#processcontrol — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #processcontrol, aggregated by home.social.
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Nâng Cao Biên Lợi Nhuận Nhờ Tích Hợp Công Nghệ Sản Xuất Thông Minh
Đọc thêm tại: https://qsystemsco.com/cong-nghe-san-xuat.html
🏢 CÔNG TY TNHH HỆ THỐNG QUY
Nhà phân phối phần mềm công nghiệp AVEVA chính hãng tại Việt Nam
📍 Địa chỉ: 111 Mai Hắc Đế, Phường Hai Bà Trưng, TP. Hà Nội, Việt Nam
📞 Điện thoại: +84 (24) 3.976.0144
✉️ Email: [email protected]
🌐 Website: qsystemsco.com
🔵 Facebook: facebook.com/AVEVAVNDistributor#QSystems #CostOptimization #ProductionEfficiency #LeanManufacturing #ProcessControl
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Precision Flow Control Systems Need High pressure gate valve:
Advanced processing environments require components that can handle pressure without compromise. From stability to strength, performance improves significantly with a high pressure gate valve in place. A smart solution for industrial operations. It ensures accurate flow control across demanding conditions.
https://www.vacuumchamber.com/products/valves/gate-valves/
#precisionengineering #processcontrol #industrialflow #manufacturing #valvesystem
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Bridge the Gap Between Learning and Leading! 🚀
Master the complexities of Distributed Control Systems (DCS) with our industry-aligned training program. We don’t just teach; we ensure you’re industry-ready with a 100% Placement Guarantee. Get hands-on experience and land your dream job in automation.
📍 Enroll Now:
📧 [email protected]
🌐 www.theevolvedge.com
📞 +91 9311805027 | +91 9871191929
#DCSTraining #IndustrialAutomation #PLC #SCADA #InstrumentationEngineering #ProcessControl #Automation -
Extend component life with Vibra Finish Shot Peening—an AMS 2430/2432-compliant surface treatment that builds compressive residual stress to fight fatigue, wear, and fretting.
https://vibra.com/service/shot-peening/
#ShotPeening #SurfaceEngineering #FatigueLife #Aerospace #Manufacturing #Quality #Automotive #RoboticPeening #AMS2430 #MetalFinishing #Durability #ProcessControl
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For over 50 years, Rotex Automation has been the trusted name in Flow Control Solutions, delivering precision and reliability to critical process industries worldwide. From high-performance Solenoid Valves and Angle Seat Valves to cutting-edge Smart Positioners and Electrohydraulic Actuators, we're constantly 'Engineering for the Future' of your operations.
Visit our homepage: https://rotexautomation.com/
#RotexAutomation #FlowControl #IndustrialAutomation #SolenoidValves #Actuators #ProcessControl
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🎛️ What is Control System Engineering?
Discover how engineers design systems to control devices and processes efficiently.👉 Click here: https://www.engineersheaven.org/forum/topic/32
to visit our website and read the full article.#ControlSystem #AutomationEngineering #SystemDesign #ProcessControl #EngineeringBasics
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I am familiar with classical process control but not very experienced or up-to-date on the state of the art. I imagine a situation where you have a controller and a plant: What is it called when you cannot be sure that the control signals are executed by the plant?
They may not be executed at all, or they may only be partially executed. After a possible time delay, the controller knows whether / to which extent the signal was executed.
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I am familiar with classical process control but not very experienced or up-to-date on the state of the art. I imagine a situation where you have a controller and a plant: What is it called when you cannot be sure that the control signals are executed by the plant?
They may not be executed at all, or they may only be partially executed. After a possible time delay, the controller knows whether / to which extent the signal was executed.
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I am familiar with classical process control but not very experienced or up-to-date on the state of the art. I imagine a situation where you have a controller and a plant: What is it called when you cannot be sure that the control signals are executed by the plant?
They may not be executed at all, or they may only be partially executed. After a possible time delay, the controller knows whether / to which extent the signal was executed.
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I am familiar with classical process control but not very experienced or up-to-date on the state of the art. I imagine a situation where you have a controller and a plant: What is it called when you cannot be sure that the control signals are executed by the plant?
They may not be executed at all, or they may only be partially executed. After a possible time delay, the controller knows whether / to which extent the signal was executed.
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I am familiar with classical process control but not very experienced or up-to-date on the state of the art. I imagine a situation where you have a controller and a plant: What is it called when you cannot be sure that the control signals are executed by the plant?
