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29.2.5 Network Independent Clocking
For further study.
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29.2.6 Asynchronous Transparent Bearer Capabilities
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29.2.6.1 Data Rate Adaptation
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29.2.6.1.1 Definition
-29.2.6.1.2 Conformance requirement An MS supporting asynchronous transparent bearer capabilities shall perform data rate adaptation and support the frames at the Um-interface according to the following specifications: 1. 3GPP TS 04.21, subclauses 4.1 and 4.4, clauses 5 and 7.
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29.2.6.1.3 Test purpose
The purpose of these tests is to verify the conversion between an asynchronous data stream at the R-interface and the 3GPP TS 04.21 frames at the Um-interface.
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29.2.6.1.4 Method of test
The Test shall be carried out for all possible user data rates which are supported by the MS in asynchronous mode (see below). Procedure: a) A data call shall be set up between the SS and the MS with a BCIE (see below) supported by the MS. The next step shall be entered immediately after TCH synchronization has been co...
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29.2.6.1.5 Test requirements
1) During the test no 3GPP TS 04.21 frame with incorrect format (i.e. format not compliant to 3GPP TS 04.21 (see conformance requirement) or not corresponding to the user data rate currently under test) shall have been received by the SS. 2) MT2 configuration only: the user data stream input to the R-interface shall ma...
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29.2.6.1.6 Generation of the asynchronous pseudo random characters
Downlink direction: The 3GPP TS 04.21 frames shall contain a bit stream which consists of repeating: - a character which is generated pseudo randomly every time; - n stop bits, where n is drawn pseudo randomly from the interval 1..15 every time. Uplink direction: The data stream at the R-interface consists of repeating...
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29.2.6.1.7 BCIE
Same as subclause 29.2.3. The Number of Data Bits per character (excl. parity) shall be 8. No parity bit shall be used. The Number of Stop Bits shall be 1. If the MS does not support these values different ones shall be chosen. The remaining parameters of the BCIE shall and the channel type (FR/HR) be set to a value su...
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29.2.6.2 Passage of the Break Signal
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29.2.6.2.1 Definition
-29.2.6.2.2 Conformance requirement An MS supporting asynchronous transparent bearer capabilities shall perform passage of the break signal in uplink and downlink direction according to: 1. 3GPP TS 04.21, subclauses 4.1, 4.2 and 4.4, clauses 5 and 7.
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29.2.6.2.3 Test purpose
The purpose of these tests is to verify the ability of the MS to transfer a Break Signal to the R-interface and vice versa.
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29.2.6.2.4 Method of test
The Test shall be carried out for all possible user data rates which are supported by the MS in asynchronous mode (see below). Procedure: a) A data call shall be set up between the SS and the MS with a BCIE (see below) supported by the MS. The next step shall be entered immediately after TCH synchronization has been co...
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29.2.6.2.5 Test requirements
1) During the test no 3GPP TS 04.21 frame with incorrect format (i.e. format not compliant to 3GPP TS 04.21 (see conformance requirement) or not corresponding to the user data rate currently under test) shall have been received by the SS. 2) The user data stream sent over the Um-interface by the SS shall match characte...
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29.2.6.2.6 BCIE
Same as subclause 29.2.2.6.
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29.2.6.3 Overspeed/Underspeed Handling (Local Terminal)
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29.2.6.3.1 Definition
-29.2.6.3.2 Conformance requirement An MS supporting asynchronous transparent bearer capabilities shall handle overspeed and underspeed of the local terminal according to: 1. 3GPP TS 04.21, subclauses 4.1, 4.3 and 4.4, clauses 5 and 7.
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29.2.6.3.3 Test purpose
The purpose of these tests is to verify the ability of the MS to deal with plesiosynchronous bit clocks in the MS and the TE in case of asynchronous Bearer Capabilities.
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29.2.6.3.4 Method of test
The Test shall be carried out for all possible user data rates supported by the MS in asynchronous mode (see below). Procedure: a) A data call shall be set up between the SS and the MS with a BCIE (see below) supported by the MS. The next step shall be entered immediately after CT107 has been set to on by the MS. b) Th...
