
[Aug 04, 2024] Free Oracle Utilities Customer Cloud 1z0-996-22 Official Cert Guide PDF Download
Oracle 1z0-996-22 Official Cert Guide PDF
NEW QUESTION # 40
What contains the details of how a bill was calculated and how it will be printed on a bill?
- A. Bill
- B. Rate Schedule
- C. Service Agreement
- D. Calculation Rules
- E. Bill Segments
Answer: E
NEW QUESTION # 41
Which three statements are true in relation to Financial Transaction creation algorithms? (Choose three.)
- A. They control when a Financial Transaction is to be swept onto a bill.
- B. They control howthe General Ledger details are created as these must always exist against a Financial Transaction.
- C. They control how the current balance is affected.
- D. They control if and how the General Ledger entries are created.
- E. They control how the payoff balance is affected.
Answer: C,D,E
Explanation:
In Oracle Utilities Customer Cloud Service, Financial Transaction creation algorithms play a pivotal role in the financial processes. The correct answers are:
They control how the payoff balance is affected (Option A): These algorithms can determine the way in which financial transactions impact the payoff balance of a customer's account.
They control if and how the General Ledger entries are created (Option D): Financial Transaction creation algorithms can dictate the creation of General Ledger entries, which are essential for accurate financial accounting and reporting.
They control how the current balance is affected (Option E): The algorithms have a direct influence on how financial transactions impact the current balance of a customer's account.
These algorithms are vital for ensuring that financial transactions are processed correctly and reflect accurately in various financial reports and customer account balances62†source63†source64†source65†source.
References:
Oracle documentation on Financial Transaction - FT Process: Financial Transaction - FT Process62†source.
Oracle documentation on An Overview of the Bill Creation Process: An Overview of the Bill Creation Process63†source.
Oracle documentation on Algorithms: Algorithms64†source.
Oracle documentation on Algorithms in Customer Care and Billing Cloud Service:
Algorithms65†source.
NEW QUESTION # 42
Which three statements are correct for Adjustment Types? (Choose three.)
- A. They control whether a rate is to be called to calculate an adjustment amount.
- B. They can default an Adjustment Amount to adjustments.
- C. They control the valid Service Agreement Types that adjustments can be linked to.
- D. They control the valid Adjustment Profiles that adjustment types can belong to.
- E. They control how adjustments appear on bills.
Answer: A,B,E
Explanation:
Adjustment Types in the Oracle Utilities Customer Cloud Service play a significant role in managing financial transactions, particularly adjustments. Here's a breakdown of the correct statements:
They can default an Adjustment Amount to adjustments (Option A): Adjustment Types can have predefined adjustment amounts. When an adjustment type is selected, the predefined amount can automatically be set as the adjustment amount.
They control how adjustments appear on bills (Option B): The appearance of adjustments on bills, including how they are described and categorized, is governed by the Adjustment Types. This includes the presentation and grouping of these adjustments in the billing statements.
They control whether a rate is to be called to calculate an adjustment amount (Option C): Adjustment Types can determine whether a specific rate needs to be invoked for the calculation of the adjustment amount. This aspect is crucial when the adjustment amount depends on particular rate calculations.
Options D and E, pertaining to the control over Service Agreement Types and Adjustment Profiles, are not directly controlled by Adjustment Types. Instead, these aspects are managed by different configurations within the Oracle Utilities Customer Cloud Service.
References:
Oracle documentation on Designing And Defining Adjustment Types: Designing And Defining Adjustment Types.
Oracle documentation on Setting Up Adjustment Types: Setting Up Adjustment Types.
Oracle documentation on Adjustment Types: Adjustment Types.
NEW QUESTION # 43
Which configuration steps are required to derive loss-adjusted kWh on a measuring component based on aloss factor value related to a service point?
