An Open Design for an Air Flow and Pressure Control Circuit for Medical Devices

被引:3
作者
Teodorescu, Mike [1 ,2 ]
Teodorescu, Horia-Nicolai [3 ,4 ]
机构
[1] Boston Coll, Informat Syst Dept, Chestnut Hill, MA 02167 USA
[2] MIT, D Lab, 77 Massachusetts Ave, Cambridge, MA 02139 USA
[3] Gh Asachi Tech Univ Iasi, Lab BME, Iasi, Romania
[4] RO Acad, Inst Comp Sci, Iasi, Romania
来源
2020 25TH INTERNATIONAL CONFERENCE ON APPLIED ELECTRONICS (AE) | 2020年
关键词
control; air pressure control; open design; low power; nonlinear characteristic; portable equipment; PPE; PAPR; COVID-19;
D O I
10.23919/ae49394.2020.9232840
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
We report on an air control system with low power consumption for small enclosures with mainly medical applications, such as lung ventilators, APAP machines, PAPR isolation hoods, surgical applications, and aerosol containment. The circuit shared can be built from cost effective, commercially available parts; it represents a pressure control system for positive pressure environments such as hoods used in personal protection equipment (PPE), as proposed in today's COVID-19 epidemic. An essential feature of the approach is that the circuit uses advanced off the shelf modules that include microcontrollers, but the overall design remains analogic. Another contribution is to derive rigorous design equations that bring together the pneumatic and electric nonlinear equations describing an inflatable enclosure, the linearized pneumatic circuits, the power device (fan), and the control loop. We warn that the designs in this paper are for scientific testing only and not for any medical use; no guarantee is implied. See the Warnings and Disclaimer.
引用
收藏
页码:157 / 162
页数:6
相关论文
共 11 条
[1]  
Al Husseini A. M., 2010, P 2010 DES MED DEV C P 2010 DES MED DEV C
[2]  
Andreasen C.B., 1959, US Patent, Patent No. [2,880,719, 2880719]
[3]  
[Anonymous], 2017, 44 SAN DENK
[4]   Performance characteristics of 10 home mechanical ventilators in pressure-support mode - A comparative bench study [J].
Battisti, A ;
Tassaux, D ;
Janssens, JP ;
Michotte, JB ;
Jaber, S ;
Jolliet, P .
CHEST, 2005, 127 (05) :1784-1792
[5]  
Chatburn R.L., 2013, PRINCIPLES PRACTICE, V3rd ed.
[6]   Flatness-based tracking control for a pneumatic system with distributed parameters [J].
Gehring, Nicole ;
Kern, Richard .
IFAC PAPERSONLINE, 2018, 51 (02) :487-492
[7]   Design and Implementation of Training Mechanical Ventilator Set for Clinicians and Students [J].
Guler, Hasan ;
Ata, Fikret .
2ND WORLD CONFERENCE ON EDUCATIONAL TECHNOLOGY RESEARCH, 2013, 83 :493-496
[8]   Patient-ventilator interaction [J].
Kondili, E ;
Prinianakis, G ;
Georgopoulos, D .
BRITISH JOURNAL OF ANAESTHESIA, 2003, 91 (01) :106-119
[9]   The First Randomized, Controlled Clinical Trial of Mask Use in Households to Prevent Respiratory Virus Transmission [J].
MacIntyre, C. R. ;
Dwyer, D. ;
Seale, H. ;
Fasher, M. ;
Booy, R. ;
Cheung, P. ;
Ovdin, N. ;
Browne, G. .
INTERNATIONAL JOURNAL OF INFECTIOUS DISEASES, 2008, 12 :E328-E328
[10]  
Taube J.C., 1995, Patent, Adaptive Controller for Automatic Ventilators, Patent No. [US5388575, 5388575]