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29.2.6.3.5 Test requirements
1) During the test no 3GPP TS 04.21 frame with incorrect format (i.e. format not compliant to 3GPP TS 04.21 (see conformance requirement) or not corresponding to the user data rate currently under test) shall have been received by the SS. 2) The user data stream input to the R-interface shall match character by charact...
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29.2.6.3.6 BCIE
Same as subclause 29.2.2.6. The Number of Data Bits per character (excl. parity) shall be 8. No parity bit shall be used. The Number of Stop Bits shall be 1. If the MS does not support these values different ones shall be chosen. The remaining parameters of the BCIE and the channel type (FR/HR) shall be set to a value ...
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29.2.6.4 Overspeed/Underspeed Handling (Remote Terminal)
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29.2.6.4.1 Definition
-29.2.6.4.2 Conformance requirement An MS supporting asynchronous transparent bearer capabilities shall handle overspeed and underspeed of the remote terminal (which shows in the structure of the 3GPP TS 04.21 frames received over the Um-interface) according to: 1. 3GPP TS 04.21, subclauses 4.1, 4.3 and 4.4, clauses 5 ...
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29.2.6.4.3 Test purpose
The purpose of these tests is to verify the ability of the MS to deal with plesiosynchronous bit clocks in the MS and the remote Terminal in case of asynchronous Bearer Capabilities. The case of underspeed is covered by subclause 29.6.1. The case of overspeed shall be tested as follows.
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29.2.6.4.4 Method of test
The Test shall be carried out for all possible user data rates supported by the MS in asynchronous mode (see below). Procedure: a) A data call shall be set up between the SS and the MS with a BCIE (see below) supported by the MS. The next step shall be entered immediately after CT107 has been set to on by the MS. b) Th...
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29.2.6.4.5 Test requirements
1) During the test no 3GPP TS 04.21 frame with incorrect format (i.e. format not compliant to 3GPP TS 04.21 (see conformance requirement) or not corresponding to the user data rate currently under test) shall have been received by the SS. 2) The user data stream sent by the SS over the Um-interface shall match characte...
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29.2.6.4.6 BCIE
Same as subclause 29.2.6.3.6.
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29.2.7 Interchange circuit mapping for transparent bearer capabilities
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29.2.7.1 Definition
This test cannot be applied fully to MSs which support e.g.: - CT108/2 for releasing the call (e.g. support of ITU-T Recommendation V.25bis) and/or - similar use of the circuit C for ITU-T Recommendation X.21. Therefore the test shall be applied only for those interchange circuits which do not influence Layer 3 signall...
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29.2.7.2 Conformance requirement
1) An MS supporting transparent bearer capabilities with a V-series R-interface shall map the interchange circuits CT105 and CT108/2 to the 3GPP TS 04.21 frames sent over the Um-interface according to: 1.1 3GPP TS 04.21, subclauses 4.1 and 4.4, clauses 5 and 7. 1.2 3GPP TS 07.02, subclause 3.2.1. 2) An MS supporting tr...
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29.2.7.3 Test purpose
The purpose of these tests is to verify the ability of the MS to correctly convey changes of the interface circuits at the R‑interface to the 3GPP TS 04.21 frame sent over the Um-interface in case of Transparent Bearer Capabilities.
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29.2.7.4 Method of test
Specific PICS statements: - PIXIT statements: - Interchange Circuits which influence Layer 3 signalling The Test shall be carried out for all user data rates supported by the MS (see below) and the circuits CT105 and CT108/2 (ITU-T Recommendation V.24) and C (ITU-T Recommendation X.21). The test shall be carried out on...
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29.2.7.5 Test requirements
1) During the test no 3GPP TS 04.21 frame with incorrect format (i.e. format not compliant to 3GPP TS 04.21 (see conformance requirement) or not corresponding to the user data rate currently under test) shall have been received by the SS. 2) The change of the interchange circuit signal level shall be indicated in the 3...
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29.2.7.6 BCIE
Same as subclause 29.2.2.5.