- A. Configure a Service Point Characteristic Type, factor, derivation algorithm, and Service QuantityIdentifier (SQI), and then associate the SQI and derivation algorithm to the Measuring Component Type and the characteristic value to the service point.
- B. Configure a factor and derivation algorithm, and then associate the factor to the Measuring Component Type and the derivationalgorithm to the service point.
- C. Configure a factor and derivation algorithm, and then associate both to the Measuring Component Type and service point.
- D. Configure a Service Point Characteristic Type and derivation algorithm, and then associate the algorithm to the Measuring Component Type and the characteristic value to the service point.
- E. Configure an SQI and the derivation algorithm, and then associate the algorithm to the Measuring Component Type and SQI to the service point.
Answer: A
Explanation:
According to the Oracle Utilities Customer Cloud Service User Guides, loss-adjusted kWh is a calculated value that represents the actual amount of energy delivered to a customer after accounting for the losses incurred during transmission and distribution1. To derive this value, the system needs to apply a loss factor to the raw kWh measurement obtained from the measuring component. A loss factor is a percentage that indicates how much energy is lost between the point of generation and the point of delivery1. A loss factor can vary depending on the location, voltage level, and time of the service point1. Therefore, the solution is to configure a Service Point Characteristic Type that can store the loss factor value for each service point, and a derivation algorithm that can apply the loss factor to the kWh measurement. The derivation algorithm should also use a Service Quantity Identifier (SQI) to distinguish the loss-adjusted kWh from the raw kWh, and a factor to indicate the mathematical operation to be performed (such as multiplication or division)2. The SQI and the derivation algorithm should be associated with the Measuring Component Type that measures the kWh, and the characteristic value should be associated with the service point. This way, the system can calculate the loss-adjusted kWh for each measuring component and service point combination, and store it as a separate value identifier2. References:
Loss-Adjusted kWh
Derivation Algorithms
NEW QUESTION # 44
How many devices can be installed at a service point at an instance in time?
- A. exactly one device
- B. up to three devices
- C. one for each service type
- D. one for each measuring component
Answer: A
NEW QUESTION # 45
Using a base-supplied algorithm type, what is payment distribution priority typically determined by?
- A. Customer Class and Debt Age
- B. Customer Class and Service Agreement Type
- C. Service Agreement Type's Priority and Debt Age
- D. Payment Type + Debt Age
- E. Debt Age
Answer: C
Explanation:
The base-supplied algorithm type for payment distribution is called Payment Distribution - Pay Priority and Debt Age (PYDIST-PPRTY). This algorithm distributes a payment based on the age of each service agreement's debt and the payment distribution priority of each service agreement's type. The algorithm first pays off the delinquent debt of the highest priority service agreements, then the non-delinquent debt, and finally the new debits debt. If multiple service agreements have the same distribution priority, the algorithm distributes the payment proportionally based on the age of the respective debt on each service agreement. References: Distributing A Payment Amongst An Account's Service Agreements, An Overview Of The Payment Event Creation & Allocation Process
NEW QUESTION # 46
Your client has installed scalar devices to measure the solar energy generated (Export) and the energy received (Import) from the National Grid. This data is stored in separate measuring components (registers).
The validation rules are generally the same for both measuring components, but there is one exception. The Negative Consumption check applies only toenergy received (import).
Which two are possible configurations resulting in the Negative Consumption rule being checked for energy received (import) only? (Choose two.)
- A. Remove the Negative Consumption check from the VEE group.
- B. Create two different VEE groups.
- C. Modify the base VEE rule.
- D. Use the Skip Flag in the VEE rule.
- E. Use Eligibility Criteria.
