999精品在线视频,手机成人午夜在线视频,久久不卡国产精品无码,中日无码在线观看,成人av手机在线观看,日韩精品亚洲一区中文字幕,亚洲av无码人妻,四虎国产在线观看 ?

Parameter optimization of electro-hydraulic proportionalsystem of PID based on the improved ant colony algorithm

2014-09-05 05:47:40XiufenXU
機床與液壓 2014年6期
關鍵詞:優化

Xiu-fen XU

Electrical and Mechanical Engineering College,Xinxiang Institute,Xinxiang 453000,China

Parameteroptimizationofelectro-hydraulicproportionalsystemofPIDbasedontheimprovedantcolonyalgorithm

Xiu-fen XU?

ElectricalandMechanicalEngineeringCollege,XinxiangInstitute,Xinxiang453000,China

VACA is a hybrid algorithm combined with the variable metric algorithm and ant colony optimization algorithm.For the electro-hydraulic proportional control system for PID parameter tuning problem,this paper puts forward the optimization of PID parameters based on VACA,and gives the specific implementation steps: establish mathematical model for electro-hydraulic control system,establish the simulation model of electro-hydraulic proportional control system of VACA-PID by using SIMULINK toolbox,simulation and verification.The results show that: the VACA-PID controller has good static and dynamic performance,can fully meet the electro-hydraulic proportional control system.

Improved ant colony algorithm,Electro-hydraulic proportional control,PID,Optimization

1.Introduction

Concrete pump truck[1] is a kind of construction machinery with concrete pumps placed in the special purpose vehicle turf,to be able to walk independently and realize transmission and pouring concrete through special boom of high technical content.Pump truck boom is the core part of the electro-hydraulic control system and its dynamic and steady-state performance has far-reaching influences on the vehicle performance.Although traditional Z-N[2-4] setting algorithm can basically meet the requirements,it has some limitations because of the poor stability and low accuracy of setting.So we must adopt measures to improve the control effect.Based on VACA[5] to PID control parameter optimization,the passage forms the intelligent electro hydraulic proportional control system.

Single section control system electro-hydraulic proportion control system is a position closed loop control system,its principle diagram is shown in Figure 1,including the electro-hydraulic proportional valve,valve controlled single rod hydraulic cylinder,conversion link (to convert cylinder expansion amount to boom Angle),obliquity sensor,etc.

Figure 1.The principle diagram of the electro-hydraulic proportional control system

2.The transfer function of the system

Static and dynamic performance of the electro-hydraulic proportional position control system mainly depends on the electro-hydraulic proportional valve and valve control hydraulic cylinder components such as features.Mathematical model of transmission system function is established.

2.1.Transferfunctionofelectro-hydraulicproportionaldirectionvalve

According to the actual situation,the transfer function of electro-hydraulic proportional valve can be simplified as the second order oscillation link,its transfer function is:

(1)

In the formula:

X: valve core displacement (m);

Kq: the valve’s flow gain (m3·s-1·A-1);

ωn:the valve’s inherent frequency (rad/s);

ζn:valve damping ratio,usually is 0.5~0.7.

2.2.Transferfunctionofvalvecontrolledsinglerodhydrauliccylinder

1) The force balance equation of the hydraulic cylinder and the load

(2)

Y: the hydraulic cylinder piston displacement (m);

Mt: piston and load equivalent to the total mass on the piston(kg);

Bp: the piston and the viscous damping coefficient of load (N·s/m);

FL: effect on the piston as accidental load (N);

2) The flow continuity equation of the hydraulic cylinder:

(3)

In the formula:

βl: effective bulk modulus (Pa);

V0: cavity volume of any hydraulic cylinder (m3);

3) Slide valve flow equation

QL=Q1=KqX-KcPL

(4)

In the formula:

Kq: valve frontal flow gain (m3·s-1·A-1);

Kc: valve of flow pressure coefficient (m3·s-1·pa-1)

For formula (2),(3),(4),make a Laplace transform,three basic equations can be obtained:

A1PL=mtS2Y+BPSY+FL

(5)

(6)

QL=KqX-KCPL

(7)

Based on the three basic equations,we can get the transfer function expression of valve control hydraulic cylinder

(8)

In the formula:

ωh: valve control hydraulic cylinder natural frequency (rad/s);

ζh: valve control hydraulic cylinder damping ratio;

βe: effective bulk modulus (Pa);

FL: effect on the piston arbitrary load (N);

A1: rodless hydraulic cylinder cavity cross-section area (m2);

A0: hydraulic cylinder rod cavity area (m2);

V0: cavity volume of any hydraulic cylinder (m3).

