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Oracle Utilities Customer to Meter and Customer Cloud Service 2025 Implementation Professional Sample Questions (Q29-Q34):
NEW QUESTION # 29
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 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.
- D. Create two service points, one for subtractive import measuring component 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 # 30
Bills can be generated via background processing for all accounts that belong to open bill cycles. Which three options also allow bills to be created via background processing using application-owned batch controls?
- A. A specific account
- B. A user-defined list of accounts
- C. Subset of accounts belonging to a specific open bill cycle or cycles
- D. Subset of accounts belonging to an open bill cycle or cycles for a specific customer class
- E. Subset of accounts not belonging to a specific open bill cycle or cycles
Answer: A,B,D
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
In Oracle Utilities Customer to Meter, bills are typically generated through background processing for accounts in open bill cycles. However, the system also supports additional batch processing options for flexibility. According to the Oracle Utilities Customer to Meter Configuration Guide:
Option B: "A specific account" can be targeted for bill generation via background processing using batch controls, allowing for individual account billing outside of a standard bill cycle.
Option C: "Subset of accounts belonging to an open bill cycle or cycles for a specific customer class" is supported, enabling targeted billing for specific customer classes within open bill cycles.
Option E: "A user-defined list of accounts" can be processed via batch controls, allowing business users to specify a custom list of accounts for billing.
The other options are incorrect:
Option A: Accounts not belonging to a specific open bill cycle cannot be processed via standard batch controls for bill generation, as bill cycles are a prerequisite for most billing processes.
Option D: While similar to Option C, this option is less specific and redundant, as the system typically requires additional criteria (e.g., customer class) to define the subset, making Option C the more accurate choice.
Thus, the correct answers areB,C, andE, reflecting the system's capabilities for targeted bill generation.
Reference:
Oracle Utilities Customer to Meter Configuration Guide, Section: Batch Processing for Billing Oracle Utilities Customer to Meter Implementation Guide, Chapter: Billing Automation
NEW QUESTION # 31
A Rate Schedule contains the calculation rules that perform specific types of calculations. Which three options are controlled by a Rate Schedule's configuration?
- A. The SA Types that are valid for the rate schedule
- B. The General Ledger (GL) account impacted by each bill segment calculation line
- C. The contents of each bill segment calculation line
- D. The method used to calculate each bill segment calculation line's value
- E. Which Usage Calculation Group to initiate for usage calculations
Answer: A,B,D
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
In Oracle Utilities Customer to Meter, aRate Scheduledefines the rules and calculations used to determine charges for services, forming the backbone of the billing process. The Oracle Utilities Customer to Meter Configuration Guide details the components controlled by a Rate Schedule's configuration:
Option A: The method used to calculate each bill segment calculation line's value.This is correct, as the Rate Schedule specifies the calculation methods (e.g., flat rate, tiered rate, time-of-use) for determining the monetary value of each bill segment calculation line based on usage or other factors.
Option B: The SA Types that are valid for the rate schedule.This is also correct, as the Rate Schedule defines which Service Agreement Types (SA Types) can use the rate, ensuring that only applicable services are billed under the schedule.
Option E: The General Ledger (GL) account impacted by each bill segment calculation line.This is correct, as the Rate Schedule configuration includes the GL accounts to which charges are posted, ensuring accurate financial reporting.
The Oracle Utilities Customer to Meter Billing Guide explains that Rate Schedules are highly configurable, allowing utilities to tailor billing calculations to diverse customer needs and regulatory requirements. For instance, a Rate Schedule for residential electricity might include tiered pricing, specify eligible SA Types (e.
g., residential electric service), and map charges to a revenue GL account.
The other options are incorrect:
Option C: The contents of each bill segment calculation line.While the Rate Schedule influences the calculation, the actual contents (e.g., description, quantity) are determined by the bill segment generation process, not directly by the Rate Schedule.
Option D: Which Usage Calculation Group to initiate for usage calculations.The Usage Calculation Group is defined by the usage subscription, not the Rate Schedule, which focuses on billing calculations rather than usage processing.
Practical Example:A Rate Schedule for a commercial water service might define a tiered rate structure (e.g.,
$2 per unit for 0-100 units, $3 per unit above 100 units), restrict its use to commercial SA Types, and post charges to a specific GL account (e.g., "Water Revenue"). When a customer uses 150 units, the Rate Schedule calculates the bill segment line values ($200 for the first 100 units + $150 for the next 50 units = $350) and directs the charge to the designated GL account.
The Oracle Utilities Customer to Meter Implementation Guide underscores that Rate Schedules are critical for aligning billing with business and regulatory requirements, providing flexibility to handle complex pricing models.