Answer: B,E
Explanation:
To apply different validation rules to different measuring components, you can either create two different VEE groups and assign them to the respective measuring components, or use eligibility criteria to specify the conditions under which a VEE rule should be applied or skipped. Both of these options allow you to check the Negative Consumption rule for energy received (import) only, while applying the other validation rules to both measuring components. References:
Oracle Utilities Customer Cloud Service Business User Guide, Chapter 5: Metering, Section 5.3:
Validating Meter Data
Oracle Utilities Customer Cloud Service Administrative User Guide, Chapter 6: Configuring Metering, Section 6.2: Configuring Validation, Estimation, and Editing (VEE)
NEW QUESTION # 47
What can cause multiple bill lines for a rate component to be produced in a bill calculation header?
- A. change in Bill Factor
- B. change in Rate Version Calculation Group
- C. changes in Rate Schedule and Bill Factor
- D. changes in Rate Version Calculation Group and Bill Factor
- E. change in Rate Schedule
Answer: A
Explanation:
A bill factor is a value that is used to group bill lines for a rate component within a bill calculation header1. A bill factor can be derived from various sources, such as the usage subscription, the service agreement, the service point, the device, the measuring component, the rate schedule, the rate component, or a custom algorithm2. If the bill factor changes during the bill calculation period, the system will produce multiple bill lines for the same rate component, each with a different bill factor value1. Therefore, the correct answer is C.
change in Bill Factor. References:
About Bill Factors
Configuring Bill Factors
NEW QUESTION # 48
Which three statements are true in relation to a Payment ArrangementRequest? (Choose three.)
- A. calculates delinquent amount for Service Agreementseligible for Payment Arrangement
- B. examines the Account's eligibility for Payment Arrangement
- C. creates the Payment Arrangement Service Agreement
- D. determines if the Payment Arrangement Request requires approval
- E. ensures creation of either Pay Plan or Payment Arrangement
Answer: A,B,D
Explanation:
A Payment Arrangement Request is a business object that supports the step-by-step process of creating a Payment Arrangement, which is an agreement between the customer and the utility to pay off the outstanding balance in installments. A Payment Arrangement Request can perform the following functions:
Examines the Account's eligibility for Payment Arrangement: The Payment Arrangement Request can check if the account meets the criteria for a Payment Arrangement, such as the account status, the account type, the delinquent amount, the number of previous Payment Arrangements, and the collection process stage.
Calculates delinquent amount for Service Agreements eligible for Payment Arrangement: The Payment Arrangement Request can calculate the total delinquent amount for the service agreements that are eligible for a Payment Arrangement, based on the payoff balance and the payment arrangement type.
The delinquent amount is the amount that must be paid off by the Payment Arrangement.
Determines if the Payment Arrangement Request requires approval: The Payment Arrangement Request can determine if the request needs to be approved by a supervisor or an external agency, based on the approval rules and the payment arrangement type. The approval rules can include the delinquent amount, the number of installments, the down payment amount, and the payment arrangement type.
References: Lifecycle Of A Payment Arrangement Request, Payment Arrangement Requests, Setting Up Payment Arrangement Requests
NEW QUESTION # 49
Your client has three requirements:
1. Apply validations on meter reads coming from the Data Collectors.
2. If a meter read does not pass the validation, an error will be generated and assigned to a user.
3. Retry the validation every 30 minutes for the errors in case the issue is related to configuration.
Which statement describes the base functions you should use?
- A. If a To Do entry is created on the VEE exception, the IMD's Next Retry Date/Time is set to 30 minutes, and then processed by the algorithm D1-IMD-RETRY (Retry Initial Measurement Data Processing)
- B. If a To Do entry is created on the VEE exception, the IMD's Next Retry Date/Time is set to 30 minutes, and then processed by the algorithm D1-CRE-IMDTD (Create To Do)
- C. If a To Do entry is created on the VEE exception, the user will need to discard the IMD and a new IMD will be manually loaded.
- D. If a To Do entry is created on the VEE exception, the user will need to discard the IMD and a new IMD will be loaded after 30 minutes.
- E. If a To Do entry is created on the VEE exception, the IMD's Next Retry Date/Time is set to 30 minutes, and then processed by the algorithm D1-COMP-TD (Complete To Do Entries).
