IP Library Granted Patent US 11,957,131
Granted Patent B2
US 11,957,131 · App. 18/045,069 · Granted Apr 16, 2024

Anti-microbial application equipment with controls

Inventors: Justin Massey (North Little Rock, AR); Tim Yeaman (North Little Rock, AR)
Assignee: SAFE FOODS CORPORATION
A23B4/30G01F23/00G01F23/0015G01N33/00G01V8/10G05B15/02A23V2002/00
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Quick Facts
Patent No.
US 11,957,131
App. No.
18/045,069
Granted
Apr 16, 2024
Kind
B2
Abstract

A control system for monitoring an antimicrobial application system may include a controller having a monitoring program including an operations unit and an interface unit. The operations unit may include a sensor module operatively coupled to a plurality of sensors positioned to detect operation data associated with the application system in real-time. An adjustment module may adjust the operation of the application system. An analysis module may analyze real-time operation data and initiate a specified response when the analysis indicates that a trigger event has occurred. The response may include issuing a notification to a notification device or initiating the adjustment module to perform a control operation to modify the operation of the antimicrobial application system. A remote monitoring center may control multiple and remote application systems. Mobile devices and a control panel may be operable to interface with operations of the antimicrobial application system via the control system.

Claims (47)

1. A control system for monitoring one or more antimicrobial treatment equipment of multiple antimicrobial application systems, the control system comprising:

a plurality of antimicrobial application systems, each antimicrobial application system comprising a local plant controller comprising an operations unit, the operations unit comprising:

a sensor module operatively coupled to a plurality of sensors positioned to detect real-time operation data associated with operation of the antimicrobial application equipment; and

an adjustment module operatively coupled to the antimicrobial application equipment and configured to adjust the operation of the antimicrobial application equipment; and

a multi-plant controller configured to receive the real-time operation data from the plurality of antimicrobial application systems, the multi-plant controller configured to execute a multi-plant monitoring program comprising a multi-plant operations unit, the multi-plant operations unit comprising a multi-plant analysis module configured to:

analyze the real-time operation data to determine an operational condition;

compare the operational condition with a set point pre-defined in the monitoring program; and

initiate a specified response when the comparison indicates that a trigger event has occurred;

wherein the response initiated by the multi-plant controller comprises transmitting control operations from the multi-plant controller to the local plant controllers associated with each of the plurality of antimicrobial application systems; and

wherein in response to receiving the control operations, the adjustment module of each of the local plant controllers is configured to initiate the control operations at the one or more antimicrobial treatment equipment to modify operation thereof.

2. The control system of claim 1 , wherein the multi-plant monitoring program further comprises a multi-plant interface unit.

3. The control system of claim 2 , wherein the multi-plant controller is configured to receive the real-time operation data via the multi-plant interface unit and over a distributed network from the local plant controller associated with each of the plurality of antimicrobial application systems.

4. The control system of claim 2 , wherein the multi-plant interface unit is configured to provide a remote interface to authorized mobile access devices.

5. The control system of claim 4 , wherein the multi-plant interface unit is operable to allow the authorized mobile access devices to define or control operations of the multi-plant controller including at least one of initiating collection of real-time operation data from one or more of the plurality of antimicrobial application systems and initiating the control operations at the one or more antimicrobial application equipment to modify an operation thereof using the adjustment module.

6. The control system of claim 4 , wherein the multi-plant interface unit comprises multiple access levels providing different functionalities to the authorized mobile access devices for each access level.

7. The control system of claim 6 , wherein the access levels are limited by location of the mobile access devices.

8. The control system of claim 1 , wherein the response to the trigger event further comprises issuing a notification to one or more notification devices associated with each of the plurality of antimicrobial application systems.

9. The control system of claim 8 , wherein the notification comprises at least one of an audible alarm, a visual alarm, a text message, and an email.

10. The control system of claim 1 , wherein the one or more antimicrobial application equipment comprises one or more components of the group comprising:

a rotary screen filter comprising a rotatable, cylindrical body defined by a screen and into which antimicrobial treatment solution is received for filtration of solid components,

a plurality of spray nozzles positioned to direct antimicrobial treatment solution onto work pieces as the work pieces are conveyed through a spray cabinet,

a dip tank for containing antimicrobial treatment solution and a conveyer for conveying work pieces through the antimicrobial treatment solution contained in the dip tank,

a suction box configured to fluidically couple to a dip tank and including a sensor for sensing a level of antimicrobial treatment solution in the dip tank,

a capture unit comprising a series of activated carbon filters to filter antimicrobial component from an antimicrobial treatment solution, and

a capture unit comprising a series of activated carbon filters each including a header having a plurality of arms defining fluid ports for distributing antimicrobial treatment solution over the activated carbon.

