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Oracle Utilities Customer to Meter and Customer Cloud Service 2025 Implementation Professional Sample Questions (Q30-Q35):NEW QUESTION # 30
For a specific task carried out for a service order field activity, where can an implementation configure the types of completion events to perform to implement the outcome for that type of activity?
- A. Field Task Type
- B. Service Order Activity Type
- C. Inbound Communication
- D. Field Activity Type
- E. Outbound Communication
Answer: A
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
In Oracle Utilities Customer to Meter,service order field activitiesare tasks performed in the field, such as meter installations, inspections, or disconnections, and are managed through specific configurations that define their outcomes. TheField Task Typeis the entity where an implementation configures the types of completion eventsto implement the outcome for a specific field activity. According to the Oracle Utilities Customer to Meter Configuration Guide, the Field Task Type defines the detailed characteristics of a field task, including the completion events (e.g., updating a service point status, creating a measurement, or triggering a notification) that occur when the task is completed.
The Field Task Type allows for precise configuration of the actions to be taken upon task completion, such as updating system records, generating follow-up tasks, or initiating communications. This is critical for ensuring that the outcome of a field activity aligns with business processes. For example, if a field task involves installing a meter, the Field Task Type might specify completion events like updating the service point's device configuration and creating an initial measurement.
The other options are incorrect for the following reasons:
Option A: Outbound Communicationis used to configure messages sent from the system (e.g., notifications to customers or third parties) but does not define completion events for field tasks.
Option B: Field Activity Typedefines the high-level category of field activities (e.g., meter installation, disconnection) but does not provide the granular configuration of completion events, which is handled by the Field Task Type.
Option C: Inbound Communicationmanages messages received by the system (e.g., from external systems or devices) and is unrelated to field task completion events.
Option D: Service Order Activity Typeis a broader configuration that governs the service order process but does not specify the detailed completion events for individual field tasks.
The Oracle Utilities Customer to Meter Implementation Guide emphasizes that the Field Task Type is the appropriate configuration point for defining completion events, as it allows implementations to tailor the outcomes of field activities to meet specific business requirements. For instance, a Field Task Type for a meter reading task might include a completion event to validate the reading and update the measuring component, ensuring accurate billing data.
Reference:
Oracle Utilities Customer to Meter Configuration Guide, Section: Field Task Type Configuration Oracle Utilities Customer to Meter Implementation Guide, Chapter: Service Orders and Field Activities
NEW QUESTION # 31
An implementation has the following requirements: Many customers are installing their own solar electrical generation equipment. When these customers generate more electricity than required for their own use, the surplus can be exported back to the power grid. To measure this generation, the utility has installed special scalar devices at customers' premises. These devices have separate registers to measure the energy generated (export) and the energy received (import) from the power grid. Both types of read will be stored in kWh, but the import is subtractive and export is consumptive. Which solution should an implementation choose to configure the measuring component types for these specific requirements?
- A. Create two new measuring component types, one for subtractive import and the other for consumptive export, to enable the creation of two measuring components that will be linked to one scalar device.
- B. Create one new measuring component type for creating a new measuring component that will be linked to two different scalar devices (one device for import and the other for export).
- C. Create two service points, one for subtractive import measuring component and the other for consumptive export, that will be linked to one scalar device.
- D. Create one new measuring component type for creating two measuring components, one measuring component for subtractive import and the other for consumptive export, that will be linked to one scalar device.
Answer: A
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
In Oracle Utilities Customer to Meter, the requirement to measure bothimport(energy received from the grid) andexport(energy sent to the grid from solar generation) using a single scalar device with separate registers requires careful configuration ofmeasuring component types. The Oracle Utilities Customer to Meter Configuration Guide specifies that the correct solution is tocreate two new measuring component types, one for subtractive import and the other for consumptive export, to enable the creation of two measuring components that will be linked to one scalar device.
Ameasuring componentis a point that captures and stores measurement data, and its type defines how the data is processed (e.g., subtractive or consumptive). In this scenario:
Thesubtractive import measuring component typeprocesses import readings by subtracting the previous reading from the current reading to calculate consumption (e.g., grid energy used).
Theconsumptive export measuring component typeprocesses export readings as direct measurements of energy generated and sent to the grid.
By creating two distinct measuring component types, the system can link two measuring components to a single scalar device (the meter), each corresponding to a separate register (one for import, one for export).