Answer: B
NEW QUESTION # 50
Which three initial measurement data (IMD) exception categories are available when you execute VEE rules?
(Choose three.)
- A. Complete
- B. Terminate
- C. Low
- D. Information
- E. Issue
Answer: B,D,E
NEW QUESTION # 51
Which three statements are true about the different types of measuring components? (Choose three.)
- A. The terms register and channel are synonyms for measuring component.
- B. Only physical measuring components reference a device configuration.
- C. Seconds-per-interval (SPI) is one of the attributes of scalar measuring components.
- D. Scalar measuring components contain a single measurement for an arbitrary period of time.
- E. The measuring component types are physical, standalone, scratchpad, and TOU.
Answer: A,D,E
NEW QUESTION # 52
When the source of a Financial Transaction is canceled, what does it result in?
- A. A new reversal Financial Transaction is created.
- B. The source Financial Transaction is deleted and a new reversal Financial Transaction is created.
- C. No change occurs.
- D. The source Financial Transaction is deleted.
- E. The source Financial Transaction status is changed to "Canceled".
Answer: A
Explanation:
When the source of a Financial Transaction is canceled, it results in a new reversal Financial Transaction being created. The reversal Financial Transaction has the same amount as the source Financial Transaction, but with the opposite sign. The reversal Financial Transaction also has the same source as the source Financial Transaction, but with a different status. The source Financial Transaction remains in the system, but its status is changed to "Canceled". The reversal Financial Transaction is used to reverse the financial impact of the source Financial Transaction on the account balance and other financial calculations. References: Oracle Utilities Customer Cloud Service Financial Transaction - Main, Oracle Utilities Customer Cloud Service Cancel Reasons, Oracle Utilities Customer Cloud Service Setting Up Payment Cancellation Reasons
NEW QUESTION # 53
When configuring the Get Scalar Details usage rule, which three attributes can be defined to retrieve scalar values? (Choose three.)
- A. Service Quantity Identifier
- B. Unit of Measure
- C. Time of Use
- D. Device ID
- E. Service Point ID
Answer: A,B,C
Explanation:
The Get Scalar Details usage rule is used to get usage from scalar measuring components installed in the Service Points linked to the Usage Subscription for the specified 'Scalar' usage period1. By default, all scalar measuring components are processed, but if specific UOMs/TOUs/SQIs are defined in the usage calculation rule, then only applicable measuring components are processed1. The attributes that can be defined to retrieve scalar values are:
Unit of Measure (UOM): This attribute specifies the unit of measure of the scalar value, such as kWh, kW, etc. Only scalar measuring components with the same UOM as the usage calculation rule will be processed1.
Service Quantity Identifier (SQI): This attribute specifies the service quantity identifier of the scalar value, such as Demand, Consumption, etc. Only scalar measuring components with the same SQI as the usage calculation rule will be processed1.
Time of Use (TOU): This attribute specifies the time of use of the scalar value, such as Peak, Off-Peak, etc. Only scalar measuring components with the same TOU as the usage calculation rule will be processed1. References:
1: Get Scalar Details
NEW QUESTION # 54
How many bill segment-related financial transactions do Payment Arrangements have?
- A. depends on the number of payments that are part of the payment arrangement
- B. depends onthe number of bills that will contain the customer's payment arrangement details
- C. unlimited
- D. one
- E. none
Answer: B
Explanation:
According to the Oracle Utilities Customer Cloud Service User Guides, a payment arrangement is an agreement between the utility and the customer to pay off an overdue balance in installments over a period of time1. A payment arrangement has bill segment-related financial transactions that reflect the amount and the due date of each installment2. The number of bill segment-related financial transactions depends on the number of bills that will contain the customer's payment arrangement details2. For example, if a payment arrangement has four installments and each installment is due on the same date as the regular bill, then there will be four bill segment-related financial transactions, one for each bill2. However, if a payment arrangement has four installments and each installment is due on a different date than the regular bill, then there will be eight bill segment-related financial transactions, two for each bill (one for the regular bill and one for the payment arrangement installment)2. References: Payment Arrangements, Payment Arrangement Financial Transactions, Oracle Utilities Customer Cloud Service - Get Started
NEW QUESTION # 55
Which three statements are true about initial measurements, final measurements, and usage? (Choose three.)