Take the individual parameters of valve control hydraulic cylinder into the equation above and available valve control cylinder transfer function can be got:

(9)

According to the type of the hydraulic cylinder piston displacement relative proportional valve core displacement and relative to the external load transfer function,it is shown as follows:

(10)

(11)

3.The establishment of the PID algorithm based on VACA

3.1.ThePIDcontrolparameterssetting

PID[6-7] controller is a linear controller,according to the given valuer(t) and the actual output valuey(t) to control deviatione(t),namely:

e(t)=r(t)-y(t)

(12)

The deviation of the ratio (P-proportion),integral (I-integral),differential(D-differential),by the linear combination of the control volume,controlled object,so that the PID controller,its control law (represented by a transfer function) for:

(13)

Combining the improved ant colony algorithm and PID together,we can optimize the three parameters of PID controller online.Based on ant colony algorithm of PID control system,structure is shown in Figure 2.

Figure 2.The control program principle diagram of the improved ant colony algorithm

3.2.VACA-PIDcontrolservosystemmodel

Under the MATLAB7.0[8] interface,use Simulink to establish the corresponding VACA-PID control system and the module type,as shown in Figure 3.

VACA algorithm process is shown in Figure 4.

(b) the VAC-PID control modules

3.3.Therealizationofthealgorithm

9.10≤KP≤10.0;100.0≤Ti≤120;

0≤Td≤0.50

Figure 4.VACA flow chart of the algorithm

3.4.Thesimulationanalysisandverification

Improved ant colony algorithm for PID parameters optimization performance indicators are shown in Table 1.

Table 1.PID parameters settings between Z-N optimal and VACA contrast

We can see from the Figure 5,VACA-PID setting of electro-hydraulic proportional system steady state was achieved at 5.6 s and no overshoot.Because of the boom,a process can take a few minutes,and the control accuracy and response time of this system are fully able to meet the requirements.

Figure 5.Two different optimization strategy step response curves

4.Conclusion

The simulation results show that PID parameters optimization method based on improved ant colony algorithm(VACA) can short the setting time and decrease overshoot.VACA control strategy has simple structure,good stability and easy to project implem-entation.It realizes the characteristics of electro-Hydraulic proportional System steady-state performance and dynamic performance optimization.

[1]Zhao Ruonan.Concrete pump truck arm electro-hydraulic system PID control[D].Nanjing: YanShan university engineering master degree thesis,2012(5):27-30.

[2]Zhang Hanlei.FESTO proportional hydraulic position control system design and performance simulation analysis[D].Guiyang: Gui Zhou university engineering master degree thesis,2011:55-58.

[3]Yang Jing,Tong Zhixue,Liu Tao.Hydraulic machinery flashlight hydraulic proportion system fuzzy PID control study[J].machinery science and technology,2013,32(6): 834-838.

[4]Wang Muye,Zhang Xuming.Stage lifting hydraulic pump controlled cylinder synchronization with hydraulic control system[J].Machine tool and hydraulics.2010,38(20): 52-54.

[5]Yin Hongpeng,Chai Yi.PID control parameters optimization based on ant colony algorithm[J].Computer engineering and application,2007,43(17): 4-7.

[6]Liu Yong,Wang Yong.Direct drive electro-hydraulic servo system PID correction compound controller study[J].machine tools and hydraulic,2010,38(17):8-11.

[7]Quan Long.The control of the pump cylinder electro-hydraulic technology research status quo,problems and innovative solutions[J].Journal of mechanical engineering,2008,44(11): 87-92.

[8]Huang Jian.Automatic control principle and its application[M].Beijing: Beijing higher education press,2009.

基于改進蟻群算法的電液比例系統PID參數優化

徐秀芬?

