System, apparatus, method, and computer program product for outputting adjusted multi-point position gas indication aggregation interface assembly
By generating and outputting the multi-point position gas indication polymerization interface component and the point position alarm gas interface component to the multi-point position gas indication status interface, the problems of low monitoring efficiency and high cost in the prior art are solved, and efficient and economical multi-point position gas parameter monitoring is achieved.
Patent Information
- Application Number
- CN202510146649.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2024-02-09
- Filing Date
- 2025-02-10
- Publication Date
- 2025-08-12
AI Technical Summary
Existing multi-point position gas analysis systems are inefficient and costly when monitoring gas parameters at multiple different points, and cannot effectively output multiple interface components to a single interface, resulting in reduced monitoring efficiency and increased cost.
By generating a multi-point position gas indication polymerization interface component and a point position alarm gas interface component, the gas data is accessed using processor and memory, and based on these data, the multi-point position gas indication status interface of the interface component to the computing device is generated and output, thereby achieving efficient monitoring of multi-point position gas parameters.
Efficient and cost-effective monitoring of multiple different gas parameters at multiple different points is achieved, improving the efficiency of the system and reducing costs.
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Figure CN120469683A_ABST
Abstract
Description
Technical Field
[0001] Embodiments of the present disclosure generally relate to outputting an adjusted multi-location gas indication aggregate interface assembly and a point location alarm gas interface assembly to a multi-location gas indication status interface. Background Art
[0002] Applicants have recognized the numerous technical challenges and difficulties associated with outputting an adjusted multi-position gas indication aggregate interface assembly and a point-position alarm gas interface assembly to a multi-position gas indication status interface. Through applied effort, ingenuity, and innovation, Applicants have addressed the problems associated with outputting an adjusted multi-position gas indication aggregate interface assembly and a point-position alarm gas interface assembly to a multi-position gas indication status interface by developing the solutions embodied in the present disclosure, which are described in detail below. Summary of the Invention
[0003] Various embodiments described herein relate to outputting the adjusted multi-point location gas indication aggregate interface assembly and point location alarm gas interface assembly to a multi-point location gas indication status interface.
[0004] According to one aspect of the present disclosure, an exemplary apparatus is provided. In some embodiments, the apparatus may include at least one processor and at least one memory including program code. In some embodiments, the at least one memory and the program code are configured to, using the at least one processor, cause the apparatus to: access multi-location gas indication data. In some embodiments, the at least one memory and the program code are configured to, using the at least one processor, cause the apparatus to: generate a multi-location gas indication aggregate interface component based, at least in part, on the multi-location gas indication data. In some embodiments, the at least one memory and the program code are configured to, using the at least one processor, cause the apparatus to: output the multi-location gas indication aggregate interface component for rendering to a multi-location gas indication status interface on a computing device associated with the multi-location gas indication aggregate interface component. In some embodiments, the at least one memory and the program code are configured to, using the at least one processor, cause the apparatus to: generate a point location alarm gas interface component based, at least in part, on point location alarm gas data. In some embodiments, the at least one memory and the program code are configured to, using the at least one processor, cause the apparatus to: generate an adjusted multi-location gas indication aggregate interface component. In some embodiments, the at least one memory and the program code are configured to utilize the at least one processor to enable the apparatus to: output the point position alarm gas interface component and the adjusted multi-point position gas indication aggregate interface component for rendering to the multi-point position gas indication status interface of the computing device associated with the multi-point position gas indication aggregate interface component.
[0005] In some embodiments, the multi-location gas indication status interface includes a first multi-location gas indication status portion and a second multi-location gas indication status portion.
[0006] In some embodiments, the multi-location gas indication aggregate interface component is configured to render the first multi-location gas indication status portion and the second multi-location gas indication status portion to the multi-location gas indication status interface.
[0007] In some embodiments, the adjusted multi-point position gas indication aggregate interface component is configured to be rendered to the first multi-point position gas indication status portion of the multi-point position gas indication status interface, and the point position alarm gas interface component is configured to be rendered to the second multi-point position gas indication status portion of the multi-point position gas indication status interface.
[0008] In some embodiments, the at least one memory and the program code are configured to, with the at least one processor, cause the apparatus to: generate a point location service status interface component, a point location maintenance fault interface component, a point location instrument fault interface component, or a point location event interface component.
[0009] In some embodiments, the at least one memory and the program code are configured to, using the at least one processor, cause the apparatus to: generate the point location alarm gas data. In some embodiments, generating the multi-point location gas indication data includes using optical analysis technology to determine that a point location site is associated with a gas anomaly event.
[0010] In some embodiments, the multi-point location gas indication data indicates at least one of a multi-point location site identifier, a multi-point location unique identification identifier, a multi-point location gas type identifier, a multi-point location gas concentration indicator, or a multi-point location status indicator.
[0011] In some embodiments, the multi-position gas indication aggregate interface assembly includes multiple point-position gas indication interface assemblies.
[0012] In some embodiments, each point location gas indication interface component of the plurality of point location gas indication interface components is configured to display at least one of a point location site interface component, a point location unique identification interface component, a point location gas type interface component, a point location gas concentration interface component, or a point location status interface component.
[0013] In some embodiments, at least a portion of the point position alarm gas interface assembly is associated with a deuteranopia type configuration, a protanopia type configuration, a tritanopia type configuration, or achromatopsia type configuration.
[0014] In some embodiments, the point position alarm gas interface assembly is configured to display at least one of a point position alarm gas assist interface assembly or a point position alarm action gas interface assembly.
[0015] According to another aspect of the present disclosure, an exemplary method is provided. In some embodiments, the method may include: accessing multi-point location gas indication data. In some embodiments, the method may include: generating a multi-point location gas indication aggregate interface component based at least in part on the multi-point location gas indication data. In some embodiments, the method may include: outputting the multi-point location gas indication aggregate interface component for rendering to a multi-point location gas indication status interface of a computing device associated with the multi-point location gas indication aggregate interface component. In some embodiments, the method may include: generating a point location alarm gas interface component based at least in part on point location alarm gas data. In some embodiments, the method may include: generating an adjusted multi-point location gas indication aggregate interface component. In some embodiments, the method may include: outputting the point location alarm gas interface component and the adjusted multi-point location gas indication aggregate interface component for rendering to the multi-point location gas indication status interface of the computing device associated with the multi-point location gas indication aggregate interface component.
[0016] In some embodiments, the multi-location gas indication status interface includes a first multi-location gas indication status portion and a second multi-location gas indication status portion.
[0017] In some embodiments, the multi-location gas indication aggregate interface component is configured to render the first multi-location gas indication status portion and the second multi-location gas indication status portion to the multi-location gas indication status interface.
[0018] In some embodiments, the adjusted multi-point position gas indication aggregate interface component is configured to be rendered to the first multi-point position gas indication status portion of the multi-point position gas indication status interface, and the point position alarm gas interface component is configured to be rendered to the second multi-point position gas indication status portion of the multi-point position gas indication status interface.
[0019] In some embodiments, the method may include generating a point location service status interface component, a point location maintenance fault interface component, a point location instrument fault interface component, or a point location event interface component.
[0020] In some embodiments, the method may include generating the point location alarm gas data. In some embodiments, generating the multi-point location gas indication data includes using optical analysis technology to determine that the point location site is associated with the gas anomaly event.
[0021] In some embodiments, the multi-point location gas indication data indicates at least one of a multi-point location site identifier, a multi-point location unique identification identifier, a multi-point location gas type identifier, a multi-point location gas concentration indicator, or a multi-point location status indicator.
[0022] In some embodiments, the multi-position gas indication aggregate interface assembly includes multiple point-position gas indication interface assemblies.
[0023] In some embodiments, each point location gas indication interface component of the plurality of point location gas indication interface components is configured to display at least one of a point location site interface component, a point location unique identification interface component, a point location gas type interface component, a point location gas concentration interface component, or a point location status interface component.
[0024] In some embodiments, at least a portion of the point position alarm gas interface assembly is associated with a deuteranopia type configuration, a protanopia type configuration, a tritanopia type configuration, or achromatopsia type configuration.
[0025] In some embodiments, the point position alarm gas interface assembly is configured to display at least one of a point position alarm gas assist interface assembly or a point position alarm action gas interface assembly.
[0026] According to another aspect of the present disclosure, an exemplary computer program product is provided. In some embodiments, the computer program product includes at least one non-transitory computer-readable storage medium having computer-readable program code portions stored therein, the computer-readable program code portions including an executable portion.
[0027] In some embodiments, the computer-readable program code portion, including the executable portion, is configured to access multi-location gas indication data. In some embodiments, the computer-readable program code portion, including the executable portion, is configured to generate a multi-location gas indication aggregate interface component based at least in part on the multi-location gas indication data. In some embodiments, the computer-readable program code portion, including the executable portion, is configured to output the multi-location gas indication aggregate interface component for rendering to a multi-location gas indication status interface of a computing device associated with the multi-location gas indication aggregate interface component. In some embodiments, the computer-readable program code portion, including the executable portion, is configured to generate a point location alarm gas interface component based at least in part on point location alarm gas data. In some embodiments, the computer-readable program code portion, including the executable portion, is configured to generate an adjusted multi-location gas indication aggregate interface component. In some embodiments, the computer-readable program code portion including the executable portion is configured to: output the point position alarm gas interface component and the adjusted multi-point position gas indication aggregate interface component for rendering to the multi-point position gas indication status interface of the computing device associated with the multi-point position gas indication aggregate interface component.
[0028] In some embodiments, the multi-location gas indication status interface includes a first multi-location gas indication status portion and a second multi-location gas indication status portion.
[0029] In some embodiments, the multi-location gas indication aggregate interface component is configured to render the first multi-location gas indication status portion and the second multi-location gas indication status portion to the multi-location gas indication status interface.
[0030] In some embodiments, the adjusted multi-point position gas indication aggregate interface component is configured to be rendered to the first multi-point position gas indication status portion of the multi-point position gas indication status interface, and the point position alarm gas interface component is configured to be rendered to the second multi-point position gas indication status portion of the multi-point position gas indication status interface.
[0031] In some embodiments, the computer readable program code portion, including the executable portion, is configured to generate a point location service status interface component, a point location maintenance fault interface component, a point location instrument fault interface component, or a point location event interface component.
[0032] In some embodiments, the computer readable program code portion including the executable portion is configured to: generate the point location alarm gas data. In some embodiments, generating the multi-point location gas indication data includes using optical analysis technology to determine that the point location site is associated with a gas anomaly event.
[0033] In some embodiments, the multi-point location gas indication data indicates at least one of a multi-point location site identifier, a multi-point location unique identification identifier, a multi-point location gas type identifier, a multi-point location gas concentration indicator, or a multi-point location status indicator.
[0034] In some embodiments, the multi-position gas indication aggregate interface assembly includes multiple point-position gas indication interface assemblies.
[0035] In some embodiments, each point location gas indication interface component of the plurality of point location gas indication interface components is configured to display at least one of a point location site interface component, a point location unique identification interface component, a point location gas type interface component, a point location gas concentration interface component, or a point location status interface component.
[0036] In some embodiments, at least a portion of the point position alarm gas interface assembly is associated with a deuteranopia type configuration, a protanopia type configuration, a tritanopia type configuration, or achromatopsia type configuration.
[0037] In some embodiments, the point position alarm gas interface assembly is configured to display at least one of a point position alarm gas assist interface assembly or a point position alarm action gas interface assembly.
[0038] The above summary of the invention is provided only for the purpose of summarizing some exemplary embodiments to provide a basic understanding of some aspects of the present disclosure. Therefore, it should be understood that the above embodiments are merely examples and should not be construed as narrowing the scope or essence of the present disclosure in any way. It should be understood that the scope of the present disclosure also encompasses many possible embodiments in addition to those summarized here, some of which will be further described below. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] Having generally described certain exemplary embodiments of the present disclosure above, non-limiting and non-exhaustive embodiments of the present disclosure will now be described with reference to the accompanying drawings, which are not necessarily drawn to scale. In certain embodiments described herein, the components illustrated in the accompanying drawings may or may not exist. Some embodiments may include fewer (or more) components than those shown in the figures according to exemplary embodiments of the present disclosure.
[0040] Figure 1An exemplary multi-location gas analysis system configured to communicate with various client devices according to various exemplary embodiments of the present disclosure is illustrated;
[0041] Figure 2 depicts schematic block diagrams of exemplary circuits that perform various operations according to various exemplary embodiments of the present disclosure;
[0042] Figure 3 An exemplary multi-point location gas indication polymeric interface assembly according to various exemplary embodiments of the present disclosure is illustrated;
[0043] Figure 4 illustrates an exemplary multi-point location gas indication status interface according to various exemplary embodiments of the present disclosure;
[0044] Figure 5 illustrates an exemplary multi-point location gas indication status interface according to various exemplary embodiments of the present disclosure;
[0045] Figure 6 illustrates an exemplary multi-point location gas indication status interface according to various exemplary embodiments of the present disclosure;
[0046] Figure 7 An exemplary point position alarm gas interface assembly according to various exemplary embodiments of the present disclosure is illustrated;
[0047] Figure 8 An exemplary modified multi-position gas indication aggregate interface assembly according to various exemplary embodiments of the present disclosure is illustrated;
[0048] Figure 9 illustrates an exemplary multi-point location gas indication status interface according to various exemplary embodiments of the present disclosure;
[0049] Figure 10 illustrates an exemplary point location service status interface component according to various exemplary embodiments of the present disclosure;
[0050] Figure 11 An exemplary point location maintenance fault interface assembly according to various exemplary embodiments of the present disclosure is illustrated;
[0051] Figure 12 An exemplary point location instrument fault interface assembly according to various exemplary embodiments of the present disclosure is illustrated;
[0052] Figure 13 illustrates an exemplary point location event interface component according to various exemplary embodiments of the present disclosure; and
[0053] Figure 14A flow chart illustrating exemplary operations for outputting an adjusted multi-location gas indication aggregate interface assembly and a point-location alarm gas interface assembly to a multi-location gas indication status interface according to an exemplary embodiment of the present disclosure is depicted. DETAILED DESCRIPTION
[0054] Exemplary embodiments will now be described more fully with reference to the accompanying drawings, in which like reference numerals are used to refer to like elements throughout. In the following description, for purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of the various embodiments. However, it will be apparent that the various embodiments may be practiced without these specific details. It should be understood that some, but not all, embodiments of the present disclosure are shown and described herein. Indeed, the embodiments of the present disclosure may be embodied in many different forms, and therefore the present disclosure should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that the present disclosure satisfies applicable legal requirements.