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29.3 Testing of non transparent data services (RLP tests)
SS sends NULL (C/R=0, P/F=0) frames when it has nothing else to send in ADM mode. SS does not use DTX if not explicitly indicated in the test and sends supervisory RR (C/R=0, P/F=0) frames when it has nothing else to send in ABM mode. N(R) is equal to N(R) of the previous frame. For the first frame N(R)=0. The informat...
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29.3.1 Initialization
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29.3.1.1 Normal initialization done by the MS
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29.3.1.1.1 Test purpose
To test the normal establishment of multiple frame operation between the SS and the MS. This test is performed twice for testing MO and MT data calls:
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29.3.1.1.2 Method of test
Initial Conditions System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use default RLP parameters. MO data call: The MS is made to establish a MO non transparent data call, so that the initial conditions are that the MS is in call state U10 ("Call Active") after...
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29.3.1.1.3 Test requirements
The frames from the MS shall be: 1: One SABM frame containing: C=1, P=1. The SABM shall not be repeated. 4: One S or I+S frame with N(R)=1 acknowledging the I+S frame.
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29.3.1.2 Initialization failure
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29.3.1.2.1 Loss of UA frame
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29.3.1.2.1.1 Test purpose
To test the MS response to the loss of an UA frame during initialization.
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29.3.1.2.1.2 Method of test
Initial Conditions System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use default RLP parameters. The MS is made to establish a MO non transparent data call so that the initial conditions are that the MS is in call state U10 ("Call Active") after having sent a ...
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29.3.1.2.1.3 Test requirements
The frames from the MS shall be: 1, 2: One SABM frame containing: C=1, P=1. The second SABM frame shall follow the first SABM frame after time-out of timer T1. 5: One S or I+S frame with N(R)=1 acknowledging the I+S frame.
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29.3.1.2.2 Total loss of UA frame
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29.3.1.2.2.1 Test purpose
To test the MS response to a total loss of UA frame during initialization.
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29.3.1.2.2.2 Method of test
Initial Conditions System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use default RLP parameters. The MS is made to establish a MO non transparent data call so that the initial conditions are that the MS is in call state U10 ("Call Active") after having sent a ...
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29.3.1.2.2.3 Test requirements:
The frames from the MS shall be: 1, .... N2: One SABM frame containing: C=1, P=1. An SABM frame follows the previous one after time-out of timer T1.
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29.3.2 Data transfer
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29.3.2.1 Default conditions
The initial conditions are that the MS is in call state U10 ("Call Active") and in RLP ABM mode. During the synchronization of the traffic channel, the MS and the SS have transmitted I+S frames. Unless, other indication in the test, each test of this subclause will begin in the following conditions: - the MS has previo...
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29.3.2.2 MS sends I+S frames
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29.3.2.2.1 N(S) sequence number
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29.3.2.2.1.1 Test purpose
To test the correct handling of the N(S) sequence number.
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29.3.2.2.1.2 Method of test
Initial Conditions System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use RLP default parameters except the window size from MS to IWF (SS), called Kmi. A non transparent data call will be established, so that the MS is in call state U10 ("Call Active"). Since ...
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29.3.2.2.1.3 Test requirements
The frames from the MS shall be: 0,...,i: One I+S frame containing: N(S) = Nms, ... , Nms+i mod(62)
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29.3.2.2.2 Transmission window
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29.3.2.2.2.1 Test purpose
To test the correct handling of the transmission window.
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29.3.2.2.2.2 Method of test
Initial Conditions System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use RLP default parameters except the window size from MS to IWF (SS), called Kmi. A non transparent data call will be established, so that the MS is in call state U10 ("Call Active"). Since ...
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29.3.2.2.2.3 Test requirements
The frames from the MS shall be: 0,...,Kmi‑1: One I+S frame containing: N(S) = Nms, ..., Nms + Kmi - 1 mod(62). MS stops sending I+S frames until reception of an acknowledgement of at least one I+S frame. Kmi,...,i: One S frame. i+1,...,i+j: One I+S frame containing: N(S)=Nms+Kmi,...,Nms+Kmi+j‑1 mod(62). MS stops sendi...
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29.3.2.2.3 Busy condition
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29.3.2.2.3.1 Test purpose
To test the correct handling of a RNR frame received.