This configuration ensures accurate tracking of both import and export energy in kWh, with the appropriate calculation logic applied.
The Oracle Utilities Customer to Meter Implementation Guide highlights that this approach is ideal for net metering scenarios, as it allows utilities to bill customers for net consumption (import minus export) while accurately reporting exported energy for credits or grid management.
The other options are incorrect:
Option A: Create one new measuring component type for creating a new measuring component that will be linked to two different scalar devices.This is incorrect, as the requirement specifies a single scalar device with separate registers, not two devices.
Option B: Create two service points, one for subtractive import measuring component and the other for consumptive export, that will be linked to one scalar device.This is incorrect, as a single service point is sufficient, and multiple service points would unnecessarily complicate the configuration.
Option D: Create one new measuring component type for creating two measuring components, one measuring component for subtractive import and the other for consumptive export, that will be linked to one scalar device.This is incorrect, as a single measuring component type cannot support both subtractive and consumptive calculations simultaneously; separate types are needed.
Practical Example:A customer with solar panels has a scalar meter with two registers: one for import (subtractive) and one for export (consumptive). The utility configures two measuring component types:
"Import kWh" (subtractive) and "Export kWh" (consumptive). Two measuring components are created and linked to the meter, capturing import readings (e.g., 500 kWh - 400 kWh = 100 kWh used) and export readings (e.g., 200 kWh generated). The system uses these measurements for net metering, billing the customer for net consumption and crediting export.
The Oracle Utilities Customer to Meter User Guide notes that this configuration supports renewable energy integration, enabling utilities to manage distributed generation while maintaining billing accuracy.
Reference:
Oracle Utilities Customer to Meter Configuration Guide, Section: Measuring Component Types and Net Metering Oracle Utilities Customer to Meter Implementation Guide, Chapter: Device Configuration for Renewable Energy Oracle Utilities Customer to Meter User Guide, Section: Managing Measuring Components
NEW QUESTION # 32
Meters are a type of device, which can be physical or virtual objects, that can produce data to be handled by the system. Which two statements are true regarding meters?
- A. One or more device configurations can be associated with a meter over time.
- B. A meter can only have scalar or interval measuring components associated with it.
- C. Only one measuring component can be associated with a meter's device configuration.
- D. Only one device configuration can be associated with a meter.
- E. One or more measuring components can be associated with a meter's device configuration.
Answer: A,E
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
Meters in Oracle Utilities Customer to Meter are devices that generate measurement data, and their configurations are critical for accurate data processing. The Oracle Utilities Customer to Meter documentation provides the following insights:
Statement A: "One or more measuring components can be associated with a meter's device configuration." This is true because a meter's device configuration can include multiple measuring components to capture different types of data (e.g., consumption, demand, or time-of-use readings).
Statement D: "One or more device configurations can be associated with a meter over time." This is also true, as a meter may have different configurations applied at different times, such as when a meter is reconfigured or upgraded.
The other statements are incorrect:
Statement B: "Only one measuring component can be associated with a meter's device configuration" is false because, as noted, multiple measuring components can be linked to a single device configuration.
Statement C: "Only one device configuration can be associated with a meter" is false because a meter can have multiple device configurations over its lifecycle.
Statement E: "A meter can only have scalar or interval measuring components associated with it" is false because meters can also support other types of measuring components, such as register or profile components, depending on the system configuration.
Thus, the correct answers areAandD, as they align with the system's flexibility in associating measuring components and device configurations with meters.
Reference:
Oracle Utilities Customer to Meter Configuration Guide, Section: Device Configuration and Measuring Components Oracle Utilities Customer to Meter Implementation Guide, Chapter: Meter Management
NEW QUESTION # 33
As part of processing an enable service orchestrator, the algorithm D1-CNSPINSDV (Connect SP and/or Install Device) may determine if a specific activity needs to be created or an action to take place based on the state of the service point. Based on the state of the service point, what can this algorithm directly do?
- A. Create device and install event
- B. Create install event
- C. Update status of service point
- D. Create smart meter command
Answer: B
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
In Oracle Utilities Customer to Meter, theenable service orchestratormanages the process of initiating or enabling utility services, often involving field activities like connecting service points or installing devices.
The algorithmD1-CNSPINSDV (Connect SP and/or Install Device)is a system-provided algorithm that evaluates the state of aservice point(e.g., disconnected, inactive, active) to determine necessary actions. The Oracle Utilities Customer to Meter Configuration Guide specifies that this algorithm can directlycreate an install eventbased on the service point's state.