[0055] Overview
[0056] The exemplary embodiments disclosed herein address technical issues associated with outputting adjusted multi-point gas indication aggregate interface components and point-location alarm gas interface components to a multi-point gas indication status interface using a multi-point gas analysis system. As will be appreciated by those skilled in the art, there are numerous exemplary scenarios in which a user may desire to output adjusted multi-point gas indication aggregate interface components and point-location alarm gas interface components to a multi-point gas indication status interface using a multi-point gas analysis system.
[0057] In many applications, it is often desirable to monitor various gas parameters at specific points. For example, in a semiconductor manufacturing process, it may be desirable to monitor gas parameters such as gas type, gas concentration, and gas state at specific points associated with the semiconductor manufacturing process (e.g., near a machine that performs one or more sub-processes in the semiconductor manufacturing process).
[0058] An exemplary solution for monitoring various gas parameters at specific points includes placing a gas analysis system proximal to the specific point where the gas parameters are desired to be monitored, and outputting the specific monitored gas parameters for the specific point to a user interface. However, such exemplary solutions are inefficient and expensive. For example, many exemplary gas analysis systems are only capable of monitoring various gas parameters at various points. This increases cost and reduces efficiency because multiple gas analysis systems must be deployed at each specific point in order to monitor various gas parameters at multiple specific points. As another example, many gas analysis systems are unable to output multiple interface components to a single interface, wherein at least one interface component transmits a specific point with acceptable monitored gas parameters (e.g., a monitored gas concentration threshold is below an acceptable threshold), and at least one other interface component transmits a specific point with unacceptable monitored gas parameters (e.g., a monitored gas concentration threshold is above an acceptable threshold), which reduces efficiency and increases cost.
[0059] Therefore, in order to solve these and / or other problems associated with using a multi-point location gas analysis system to output an adjusted multi-point location gas indication aggregate interface component and a point location alarm gas interface component to a multi-point location gas indication status interface, this article discloses an exemplary system, device and / or method for using a multi-point location gas analysis system to output an adjusted multi-point location gas indication aggregate interface component and a point location alarm gas interface component to a multi-point location gas indication status interface. For example, embodiments of the present disclosure, described in greater detail below, include: accessing multi-location gas indication data; generating a multi-location gas indication aggregate interface component based at least in part on the multi-location gas indication data; outputting the multi-location gas indication aggregate interface component for rendering to a multi-location gas indication status interface of a computing device associated with the multi-location gas indication aggregate interface component; generating a point location alarm gas interface component based at least in part on point location alarm gas data; generating an adjusted multi-location gas indication aggregate interface component; and outputting the point location alarm gas interface component and the adjusted multi-location gas indication aggregate interface component for rendering to the multi-location gas indication status interface of the computing device associated with the multi-location gas indication aggregate interface component. Thus, the embodiments disclosed herein enable monitoring of multiple different gas parameters at multiple different locations in an efficient and cost-effective manner.
[0060] definition
[0061] The following explanations of terms are provided to better describe the present disclosure and guide those skilled in the art to practice the present disclosure.
[0062] As used herein, the term "multi-location gas analysis system" refers to a hardware platform, software platform, computing device, or the like configured to support and / or maintain a gas analysis system, interfaces associated with the gas analysis system, and / or interface components associated with the gas analysis system. For example, the multi-location gas analysis system may include a Vertex VC4 system and / or components associated with the Vertex VC4 system configured to support and / or maintain interfaces and / or interface components associated with the multi-location gas analysis system. For example, the multi-location gas analysis system may be configured to generate, manage, output, and / or update a multi-location gas indication status interface, a multi-location gas indication aggregate interface component, an adjusted multi-location gas indication aggregate interface component, a point location alarm gas interface component, a point location service status interface component, a point location maintenance fault interface component, a point location instrument fault interface component, a point location event interface component, and the like. As another example, the multi-location gas analysis system may be configured to identify, determine, generate, and / or output multi-location gas indication data and / or point location alarm gas data. As another example, a multi-location gas analysis system is configured to identify, determine, detect, and / or output gas anomaly events using optical analysis techniques.
[0063] As used herein, the term "multi-location gas analysis data repository" refers to a location accessible by one or more computing devices to retrieve and store data associated with a multi-location gas analysis system, such as a database stored on a memory device. For example, the multi-location gas analysis data repository may include multi-location gas indication data, location alarm gas data, and the like. The multi-location gas analysis data repository may be a dedicated device and / or part of a larger repository. The multi-location gas analysis data repository may be dynamically updated or static. In some embodiments, the multi-location gas analysis data repository is encrypted to restrict unauthorized access to data associated with the multi-location gas analysis system.
[0064] As used herein, the term "multi-location gas analysis application" or "multi-location gas analysis application" refers to a dedicated software program, application, platform, service, web browser, or computer executable application software that is programmed or configured to run on a client device and / or a multi-location gas analysis system that provides a user with access to the multi-location gas analysis system and its associated functionality. In some embodiments, the multi-location gas analysis application may include hardware, software, or a combination thereof that is remotely operated (e.g., on a server). In some embodiments, the multi-location gas analysis application is designed to execute on a mobile device (such as a tablet or smartphone). For example, in certain embodiments, a system that provides a multi-location gas analysis application on a mobile device operating system such as a tablet or smartphone is provided. or These platforms typically provide a framework that allows applications to communicate with each other and with specific hardware and software components of the mobile device. For example, the mobile operating systems mentioned above each provide a framework for interacting with location services circuitry, wired and wireless network interfaces, user contacts, and other applications. Communication with hardware and software modules executing outside of the application is typically provided via application programming interfaces (APIs) provided by the mobile device operating system. In some embodiments, the multi-location gas analysis application is designed to execute on the multi-location gas analysis system.
[0065] As used herein, the term "multi-location gas indication status interface" refers to a graphical user interface of a multi-location gas analysis system that is configured to enable one or more users to view and interact with one or more multi-location gas analysis systems, views, and / or interface components. In some embodiments, for example, the multi-location gas indication status interface is configured to enable one or more users to view and interact with one or more of a multi-location gas indication aggregate interface component, an adjusted multi-location gas indication aggregate interface component, a point location alarm gas interface component, a point location service status interface component, a point location maintenance fault interface component, a point location instrument fault interface component, and / or a point location event interface component. In some embodiments, the multi-location gas indication status interface can be rendered to a client device based on data provided by the multi-location gas analysis system. In some embodiments, such data and instructions are facilitated by a dedicated software application running on the client device. In other embodiments, such data and instructions are provided via a web browser running on the client device. In some embodiments, the multi-location gas indication status interface can be rendered to a user interface associated with the multi-location gas analysis system. In some embodiments, such data and instructions are facilitated by a dedicated software application running on the multi-location gas analysis system. In other embodiments, such data and instructions are provided via a web browser running on the multi-location gas analysis system. In some embodiments, the multi-location gas indication status interface may include a first multi-location gas indication status portion and / or a second multi-location gas indication status portion.
[0066] As used herein, the term "first multi-location gas indication status portion" refers to a portion of a multi-location gas indication status interface. In some embodiments, a portion of a multi-location gas indication aggregate interface assembly can be configured to render to the first multi-location gas indication status portion. In some embodiments, an adjusted multi-location gas indication aggregate interface assembly can be configured to render to the first multi-location gas indication status portion.
[0067] As used herein, the term "second multi-location gas indication status portion" refers to a portion of a multi-location gas indication status interface. In some embodiments, a portion of a multi-location gas indication aggregate interface assembly can be configured to render into the second multi-location gas indication status portion. In some embodiments, a location alarm gas interface assembly can be configured to render into the second multi-location gas indication status portion. In some embodiments, the second multi-location gas indication status portion can occupy a different portion of the multi-location gas indication status interface than the first multi-location gas indication status portion.
[0068] As used herein, the term "multi-location gas indication aggregate interface component" refers to a graphical user interface element rendered into or as part of a multi-location gas indication status interface. In some embodiments, the multi-location gas indication aggregate interface component can be configured to display multiple location gas indication interface components. For example, the multi-location gas indication aggregate interface component can be configured to display four location gas indication interface components. In some embodiments, the multi-location gas indication aggregate interface component can be based at least in part on multi-location gas indication data.
[0069] In some embodiments, the multi-location gas indication aggregate interface assembly can be configured to render to a first multi-location gas indication status portion of the multi-location gas indication status interface and a second multi-location gas indication status portion of the multi-location gas indication status interface. In other words, the multi-location gas indication aggregate interface assembly can be configured such that at least a portion of the multi-location gas indication aggregate interface assembly is rendered on the first multi-location gas indication status portion and at least another portion of the multi-location gas indication aggregate interface assembly is rendered on the second multi-location gas indication status portion.
[0070] As used herein, the term "multi-point location gas indication data" refers to one or more data items indicating a multi-point location site identifier, a multi-point location unique identification identifier, a multi-point location gas concentration indicator, a multi-point location gas type identifier, and / or a multi-point location status indicator.
[0071] As used herein, the term "point location site identifier" refers to one or more data items configured to identify a physical location from which one or more gases are collected and / or identified, such that analysis of the one or more gases can be performed by a multi-point location gas analysis system. In this regard, a point location site identifier may include a text string, numeric characters, alphabetic characters, an alphanumeric code, American Standard Code for Information Interchange (ASCII) characters, an encryption key, an identification certificate, a pointer, an Internet Protocol (IP) address, a MAC address, a URL, a memory address, other unique identifier, or a combination thereof, configured to identify a physical location from which one or more gases are collected and / or identified, such that analysis of the one or more gases can be performed by a multi-point location gas analysis system. For example, a point location site identifier may be Site A Layer 5, Site A Layer 2, Site B Layer 3, etc.
[0072] In some embodiments, a point location site identified by a point location site identifier can be in fluid communication with a multi-location gas analysis system. In this regard, for example, a pipe, tube, connector, or any other connecting component can provide fluid communication between the point location site identified by the point location site identifier and the multi-location gas analysis system. For example, a pipe, tube, connector, or any other connecting component can provide fluid communication between the point location site identified by the point location site identifier as Site B Layer Three and a multi-location gas analysis system located at Site B Layer Two. In this regard, the multi-location gas analysis system can be configured to perform analysis on one or more gases present at one or more specific physical locations.
[0073] As used herein, the term "point location unique identifier" refers to one or more data items by which a point location site can be uniquely identified within a multi-location gas analysis system. For example, the point location unique identifier may include a text string, numeric characters, alphabetic characters, an alphanumeric code, American Standard Code for Information Interchange (ASCII) characters, an encryption key, an identification certificate, a pointer, an Internet Protocol (IP) address, a MAC address, a URL, a memory address, other unique identifiers, or combinations thereof, configured to uniquely identify a point location site within the multi-location gas analysis system.
[0074] As used herein, the term "point location gas type identifier" refers to one or more data items by which a gas type associated with a point location site can be identified within a multi-location gas analysis system (e.g., the gas type at the point location site as determined by the multi-location gas analysis system). For example, the point location gas type identifier can include a text string, numeric characters, alphabetic characters, an alphanumeric code, American Standard Code for Information Interchange (ASCII) characters, an encryption key, an identification certificate, a pointer, an Internet Protocol (IP) address, a MAC address, a URL, a memory address, other unique identifiers, or combinations thereof configured to identify the point location gas type associated with the point location site within the multi-location gas analysis system.
[0075] In some embodiments, the point-location gas type identifier can be configured to identify any type of gas that can be analyzed by the multi-location gas analysis system. In some embodiments, when the multi-location gas analysis system is configured to analyze gases associated with a semiconductor manufacturing process, the point-location gas type identifier can be configured to identify a gas type associated with the semiconductor manufacturing process. For example, the point-location gas type identifier can be configured to identify one or more of arsine (AsH3), diborane (B2H6), germane (GeH4), etc.
[0076] As used herein, the term "point location gas concentration indicator" refers to one or more data items by which a gas concentration associated with a point location site can be indicated within a multi-location gas analysis system (e.g., the gas concentration at the point location site as determined by the multi-location gas analysis system). For example, a point location gas concentration indicator can include a text string, numeric characters, alphabetic characters, an alphanumeric code, American Standard Code for Information Interchange (ASCII) characters, an encryption key, an identification certificate, a pointer, an Internet Protocol (IP) address, a MAC address, a URL, a memory address, other unique identifier, or a combination thereof, configured to indicate the gas concentration of a gas associated with a point location site within the multi-location gas analysis system. In some embodiments, for example, a point location gas concentration indicator can be configured to indicate a gas concentration of 0.000 parts per million (ppm) of a gas associated with a point location site. As another example, a point location gas concentration indicator can be configured to indicate a gas concentration of 1.137 ppm associated with a point location site.
