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pid control (võtmesõna)
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tema kohta
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võtmesõna
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Ekspordi
ekspordi kõik päringu tulemused
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Bibliokirje
Lühikirje
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autor kahanevalt
ilmumisaasta kasvavalt
ilmumisaasta kahanevalt
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pealkiri kahanevalt
1
artikkel kogumikus
Assessing interaction mechanics in extended reality for control engineering applications
Remenyi, Armin
;
Alsaleh, Saleh
;
Tepljakov, Aleksei
2024 32nd International Conference on Software, Telecommunications and Computer Networks, SoftCOM 2024
2024
https://doi.org/10.23919/SoftCOM62040.2024.10721783
Article at Scopus
artikkel kogumikus
2
artikkel kogumikus
Closed-loop identification of fractional-order models using FOMCON toolbox for MATLAB
Tepljakov, Aleksei
;
Petlenkov, Eduard
;
Belikov, Juri
BEC 2014 : 2014 14th Biennial Baltic Electronics Conference : proceedings of the 14th Biennial Baltic Electronics Conference : Tallinn University of Technology, October 6-8, 2014, Tallinn, Estonia
2014
/
p. 213-216 : ill
artikkel kogumikus
3
artikkel kogumikus
Design of retuning fractional PID controllers for a closed-loop magnetic levitation control system
Tepljakov, Aleksei
;
Petlenkov, Eduard
;
Belikov, Juri
;
Gonzalez, Emmanuel A.
2014 13th International Conference on Control, Automation, Robotics & Vision (ICARCV 2014) : Marina Bay Sands, Singapore, 10-12th December 2014
2014
/
p. 1345-1350 : ill
artikkel kogumikus
4
artikkel kogumikus
Digital twins in extended reality for control system applications
Jeršov, Stanislav
;
Tepljakov, Aleksei
2020 43rd International Conference on Telecommunications and Signal Processing : TSP 2020, Milan, Italy, July 7-9, 2020
2020
/
art. 162353, p. 274-279
https://doi.org/10.1109/TSP49548.2020.9163557
artikkel kogumikus
5
artikkel kogumikus
A flexible MATLAB tool for optimal fractional-order PID controller design subject to specications
Tepljakov, Aleksei
;
Petlenkov, Eduard
;
Belikov, Juri
Proceedings of the 31st Chinese Control Conference : July, 2012, Hefei, China
2012
/
p. 4698-4703 : ill
https://www.researchgate.net/publication/259741861_A_Flexible_MATLAB_Tool_for_Optimal_Fractional-order_PID_Controller_Design_Subject_to_Specifications
artikkel kogumikus
6
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Performances of PID and different fuzzy methods for controlling a ball on beam
Vu, Trieu Minh
;
Tamre, Mart
;
Moezzi, Reza
;
Mets, Oliver
;
Jürise, Mart
;
Põlder, Ahti
;
Teder, Leo
;
Juurma, Märt
Open engineering
2016
/
p. 145-151 : ill
https://doi.org/10.1515/eng-2016-0018
Journal metrics at Scopus
Article at Scopus
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Kirjeid leitud 6, kuvan
1 - 6
võtmesõna
321
1.
fractional PID control
2.
fractional-order pid control
3.
pid control
4.
proportional–integral–derivative (PID) control
5.
pid controller
6.
PID controllers
7.
FOPID retuning control
8.
rapid control prototyping
9.
fractional pid
10.
PID
11.
finite control set-model predictive control (FCS-MPC)
12.
modulated finite control set-model predictive control
13.
access control
14.
active thermal control
15.
adaptive control
16.
advanced control
17.
air traffic control
18.
aircraft control
19.
attitude determination and control
20.
automated control
21.
automatic control
22.
automatic control systems
23.
Automatic generation control
24.
automatic voltage control
25.
average current mode control
26.
BESS Control Strategy
27.
bidirectional power flow control
28.
Bilateral output feedback control
29.
blood pressure control
30.
boundary control
31.
Building Automation and Control System (BACS)
32.
building automation and control systems
33.
centralized control
34.
centralized control system
35.
change of control
36.
chaos control
37.
chelation control
38.
climate control
39.
climate control in historic buildings
40.
closed loop control
41.
closed-loop control
42.
cognitive control
43.
command and control systems
44.
composite winding density control
45.
computer control
46.
congestion control
47.
construction planning and control
48.
consultation command and control
49.
continuous control set
50.
control
51.
control algorithm
52.
Control allocation
53.
control and data path tests
54.
control applications
55.
control design
56.
control engineering computer applications
57.
control fault models
58.
control faults
59.
control function
60.
control interactions
61.
control manholes
62.
control methodology
63.
control methods
64.
control objectives
65.
control of multilevel converters
66.
control optimization
67.
control part
68.
control reconfiguration
69.
control strategy
70.
control system
71.
control system analysis
72.
control system design
73.
control system for grid integration
74.
control system synthesis
75.
control systems
76.
control systems commissioning
77.
control systems design
78.
control theory
79.
control valve characteristic
80.
converter control
81.
coordinated control
82.
cost-effective heating control
83.
crack control
84.
critical control points
85.
current control
86.
dc droop control
87.
DC -link control
88.