They may not be executed at all, or they may only be partially executed. After a possible time delay, the controller knows whether / to which extent the signal was executed.
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🔎 SmartProSys Research Insights: Chemists and process engineers from Magdeburg University together with researchers at Greifswald University are using enzymes and medium engineering to modify the product spectrum during PET depolymerization.
https://chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/cssc.202401759
#enzyme #biocatalysis #polymer #plastics #depolymerization #reactionengineering #greenchemistry #selectivity #processcontrol
Jan von Langermann | Christof Hamel | Uwe Bornscheuer | Ren Wei | Tobias Heinks | Luise Blach
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🔎 SmartProSys Research Insights: Chemists and process engineers from Magdeburg University together with researchers at Greifswald University are using enzymes and medium engineering to modify the product spectrum during PET depolymerization.
https://chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/cssc.202401759
#enzyme #biocatalysis #polymer #plastics #depolymerization #reactionengineering #greenchemistry #selectivity #processcontrol
Jan von Langermann | Christof Hamel | Uwe Bornscheuer | Ren Wei | Tobias Heinks | Luise Blach
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🔎 SmartProSys Research Insights: Chemists and process engineers from Magdeburg University together with researchers at Greifswald University are using enzymes and medium engineering to modify the product spectrum during PET depolymerization.
https://chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/cssc.202401759
#enzyme #biocatalysis #polymer #plastics #depolymerization #reactionengineering #greenchemistry #selectivity #processcontrol
Jan von Langermann | Christof Hamel | Uwe Bornscheuer | Ren Wei | Tobias Heinks | Luise Blach
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🔎 SmartProSys Research Insights: Chemists and process engineers from Magdeburg University together with researchers at Greifswald University are using enzymes and medium engineering to modify the product spectrum during PET depolymerization.
https://chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/cssc.202401759
#enzyme #biocatalysis #polymer #plastics #depolymerization #reactionengineering #greenchemistry #selectivity #processcontrol
Jan von Langermann | Christof Hamel | Uwe Bornscheuer | Ren Wei | Tobias Heinks | Luise Blach
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🔎 SmartProSys Research Insights: Chemists and process engineers from Magdeburg University together with researchers at Greifswald University are using enzymes and medium engineering to modify the product spectrum during PET depolymerization.
https://chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/cssc.202401759
#enzyme #biocatalysis #polymer #plastics #depolymerization #reactionengineering #greenchemistry #selectivity #processcontrol
Jan von Langermann | Christof Hamel | Uwe Bornscheuer | Ren Wei | Tobias Heinks | Luise Blach
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Simple Circuit Keeps Process Control Loops in Tune
#toolhacks #010v #420ma #arduino #currentloop #lm358 #loop #loopcalibrator #processcontrol #pwm #hackaday
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Simple Circuit Keeps Process Control Loops in Tune
#toolhacks #010v #420ma #arduino #currentloop #lm358 #loop #loopcalibrator #processcontrol #pwm #hackaday
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Simple Circuit Keeps Process Control Loops in Tune - Spare a moment’s pity for the process engineer, whose job it is to keep industrial... - https://hackaday.com/2023/10/19/simple-circuit-keeps-process-control-loops-in-tune/ #loopcalibrator #processcontrol #currentloop #toolhacks #arduino #4-20ma #0-10v #lm358 #loop #pwm
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Simple Circuit Keeps Process Control Loops in Tune - Spare a moment’s pity for the process engineer, whose job it is to keep industrial... - https://hackaday.com/2023/10/19/simple-circuit-keeps-process-control-loops-in-tune/ #loopcalibrator #processcontrol #currentloop #toolhacks #arduino #4-20ma #0-10v #lm358 #loop #pwm
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Simple Circuit Keeps Process Control Loops in Tune - Spare a moment’s pity for the process engineer, whose job it is to keep industrial... - https://hackaday.com/2023/10/19/simple-circuit-keeps-process-control-loops-in-tune/ #loopcalibrator #processcontrol #currentloop #toolhacks #arduino #4-20ma #0-10v #lm358 #loop #pwm
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Simple Circuit Keeps Process Control Loops in Tune - Spare a moment’s pity for the process engineer, whose job it is to keep industrial... - https://hackaday.com/2023/10/19/simple-circuit-keeps-process-control-loops-in-tune/ #loopcalibrator #processcontrol #currentloop #toolhacks #arduino #4-20ma #0-10v #lm358 #loop #pwm
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Simple Circuit Keeps Process Control Loops in Tune - Spare a moment’s pity for the process engineer, whose job it is to keep industrial... - https://hackaday.com/2023/10/19/simple-circuit-keeps-process-control-loops-in-tune/ #loopcalibrator #processcontrol #currentloop #toolhacks #arduino #4-20ma #0-10v #lm358 #loop #pwm
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Is it possible to draw a #Bode diagram using just #julialang? Yes! And it’s very easy.