(新鄉學院 機電工程學院,河南 新鄉 453000)

VACA是變尺度算法融入蟻群優化算法中而形成的一種混合算法。針對電液比例系統PID 控制參數整定問題,提出了基于改進蟻群算法的 PID 參數優化方案,并給出了具體的實現步驟:建立臂架電液控制系統的數學模型,利用Simulink工具箱建立了電液比例控制系統的 VACA-PID的仿真模型,進行了仿真和驗證。結果表明: VACA-PID 控制器具有良好的靜、動態性能,完全能達到電液比例控制系統的要求。

改進蟻群算法;電液比例控制;PID;優化

TM921.51

2013-09-28

? Xiu-fen XU,E-mail: xxf_xf@163.com

10.3969/j.issn.1001-3881.2014.06.025

猜你喜歡
優化
超限高層建筑結構設計與優化思考
房地產導刊(2022年5期)2022-06-01 06:20:14
PEMFC流道的多目標優化
能源工程(2022年1期)2022-03-29 01:06:28
民用建筑防煙排煙設計優化探討
關于優化消防安全告知承諾的一些思考
一道優化題的幾何解法
由“形”啟“數”優化運算——以2021年解析幾何高考題為例
圍繞“地、業、人”優化產業扶貧
今日農業(2020年16期)2020-12-14 15:04:59
事業單位中固定資產會計處理的優化
消費導刊(2018年8期)2018-05-25 13:20:08
4K HDR性能大幅度優化 JVC DLA-X8 18 BC
幾種常見的負載均衡算法的優化
電子制作(2017年20期)2017-04-26 06:57:45
主站蜘蛛池模板: 成人无码一区二区三区视频在线观看| 国产免费精彩视频| 久久公开视频| 国产真实自在自线免费精品| 婷婷色中文网| 国产噜噜噜| 国产精品污视频| 色综合天天娱乐综合网| 亚洲av日韩综合一区尤物| 日韩无码黄色网站| 成人精品视频一区二区在线| 一区二区欧美日韩高清免费| 色偷偷一区| 国产丝袜无码精品| 就去吻亚洲精品国产欧美 | 天天色天天综合网| 在线欧美日韩国产| 成人国产一区二区三区| 久久国语对白| 日韩国产综合精选| 欧美啪啪视频免码| 国产主播一区二区三区| 色天天综合| 999国产精品永久免费视频精品久久 | 在线中文字幕网| 亚卅精品无码久久毛片乌克兰| 中文字幕无码中文字幕有码在线| 国产成本人片免费a∨短片| 国产成年女人特黄特色毛片免| 免费高清a毛片| 这里只有精品免费视频| 九九视频在线免费观看| 中国特黄美女一级视频| 91视频99| 国产爽妇精品| 99在线国产| 亚洲一区国色天香| 国产激情无码一区二区三区免费| 中文字幕1区2区| 好紧好深好大乳无码中文字幕| 精品中文字幕一区在线| 精品久久久久成人码免费动漫| 日韩精品一区二区深田咏美| 欧美精品v| 亚洲人成在线精品| 国产精品主播| 国产精品无码久久久久久| 久草国产在线观看| 亚洲精品自拍区在线观看| 2020国产精品视频| 人妻丰满熟妇AV无码区| 亚洲国产精品一区二区第一页免| 欧美一区日韩一区中文字幕页| 中文字幕无码中文字幕有码在线| 国产乱子伦一区二区=| a亚洲天堂| 亚洲床戏一区| 福利视频99| 九色视频一区| 男人天堂伊人网| 国产成人精彩在线视频50| 国模极品一区二区三区| 国产亚洲精品97在线观看| 欧美视频二区| 五月婷婷丁香综合| 粉嫩国产白浆在线观看| 特黄日韩免费一区二区三区| 久久久受www免费人成| 日本一本在线视频| 欧美黄网站免费观看| 成年人视频一区二区| 亚洲人成网站日本片| 亚洲视频欧美不卡| 色综合成人| 亚洲欧美一区二区三区麻豆| 被公侵犯人妻少妇一区二区三区 | 久操线在视频在线观看| 成人福利一区二区视频在线| 98精品全国免费观看视频| 久久动漫精品| 91青青草视频在线观看的| 国产第一福利影院|