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29.3.2.2.3.2 Method of test
Initial Conditions System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use default RLP parameters. A non transparent data call will be established, so that the MS is in call state U10 ("Call Active"). Case a: No negotiation will be initiated by the MS. Case b: T...
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29.3.2.2.3.3 Test requirements
The frames from the MS shall be: 0,...,i: One I+S frame containing: N(S)=Nms,...,Nms+i mod(62). MS stops sending I+S frames within T2 after the reception of the first RNR frame from the SS. i+1,...,n+i: One S frame. MS restarts sending I+S frames within T2 after the reception of the first RR frame from the SS. n+i+1,n+...
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29.3.2.3 SS sends I+S frames
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29.3.2.3.1 N(R) sequence number
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29.3.2.3.1.1 Test purpose
To test the correct handling of the N(R) sequence number.
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29.3.2.3.1.2 Method of test
Initial Conditions System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use RLP default parameters except the window size from IWF (SS) to MS, called KIM. A non transparent data call will be established, so that the MS is in call state U10 ("Call Active"). Since ...
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29.3.2.3.1.3 Test requirements
The frames from the MS shall be: 0,...,i: One S frame containing: N(R)=Nss+1,...,Nss+i+1 mod (62). The MS shall acknowledge the I+S frames sent by the SS within T2. NOTE: If T2 parameter is equal to default T2 (<80 ms), the SS has to checked that the MS acknowledges an I+S frame within 80 ms.
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29.3.2.3.2 Busy condition
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29.3.2.3.2.1 Test purpose
To test the correct handling of a RNR frame with information received.
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29.3.2.3.2.2 Method of test
Initial Conditions System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use default RLP parameters. A non transparent data call will be established, so that the MS is in call state U10 ("Call Active"). Case a: No negotiation will be initiated by the MS. Case b: T...
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29.3.2.3.2.3 Test requirements
The frames from the MS shall be: 0,...,i: One I+S frame containing: N(S)=Nms,...,Nms+i mod(62), N(R)=Nss,...,Nss+i mod(62). MS stops sending I+S frames within T2 after the reception of the first RNR frame from the SS. i+1,...,n+i: One S frame containing: N(R)=Nss+i+1,...,Nss+n+i mod(62). MS restarts sending I+S frames ...
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29.3.2.4 SS rejects I+S frames
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29.3.2.4.1 REJ frame
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29.3.2.4.1.1 Test purpose
To test the correct handling of a REJ frame received.
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29.3.2.4.1.2 Method of test
Initial Conditions The window size from MS to IWF (SS) is called Kmi. System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use default RLP parameters. A non transparent data call will be established, so that the MS is in call state U10 ("Call Active"). Case a: No...
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29.3.2.4.1.3 Test requirements
The frames from the MS shall be: 0,...,i+3: One I+S frame containing N(S)=Nms,...,Nms+i+3 mod(62). i+4,i+5: One I+S frame containing N(S)=Nms+i+2,Nms+i+3 mod(62). i+6,...,i+3+Kmi: One I+S frame containing: N(S)=Nms+i+4...,Nms+i+Kmi+1 mod(62). i+4+Kmi,...,n: One S frame. MS stops sending I+S frames until reception of an...
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29.3.2.4.2 SREJ frame
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29.3.2.4.2.1 Test purpose
To test the correct handling of a SREJ frame received.
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29.3.2.4.2.2 Method of test
Initial Conditions The window size from MS to IWF (SS) is called Kmi. System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use default RLP parameters. A non transparent data call will be established, so that the MS is in call state U10 ("Call Active"). Case a: No...
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29.3.2.4.2.3 Test requirements
The frames from the MS shall be: 0,...,i+3: One I+S frame containing: N(S)=Nms,...,Nms+i+3 mod(62). i+4: One I+S frame containing: N(S)=Nms+i+2 mod(62). i+5,...,i+Kmi: One I+S frame containing: N(S)=Nms+i+4...,Nms+i+Kmi‑1 mod(62). i+1+Kmi,...,n: One S frame. MS stops sending I+S frames until reception of an acknowledgi...