[0077] As used herein, the term "point location status indicator" refers to one or more data items by which the status of a point location site (e.g., the status associated with the gas at the point location site determined by the multi-point location gas analysis system) can be indicated within a multi-point location gas analysis system. For example, a point location status indicator can include a text string, numeric characters, alphabetic characters, an alphanumeric code, American Standard Code for Information Interchange (ASCII) characters, an encryption key, an identification certificate, a pointer, an Internet Protocol (IP) address, a MAC address, a URL, a memory address, other unique identifier, or a combination thereof configured to indicate the status of the gas associated with the point location site. In some embodiments, for example, a point location status indicator can be configured to indicate whether the concentration of a gas associated with the point location site is at an acceptable level or an unacceptable level. As another example, a point location status indicator can be configured to indicate whether the type of gas associated with the point location site is acceptable or unacceptable.
[0078] As used herein, the term "point location gas indication interface component" refers to a graphical user interface element that is rendered into or as part of a multi-point location gas indication aggregate interface component. In some embodiments, a point location gas indication interface component can be rendered proximate to one or more other point location gas indication interface components on the multi-point location gas indication aggregate interface component. For example, a point location gas indication interface component can be rendered proximate to three other point location gas indication interface components (e.g., the multi-point location gas indication aggregate interface component can be configured to display four point location gas indication interface components).
[0079] In some embodiments, the point location gas indication interface component can be based at least in part on multiple point location gas indication data. In some embodiments, the point location gas indication interface component can be configured to display one or more of a point location site interface component, a point location unique identifier interface component, a point location gas type interface component, a point location gas concentration interface component, and / or a point location status indicator interface component.
[0080] As used herein, the term "point location site interface component" refers to a graphical user interface element rendered into or as part of a point location gas indication interface component. In some embodiments, the point location site interface component may be based, at least in part, on a point location site identifier. In this regard, the point location site interface component may be configured to display text, colors, graphics, etc., representative of the point location site identifier. For example, the point location site interface component may be configured to display text, colors, graphics, etc., based on the point location site identifier associated with the point location site of Site A Tier 5 (e.g., text including Site A Tier 5).
[0081] In some embodiments, the point location site interface component can be configured to be updated. For example, if the point location site identifier associated with the point location site interface component is updated, the point location site interface component can be configured to display text, color, graphics, etc. representing the updated point location site identifier (e.g., updated text including Site A, Level 4). In some embodiments, the point location site interface component can be configured to update in real time or near real time.
[0082] As used herein, the term "point location unique identifier interface component" refers to a graphical user interface element rendered into or as part of a point location gas indication interface component. In some embodiments, the point location unique identifier interface component may be based at least in part on a point location unique identifier. In this regard, the point location unique identifier interface component may be configured to display text, colors, graphics, etc. that represent the point location unique identifier. For example, the point location unique identifier interface component may be configured to display text, colors, graphics, etc. based on the point location unique identifier associated with the point location unique identifier 123223 (e.g., text including 123223).
[0083] In some embodiments, the point location unique identifier interface component can be configured to be updated. For example, if the point location unique identifier associated with the point location unique identifier interface component is updated, the point location unique identifier interface component can be configured to display text, color, graphics, etc. representing the updated point location unique identifier (e.g., updated text including 322321). In some embodiments, the point location unique identifier interface component can be configured to update in real time or near real time.
[0084] As used herein, the term "point location gas type interface component" refers to a graphical user interface element rendered into or as part of a point location gas indication interface component. In some embodiments, the point location gas type interface component may be based, at least in part, on a point location gas type identifier. In this regard, the point location gas type interface component may be configured to display text, colors, graphics, etc., representing the point location gas type identifier. For example, the point location gas type interface component may be configured to display text, colors, graphics, etc., based on a point location gas type identifier associated with a point location gas type of arsine (AsH3) (e.g., text including AsH3).
[0085] In some embodiments, the point location gas type interface component can be configured to be updated. For example, if the point location gas type identifier associated with the point location gas type interface component is updated, the point location gas type interface component can be configured to display text, color, graphics, etc. representing the updated point location gas type identifier (e.g., updated text including B2H6). In some embodiments, the point location gas type interface component can be configured to update in real time or near real time.
[0086] As used herein, the term "spot location gas concentration interface component" refers to a graphical user interface element rendered into or as part of a spot location gas indication interface component. In some embodiments, the spot location gas concentration interface component may be based, at least in part, on a spot location gas concentration indicator. In this regard, the spot location gas concentration interface component may be configured to display text, colors, graphics, etc., representative of the spot location gas concentration indicator. For example, the spot location gas concentration interface component may be configured to display text, colors, graphics, etc., based on a spot location gas concentration indicator associated with a spot location gas concentration of 0.000 ppm (e.g., including text reading 0.000 ppm).
[0087] In some embodiments, the point location gas concentration interface component can be configured to be updated. For example, if the point location gas concentration indicator associated with the point location gas concentration interface component is updated, the point location gas concentration interface component can be configured to display text, color, graphics, etc. representing the updated point location gas concentration indicator (e.g., updated text including 1.137 ppm). In some embodiments, the point location gas concentration interface component can be configured to update in real time or near real time.
[0088] As used herein, the term "point location status interface component" refers to a graphical user interface element that is rendered to or as part of a point location gas indication interface component. In some embodiments, the point location status interface component may be based at least in part on a point location status indicator. In this regard, the point location status interface component may be configured to display text, colors, graphics, etc. that represent the point location status indicator. For example, the point location status interface component may be configured to display text, colors, graphics, etc. based on a point location status indicator associated with a point location status of an acceptable gas concentration level (e.g., text stating that an acceptable gas concentration level exists, a color indicating that an acceptable gas concentration level exists (e.g., green), a symbol indicating that an acceptable gas concentration level exists (e.g., a check mark)).
[0089] In some embodiments, the point location status interface component can be configured to be updated. For example, if the point location status indicator associated with the point location status interface component is updated, the point location status interface component can be configured to display text, color, graphics, etc. representing the updated point location status indicator (e.g., updated text stating that an unacceptable gas concentration level exists, an updated color (e.g., red) indicating that an unacceptable gas concentration level exists, an updated symbol (e.g., a warning symbol) indicating that an unacceptable gas concentration level exists). In some embodiments, the point location status interface component can be configured to update in real time or near real time.
[0090] As used herein, the term "adjusted multi-location gas indication aggregate interface component" refers to a graphical user interface element rendered into or as part of a multi-location gas indication status interface. In some embodiments, the adjusted multi-location gas indication aggregate interface component can be configured to display multiple location gas indication interface components. For example, the adjusted multi-location gas indication aggregate interface component can be configured to display four location gas indication interface components. In some embodiments, the multi-location gas indication aggregate interface component can be based at least in part on multi-location gas indication data and / or location alarm gas data.
[0091] In some embodiments, the adjusted multi-position gas indication aggregate interface assembly can be configured to be rendered into a first multi-position gas indication status portion of the multi-position gas indication status interface. In this regard, the adjusted multi-position gas indication aggregate interface assembly can occupy a smaller portion of the multi-position gas indication status interface than the multi-position gas indication aggregate interface assembly. In some embodiments, the adjusted multi-position gas indication aggregate interface assembly can be rendered proximal to a point-position alarm gas interface assembly on the multi-position gas indication status interface. For example, the adjusted multi-position gas indication aggregate interface assembly can be configured to be rendered into a first multi-position gas indication status portion of the multi-position gas indication status interface, and the point-position alarm gas interface assembly can be configured to be rendered into a second multi-position gas indication status portion of the multi-position gas indication status interface.
[0092] As used herein, the term "point location alarm gas data" refers to one or more data items indicating that a point location site is associated with a gas anomaly event. In this regard, for example, a multi-point location gas analysis system may be configured to generate point location alarm gas data by determining that a point location site is associated with a gas anomaly event. In some embodiments, the multi-point location gas analysis system may be configured to generate point location alarm gas data by using optical analysis technology to determine that a point location site is associated with a gas anomaly event.
[0093] In some embodiments, a gas anomaly event may occur when a point location gas concentration associated with a point location station is greater than a point location gas concentration threshold. In this regard, for example, the point location alarm gas data may indicate that a point location gas concentration associated with a point location station is greater than a point location gas concentration threshold (e.g., the point location gas concentration associated with the point location station is 1.137 ppm, and the point location gas concentration threshold is 0.500 ppm). In some embodiments, a gas anomaly event may occur when a point location gas type associated with a point location station is different from an expected point location gas type for the point location station (e.g., a gas type that should not be present at the point location station is present at the point location station). In this regard, for example, the point location alarm gas data may indicate that a point location gas type associated with a point location station is different from an expected point location gas type for the point location station.
[0094] As used herein, the term "optical analysis technology" refers to one or more techniques, programs, algorithms, processes, routines, etc. configured to be executed by a multi-point location gas analysis system to determine whether a point location site is associated with a gas anomaly event. In some embodiments, the optical analysis technology may include a multi-point location gas analysis system that is configured to be executed by a multi-point location gas analysis system to determine whether a point location site is associated with a gas anomaly event. Optical analysis was performed on the paper to determine if the point location site was associated with a gas anomaly event.
[0095] As used herein, the term "point location alarm gas interface component" refers to a graphical user interface element that is rendered into or as part of a multi-location gas indication status interface. In some embodiments, the point location alarm gas interface component can be configured to display one or more point location alarm gas auxiliary interface components and / or one or more point location alarm action gas interface components. In some embodiments, the point location alarm gas interface component can be based at least in part on multi-location gas indication data and / or point location alarm gas data.
[0096] In some embodiments, the point location alarm gas interface assembly can be configured to render to a second multi-location gas indication status portion of a multi-location gas indication status interface. In some embodiments, the point location alarm gas interface assembly can be rendered proximal to an adjusted multi-location gas indication aggregate interface assembly on the multi-location gas indication status interface. For example, the adjusted multi-location gas indication aggregate interface assembly can be configured to render to a first multi-location gas indication status portion of the multi-location gas indication status interface, and the point location alarm action gas interface assembly can be configured to render to a second multi-location gas indication status portion of the multi-location gas indication status interface.
[0097] As used herein, the term "point location alarm gas auxiliary interface component" refers to a graphical user interface element rendered into or as part of a point location alarm gas interface component. In some embodiments, the point location alarm gas auxiliary interface component may be based at least in part on multi-point location gas indication data and / or point location alarm gas data. In some embodiments, the point location alarm gas auxiliary interface component may be configured to display text, color, symbol, etc. representing one or more of a point location site identifier, a point location unique identifier, a point location gas concentration indicator, a point location gas type identifier, and / or a point location status indicator associated with a point location site associated with a gas anomaly event. For example, for a point location site associated with a point location gas concentration greater than a point location gas concentration threshold, the point location alarm gas auxiliary interface component may be configured to display text, color, symbol, etc. representing the point location gas concentration identifier associated with the point location site.
[0098] As used herein, the term "point location alarm action gas interface component" refers to a graphical user interface element rendered to or as part of a point location alarm gas interface component. In some embodiments, the point location alarm action gas interface component can be configured to be user-selectable, such that the user can select the point location alarm action gas interface component to confirm that a gas anomaly event has occurred. In some embodiments, the point location alarm action gas interface component can be configured to be user-selectable, such that the user can trigger one or more actions in response to the gas anomaly event by selecting the point location alarm action gas interface component. For example, the one or more actions that can be triggered by the user selecting the point location alarm action gas interface component in response to the gas anomaly event can include triggering an alarm to notify individuals associated with the point location site of the gas anomaly event. As another example, the one or more actions that can be triggered by the user selecting the point location alarm action gas interface component in response to the gas anomaly event can include causing an evacuation of the point location site. As another example, the one or more actions that can be triggered by the user selecting the point location alarm action gas interface component in response to the gas anomaly event can include shutting down machinery and / or processes associated with the point location site.
[0099] As used herein, the term "deuteranopia type configuration" refers to a particular type of interface and / or interface component configuration. In some embodiments, an interface and / or interface component associated with a deuteranopia type configuration may be an interface and / or interface component configured so that the interface and / or interface component is accessible to a user affected by deuteranopia. For example, an interface and / or interface component associated with a deuteranopia type configuration may be an interface and / or interface component configured to display particular text, colors (e.g., colors other than green), and / or symbols so that the interface and / or interface component is accessible to a user affected by deuteranopia.
[0100] In some embodiments, at least a portion of the multi-location gas indication aggregate interface component, the adjusted multi-location gas indication aggregate interface component, the point location alarm gas interface component, the point location service status interface component, the point location maintenance fault interface component, the point location instrument fault interface component, the point location event interface component, and / or the point location gas indication interface component may be associated with a deuteranopia-type configuration. In this regard, for example, at least a portion of the multi-location gas indication aggregate interface component may be configured to make the multi-location gas indication aggregate interface component accessible to users affected by deuteranopia. As another example, at least a portion of the adjusted multi-location gas indication aggregate interface component may be configured to make the adjusted multi-location gas indication aggregate interface component accessible to users affected by deuteranopia. As another example, at least a portion of the point location alarm gas interface component may be configured to make the point location alarm gas interface component accessible to users affected by deuteranopia. As another example, at least a portion of the point location service status interface component may be configured to make the point location service status interface component accessible to users affected by deuteranopia.
[0101] As another example, at least a portion of the point location maintenance fault interface component may be configured to make the point location maintenance fault interface component accessible to users affected by deuteranopia. As another example, at least a portion of the point location instrument fault interface component may be configured to make the point location instrument fault interface component accessible to users affected by deuteranopia. As another example, at least a portion of the point location event interface component may be configured to make the point location event interface component accessible to users affected by deuteranopia. As another example, at least a portion of the point location gas indication interface component may be configured to make the point location gas indication interface component accessible to users affected by deuteranopia.
