of control method of alternating current-direct current mixing micro-capacitance sensor
CN109659941A (en) A kind of alternating current-direct current mixing micro-capacitance sensor autonomous control method and system
Eidiani et al. Frequency and voltage stability of the microgrid with the penetration of renewable sources
CN110350538B (en) Micro-grid coordination control method based on active demand side response
CN108063443A (en) A kind of alternating current-direct current bi-directional power conversion control method
CN109066777A (en) Photovoltaic power generation grid-connecting output power control method
Gao et al. Distributed multi‐agent control for combined AC/DC grids with wind power plant clusters
CN105576718B (en) Alternating current-direct current distribution source lotus optimization distribution control method under a kind of distributed new high permeability situation
CN108123470A (en) A kind of distributed generation resource parallel running droop control method
Muhtadi et al. Renewable energy based microgrid: Role of the architecture in grid enhancement towards sustainable energy
CN106329531B (en) A kind of alternating current-direct current mixing micro-capacitance sensor power flow control method and apparatus
CN109038666A (en) Solar panel output power regulating system
Nguyen et al. Enhancing effectiveness of grid-connected photovoltaic systems by using hybrid energy storage systems
CN113765159A (en) Method and system for improving voltage control capability of new energy station based on coordination control
CN205945057U (en) Little grid system who contains distributed generator
CN103050972A (en) Micro power grid and large power grid high-voltage intelligent flexible transmission serial connection compensation device and control method thereof

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20201215

CF01 Termination of patent right due to non-payment of annual fee