11. A method of monitoring a plurality of antimicrobial application systems, the method comprising:

collecting operation data from a plurality of sensors positioned to detect real-time operation data associated with operation of the plurality of antimicrobial application systems;

wherein each of the plurality of antimicrobial application systems comprises a local plant controller, each local plant controller comprising a sensor module and an adjustment module;

wherein the sensor module is operatively coupled to the plurality of sensors;

transmitting, via the local plant controllers, the operation data from the plurality of antimicrobial application systems to a multi-plant controller, the multi-plant controller comprising a multi-plant analysis module;

using the multi-plant analysis module to:

analyze the real-time operation data to determine an operational condition; and

compare the operational condition with a pre-defined set point;

transmitting, via the multi-plant controller, control operations to the local plant controllers when the comparison performed by the multi-plant analysis module indicates that a trigger event has occurred; and

modifying, via the initiation of the control operations by the adjustment modules, the operation of the antimicrobial application systems.

12. The method of claim 11 ,

wherein each of the plurality of antimicrobial application systems further comprises antimicrobial application equipment; and

wherein the real-time operation data is associated with the antimicrobial application equipment.

13. The method of claim 12 , wherein the antimicrobial equipment comprises one or more components of the group comprising:

a rotary screen filter comprising a rotatable, cylindrical body defined by a screen and into which antimicrobial treatment solution is received for filtration of solid components,

a plurality of spray nozzles positioned to direct antimicrobial treatment solution onto work pieces as the work pieces are conveyed through a spray cabinet,

a dip tank for containing antimicrobial treatment solution and a conveyer for conveying work pieces through the antimicrobial treatment solution contained in the dip tank,

a suction box configured to fluidically couple to a dip tank and including a sensor for sensing a level of antimicrobial treatment solution in the dip tank,

a capture unit comprising a series of activated carbon filters to filter antimicrobial component from an antimicrobial treatment solution, and

a capture unit comprising a series of activated carbon filters each including a header having a plurality of arms defining fluid ports for distributing antimicrobial treatment solution over the activated carbon.

14. The method of claim 11 , wherein the multi-plant controller further comprises a multi-plant interface unit configured to receive the operation data from the plurality of antimicrobial application systems.

15. The method of claim 14 , wherein the multi-plant interface unit receives the real-time operation data from the local plant controllers over a distributed network.

Assignments (4)
FIRST LIEN RELEASE OF SECURITY INTEREST IN PATENTS, RECORDED ON DECEMBER 31, 2024 AT REEL 069831 FRAME 0195 Recorded Dec 11, 2025
From: GOLDMAN SACHS SPECIALTY LENDING GROUP, L.P., AS COLLATERAL AGENT
To: PACKERS SANITATION SERVICES, INC., LTD.; SAFE FOODS CORPORATION
Reel/Frame 073930/0460 →
PATENT SECURITY AGREEMENT Recorded Dec 31, 2024
From: SAFE FOODS CORPORATION; PACKERS SANITATION SERVICES, INC., LTD.
To: GOLDMAN SACHS SPECIALTY LENDING GROUP, L.P., AS COLLATERAL AGENT
Reel/Frame 069831/0195 →
SECURITY INTEREST Recorded Dec 24, 2024
From: PACKERS SANITATION SERVICES, INC., LTD.; SAFE FOODS CORPORATION
To: JEFFERIES FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 069675/0234 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2022
From: MASSEY, JUSTIN; YEAMAN, TIM
To: SAFE FOODS CORPORATION
Reel/Frame 061410/0067 →
Continuity (7)
Continuation 16885616 · May 28, 2020
Continuation 16453402 · Jun 26, 2019
Division 15349789 · Nov 11, 2016
Continuation 15057803 · Mar 1, 2016
Division 14846251 · Sep 4, 2015
Provisional Application 62048024 · Sep 9, 2014
Related Publication 20230116625A1 · Apr 13, 2023