[0102] As used herein, the term "protanopia type configuration" refers to a particular type of interface and / or interface component configuration. In some embodiments, an interface and / or interface component associated with a protanopia type configuration can be an interface and / or interface component that is configured to make the interface and / or interface component accessible to a user affected by protanopia. For example, an interface and / or interface component associated with a protanopia type configuration can be an interface and / or interface component that is configured to display particular text, colors (e.g., colors other than red), and / or symbols so that the interface and / or interface component is accessible to a user affected by protanopia.
[0103] In some embodiments, at least a portion of the multi-location gas indication aggregate interface component, the adjusted multi-location gas indication aggregate interface component, the point location alarm gas interface component, the point location service status interface component, the point location maintenance fault interface component, the point location instrument fault interface component, the point location event interface component, and / or the point location gas indication interface component may be associated with a protanopia-type configuration. In this regard, for example, at least a portion of the multi-location gas indication aggregate interface component may be configured to make the multi-location gas indication aggregate interface component accessible to users affected by protanopia. As another example, at least a portion of the adjusted multi-location gas indication aggregate interface component may be configured to make the adjusted multi-location gas indication aggregate interface component accessible to users affected by protanopia. As another example, at least a portion of the point location alarm gas interface component may be configured to make the point location alarm gas interface component accessible to users affected by protanopia. As another example, at least a portion of the point location service status interface component may be configured to make the point location service status interface component accessible to users affected by protanopia.
[0104] As another example, at least a portion of the point location maintenance fault interface component can be configured to make the point location maintenance fault interface component accessible to users affected by protanopia. As another example, at least a portion of the point location instrument fault interface component can be configured to make the point location instrument fault interface component accessible to users affected by protanopia. As another example, at least a portion of the point location event interface component can be configured to make the point location event interface component accessible to users affected by protanopia. As another example, at least a portion of the point location gas indication interface component can be configured to make the point location gas indication interface component accessible to users affected by protanopia.
[0105] As used herein, the term "tritanopia type configuration" refers to a particular type of interface and / or interface component configuration. In some embodiments, an interface and / or interface component associated with a tritanopia type configuration can be an interface and / or interface component that is configured to make the interface and / or interface component accessible to a user affected by tritanopia. For example, an interface and / or interface component associated with a tritanopia type configuration can be an interface and / or interface component that is configured to display particular text, colors, and / or symbols so that the interface and / or interface component is accessible to a user affected by tritanopia.
[0106] In some embodiments, at least a portion of the multi-location gas indication aggregate interface assembly, the adjusted multi-location gas indication aggregate interface assembly, the point location alarm gas interface assembly, the point location service status interface assembly, the point location maintenance fault interface assembly, the point location instrument fault interface assembly, the point location event interface assembly, and / or the point location gas indication interface assembly may be associated with a tritanopia-type configuration. In this regard, for example, at least a portion of the multi-location gas indication aggregate interface assembly may be configured to make the multi-location gas indication aggregate interface assembly accessible to users affected by tritanopia. As another example, at least a portion of the adjusted multi-location gas indication aggregate interface assembly may be configured to make the adjusted multi-location gas indication aggregate interface assembly accessible to users affected by tritanopia. As another example, at least a portion of the point location alarm gas interface assembly may be configured to make the point location alarm gas interface assembly accessible to users affected by tritanopia. As another example, at least a portion of the point location service status interface assembly may be configured to make the point location service status interface assembly accessible to users affected by tritanopia.
[0107] As another example, at least a portion of the point location maintenance fault interface component can be configured to make the point location maintenance fault interface component accessible to users affected by tritanopia. As another example, at least a portion of the point location instrument fault interface component can be configured to make the point location instrument fault interface component accessible to users affected by tritanopia. As another example, at least a portion of the point location event interface component can be configured to make the point location event interface component accessible to users affected by tritanopia. As another example, at least a portion of the point location gas indication interface component can be configured to make the point location gas indication interface component accessible to users affected by tritanopia.
[0108] As used herein, the term "achromatopia type configuration" refers to a particular type of interface and / or interface component configuration. In some embodiments, an interface and / or interface component associated with achromatopia type configuration may be an interface and / or interface component configured to make the interface and / or interface component accessible to a user affected by achromatopia. For example, an interface and / or interface component associated with achromatopia type configuration may be an interface and / or interface component configured to display specific text, colors, and / or symbols so that the interface and / or interface component is accessible to a user affected by achromatopia.
[0109] In some embodiments, at least a portion of the multi-location gas indication aggregate interface component, the adjusted multi-location gas indication aggregate interface component, the point location alarm gas interface component, the point location service status interface component, the point location maintenance fault interface component, the point location instrument fault interface component, the point location event interface component, and / or the point location gas indication interface component may be associated with a color blindness type configuration. In this regard, for example, at least a portion of the multi-location gas indication aggregate interface component may be configured to make the multi-location gas indication aggregate interface component accessible to users affected by color blindness. As another example, at least a portion of the adjusted multi-location gas indication aggregate interface component may be configured to make the adjusted multi-location gas indication aggregate interface component accessible to users affected by color blindness. As another example, at least a portion of the point location alarm gas interface component may be configured to make the point location alarm gas interface component accessible to users affected by color blindness. As another example, at least a portion of the point location service status interface component may be configured to make the point location service status interface component accessible to users affected by color blindness.
[0110] As another example, at least a portion of the point location maintenance fault interface component can be configured to make the point location maintenance fault interface component accessible to users affected by achromatopsia. As another example, at least a portion of the point location instrument fault interface component can be configured to make the point location instrument fault interface component accessible to users affected by achromatopsia. As another example, at least a portion of the point location event interface component can be configured to make the point location event interface component accessible to users affected by achromatopsia. As another example, at least a portion of the point location gas indication interface component can be configured to make the point location gas indication interface component accessible to users affected by achromatopsia.
[0111] As used herein, the term "point location service status interface component" refers to a graphical user interface element that is rendered to or as part of a multi-point location gas indication status interface. In some embodiments, the point location service status interface component may be based at least in part on multi-point location gas indication data and / or point location alarm gas data. In some embodiments, the point location service status interface component may be configured to display text, colors, symbols, etc. that represent one or more service statuses associated with the multi-point location gas analysis system. In some embodiments, for example, the point location service status interface component may be configured to display text, colors, symbols, etc. that represent one or more service statuses associated with the multi-point location gas analysis system. As another example, the point location service status interface component can be configured to display text, color, symbol, etc. representing the age of the paper (e.g., 5 days). As another example, the point location service status interface component can be configured to display text, color, symbol, etc. representing the optics cleaning timeline (e.g., 180 days) associated with the multi-point location gas analysis system. As another example, the point location service status interface component can be configured to display text, color, symbol, etc. representing the age of the filter associated with the multi-point location gas analysis system (e.g., 176 days).
[0112] In some embodiments, the point location service status interface component can be configured to render to a second multi-location gas indication status portion of a multi-location gas indication status interface. In some embodiments, the point location service status interface component can be rendered proximate to an adjusted multi-location gas indication aggregate interface component on the multi-location gas indication status interface. For example, the adjusted multi-location gas indication aggregate interface component can be configured to render to a first multi-location gas indication status portion of the multi-location gas indication status interface, and the point location service status interface component can be configured to render to a second multi-location gas indication status portion of the multi-location gas indication status interface.
[0113] As used herein, the term "point location maintenance fault interface component" refers to a graphical user interface element rendered into or as part of a multi-point location gas indication status interface. In some embodiments, the point location maintenance fault interface component may be based at least in part on multi-point location gas indication data and / or point location alarm gas data. In some embodiments, the point location maintenance fault interface component may be configured to display text, colors, symbols, etc., indicating one or more maintenance faults associated with the multi-point location gas analysis system. For example, the point location maintenance fault interface component may be configured to display text, colors, symbols, etc. indicating a low flow maintenance fault.
[0114] In some embodiments, the point location maintenance fault interface component can be configured to render to a second multi-location gas indication status portion of a multi-location gas indication status interface. In some embodiments, the point location maintenance fault interface component can be rendered proximal to an adjusted multi-location gas indication aggregate interface component on the multi-location gas indication status interface. For example, the adjusted multi-location gas indication aggregate interface component can be configured to render to a first multi-location gas indication status portion of the multi-location gas indication status interface, and the point location maintenance fault interface component can be configured to render to a second multi-location gas indication status portion of the multi-location gas indication status interface.
[0115] As used herein, the term "spot location instrument failure interface component" refers to a graphical user interface element rendered into or as part of a multi-location gas indication status interface. In some embodiments, the spot location instrument failure interface component may be based, at least in part, on multi-location gas indication data and / or spot location alarm gas data. In some embodiments, the spot location instrument failure interface component may be configured to display text, colors, symbols, etc., indicating one or more instrument failures associated with a multi-location gas analysis system. For example, the spot location instrument failure interface component may be configured to display text, colors, symbols, etc. indicating an optics noise instrument failure (e.g., noise associated with an optical device configured to perform an optical analysis technique).
[0116] In some embodiments, the point location instrument failure interface component can be configured to render to a second multi-location gas indication status portion of a multi-location gas indication status interface. In some embodiments, the point location instrument failure interface component can be rendered proximal to an adjusted multi-location gas indication aggregate interface component on the multi-location gas indication status interface. For example, the adjusted multi-location gas indication aggregate interface component can be configured to render to a first multi-location gas indication status portion of the multi-location gas indication status interface, and the point location instrument failure interface component can be configured to render to a second multi-location gas indication status portion of the multi-location gas indication status interface.
[0117] As used herein, the term "point location event interface component" refers to a graphical user interface element that is rendered into or as part of a multi-point location gas indication status interface. In some embodiments, the point location event interface component may be based at least in part on multi-point location gas indication data and / or point location alarm gas data. In some embodiments, the point location event interface component may be configured to display text, colors, symbols, etc. representing one or more events associated with the multi-point location gas analysis system. For example, the point location event interface component may be configured to display text, colors, symbols, etc. representing events including gas anomaly events associated with the multi-point location gas analysis system. As another example, the point location event interface component may be configured to display text, colors, symbols, etc. representing maintenance faults associated with the multi-point location gas analysis system (e.g., low flow maintenance faults).
[0118] In some embodiments, the point location event interface component can be configured to render into a second multi-location gas indication status portion of a multi-location gas indication status interface. In some embodiments, the point location event interface component can be rendered proximal to an adjusted multi-location gas indication aggregate interface component on the multi-location gas indication status interface. For example, the adjusted multi-location gas indication aggregate interface component can be configured to render into a first multi-location gas indication status portion of the multi-location gas indication status interface, and the point location event interface component can be configured to render into a second multi-location gas indication status portion of the multi-location gas indication status interface.
[0119] The terms "data," "content," "digital content," "digital content object," "signal," "information," and similar terms may be used interchangeably to refer to data that can be sent, received, and / or stored in accordance with embodiments of the present disclosure. Accordingly, the use of any such terms should not be construed as limiting the spirit and scope of embodiments of the present disclosure. Furthermore, where a computing device is described herein as receiving data from another computing device, it should be understood that the data may be received directly from the other computing device or may be received indirectly via one or more intermediate computing devices (such as, for example, one or more servers, relays, routers, network access points, base stations, hosts, etc., sometimes referred to herein as a "network"). Furthermore, where a computing device is described herein as sending data to another computing device, it should be understood that the data may be sent directly to the other computing device or may be transmitted indirectly via one or more intermediate computing devices (such as one or more servers, relays, routers, network access points, base stations, hosts, etc.).
[0120] As used herein, the term "computer-readable storage medium" refers to a non-transitory, physical or tangible storage medium (e.g., volatile or non-volatile memory), which is distinct from a "computer-readable transmission medium" which refers to an electromagnetic signal. Such a medium may take many forms, including but not limited to non-transitory computer-readable storage media (e.g., non-volatile media, volatile media) and transmission media. Transmission media include, for example, coaxial cables, copper wire, fiber optic cables, and carrier waves that travel through space without wires or cables, such as acoustic waves and electromagnetic waves, including radio, optical, infrared waves, etc. Signals include man-made or naturally occurring instantaneous changes in amplitude, frequency, phase, polarization or other physical properties that are transmitted through the transmission medium. Examples of non-transitory computer-readable media include magnetic computer-readable media (e.g., a floppy disk, a hard disk, a magnetic tape, any other magnetic media), optical computer-readable media (e.g., a compact disc read-only memory (CD-ROM), a digital versatile disc (DVD), a Blu-ray disc, etc.), random access memory (RAM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), a FLASH-EPROM, or any other non-transitory medium from which a computer can read. The term computer-readable storage medium is used herein to refer to any computer-readable medium other than transmission media. However, it should be understood that where an embodiment is described as using a computer-readable storage medium, other types of computer-readable storage media may be used instead of, or in addition to, the computer-readable storage medium in alternative embodiments.
[0121] The terms "client device," "computing device," "network device," "computer," "user equipment," and similar terms are used interchangeably to refer to computer hardware and / or software configured to access services provided by a system (e.g., a multi-location gas analysis system). The system is typically (but not always) hosted on another computer system, in which case the client device accesses the services via a network. Client devices may include, but are not limited to, smartphones, tablets, laptops, wearable devices, personal computers, enterprise computers, and the like.