Reference:
Oracle Utilities Customer to Meter Configuration Guide, Section: Rate Schedule Configuration Oracle Utilities Customer to Meter Billing Guide, Section: Rate Calculations and GL Integration Oracle Utilities Customer to Meter Implementation Guide, Chapter: Rate Management
NEW QUESTION # 32
Accounts are the entities for which bills are created. There must be at least one account for every customer.
What is the valid status for an account when the customer has moved out of all their properties and paid off all their debt?
- A. Pending Stop
- B. Inactive
- C. Stopped
- D. Closed
- E. Account does not have a status
Answer: D
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
In Oracle Utilities Customer to Meter, anaccountis the entity used for billing and financial tracking, and every customer must have at least one account. When a customer moves out of all their properties and pays off all their debt, the account's status is updated to reflect that it is no longer active. The Oracle Utilities Customer to Meter Configuration Guide clearly states that the valid status for such an account isClosed. The "Closed" status indicates that the account has no outstanding balances, no active service agreements, and no further activity is expected, effectively terminating the account's lifecycle.
The process of closing an account typically involves stopping all service agreements, ensuring all financial obligations are settled (e.g., final bills paid), and updating the account status to "Closed." This status prevents any new transactions or services from being linked to the account, ensuring accurate financial reporting and system integrity.
The Oracle Utilities Customer to Meter Implementation Guide further explains that the "Closed" status is a final state in the account lifecycle, used when the customer relationship is fully terminated. This is distinct from other statuses that reflect temporary or transitional states.
The other options are incorrect for the following reasons:
Option A: Account does not have a statusis incorrect, as all accounts in the system have a defined status to track their lifecycle.
Option B: Stoppedis not a standard account status; it may apply to service agreements but not accounts.
Option C: Inactiveindicates an account with no active services but potentially outstanding balances or future activity, not a fully settled account.
Option E: Pending Stopis a transitional status used when an account is in the process of being stopped, not when all debts are paid and services are terminated.
Practical Example:A customer moves out of their apartment, stops their electric and water services, and pays their final bills, resulting in a zero balance. The utility updates the account status to "Closed," preventing any new charges or services from being associated with the account. If the customer later returns as a new customer, a new account would be created rather than reactivating the closed one.
The Oracle Utilities Customer to Meter User Guide highlights that the "Closed" status is essential for managing customer churn, ensuring that inactive accounts are properly archived while maintaining historical data for audits or reporting.
Reference:
Oracle Utilities Customer to Meter Configuration Guide, Section: Account Status Management Oracle Utilities Customer to Meter Implementation Guide, Chapter: Account Lifecycle Oracle Utilities Customer to Meter User Guide, Section: Managing Customer Accounts
NEW QUESTION # 33
What always appears on the desktop page, unless minimized, and contains tools and data that are useful regardless of the object being displayed?
- A. Sidebar
- B. Object Display Area
- C. Work List
- D. Control Central
- E. Application Toolbar
Answer: A
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
In Oracle Utilities Customer to Meter, theSidebaris the user interface element that always appears on the desktop page, unless minimized, and contains tools and data that are useful regardless of the object being displayed. The Oracle Utilities Customer toMeter User Guide describes the Sidebar as a persistent panel on the user interface that provides quick access to frequently used tools, such as search functions, recent items, alerts, and navigation menus. The Sidebar is designed to enhance user productivity by offering context- independent functionality that remains available across different screens and tasks.
The Sidebar's content is configurable to meet business needs, allowing users to access tools like global search, to-do lists, or system alerts without navigating away from the current object (e.g., an account or service point). It remains visible unless the user explicitly minimizes it, ensuring constant accessibility.
The other options are incorrect for the following reasons:
Option A: Work Listis a specific feature that displays tasks or to-do items but is not a persistent desktop element and is typically accessed through the Sidebar or other menus.
Option B: Application Toolbarprovides navigation and action buttons but is not always visible across all pages and does not contain general tools or data.
Option C: Control Centralis a specific dashboard for customer and account information, not a persistent element across all pages.
Option D: Object Display Areais the main area where object-specific data is shown, not a tool or data container that remains constant.
The Oracle Utilities Customer to Meter Configuration Guide notes that the Sidebar is a critical component of the user interface, designed to streamline workflows by providing consistent access to essential tools. For example, a user viewing an account in Control Central can use the Sidebar to search for another customer or view pending tasks without leaving the current screen.
Reference:
Oracle Utilities Customer to Meter User Guide, Section: User Interface Overview Oracle Utilities Customer to Meter Configuration Guide, Chapter: Desktop Configuration
NEW QUESTION # 34
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