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29.3.2.4.3 I+S reject frame
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29.3.2.4.3.1 Test purpose
To test the correct handling of a I+S reject frame received.
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29.3.2.4.3.2 Method of test
Initial Conditions The window size from MS to IWF (SS) is called Kmi. System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use default RLP parameters. A non transparent data call will be established, so that the MS is in call state U10 ("Call Active"). Case a: No...
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29.3.2.4.3.3 Test requirements
The frames from the MS shall be: 0,...,i+2: One I+S frame containing: N(S)=Nms,...,Nms+i+2 mod(62). i+3,i+4: One I+S frame containing: N(S)=Nms+i+1,Nms+i+2 mod(62). i+5,i+6: One I+S frame containing: N(S)=Nms+i+3,Nms+i+4 mod(62). i+7: One I+S frame containing: N(S)=Nms+i+3 mod(62). i+8,...: One I+S frame containing: N(...
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29.3.2.5 MS rejects I+S frames
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29.3.2.5.1 Rejection with REJ or SREJ supervisory frames
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29.3.2.5.1.1 Conformance requirements
The MS shall be able to detect that an I+S frame is out of sequence, and to indicate to the network that some information needs to be retransmitted. This shall be done by using either a REJ or a SREJ RLP frame. The MS has the freedom to choose either one of these frames, but it shall correctly indicate which frames nee...
683b5b8a98f7b1390ddd5516ea9247a2
51.010-1
29.3.2.5.1.2 Test purpose
To test that the MS is able to send correct REJ or SREJ supervisory frames to ask for the transmission of a sequence when an out of sequence information frame has been received.
683b5b8a98f7b1390ddd5516ea9247a2
51.010-1
29.3.2.5.1.3 Test method
Initial Conditions The window size from IWF (SS) to MS is called KIM. System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use default RLP parameters. A non transparent data call will be established, so that the MS is in call state U10 ("Call Active"). Case a: No...
683b5b8a98f7b1390ddd5516ea9247a2
51.010-1
29.3.2.5.2 Retransmission of REJ or SREJ frames
683b5b8a98f7b1390ddd5516ea9247a2
51.010-1
29.3.2.5.2.1 Conformance requirements
The MS shall not retransmit a REJ frame upon time-out. It may repeat SREJ frames. References 3GPP TS 04.22 subclauses 5.2.3.4 and 5.2.3.6.
683b5b8a98f7b1390ddd5516ea9247a2
51.010-1
29.3.2.5.2.2 Test purpose
To test that the MS is able to retransmit a SREJ supervisory frames, and does not retransmit a REJ frame.
683b5b8a98f7b1390ddd5516ea9247a2
51.010-1
29.3.2.5.2.3 Test method
Initial Conditions The window size from IWF (SS) to MS is called KIM. System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use default RLP parameters. A non transparent data call will be established, so that the MS is in call state U10 ("Call Active"). Case a: No...
683b5b8a98f7b1390ddd5516ea9247a2
51.010-1
29.3.2.5.3 I+S reject frame
683b5b8a98f7b1390ddd5516ea9247a2
51.010-1
29.3.2.5.3.1 Conformance requirements
The MS shall be able to use I+S frames to carry a REJ or SREJ frame when it detects that one or more numbered information frame is received out of sequence. References 3GPP TS 04.22 subclauses 5.2.3.4 and 5.2.3.6.
683b5b8a98f7b1390ddd5516ea9247a2
51.010-1
29.3.2.5.3.2 Test purpose
To test the MS is able to send SREJ or REJ frames in I+S frames when an out of sequence information frame has been received.
683b5b8a98f7b1390ddd5516ea9247a2
51.010-1
29.3.2.5.3.3 Test method
Initial Conditions The window size from IWF (SS) to MS is called KIM. System Simulator: The SS is configured to use default RLP parameters. Mobile Station: The MS is configured to use default RLP parameters. A non transparent data call will be established, so that the MS is in call state U10 ("Call Active"). Case a: No...
683b5b8a98f7b1390ddd5516ea9247a2
51.010-1
29.3.2.6 Checkpoint recovery