[0122] As used herein, the term "circuitry" refers to: (a) a hardware circuit implementation only (e.g., an implementation in analog circuitry and / or digital circuitry); (b) a combination of a circuit and a computer program product, the computer program product comprising software and / or firmware instructions stored on one or more computer-readable memories, the software and / or firmware instructions working together to cause the apparatus to perform one or more functions described herein; and (c) a circuit, such as, for example, a microprocessor or a portion of a microprocessor, that requires software or firmware for operation even if the software or firmware is not physically present. This definition of "circuitry" applies to all uses of the term herein, including in any claims. As a further example, the term "circuitry" also includes an implementation that includes one or more processors and / or portions thereof and accompanying software and / or firmware. As another example, as used herein, the term "circuitry" also includes, for example, a baseband integrated circuit or an application processor integrated circuit for a mobile phone or similar integrated circuits in servers, cellular network equipment, other network equipment, and / or other computing devices.
[0123] As used herein, the terms "application," "software application," "app," "product," "service," or similar terms refer to a computer program or group of computer programs designed to perform coordinated functions, tasks, or activities for the benefit of a user or group of users. A software application can run on a server or group of servers (e.g., physical or virtual servers in a cloud-based computing environment). In certain embodiments, an application is designed for use by and interaction with one or more local, networked, or remote computing devices (such as, but not limited to, client devices).
[0124] The terms "database," "resource," "repository," and / or similar terms, used interchangeably herein, may refer to a collection of records or data stored in a computer-readable storage medium using one or more database types. The term "database type" may refer to a type of database, such as a hierarchical database, a network database, a relational database (e.g., Aurora, RDS), an entity-relationship database, an object database (e.g., S3), a document database, a semantic database, a graph database, a noSqL database (e.g., DynamoDB), and the like.
[0125] As used herein, the term "comprising" means including but not limited to, and should be interpreted in the manner in which it is typically used in a patent context. The use of broader terms such as "including," "comprising," and "having" should be understood to provide support for narrower terms such as "consisting of," "consisting essentially of," and "composed essentially of."
[0126] As used herein, the phrases "in one embodiment," "according to one embodiment," "in some embodiments," etc. generally mean that the particular feature, structure, or characteristic following the phrase can be included in at least one embodiment of the present disclosure. Thus, the particular feature, structure, or characteristic can be included in more than one embodiment of the present disclosure, so these phrases are not necessarily referring to the same embodiment.
[0127] As used herein, the terms "exemplary," "example," "illustrative," and the like are used to mean "serving as an example, instance, or illustration" and do not indicate a level of quality. Any implementation described herein as "exemplary" or "example" is not necessarily to be construed as preferred or advantageous over other implementations.
[0128] The terms "about," "approximately," "generally," "substantially," and the like, when used with numbers, may mean the specific number, or alternatively, a range close to the specific number, as understood by those skilled in the art, and may be used to refer to within manufacturing and / or engineering design tolerances of the corresponding materials and / or elements, as understood by those of ordinary skill in the art, unless otherwise noted.
[0129] If the specification states that a component or feature "may," "could," "would," "should," "will," "preferably," "likely," "typically," "optionally," "for example," "often," or "might" (or other such words) be included or have a characteristic, that particular component or feature is not required to be included or have that characteristic. Such components or features may optionally be included in some embodiments, or may be excluded.
[0130] If the specification presents a list, it should be understood that each individual element of the list and each combination of elements of the list is a separate embodiment unless otherwise stated. For example, in various embodiments, "1, 2, 3, 4, and 5" encompasses 1; 2; 3; 1 and 2; 3 and 5; 1, 3, and 5; and 1, 2, 4, and 5.
[0131] The term "plurality" refers to two or more items.
[0132] The term "collection" refers to a collection of one or more items.
[0133] Unless otherwise indicated, the term "or" is used herein in both the alternative and conjunctive senses.
[0134] Exemplary systems and devices of the present disclosure
[0135] Now refer to Figure 1, illustrates an exemplary environment 100 in which some embodiments of the present disclosure may operate. The exemplary environment 100 includes one or more multi-location sites 106A-106N, a multi-location gas analysis system 200, a multi-location gas analysis data repository 215, and / or a plurality of client devices 101A-101N. In some embodiments, the multi-location gas analysis system 200, the multi-location gas analysis data repository 215, and / or the plurality of client devices 101A-101N may be communicatively connected via a network 102. Thus, a user may access the multi-location gas analysis system 200 and / or the multi-location gas analysis data repository 215 via the network 102 using one or more of the client devices 101A-101N. In some embodiments, the multi-location gas analysis system 200 may communicate with at least one repository, such as the multi-location gas analysis data repository 215. Such a repository may be hosted by the multi-location gas analysis system 200 (e.g., the multi-location gas analysis data repository 215 may be a component of the multi-location gas analysis system 200) or otherwise hosted by a device that communicates with the multi-location gas analysis system 200 (e.g., the multi-location gas analysis data repository 215 may be separate from the multi-location gas analysis system 200 and communicate with the multi-location gas analysis system 200 via the network 102).
[0136] In some embodiments, one or more point location sites 106A-106N may be in fluid communication with the multi-location gas analysis system 200. In this regard, for example, pipes, tubes, connectors, any other connecting components, etc. may provide fluid communication between the one or more point location sites 106A-106N and the multi-location gas analysis system 200.
[0137] The multi-location gas analysis system 200 may include circuitry, a networked processor, and the like configured to perform some or all of the multi-location gas analysis-based processes described herein, and may be any suitable network server, computing device, and / or other type of processing device. In some embodiments, the multi-location gas analysis system 200 may use data from, for example, a multi-location gas analysis data repository 215 to determine and send commands and instructions for rendering one or more multi-location gas indication status interfaces to the client devices 101A-101N and / or the multi-location gas analysis system 200 (e.g., on a user interface 210 associated with the multi-location gas analysis system 200).
[0138] In this regard, the multi-location gas analysis system 200 can be embodied by any of a variety of devices, for example, the multi-location gas analysis system 200 can be embodied as a computer or multiple computers. For example, the multi-location gas analysis system 200 can be configured to receive / send data and can include any of a variety of fixed terminals, such as a server, a desktop computer, or an information kiosk, or can include any of a variety of mobile terminals, such as a portable digital assistant (PDA), a mobile phone, a smart phone, a laptop computer, a tablet computer, or a peripheral device connected to one or more fixed or mobile terminals in some embodiments. The exemplary embodiments contemplated herein can have various form factors and designs, but will still include at least Figure 2 Components shown and described in conjunction with this figure. In some embodiments, the multi-site gas analysis system 200 can be located remotely from the multi-site gas analysis data repository 215, while in other embodiments, the multi-site gas analysis system 200 can include the multi-site gas analysis data repository. In some embodiments, the multi-site gas analysis system 200 can include several servers or computing devices that perform interconnected and / or distributed functions. Although many arrangements are contemplated herein, the multi-site gas analysis system 200 is shown and described herein as a single computing device to avoid unnecessarily complicating the present disclosure.
[0139] The multi-location gas analysis system 200 can communicate with one or more client devices 101A-101N via a network 102. The network 102 can include any one or more wired and / or wireless communication networks, including, for example, wired and / or wireless local area networks (LANs), personal area networks (PANs), metropolitan area networks (MANs), wide area networks (WANs), and the like, as well as any hardware, software, and / or firmware required to implement the one or more networks (e.g., network routers, switches, hubs, etc.). For example, the network 102 can include cellular, mobile broadband, Long Term Evolution (LTE), GSM / EDGE, UMTS / HSPA, IEEE 802.11, IEEE 802.16, IEEE 802.20, Wi-Fi, dial-up, and / or WiMAX networks. Furthermore, the network 102 can include a public network (such as the Internet), a private network (such as an intranet), or a combination thereof, and can utilize various networking protocols now available or later developed, including, but not limited to, TCP / IP-based networking protocols. For example, the networking protocols can be customized to suit the needs of the multi-location gas analysis system 200.
[0140] The multi-site gas analysis data repository 215 may be comprised of any suitable storage device configured to store some or all of the information described herein (e.g., the memory 201 of the multi-site gas analysis system 200 or a separate memory system separate from the multi-site gas analysis system 200, such as stored by another device (e.g., an online application or 3D image processing system). rd The multi-location gas analysis data repository 215 may be stored in one or more database systems, back-end data servers, network databases, cloud storage devices, and the like, such as one or more network attached storage (NAS) devices or as one or more separate database servers, provided by a third-party provider. The multi-location gas analysis data repository 215 may include data received from the multi-location gas analysis system 200 (e.g., via the memory 201 and / or the processor 202), and the corresponding storage device may thus store the data. The multi-location gas analysis data repository 215 includes information accessed and stored by the multi-location gas analysis system 200 to facilitate the operation of the multi-location gas analysis system 200. Thus, the multi-location gas analysis data repository 215 may include, for example, but not limited to, multi-location gas indication data, location alarm action gas data, and the like.
[0141] The client devices 101A-101N may be implemented as any computing device as defined above. The electronic data received by the multi-location gas analysis system 200 from the client devices 101A-101N may be provided in various forms and via various methods. For example, the client devices 101A-101N may include desktop computers, laptop computers, smartphones, netbooks, tablet computers, wearable devices, and / or other networked devices that may be used for any suitable purpose other than presenting a multi-location gas indication status interface to a user and otherwise providing access to the multi-location gas analysis system 200. Figure 2 The depiction of "N" client devices is for illustrative purposes only. According to some embodiments, the client devices 101A-101N may be configured to display an interface on a display of the client device for viewing, creating, editing, and / or otherwise interacting with at least a multi-location gas indication status interface, which may be provided by the multi-location gas analysis system 200. According to other embodiments, the client devices 101A-101N may be configured to generate and / or display a multi-location gas indication aggregate interface component, an adjusted multi-location gas indication aggregate interface component, a location alarm action gas interface component, a location service status interface component, a location maintenance fault interface component, a location instrument fault interface component, a location event interface component, and the like.
[0142] In embodiments where the client devices 101A-101N are mobile devices (such as smartphones or tablets), the client devices 101A-101N may execute “applications” to interact with the multi-location gas analysis system 200. These applications are typically designed to execute on mobile devices (such as tablets or smartphones). For example, an application may be provided on a mobile device operating system (such as or ) applications executed on the mobile device. These platforms typically provide a framework that allows applications to communicate with each other and with specific hardware and software components of the mobile device. The mobile operating systems mentioned above each provide a framework for interacting with, for example, wired and wireless network interfaces, user contacts, and other application programs. Communication with hardware and software modules executing outside of applications is typically provided via application programming interfaces (APIs) provided by the mobile device operating system. Additionally or alternatively, the client devices 101A-101N may interact with the multi-point location gas analysis system 200 via a web browser. As yet another example, the client devices 101A-101N may include various hardware or firmware designed to interface with the multi-point location gas analysis system 200.
[0143] Exemplary apparatus for implementing embodiments of the present disclosure
[0144] Figure 2 An exemplary multi-location gas analysis system 200 according to at least some exemplary embodiments of the present disclosure is illustrated. According to some exemplary embodiments, the multi-location gas analysis system 200 may include various components, modules, circuits, or components, some or all of which may also or alternatively be included in one or more client devices 101A-101N. According to some exemplary embodiments, the multi-location gas analysis system 200 may be configured to perform and execute the operations described herein using one or more circuitry embodying a memory 201, a processor 202, input / output circuitry 203, communication circuitry 204, and / or multi-location gas analysis circuitry 205. In some embodiments, the multi-location gas analysis circuitry 205 is included in the multi-location gas analysis system 200 and / or the client device 101A and is configured to facilitate the functionality discussed herein with respect to generating a multi-location gas indication aggregate interface component, an adjusted multi-location gas indication aggregate interface component, a location alarm action gas interface component, a location service status interface component, a location maintenance fault interface component, a location instrument fault interface component, a location event interface component, and the like.
[0145] Although the use of the term "circuitry" as used herein with respect to components 201-205 is described in some cases with respect to functional limitations, it should be understood that a particular implementation necessarily includes the use of specific hardware configured to perform the functions associated with the corresponding circuits as described herein. It should also be understood that certain of these components 201-205 may include similar or common hardware. For example, two circuit groups may each utilize the same processor, network interface, storage medium, etc. to perform their associated functions, such that each circuit group does not require duplicate hardware. Therefore, it should be understood that the use of the term "circuitry" as used with respect to components of the apparatus described herein includes specific hardware configured to perform the functions associated with the corresponding components or specific circuits as described herein.
[0146] In some embodiments, the term "circuitry" should also be understood to include software used to configure hardware. For example, in some embodiments, "circuitry" may include processing circuitry, storage media, network interfaces, input / output devices, and the like. In some embodiments, such as in the example where multi-site gas analysis system 200 includes circuitry, other components of multi-site gas analysis system 200 may provide or supplement the functionality of the particular circuitry. For example, processor 202 may provide processing functionality, memory 201 may provide storage functionality, communication circuitry 204 may provide network interface functionality, and so on.
[0147] In some embodiments, the processor 202 (and / or a coprocessor or any other processing circuitry assisting the processor or otherwise associated with the processor) can communicate with the memory 201 via a bus for transferring information between components of, for example, the multi-location gas analysis system 200. The memory 201 is non-transitory and can include, for example, one or more volatile and / or non-volatile memories or some combination thereof. In other words, for example, the memory 201 can be an electronic storage device (e.g., a computer-readable storage medium). The memory 201 can be configured to store information, data, content, applications, instructions, etc. for enabling the apparatus (e.g., the multi-location gas analysis system 200) to perform various functions according to exemplary embodiments of the present disclosure.