- A. The initial measurement data can be optionally stored in Raw format.
- B. Usage is loaded in the application to generate final measurements.
- C. Usage is a synonym for billdeterminants.
- D. Final measurements can be directly edited or updatedby users or by automated processes as required.
- E. A service point can have more than one initial measurement for the same period, but only one final measurement.
Answer: A,C,E
Explanation:
According to the Oracle Utilities Customer Cloud Service User Guides, initial measurements, final measurements, and usage are different types of measurement data that are used to record, validate, and calculate the consumption of a service12. Therefore, the following statements are true:
A). Usage is a synonym for bill determinants. Usage is the term for the calculated values that are used to determine the charges for a service based on various factors, such as consumption, demand, time of use, or fixed charges1. Usage is also known as bill determinants, because they are the inputs for the rate calculation process that generates the bill3.
B). The initial measurement data can be optionally stored in Raw format. Initial measurement data (IMD) is the term for measurement data in its initial (or raw) form, as read from a measuring component1. IMD can be optionally stored in Raw format, which preserves the original values and condition codes of the measurements without applying any validation, editing, or estimation (VEE) rules4. Raw format can be useful for auditing or troubleshooting purposes, as it allows users to compare the original and final versions of the measurements4.
C). A service point can have more than one initial measurement for the same period, but only one final measurement. A service point can have multiple initial measurements for the same period, if there are multiple measuring components or devices associated with the service point, or if there are overlapping or duplicate readings from the same measuring component or device1. However, only one final measurement can be generated for each service point, service type, unit of measure, time of use, and service quantity identifier combination for a given period1. Final measurements are the result of transforming the initial measurements into a consistent and reliable format, after applying the VEE rules and resolving any conflicts or errors1.
The following statements are false:
D). Final measurements can be directly edited or updated by users or by automated processes as required. Final measurements cannot be directly edited or updated by users or by automated processes, as they are considered to be the final and authoritative version of the measurement data1. Only initial measurements can be edited directly by end users, or by automated processes as part of the VEE process1.
E). Usage is loaded in the application to generate final measurements. Usage is not loaded in the application to generate final measurements, but rather derived from the final measurements using the usage calculation process1. Usage calculation is the process of applying various algorithms and factors to the final measurements to produce the usage values that reflect the actual consumption of the service1.
References:
About Measurement Data
About Initial Measurement Data
About Usage Calculation
About Raw Format
NEW QUESTION # 56
Measuring components are either subtractive or consumptive.
Whichstatement correctly describes these two concepts?
- A. A subtractive measuring component's consumption for a given period of time is the end measurement minus the start measurement. A consumptive measuring component's consumption is simply the measurement itself, and represents the consumption for the period of time since the previous measurement was taken.
- B. Subtractive measuring components are used to measure demand, whereas consumptive measuring components are used to measure how much was consumed since the previous reading.
- C. Subtractive measuring components are associated only with water service, whereas consumptive measuring components are for gas and electric services.
- D. Subtractive measuring components are associated with deductive meters, whereas consumptive measuring components are not.