Aninstall eventis a record that documents the installation of a device (e.g., a meter) at a service point, including details like the installation date and device configuration. The D1-CNSPINSDV algorithm assesses whether the service point requires a device installation (e.g., if no device is currently installed) and triggers the creation of an install event to initiate the necessary field activity. This ensures that the service point is properly equipped to deliver and measure services.
The Oracle Utilities Customer to Meter Implementation Guide further explains that the algorithm is designed to automate service enablement by generating install events when the service point's state indicates a need for device installation, streamlining the process and reducing manual intervention.
The other options are incorrect for the following reasons:
Option B: Update status of service point.The algorithm does not directly update the service point's status; status changes are typically handled by other processes or algorithms after the install event is processed.
Option C: Create device and install event.The algorithm creates an install event but does not create the device itself; devices are pre-defined in the system.
Option D: Create smart meter command.The algorithm does not create smart meter commands, which are specific to advanced metering infrastructure (AMI) interactions and handled by other components.
Practical Example:A customer requests new electric service at a premise with an inactive service point and no installed meter. The D1-CNSPINSDV algorithm detects the service point's state and creates an install event, prompting a field activity to install a meter. Once the meter is installed, the install event updates the service point's configuration, enabling service activation.
The Oracle Utilities Customer to Meter User Guide highlights that the D1-CNSPINSDV algorithm is a key component of service enablement, ensuring that field activities are triggered efficiently based on service point conditions.
Reference:
Oracle Utilities Customer to Meter Configuration Guide, Section: Enable Service Orchestrator and D1- CNSPINSDV Algorithm Oracle Utilities Customer to Meter Implementation Guide, Chapter: Service Orders and Field Activities Oracle Utilities Customer to Meter User Guide, Section: Service Point Management
NEW QUESTION # 34
Specifications are used to define the manufacturer, model, and other information about assets. Which statement is true about specifications?
- A. Specifications apply only to assets and not to components.
- B. Specifications can include peer specifications.
- C. A single specification can only be used on one asset.
- D. Specifications include the inspection history of assets.
Answer: B
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
In Oracle Utilities Customer to Meter,specificationsare records that define detailed attributes of assets, such as manufacturer, model, serial number, and technical specifications. The Oracle Utilities Customer to Meter Configuration Guide confirms thatspecifications can include peer specifications, making Statement A correct.Peerspecificationsrefer to related specifications that provide additional context or compatibility information, such as specifying compatible components or alternative models for an asset. This feature allows utilities to manage complex asset relationships, ensuring that assets and their components are correctly configured and maintained.
For example, a specification for a smart meter might include peer specifications for compatible communication modules or registers, enabling the system to validate that installed components meet the asset' s requirements. This enhances asset management by providing a structured way to define and track relationships between assets and their associated components.
The Oracle Utilities Customer to Meter Implementation Guide further explains that specifications are critical for asset lifecycle management, as they provide a standardized way to document and reference asset details across maintenance, installation, and replacement processes.
The other statements are incorrect:
Statement B: Specifications apply only to assets and not to components.This is incorrect, as specifications can be defined for both assets (e.g., meters) and components (e.g., registers, communication modules).
Statement C: A single specification can only be used on one asset.This is incorrect, as a single specification can be applied to multiple assets of the same type (e.g., all meters of a specific model).
Statement D: Specifications include the inspection history of assets.This is incorrect, as inspection history is tracked separately in maintenance or activity records, not within specifications.
Practical Example:A utility defines a specification for a particular model of electric meter, including its manufacturer, model number, and voltage rating. The specification also includes peer specifications for compatible current transformers and communication modules. When a meter is installed, the system checks the peer specifications to ensure that the installed components are compatible, streamlining maintenance and upgrades.
The Oracle Utilities Customer to Meter User Guide highlights that specifications, including peer specifications, are essential for managing asset diversity, particularly in utilities with large inventories of meters and components.
Reference:
Oracle Utilities Customer to Meter Configuration Guide, Section: Asset Specifications and Peer Specifications Oracle Utilities Customer to Meter Implementation Guide, Chapter: Asset Management Oracle Utilities Customer to Meter User Guide, Section: Managing Asset Specifications
NEW QUESTION # 35
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