[0148] Despite Figure 2Although illustrated as a single memory, memory 201 may include multiple memory components. The multiple memory components may be implemented on a single computing device or distributed across multiple computing devices. In various embodiments, memory 201 may include, for example, a hard disk, random access memory, cache memory, flash memory, compact disc read-only memory (CD-ROM), digital versatile disc read-only memory (DVD-ROM), an optical disk, circuitry configured to store information, or some combination thereof. Memory 201 may be configured to store information, data, applications, instructions, and the like that enable multi-location gas analysis system 200 to perform various functions according to the exemplary embodiments discussed herein. For example, in at least some embodiments, memory 201 is configured to buffer data for processing by processor 202. Additionally or alternatively, in at least some embodiments, memory 201 is configured to store program instructions for execution by processor 202. Memory 201 may store information in the form of static and / or dynamic information. This stored information may be stored and / or used by multi-location gas analysis system 200 during the course of performing its functionality.
[0149] The processor 202 may be embodied in a variety of different ways, and may, for example, include one or more processing devices configured to execute independently. Additionally or alternatively, the processor 202 may include one or more processors configured in series via a bus to enable independent execution of instructions, pipelining, and / or multithreading. The processor 202 may, for example, be embodied as various components including one or more microprocessors with an accompanying digital signal processor, one or more processors without an accompanying digital signal processor, one or more coprocessors, one or more multi-core processors, one or more controllers, processing circuitry, one or more computers, various other processing elements (including integrated circuits such as, for example, an ASIC (application specific integrated circuit) or an FPGA (field programmable gate array)), or some combination thereof. The use of the term "processing circuitry" may be understood to include a single core processor, a multi-core processor, multiple processors internal to the device, and / or a remote or "cloud" processor. Thus, although in Figure 2 2 is illustrated as a single processor, but in some embodiments, processor 202 includes multiple processors. The multiple processors can be embodied on a single computing device or can be distributed across multiple such devices that are collectively configured to function as multi-location gas analysis system 200. The multiple processors can be in operable communication with each other and can be collectively configured to perform one or more functionalities of multi-location gas analysis system 200 as described herein.
[0150] In an exemplary embodiment, the processor 202 is configured to execute instructions stored in the memory 201 or otherwise accessible to the processor 202. Alternatively, or in addition, the processor 202 can be configured to execute hard-coded functionality. Thus, whether configured via hardware or software methods, or a combination thereof, the processor 202 can represent an entity (e.g., physically embodied in circuit form) capable of performing operations in accordance with embodiments of the present disclosure while being configured accordingly. Alternatively, as another example, when the processor 202 is embodied as an executor of software instructions, the instructions can specifically configure the processor 202 to perform one or more algorithms and / or operations described herein when executing the instructions. For example, when executed by the processor 202, the instructions can cause the multi-site gas analysis system 200 to perform one or more functionalities of the multi-site gas analysis system 200 as described herein.
[0151] In some embodiments, input / output circuitry 203 can, in turn, communicate with processor 202 to provide an audible, visual, mechanical, or other output and / or, in some embodiments, receive an indication of an input. In this sense, input / output circuitry 203 can include components for performing analog-to-digital and / or digital-to-analog data conversion. Input / output circuitry 203 can include, for example, support for a display, touch screen, keyboard, buttons, click wheel, mouse, joystick, image capture device (e.g., camera), motion sensor (e.g., accelerometer and / or gyroscope), microphone, audio recorder, speaker, biometric scanner, and / or other input / output mechanisms. Input / output circuitry 203 can include a user interface (e.g., a multi-location gas indication status interface) and can include a web user interface, mobile application, kiosk, and the like. Processor 202 and / or user interface circuitry including processor 202 can be configured to control one or more functions of a display or one or more user interface elements via computer program instructions (e.g., software and / or firmware) stored in a memory accessible to processor 202 (e.g., memory 201, etc.). In some embodiments, aspects of the input / output circuitry 203 in the multi-location gas analysis system 200 may be reduced when also or alternatively implemented as an end-user machine or other type of device designed for complex user interaction (i.e., client device 101). In some embodiments (as with other components discussed herein), the input / output circuitry 203 may even be eliminated from the multi-location gas analysis system 200. Alternatively, at least some aspects of the input / output circuitry 203 may be embodied on a device used by a user communicating with the multi-location gas analysis system 200. The input / output circuitry 203 may communicate with the memory 201, the communication circuitry 204, and / or any other components, for example, via a bus. Although more than one input / output circuitry and / or other components may be included in the multi-location gas analysis system 200, Figure 2 Only one is shown to avoid overcomplicating the disclosure (eg, similar to other components discussed herein).
[0152] The communication circuitry 204 may be any component, such as a device or circuit embodied in hardware or a combination of hardware and software, that is configured to receive and / or send data from and / or to a network and / or any other device, circuit, or module that communicates with the multi-location gas analysis system 200. In this regard, the communication circuitry 204 may include, for example, a network interface for enabling communication with a wired or wireless communication network. The communication circuitry 204 may be configured to receive and / or send any data that may be stored by the memory 201 using any protocol that can be used for communication between computing devices. For example, the communication circuitry 204 may include one or more network interface cards, antennas, transmitters, receivers, buses, switches, routers, modems, and supporting hardware and / or software and / or firmware / software, or any other device suitable for enabling communication via a network. Additionally or alternatively, the communication interface may include circuitry for interacting with an antenna to cause signals to be sent via the antenna or to process signals received via the antenna. These signals may be sent by the multi-location gas analysis system 200 using any of a variety of wireless personal area network (PAN) technologies, such as 1.0 to 3.0, Bluetooth Low Energy (BLE), infrared wireless (e.g., IrDA), ultra-wideband (UWB), inductive wireless transmission, etc. In addition, it should be understood that these signals can be sent using Wi-Fi, near field communication (NFC), Worldwide Interoperability for Microwave Access (WiMAX), or other proximity-based communication protocols. The communication circuit 204 can additionally or alternatively communicate with the memory 201, the input / output circuit 203, and / or any other components of the multi-point location gas analysis system 200, such as via a bus.
[0153] In some embodiments, the multi-location gas analysis circuitry 205 may also or alternatively include and be configured to perform the functionality discussed herein related to providing a multi-location gas indication status interface, a multi-location gas indication aggregate interface component, an adjusted multi-location gas indication aggregate interface component, a location alarm action gas interface component, a location service status interface component, a location maintenance fault interface component, a location instrument fault interface component, a location event interface component, and the like. The multi-location gas analysis circuitry 205 includes hardware components and / or software configured to support the interface component functionality, features, and / or services of the multi-location gas analysis system 200. The multi-location gas analysis circuitry 205 may utilize processing circuitry, such as a processor 202, to perform its corresponding operations and may utilize a memory 201 to store collected information. The multi-location gas analysis circuitry 205 may transmit and / or receive data from a multi-location gas analysis data repository 215. In some specific implementations, the data transmitted and / or received may include multi-point location gas indication data, point location alarm action gas data and / or associated data associated with, for example, generating a multi-point location gas indication status interface, a multi-point location gas indication aggregation interface component, an adjusted multi-point location gas indication aggregation interface component, a point location alarm action gas interface component, a point location service status interface component, a point location maintenance fault interface component, a point location instrument fault interface component, a point location event interface component, etc.
[0154] It should also be understood that in some embodiments, the multi-site gas analysis circuit 205 may include a separate processor, a specially configured field programmable gate array (FPGA), or an application specific interface circuit (ASIC) to perform its corresponding functions. For example, in some embodiments, some or all of the functionality of the multi-site gas analysis circuit 205 may be performed by the processor 202. In this regard, some or all of the exemplary processes and algorithms discussed herein may be performed by at least one processor 202 and / or the multi-site gas analysis circuit 205. For example, a non-transitory computer-readable medium may be configured to store firmware, one or more application programs, and / or other software including instructions and other computer-readable program code portions that are executable to control the processors of the components of the multi-site gas analysis system 200 to perform various operations, including the examples described herein. Thus, a series of computer-readable program code portions may be embodied in one or more computer program products and may be used in conjunction with an apparatus, the multi-site gas analysis system 200, a database, and / or other programmable devices to produce the machine-implemented processes discussed herein. It is also noted that all or some of the information discussed herein may be based on data received, generated, and / or maintained by one or more components of the multi-location gas analysis system 200. In some embodiments, one or more external systems (such as remote cloud computing and / or data storage systems) may also be utilized to provide at least some of the functionality discussed herein.
[0155] As described above and based on the present disclosure, it should be understood that the embodiments of this overview can be configured as systems, methods, devices, computer equipment, personal computers, servers, mobile devices, back-end network equipment, etc. Therefore, the embodiments may include various components, which include complete hardware or any combination of software and hardware. In addition, the embodiments may take the form of a computer program product on at least one non-transient computer-readable storage medium, which has computer-readable program instructions (e.g., computer software stored on a hardware device) embodied in the computer-readable storage medium. Any suitable computer-readable storage medium can be utilized, including a non-transient hard disk, CD-ROM, flash memory, optical storage device, or magnetic storage device.
[0156] It should be understood that any such computer program instructions and / or other types of code may be loaded onto the circuitry of a computer, processor, or other programmable device to produce a machine, such that the computer, processor, or other programmable circuitry executing the code on the machine creates components for performing various functions, including those described herein in conjunction with the components of the multi-point location gas analysis system 200.
[0157] In various embodiments of the present disclosure, a system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a multi-location gas indication aggregate interface component of the multi-location gas analysis system 200. For example, a system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a multi-location gas indication aggregate interface component on a multi-location gas indication status interface of the multi-location gas analysis system 200. Figure 3 An exemplary multi-location gas indication aggregate interface assembly 300 structured according to various embodiments of the present disclosure is illustrated. In some embodiments, a system (e.g., multi-location gas analysis system 200) causes the multi-location gas indication aggregate interface assembly 300 to be rendered to a visual display of a computing device (e.g., client devices 101A-101N and / or multi-location gas analysis system 200).
[0158] In some embodiments, the multi-position gas indication aggregate interface assembly 300 can be configured to display one or more point position gas indication interface assemblies. For example, the multi-position gas indication aggregate interface assembly 300 can be configured to display multiple point position gas indication interface assemblies 302. Figure 3 In the non-limiting example depicted in , the multi-point position gas indication aggregate interface assembly 300 includes four point position gas indication interface assemblies, but those skilled in the art to which the present disclosure pertains should understand that the multi-point position gas indication aggregate interface assembly 300 can be configured to display any number of point position gas indication interface assemblies.
[0159] In some embodiments, each of the plurality of point location gas indication interface assemblies 302 can be configured to display a point location gas type interface assembly. For example, each of the plurality of point location gas indication interface assemblies 302 can be configured to display a point location gas type interface assembly 304. In some embodiments, the point location gas type interface assembly 304 can be configured to display text, color, graphics, etc. representing a point location gas type identifier (e.g., text including AsH3).
[0160] In some embodiments, each of the plurality of point location gas indication interface assemblies 302 can be configured to display a point location gas concentration interface assembly. For example, each of the plurality of point location gas indication interface assemblies 302 can be configured to display a point location gas concentration interface assembly 306. In some embodiments, the point location gas concentration interface assembly 306 can be configured to display text, color, graphics, etc. representing the point location gas concentration indicator (e.g., text including 0.000 ppm).
[0161] In some embodiments, each of the plurality of point location gas indication interface assemblies 302 can be configured to display a point location site interface assembly. For example, each of the plurality of point location gas indication interface assemblies 302 can be configured to display a point location site interface assembly 308. In some embodiments, the point location site interface assembly 308 can be configured to display text, colors, graphics, etc. representing a point location site identifier (e.g., text including Site A, Layer Five).
[0162] In some embodiments, each of the plurality of point location gas indication interface assemblies 302 can be configured to display a point location unique identification interface assembly. For example, each of the plurality of point location gas indication interface assemblies 302 can be configured to display a point location unique identification interface assembly 310. In some embodiments, the point location unique identification interface assembly 310 can be configured to display text, color, graphics, etc. representing a point location unique identification identifier (e.g., text including 123223).
[0163] In some embodiments, each of the plurality of point location gas indication interface assemblies 302 can be configured to display a point location status interface component. For example, each of the plurality of point location gas indication interface assemblies 302 can be configured to display a point location status interface component 312. In some embodiments, the point location status interface component 312 can be configured to display text, color, graphics, etc. that represent the point location status indicator (e.g., text stating that an acceptable gas concentration level exists).
[0164] In various embodiments of the present disclosure, a system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a multi-location gas indication status interface of the multi-location gas analysis system 200. For example, the system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a multi-location gas indication aggregate interface component on the user interface 210 of the multi-location gas analysis system 200. Figure 4 An exemplary multi-location gas indication status interface 400 structured according to various embodiments of the present disclosure is illustrated. In some embodiments, a system (e.g., multi-location gas analysis system 200) causes the multi-location gas indication status interface 400 to be rendered to a visual display of a computing device (e.g., client devices 101A-101N and / or multi-location gas analysis system 200).
[0165] In some embodiments, the multi-location gas indication status interface 400 may include a first multi-location gas indication status portion and / or a second multi-location gas indication status portion. Figure 5 An exemplary first multi-point gas indication status portion 502 and an exemplary second multi-point gas indication status portion 504 are illustrated. In some embodiments, such as Figure 6 As illustrated in FIG, the multi-position gas indication aggregate interface assembly 300 can be configured to render to a first multi-position gas indication status portion 502 of the multi-position gas indication status interface 400 and a second multi-position gas indication status portion 504 of the multi-position gas indication status interface 400. In other words, the multi-position gas indication aggregate interface assembly 300 can be configured such that at least a portion of the multi-position gas indication aggregate interface assembly 300 is rendered on the first multi-position gas indication status portion 502 and at least another portion of the multi-position gas indication aggregate interface assembly 300 is rendered on the second multi-position gas indication status portion 504.