Answer: A
Explanation:
According to the Oracle Utilities Customer Cloud Service User Guides, a subtractive measuring component is one that records the cumulative usage of a service point or a device over time1. A consumptive measuring component is one that records the usage of a service point or a device for a specific interval of time2. The difference between these two types of measuring components is how the consumption is calculated. For a subtractive measuring component, the consumption for a given period of time is the end measurement minus the start measurement1. For a consumptive measuring component, the consumption is simply the measurement itself, and represents the consumption for the period of time since the previous measurement was taken2. Subtractive and consumptive measuring components can be associated with any type of service, such as water, gas, or electric, and any type of meter, such as deductive or non-deductive12. References: About Measuring Components, Physical Measuring Components, [Oracle Utilities Customer Cloud Service - Get Started]
NEW QUESTION # 57
As part of the service order processing, the algorithm D1-CNSPINSDV (Connect SP and/or Install Device) determines if a specificactivity needs to be created based on the state of the service point.
Based on the status of the service point, what can this algorithm create?
- A. Device
- B. Smart Meter Command
- C. Device Configuration
- D. Service Point
Answer: B
Explanation:
The algorithm D1-CNSPINSDV (Connect SP and/or Install Device) is used to create a device and/or a device configuration when a service point is connected or disconnected. The algorithm checks the status of the service point and the device configuration type to determine if a device or a device configuration needs to be created.
For example, if the service point is connected and the device configuration type is Install, the algorithm will create a device and a device configuration. If the service point is disconnected and the device configuration type is Remove, the algorithm will create a device configuration only. References: Oracle Utilities Customer Cloud Service Service Order Configuration Guide, Oracle Utilities Customer Cloud Service Service Order User Guide, Oracle Utilities Customer Cloud Service Algorithms Configuration Guide
NEW QUESTION # 58
How should you configure the derived values that are relevant for a device?
- A. Configure the derived values on the Device Type for the derived values to be defined on the device.
- B. Configure the derived values on the Measuring Component Type for the measuring components to be defined on the device.
- C. Configure the derived values on the Measuring Component for the measuring components to be defined on the device.
- D. Configure the derived values on the Final Measurement Type for the measuring components to be defined on the device.
Answer: D
NEW QUESTION # 59
Your implementation requires an installation of two types of devices:
Electric Smart Meter
Gas Manual Meter
Which two Device Type attributes are required to identify these device types? (Choose two.)
- A. Service Type
- B. Serial Number
- C. Device Business Object
- D. Manufacturer
- E. Valid Measuring Component Types
Answer: A,C
Explanation:
According to the Oracle Utilities Customer Cloud Service User Guides, a device type is a configuration entity that defines the properties and behaviors of a device, such as what service it measures, what business object it uses, what characteristics it has, and what measuring components it supports1. Therefore, the following device type attributes are required to identify these device types:
A). Device Business Object. A device business object is a mandatory attribute that specifies the business object that is used to store and process the device data in the system1. Different device business objects have different fields, validations, and algorithms to handle different types of devices1. For example, the D1-ScalarDevice business object is used for scalar devices that measure a single quantity, such as a gas manual meter2, while the D1-IntervalDevice business object is used for interval devices that measure multiple quantities at regular intervals, such as an electric smart meter3.
B). Service Type. A service type is a mandatory attribute that specifies the type of service that the device measures, such as electricity, gas, water, or sewerage1. A service type also defines the characteristics and measurements of the service, such as the unit of measure, the measuring component type, and the service quantity identifier. For example, an electric smart meter can measure electricity service with kWh as the unit of measure, D1-ScalarMC as the measuring component type, and D1-Consumption as the service quantity identifier3, while a gas manual meter can measure gas service with m3 as the unit of measure, D1-ScalarMC as the measuring component type, and D1-Consumption as the service quantity identifier2.
The following device type attributes are not required to identify these device types:
C). Valid Measuring Component Types. Valid measuring component types are optional attributes that specify the measuring component types that can be associated with the device type1. A measuring component type defines the most important properties of a measuring component, such as what it measures, how regularly it measures it, and whether it should be connected to a physical device. If valid measuring component types are not specified for a device type, then any measuring component type can be associated with the device type1.