```julia
using Plots
using DSP:unwrap!
G(s) = 3/(2s^2+s+1)*exp(-.5s)
x(ω) = real(G(im*ω))
y(ω) = imag(G(im*ω))
AR(ω) = √(x(ω)^2 + y(ω)^2)
φ(ω) = atan(y(ω)/x(ω))*180/pi
ω = 10.0.^(-1:0.001:1);
plot(ω, AR, xscale=:log10, yscale=:log10, xlabel="ω", ylabel="AR", legend=false)
φᵤ = unwrap!([φ(i) for i in ω]);
plot(ω, φᵤ, xscale=:log10, xlabel="ω", ylabel="φ", legend=false)
``` -
Is it possible to draw a #Bode diagram using just #julialang? Yes! And it’s very easy.
```julia
using Plots
using DSP:unwrap!
G(s) = 3/(2s^2+s+1)*exp(-.5s)
x(ω) = real(G(im*ω))
y(ω) = imag(G(im*ω))
AR(ω) = √(x(ω)^2 + y(ω)^2)
φ(ω) = atan(y(ω)/x(ω))*180/pi
ω = 10.0.^(-1:0.001:1);
plot(ω, AR, xscale=:log10, yscale=:log10, xlabel="ω", ylabel="AR", legend=false)
φᵤ = unwrap!([φ(i) for i in ω]);
plot(ω, φᵤ, xscale=:log10, xlabel="ω", ylabel="φ", legend=false)
``` -
Is it possible to draw a #Bode diagram using just #julialang? Yes! And it’s very easy.
```julia
using Plots
using DSP:unwrap!
G(s) = 3/(2s^2+s+1)*exp(-.5s)
x(ω) = real(G(im*ω))
y(ω) = imag(G(im*ω))
AR(ω) = √(x(ω)^2 + y(ω)^2)
φ(ω) = atan(y(ω)/x(ω))*180/pi
ω = 10.0.^(-1:0.001:1);
plot(ω, AR, xscale=:log10, yscale=:log10, xlabel="ω", ylabel="AR", legend=false)
φᵤ = unwrap!([φ(i) for i in ω]);
plot(ω, φᵤ, xscale=:log10, xlabel="ω", ylabel="φ", legend=false)
``` -
Is it possible to draw a #Bode diagram using just #julialang? Yes! And it’s very easy.
```julia
using Plots
using DSP:unwrap!
G(s) = 3/(2s^2+s+1)*exp(-.5s)
x(ω) = real(G(im*ω))
y(ω) = imag(G(im*ω))
AR(ω) = √(x(ω)^2 + y(ω)^2)
φ(ω) = atan(y(ω)/x(ω))*180/pi
ω = 10.0.^(-1:0.001:1);
plot(ω, AR, xscale=:log10, yscale=:log10, xlabel="ω", ylabel="AR", legend=false)
φᵤ = unwrap!([φ(i) for i in ω]);
plot(ω, φᵤ, xscale=:log10, xlabel="ω", ylabel="φ", legend=false)
``` -
Is it possible to draw a #Bode diagram using just #julialang? Yes! And it’s very easy.
```julia
using Plots
using DSP:unwrap!
G(s) = 3/(2s^2+s+1)*exp(-.5s)
x(ω) = real(G(im*ω))
y(ω) = imag(G(im*ω))
AR(ω) = √(x(ω)^2 + y(ω)^2)
φ(ω) = atan(y(ω)/x(ω))*180/pi
ω = 10.0.^(-1:0.001:1);
plot(ω, AR, xscale=:log10, yscale=:log10, xlabel="ω", ylabel="AR", legend=false)
φᵤ = unwrap!([φ(i) for i in ω]);
plot(ω, φᵤ, xscale=:log10, xlabel="ω", ylabel="φ", legend=false)
```