[0166] In various embodiments of the present disclosure, a system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a point-location alarm gas interface component of the multi-location gas analysis system 200. For example, the system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a point-location alarm gas interface component on a multi-location gas indication status interface of the multi-location gas analysis system 200. Figure 7 An exemplary point location alarm gas interface assembly 700 structured according to various embodiments of the present disclosure is illustrated. In some embodiments, a system (e.g., a multi-point location gas analysis system 200) causes the point location alarm gas interface assembly 700 to be rendered to a visual display of a computing device (e.g., client devices 101A-101N and / or a multi-point location gas analysis system 200).
[0167] In some embodiments, the point position alarm gas interface assembly 700 can be configured to display a point position alarm gas auxiliary interface assembly. For example, the point position alarm gas interface assembly 700 can be configured to display a point position alarm gas auxiliary interface assembly 702. Figure 7 In the non-limiting example depicted in , the point position alarm gas interface assembly 700 includes one point position alarm gas auxiliary interface assembly, but those skilled in the art to which the present disclosure pertains should understand that the point position alarm gas interface assembly 700 can be configured to display any number of point position alarm gas auxiliary interface assemblies.
[0168] In some embodiments, the point location alarm gas auxiliary interface component 702 may be configured to display text, color, symbol, etc. representing one or more of a point location site identifier, a point location unique identification identifier, a point location gas concentration indicator, a point location gas type identifier, and / or a point location status indicator associated with a point location site associated with a gas anomaly event (e.g., one of the point location sites 106A-106N). For example, for a point location site associated with a point location gas concentration greater than a point location gas concentration threshold, the point location alarm gas auxiliary interface component 702 may be configured to display text, color, symbol, etc. representing the point location gas concentration identifier associated with the point location site.
[0169] In some embodiments, the point position alarm gas interface assembly 700 can be configured to display a point position alarm action gas interface assembly. For example, the point position alarm gas interface assembly 700 can be configured to display a point position alarm action gas interface assembly 704. Figure 7 In the non-limiting example depicted in , the point position alarm gas interface assembly 700 includes one point position alarm action gas interface assembly, but those skilled in the art to which the present disclosure pertains should understand that the point position alarm gas interface assembly 700 can be configured to display any number of point position alarm action gas interface assemblies.
[0170] In some embodiments, the point location alarm action gas interface component 704 may be configured to be selected by a user, so that the user can select the point location alarm action gas interface component to confirm that a gas anomaly event has occurred. In some embodiments, the point location alarm action gas interface component may be configured to be selected by a user, so that the user can trigger one or more actions in response to a gas anomaly event by selecting the point location alarm action gas interface component. For example, the one or more actions that can be triggered by the user selecting the point location alarm action gas interface component in response to a gas anomaly event may include triggering an alarm to notify individuals associated with the point location site of the gas anomaly event. As another example, the one or more actions that can be triggered by the user selecting the point location alarm action gas interface component in response to a gas anomaly event may include causing the evacuation of the point location site. As another example, the one or more actions that can be triggered by the user selecting the point location alarm action gas interface component in response to a gas anomaly event may include shutting down machines and / or processes associated with the point location site.
[0171] In various embodiments of the present disclosure, a system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of an adjusted multi-location gas indication aggregate interface component of the multi-location gas analysis system 200. For example, the system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of an adjusted multi-location gas indication aggregate interface component on a multi-location gas indication status interface of the multi-location gas analysis system 200. Figure 8 An exemplary modified multi-location gas indication aggregate interface assembly 800 structured according to various embodiments of the present disclosure is illustrated. In some embodiments, a system (e.g., multi-location gas analysis system 200) causes the modified multi-location gas indication aggregate interface assembly 800 to be rendered to a visual display of a computing device (e.g., client devices 101A-101N and / or multi-location gas analysis system 200).
[0172] In some embodiments, the adjusted multi-position gas indication aggregate interface assembly 800 can be configured to display one or more point position gas indication interface assemblies. For example, the adjusted multi-position gas indication aggregate interface assembly 800 can be configured to display multiple point position gas indication interface assemblies 302. Figure 8 In the non-limiting example depicted in , the adjusted multi-point position gas indication aggregate interface assembly 800 includes four point position gas indication interface assemblies, but those skilled in the art to which the present disclosure pertains should understand that the adjusted multi-point position gas indication aggregate interface assembly 800 can be configured to display any number of point position gas indication interface assemblies.
[0173] In some embodiments, as Figure 9 As illustrated, the modified multi-position gas indication aggregate interface assembly 800 may be configured to render to the first multi-position gas indication status portion 502 of the multi-position gas indication status interface 400. In some embodiments, such as Figure 9 As illustrated, the point position alarm gas interface assembly 700 can be configured to be rendered onto the second multi-position gas indication status portion 504 of the multi-position gas indication status interface 400. In this regard, the adjusted multi-position gas indication aggregate interface assembly 800 can be rendered proximal to the point position alarm gas interface assembly 700 on the multi-position gas indication status interface 400.
[0174] In various embodiments of the present disclosure, a system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a point location service status interface component of the multi-location gas analysis system 200. For example, the system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a point location service status interface component on a multi-location gas indication status interface of the multi-location gas analysis system 200. Figure 10 An exemplary point location service status interface component 1000 structured according to various embodiments of the present disclosure is illustrated. In some embodiments, a system (e.g., a multi-point location gas analysis system 200) causes the point location service status interface component 1000 to be rendered to a visual display of a computing device (e.g., a client device 101A-101N and / or a multi-point location gas analysis system 200).
[0175] In some embodiments, the point location service status interface component 1000 can be configured to display text, colors, symbols, etc. that represent one or more service statuses associated with the multi-location gas analysis system 200. In some embodiments, for example, the point location service status interface component 1000 can be configured to display text, colors, symbols, etc. that represent one or more service statuses associated with the multi-location gas analysis system 200. In some embodiments, for example, the point location service status interface component 1000 can be configured to display text, colors, symbols, etc. that represent one or more service statuses associated with the multi-location gas analysis system 200. The point location service status interface component 1000 may be configured to display text, color, symbol, etc. representing the age of the paper (e.g., 5 days). As another example, the point location service status interface component 1000 may be configured to display text, color, symbol, etc. representing the optics cleaning timeline (e.g., 180 days) associated with the multi-location gas analysis system 200. As another example, the point location service status interface component 1000 may be configured to display text, color, symbol, etc. representing the age of the filter associated with the multi-location gas analysis system 200 (e.g., 176 days).
[0176] In various embodiments of the present disclosure, a system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a point location maintenance fault interface component of the multi-location gas analysis system 200. For example, the system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a point location maintenance fault interface component on the multi-location gas indication status interface of the multi-location gas analysis system 200. Figure 11An exemplary point location maintenance fault interface component 1100 structured according to various embodiments of the present disclosure is illustrated. In some embodiments, a system (e.g., a multi-point location gas analysis system 200) causes the point location maintenance fault interface component 1100 to be rendered to a visual display of a computing device (e.g., a client device 101A-101N and / or a multi-point location having analysis system 200).
[0177] In some embodiments, the point location maintenance fault interface component 1100 can be configured to display text, colors, symbols, etc. that represent one or more maintenance faults associated with the multi-location gas analysis system 200. For example, the point location maintenance fault interface component 1100 can be configured to display text, colors, symbols, etc. that represent a low flow maintenance fault.
[0178] In various embodiments of the present disclosure, a system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a point-location instrument failure interface component of the multi-location gas analysis system 200. For example, the system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a point-location instrument failure interface component on the multi-location gas indication status interface of the multi-location gas analysis system 200. Figure 12 An exemplary point location instrument failure interface component 1200 structured according to various embodiments of the present disclosure is illustrated. In some embodiments, a system (e.g., a multi-point location gas analysis system 200) causes the point location instrument failure interface component 1200 to be rendered to a visual display of a computing device (e.g., a client device 101A-101N and / or a multi-point location gas analysis system 200).
[0179] In some embodiments, the point location instrument fault interface component 1200 can be configured to display text, colors, symbols, etc., representing one or more instrument faults associated with the multi-location gas analysis system 200. For example, the point location instrument fault interface component 1200 can be configured to display text, colors, symbols, etc., representing an optics noise instrument fault (e.g., noise associated with optics configured to perform optical analysis techniques).
[0180] In various embodiments of the present disclosure, a system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a point location event interface component of the multi-location gas analysis system 200. For example, the system (e.g., the multi-location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of a point location event interface component on the multi-location gas indication status interface of the multi-location gas analysis system 200. Figure 13An exemplary point location event interface component 1300 structured according to various embodiments of the present disclosure is illustrated. In some embodiments, a system (e.g., a multi-point location gas analysis system 200) causes the point location event interface component 1300 to be rendered to a visual display of a computing device (e.g., a client device 101A-101N and / or a multi-point location gas analysis system 200).
[0181] In some embodiments, the point location event interface component 1300 can be configured to display text, colors, symbols, etc. representing one or more events associated with the multi-location gas analysis system 200. For example, the point location event interface component 1300 can be configured to display text, colors, symbols, etc. representing events including a gas anomaly event associated with the multi-location gas analysis system 200. As another example, the point location event interface component 1300 can be configured to display text, colors, symbols, etc. representing a maintenance fault (e.g., a low flow maintenance fault) associated with the multi-location gas analysis system 200.
[0182] In some embodiments, a system (e.g., a multi-point location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of at least a portion of a multi-point location gas indication aggregation interface component 300, a multi-point location gas indication status interface 400, a point location alarm gas interface component 700, an adjusted multi-point location gas indication aggregation interface component 800, a point location service status interface component 1000, a point location maintenance fault interface component 1100, a point location instrument fault interface component 1200, and / or a point location event interface component 1300 in a green-blind type configuration.
[0183] In some embodiments, a system (e.g., a multi-point location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of at least a portion of a multi-point location gas indication aggregation interface component 300, a multi-point location gas indication status interface 400, a point location alarm gas interface component 700, an adjusted multi-point location gas indication aggregation interface component 800, a point location service status interface component 1000, a point location maintenance fault interface component 1100, a point location instrument fault interface component 1200, and / or a point location event interface component 1300 in a red-blind type configuration.
[0184] In some embodiments, a system (e.g., a multi-point location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of at least a portion of a multi-point location gas indication aggregation interface component 300, a multi-point location gas indication status interface 400, a point location alarm gas interface component 700, an adjusted multi-point location gas indication aggregation interface component 800, a point location service status interface component 1000, a point location maintenance fault interface component 1100, a point location instrument fault interface component 1200, and / or a point location event interface component 1300 in a color blindness type configuration.
[0185] In some embodiments, a system (e.g., a multi-point location gas analysis system 200) may be configured to generate, output, manage, and / or cause rendering of at least a portion of a multi-point location gas indication aggregation interface component 300, a multi-point location gas indication status interface 400, a point location alarm gas interface component 700, an adjusted multi-point location gas indication aggregation interface component 800, a point location service status interface component 1000, a point location maintenance fault interface component 1100, a point location instrument fault interface component 1200, and / or a point location event interface component 1300 in a full color blindness type configuration.
[0186] Example operations performed
[0187] Having described exemplary systems and apparatuses and exemplary circuits according to various embodiments of the present disclosure, exemplary processes of the present disclosure will now be discussed. It should be understood that each of the flowcharts depicts an exemplary computer-implemented process that can be performed by one or more of the apparatuses, systems, devices, and / or computer program products described herein, for example, using one or more of their specifically configured components. It should also be understood that the exemplary apparatuses, systems, devices, and / or computer program products can continue to output and / or provide a multi-point location gas indication status interface, a multi-point location gas indication aggregate interface component, an adjusted multi-point location gas indication aggregate interface component, a point location alarm gas interface component, a point location service status interface component, a point location maintenance fault interface component, a point location instrument fault interface component, a point location event interface component, etc. in a multi-point location gas analysis system in a variety of ways.
[0188] Each frame indicates the operation of each process.This type of operation can be performed in any way in a variety of ways, including but not limited to performing in the order and manner described and depicted herein. In some embodiments, one or more frames in any process described herein occur between one or more frames of another process, occur before one or more frames of another process, occur in parallel with one or more frames of another process, and / or as a subprocess of a second process. Additionally or alternatively, in various embodiments, any process includes some or all of the operational steps described and / or depicted, includes one or more optional frames in some embodiments. About the flow chart shown herein, in some embodiments, one or more frames in the frame depicted are optional in some or all embodiments of the present disclosure. Optional frames are described with dotted lines (or " dashed-dotted lines "). Similarly, it should be understood that one or more operations in the operation of each flow chart can be combinable, replaceable and / or otherwise changed, as described herein.
[0189] Figure 14is a flow chart generally illustrating a series of operations or process blocks performed or executed to output a point location alarm gas interface component and an adjusted multi-location gas indication aggregate interface component for rendering to a multi-location gas indication status interface of a computing device associated with the multi-location gas indication aggregate interface component in a multi-location gas analysis system, according to some exemplary embodiments of the present disclosure. In some embodiments, method 1400 is embodied by computer program code stored on a non-transitory computer-readable storage medium of a computer program product, the computer program code being configured to execute to perform the process as depicted and described. In this regard, in some such embodiments, the multi-location gas analysis system 200 is specifically configured by computer-coded instructions (e.g., computer program instructions) stored thereon (e.g., stored in memory 201 and / or in another component depicted and / or described herein and / or otherwise accessible by the multi-location gas analysis system 200) to perform the depicted and described operations. Alternatively or additionally, in some embodiments, method 1400 is performed by one or more specially configured computing devices, such as multi-site gas analysis system 200, either alone or in communication with one or more other components, devices, systems, etc. In some embodiments, multi-site gas analysis system 200 communicates with one or more external devices, systems, devices, etc. to perform one or more of the depicted and described operations. For purposes of simplicity of description, method 1400 is described as being performed by multi-site gas analysis system 200 and from the perspective of the distribution modeling device. In this regard, execution of these operations may involve one or more of memory 201, processor 202, input / output circuitry 203, communication circuitry 204, and / or multi-site gas analysis circuitry 205.