D). Manufacturer. Manufacturer is an optional attribute that specifies the name of the manufacturer of the device type1. This attribute can be used to filter or group device types by manufacturer, but it is not essential to identify the device type1.
E). Serial Number. Serial number is not an attribute of the device type, but an attribute of the device instance1. A serial number is a unique identifier that is assigned to each device by the manufacturer or the utility1. A serial number can be used to identify a specific device, but not a device type1.
References:
Configuring Device Types
D1-ScalarDevice Business Object
D1-IntervalDevice Business Object
[Understanding Service Types]
[Understanding Measuring Component Types]
NEW QUESTION # 60
Which entity defines the type of collection process to start based on ageof debt, amount of debt, and type of customer?
- A. Debt Class
- B. Collection Class
- C. Collection Class Control
- D. Customer Class
- E. Collection Process Template
Answer: C
Explanation:
Collection Class Control is the entity that defines the type of collection process to start based on the age of debt, amount of debt, and type of customer. Collection Class Control is a set of rules that determines which collection class (i.e., the collection process template) to assign to a service agreement based on its debt characteristics and customer class1. Collection Class Control also defines the frequency and timing of the collection process assignment and the criteria for canceling a collection process1. Collection Class Control is associated with a debt class, which is a category of debt that defines how it is calculated, aged, and collected2.
Collection Class Control allows you to create different collection strategies for different types of debt and customers. References: Collection Class Control, Debt Class, Oracle Utilities Customer Cloud Service - Get Started
NEW QUESTION # 61
Which statement supports usage transaction calculation?
- A. Bill determinants are derived from the initial measurement data of the measuring components installed at the usage subscription's devices during the calculation period.
- B. Bill determinants are derived from the initial measurement data of the measuring components devices installed at the usage subscription's service points during calculation period.
- C. Bill determinants are derived from the final measurements of the measuring components or devices installed at the usage subscription's service points during the calculation period.
- D. Bill determinants are derived from the final measurements for only interval measuring components or devices installed at the usage subscription's service points during the calculation period.
Answer: C
NEW QUESTION # 62
If a customer makes a payment for more than what is due for the account, which entity contains the logic for how this overpayment should be handled?
- A. Customer Class
- B. Service Agreement Type
- C. Tender Type
- D. Installation Options
- E. Pay SegmentType
Answer: A
NEW QUESTION # 63
Your customer's initial measurement data (IMD) has been imported and can be viewed through the Measuring Component portal, but is not in the "Final" measurement status.
What can you assume that the IMD has passed?
- A. Critical Validation
- B. Sum Check Validation
- C. Multiplier Check Validation
- D. High/Low Check Validation
- E. CriticalValidation, High/Low Check Validation, and Sum Check Validation
Answer: A
Explanation:
Initial measurement data (IMD) is the raw data that is received from external systems and processed by the system to create final measurements for billing and analysis. IMD goes through two major stages of processing: IMD Seeder and Specific IMD. The IMD Seeder is the common interface point that receives all IMD information and performs critical validations and conversions. The critical validations include checking the validity of the device and measuring component identifiers, the date and time format, the unit of measure, and the measurement status. If the IMD passes the critical validations, it is sent to the appropriate specific IMD business object for further processing. The specific IMD business object performs additional validations and calculations based on the type and category of the IMD. These validations include multiplier check, high/low check, sum check, and VEE rules. If the IMD passes all the validations and calculations, it is marked as "Final" and the final measurements are created. Therefore, if the IMD is not in the "Final" measurement status, it means that it has passed the critical validation, but not the other validations and calculations. References: Processing Initial Measurement Data, Initial Measurement Data, Configuring the Initial Measurement Algorithms
NEW QUESTION # 64
At what stage in the initial measurement data (IMD) import process will the application of meter multipliers be performed?
- A. Critical Validation
- B. Prepare for VEE
- C. post-VEE
- D. VEE
Answer: A
NEW QUESTION # 65
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