DC-link control
89.
dc-link voltage control
90.
deadbeat control
91.
decentralized model predictive control
92.
delay control systems
93.
detailed control modelling
94.
digital control
95.
digital control systems
96.
digital current mode control
97.
direct field-oriented control (DFOC)
98.
direct torque control
99.
direct torque control (DTC)
100.
discrete time control systems
101.
distributed average integral control
102.
distributed control
103.
disturbance rejection control
104.
droop control
105.
droop control bandwidth
106.
droplet generation rate control
107.
droplet size control
108.
duty cycle control
109.
dynamic control
110.
efficient control strategy
111.
electric machine control
112.
electric power system control
113.
electric variables control
114.
embedded control
115.
emission control
116.
emission control area (ECA)
117.
emission control areas
118.
encoderless control
119.
energy control
120.
energy control unit (ECU)
121.
equivalent control
122.
EU merger control
123.
eutrophication control
124.
event-based control
125.
event-triggered control
126.
export control
127.
fault tolerant control
128.
fault-tolerant control
129.
feedback control
130.
feeder-side control
131.
feedforward control
132.
field-oriented control
133.
flag state control
134.
flatness-based control
135.
flight control
136.
flow rate control
137.
fluid flow control
138.
fluid flow control
139.
flux control
140.
force control
141.
fractional control
142.
fractional control implementation
143.
fractional-order sliding mode control
144.
free predictive control
145.
frequency control
146.
frequency deviation control
147.
fuzzy control
148.
fuzzy logic control
149.
general control modulo of the oscillatory behavior
150.
geometric control
151.
grid-forming control
152.
Health locus-of-control
153.
hierarchical control
154.
high-level control fault model
155.
high-level control faults
156.
hydraulic control
157.
hysteresis current control
158.
industrial control
159.
industrial control system (ICS)
160.
industrial control systems
161.
Industrial Control Systems (ICS)
162.
Infection control
163.
information control
164.
information flow control
165.
intelligent control
166.
intelligent lighting control
167.
interfacing and control of renewable
168.
interleaved control
169.
internal control
170.
inventory control
171.
iterative modelling and control design
172.
judicial control
173.
level control
174.
lighting control
175.
linear control system
176.
load control
177.
load frequency control
178.
load frequency control (LFC)
179.
locomotion control
180.
locus of control
181.
low-level control system transportation
182.
LQG control
183.
LQR control
184.
machine control
185.
machine vector control
186.
management control systems
187.
master-slave control
188.
maximum boost control
189.
mechatronics system control
190.
Media Access Control (MAC)
191.
medium access control
192.
medium access control (MAC)
193.
merger control
194.
metabolic control analysis
195.
minimax control
196.
model predictive control
197.
model predictive control (MPC)
198.
model reference adaptive control
199.
model-based control
200.
model-free control
201.
modeling for control
202.
moisture control
203.
monlinear control systems
204.
motion control
205.
motor control
206.
multi-loop model reference control
207.
multimode control
208.
multi-mode control
209.
multi-rate control
210.
multivariable control
211.
multivariable control systems
212.
Networked control systems
213.
networked control systems (NCSs)
214.
neural fuzzy modelling control
215.
noise control
216.
nonlinear control
217.
nonlinear control strategy
218.
nonlinear control system
219.
nonlinear control systems
220.
nonlinear model predictive control
221.
optimal control
222.
output control
223.
output feedback control
224.
partial control of emergent behavior
225.
passive flow control
226.
passive solar control
227.
passivity based control
228.
passivity-based control (PBC)
229.
PD control
230.
peak current mode control
231.
perceived behavioral control
232.
pest control
233.
phase control
234.
physical control channels
235.
PI control
236.
PI control parameters
237.
piecewise linear droop control
238.
planning and control
239.
PlcOpen motion control function blocks
240.
pollution control
241.
port state control
242.
power based control
243.
power control
244.
power distribution control
245.
power system control
246.
PR control
247.
predictive control
248.
predictive torque control
249.
pressure control
250.
pressure control valve
251.
pre-symptomatic period risk control
252.
price based control
253.
price based control of industrial processes
254.
primary droop control
255.
process control
256.
production control
257.
programmable control
258.
pulse control
259.
PWM control
260.
quality assurance and control
261.
quality control
262.
quality control plan
263.
randomized control trial
264.
reactive power control
265.
real time control
266.
remote control
267.
renewable sources control
268.
retuning control
269.
ripple-based control
270.
robot control
271.
robotic control
272.
robust control
273.
rule-based control
274.
SECA "Sulphur Emission Control Area"
275.
SECA (sulphur emission control areas) regulations
276.
segmented control
277.
sensorless control
278.
shading control principles
279.
shootthrough control methods
280.
shoot-through control methods
281.
SISO control
282.
sliding mode control
283.
sliding model control
284.
slip control
285.
sole control
286.
stabilizing control
287.
state-feedback control
288.
stochastic control
289.
stormwater inlet control
290.
supervisory control and data acquisition (SCADA)
291.
switching control method
292.
Synthetic inertia control (SIC)
293.
temperature control
294.
thermal variables control
295.
topographic control
296.
topology morphing control
297.
topology morphing control (TMC)
298.
topology/power control
299.
torque control
300.
towing carriage control
301.
tracking control
302.
traffic signal control
303.
trajectory control
304.
triple-loop control
305.
two-term control
306.
ultralocal model (ULM) control
307.
unfolding-control
308.
uplink control channel design
309.
vector control
310.
version control
311.
vibration control
312.
Wide-Area control
313.
wind turbine control
314.
winding process control
315.
wireless networked control systems
316.
virtual inertia control
317.
volt/VAR control
318.
voltage control
319.
voltage mode control
320.
voltage-oriented control (VOC)
321.
work locus of control
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