[0190] exist Figure 14 In the illustrated embodiment, the flowchart illustrates method 1400 that begins at block 1402. At block 1402, multi-location gas analysis system 200 includes components such as memory 201, processor 202, input / output circuitry 203, communication circuitry 204, and / or multi-location gas analysis circuitry 205, or a combination thereof, to access multi-location gas indication data. In this regard, for example, multi-location gas analysis system 200 may access one or more data items indicating multi-location site identifiers, multi-location unique identification identifiers, multi-location gas concentration indicators, multi-location gas type identifiers, and / or multi-location status indicators. In some embodiments, multi-location gas analysis system 200 may access multi-location gas indication data from multi-location gas analysis data repository 215.
[0191] At block 1404, the multi-location gas analysis system 200 includes components such as the memory 201, the processor 202, the input / output circuitry 203, the communication circuitry 204, and / or the multi-location gas analysis circuitry 205, or a combination thereof, to generate a multi-location gas indication aggregate interface assembly. In some embodiments, the modified multi-location gas indication aggregate interface assembly may be configured to display multiple location gas indication interface assemblies. For example, the modified multi-location gas indication aggregate interface assembly may be configured to display four location gas indication interface assemblies. In some embodiments, the multi-location gas indication aggregate interface assembly may be based at least in part on the multi-location gas indication data and / or the location alarm gas data.
[0192] At block 1406, the multi-location gas analysis system 200 includes components such as the memory 201, the processor 202, the input / output circuitry 203, the communication circuitry 204, and / or the multi-location gas analysis circuitry 205, or a combination thereof, to output a multi-location gas indication aggregate interface component for rendering to a multi-location gas indication status interface. In some embodiments, the multi-location gas indication status interface can be configured to enable one or more users to view and interface with one or more multi-location gas analysis systems, views, and / or interface components. In some embodiments, for example, the multi-location gas indication status interface is configured to enable one or more users to view and interface with one or more of a multi-location gas indication aggregate interface component, an adjusted multi-location gas indication aggregate interface component, a location alarm gas interface component, a location service status interface component, a location maintenance fault interface component, a location instrument fault interface component, and / or a location event interface component.
[0193] At block 1408, the multi-location gas analysis system 200 includes components such as the memory 201, the processor 202, the input / output circuitry 203, the communication circuitry 204, and / or the multi-location gas analysis circuitry 205, or a combination thereof, to generate a point location alarm gas interface component. In some embodiments, the point location alarm gas interface component may be configured to display one or more point location alarm gas auxiliary interface components and / or one or more point location alarm action gas interface components. In some embodiments, the point location alarm gas interface component may be based at least in part on the multi-location gas indication data and / or the point location alarm gas data.
[0194] At block 1410, the multi-location gas analysis system 200 includes components such as the memory 201, the processor 202, the input / output circuitry 203, the communication circuitry 204, and / or the multi-location gas analysis circuitry 205, or a combination thereof, to generate an adjusted multi-location gas indication aggregate interface assembly. In some embodiments, the adjusted multi-location gas indication aggregate interface assembly may be configured to display multiple location gas indication interface assemblies. For example, the adjusted multi-location gas indication aggregate interface assembly may be configured to display four location gas indication interface assemblies. In some embodiments, the multi-location gas indication aggregate interface assembly may be based at least in part on the multi-location gas indication data and / or the location alarm gas data.
[0195] At block 1412, the multi-location gas analysis system 200 includes components such as memory 201, processor 202, input / output circuitry 203, communication circuitry 204, and / or multi-location gas analysis circuitry 205, or a combination thereof, to output a point location alarm gas interface component and an adjusted multi-location gas indication aggregate interface component for rendering to a multi-location gas indication status interface. In some embodiments, the multi-location gas indication status interface can be configured to enable one or more users to view and interface with one or more multi-location gas analysis systems, views, and / or interface components. In some embodiments, for example, the multi-location gas indication status interface is configured to enable one or more users to view and interface with one or more of the multi-location gas indication aggregate interface component, the adjusted multi-location gas indication aggregate interface component, the point location alarm gas interface component, the point location service status interface component, the point location maintenance fault interface component, the point location instrument fault interface component, and / or the point location event interface component.
[0196] At block 1414, the multi-site gas analysis system 200 includes components such as the memory 201, the processor 202, the input / output circuitry 203, the communication circuitry 204, and / or the multi-site gas analysis circuitry 205, or a combination thereof, to optionally generate a site service status interface component, a site maintenance fault interface component, a site instrument fault interface component, or a site event interface component. In some embodiments, the site service status interface component may be configured to display text, colors, symbols, etc. representing one or more service states associated with the multi-site gas analysis system. In some embodiments, the site maintenance fault interface component may be configured to display text, colors, symbols, etc. representing one or more maintenance faults associated with the multi-site gas analysis system. In some embodiments, the site instrument fault interface component may be configured to display text, colors, symbols, etc. representing one or more instrument faults associated with the multi-site gas analysis system. In some embodiments, the site event interface component may be configured to display text, colors, symbols, etc. representing one or more events associated with the multi-site gas analysis system.
[0197] At block 1416, the multi-location gas analysis system 200 includes components such as memory 201, processor 202, input / output circuitry 203, communication circuitry 204, and / or multi-location gas analysis circuitry 205, or a combination thereof, to optionally generate location alarm gas data. In this regard, for example, the multi-location gas analysis system can be configured to generate location alarm gas data by determining that a location station is associated with a gas anomaly event. In some embodiments, the multi-location gas analysis system can be configured to generate location alarm gas data by determining that a location station is associated with a gas anomaly event using optical analysis techniques.
[0198] therefore, Figure 14Flowcharts are illustrated that describe the operation of apparatus, methods, systems, and computer program products according to exemplary embodiments contemplated herein. It should be understood that each flowchart block, as well as combinations of flowchart blocks, can be implemented by various components (such as hardware, firmware, processors, circuits, and / or other devices associated with the execution of software comprising one or more computer program instructions). For example, one or more of the operations described above can be implemented by a device that executes computer program instructions. In this regard, the computer program instructions can be stored by the memory 201 of the multi-point location gas analysis system 200 and executed by the processor 202 of the multi-point location gas analysis system 200. It should be understood that any such computer program instructions can be loaded onto a computer or other programmable device (e.g., hardware) to produce a machine, such that the resulting computer or other programmable device performs the functions specified in the flowchart blocks. These computer program instructions can also be stored in a computer-readable memory that can instruct the computer or other programmable device to operate in a specific manner, such that the instructions stored in the computer-readable memory produce an article of manufacture that, upon execution of these instructions, performs the functions specified in the flowchart blocks. The computer program instructions may also be loaded onto a computer or other programmable apparatus to cause a series of operations to be performed on the computer or other programmable apparatus to produce a computer-implemented process, such that the instructions executed on the computer or other programmable apparatus provide operations for implementing the functions specified in the flowchart blocks.
[0199] The flowchart blocks support combinations of components for performing specified functions and combinations of operations for performing specified functions. It should be understood that one or more blocks of the flowchart and combinations of blocks in the flowchart can be implemented by a hardware-based special-purpose computer system that performs the specified functions or a combination of special-purpose hardware and computer instructions.
[0200] Thus, specific embodiments of the present subject matter have been described. Although this specification contains many specific implementation details, these details should not be interpreted as limitations on the scope of the present disclosure or the scope of what is claimed, but rather as descriptions of features specific to specific embodiments of the present disclosure. Other embodiments are within the scope of the following claims. Certain features described herein in the context of separate embodiments may also be implemented in combination in a single embodiment. Conversely, the various features described in the context of a single embodiment may also be implemented in multiple embodiments or in any suitable sub-combination, respectively. Furthermore, although features may be described above as acting in certain combinations and even initially claimed as such, in some cases, one or more features from the claimed combination may be removed from the combination, and the claimed combination may be directed to a sub-combination or a variation of the sub-combination.
[0201] Similarly, although operations are depicted in a particular order in the accompanying drawings, this should not be construed as requiring that such operations be performed in the particular order shown or sequentially, or that all of the illustrated operations be performed to achieve the desired result, unless otherwise described. In some cases, multitasking and parallel processing may be advantageous. In addition, the separation of the various system components in the embodiments described above should not be construed as requiring such separation in all embodiments, and it should be understood that the described program components and systems can be commonly integrated into a single software product or grouped into multiple software products. For the purpose of the embodiments depicted, any operational step shown with dotted lines in the one or more flow charts shown herein is optional.
[0202] In some cases, the actions recited in the claims can be performed in a different order and still achieve the desired results. Furthermore, unless otherwise specified, the processes depicted in the accompanying drawings do not necessarily require the particular order shown or sequential order to achieve the desired results. In some implementations, multitasking and parallel processing may be advantageous.
[0203] in conclusion
[0204] Those skilled in the art to which the present disclosure pertains will appreciate many modifications and other embodiments of the present disclosure as set forth herein, having benefited from the teachings presented in the foregoing description and the associated drawings. Therefore, it should be understood that the present disclosure is not limited to the specific embodiments disclosed, and modifications and other embodiments are intended to be included within the scope of the appended claims. In addition, although the previous description and the associated drawings have described exemplary embodiments in the context of certain example combinations of elements and / or functions, it should be understood that different combinations of elements and / or functions may be provided by alternative embodiments without departing from the scope of the appended claims. In this regard, for example, as may be set forth in some of the appended claims, it is also contemplated that combinations of elements and / or functions different from those explicitly described above are contemplated. Although specific terms are employed herein, they are used only in a general and descriptive sense, and not for restrictive purposes.
Claims
1. An apparatus, comprising at least one processor and at least one memory, the at least one memory comprising program code, the at least one memory and the program code being configured to, with the at least one processor, cause the apparatus to at least: Access gas indication data at multiple locations; generating a multi-location gas indication aggregate interface assembly based at least in part on the multi-location gas indication data; outputting the multi-position gas indication aggregate interface component for rendering to a multi-position gas indication status interface of a computing device associated with the multi-position gas indication aggregate interface component; generating a point location alarm gas interface assembly based at least in part on the point location alarm gas data; generating an adjusted multi-position gas indication aggregate interface assembly; and The point location alarm gas interface component and the adjusted multi-point location gas indication aggregate interface component are output for rendering to the multi-point location gas indication status interface of the computing device associated with the multi-point location gas indication aggregate interface component. 2 . The device according to claim 1 , wherein the multi-point gas indication status interface comprises a first multi-point gas indication status portion and a second multi-point gas indication status portion.
3. The apparatus of claim 2, wherein the multi-location gas indication aggregate interface component is configured to render the first multi-location gas indication status portion and the second multi-location gas indication status portion to the multi-location gas indication status interface.
4. The apparatus according to claim 2, wherein the adjusted multi-point location gas indication aggregate interface component is configured to be rendered to the first multi-point location gas indication status portion of the multi-point location gas indication status interface, and the point location alarm gas interface component is configured to be rendered to the second multi-point location gas indication status portion of the multi-point location gas indication status interface.
5. The apparatus of claim 1 , wherein the program code is further configured to, with the at least one processor, cause the apparatus to: Generate a point location service status interface component, a point location maintenance fault interface component, a point location instrument fault interface component, or a point location event interface component.
6. The apparatus of claim 1 , wherein the program code is further configured to, with the at least one processor, cause the apparatus to: Generating the point location alarm gas data, wherein generating the multi-point location gas indication data comprises: Optical analysis techniques are used to determine point location sites associated with gas anomaly events.
7. The apparatus of claim 1, wherein the multi-point location gas indication data indicates at least one of a multi-point location site identifier, a multi-point location unique identification identifier, a multi-point location gas type identifier, a multi-point location gas concentration indicator, or a multi-point location status indicator.
8. The device according to claim 1, wherein the multi-point position gas indication aggregate interface assembly comprises a plurality of point position gas indication interface assemblies.
9. A method comprising: Access gas indication data at multiple locations; generating a multi-location gas indication aggregate interface assembly based at least in part on the multi-location gas indication data; outputting the multi-position gas indication aggregate interface component for rendering to a multi-position gas indication status interface of a computing device associated with the multi-position gas indication aggregate interface component; generating a point location alarm gas interface assembly based at least in part on the point location alarm gas data; generating an adjusted multi-position gas indication aggregate interface assembly; and The point location alarm gas interface component and the adjusted multi-point location gas indication aggregate interface component are output for rendering to the multi-point location gas indication status interface of the computing device associated with the multi-point location gas indication aggregate interface component.
10. A computer program product comprising at least one non-transitory computer-readable storage medium having computer-readable program code portions stored therein, the computer-readable program code portions including an executable portion, the executable portion configured to: Access gas indication data at multiple locations; generating a multi-location gas indication aggregate interface assembly based at least in part on the multi-location gas indication data; outputting the multi-position gas indication aggregate interface component for rendering to a multi-position gas indication status interface of a computing device associated with the multi-position gas indication aggregate interface component; generating a point location alarm gas interface assembly based at least in part on the point location alarm gas data; generating an adjusted multi-position gas indication aggregate interface assembly; and The point location alarm gas interface component and the adjusted multi-point location gas indication aggregate interface component are output for rendering to the multi-point location gas indication status interface of the computing device associated with the multi-point location gas indication aggregate interface component.