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GL's protocol analyzers allow monitoring a communication link by non-intrusively tapping the network under test in accordance with industry protocol standards. GL carries the widest array of protocol analysis probes for TDM, Wireless, and Packet networks. GL's GSM protocol analyzer is used to analyze GSM protocols, a switching and signaling telecommunication protocol between MSC & BSC, BSC & BTS, MSC & SMLC, UMA & MS,. The Protocol Identifier application can identify various protocols carried on T1 or E1 lines. The application gives the users the unlimited ability to edit SIP messages and control scenarios (message sequences).
GL also provides a Packet Analyzer for on-line capture and decode of the SIP signaling in real-time both during tests and as a stand-alone tracer for live systems. Each SIP message template facilitates customization of the protocol fields and access to the various protocol fields from the scripts. Supports transmission and detection of various RTP traffic such as, digits, voice file, single tone, dual tones, IVR, FAX, and Video in IP networks.
Traffic impairments can be applied to messages to simulate error conditions that occur in real-time networks. With normal RTP (PKS102 licensing) Maximum Simultaneous Calls - 2500, and Calls per Second - 250 (in high end server machines). Without RTP (only signaling) Maximum Simultaneous Calls - 70,000, and Calls per Second - 750 (in high end server machines).
With MAPS™ HD RTP network appliance up to 20,000 endpoints per unit can be easily achieved (requires PKS109 and specialized hardware). Option to send complete test report (traffic information and call events) to a central database, such as Oracle.
Provides call quality metrics such as Listening MOS, Conversational MOS, PacketLoss, Discarded Packets, Out of Sequence Packets, Duplicate Packets, Delay and Jitter. Supports conformance testing UAC, UAS, Proxy, Registrars, Registrants, Redirect Servers, and other SIP entities. MAPS™ SIP can be configured to act as UAC, initiating the call flow and receiving reply messages from the DUT, thus testing UAS. With the set of Proxy Conformance inbuilt scripts, MAPS™ can be configured to act as UAC and UAS simultaneously so that entire Proxy testing can be automated.
Here, MAPS™ acts as both UAS and UAC sending and receiving SIP messages while testing proxy (DUT). GL offers a variety of test tools to perform FAX over IP (FoIP) simulation and monitoring. With respect to channel capacity RTP pass-through supports up to 120 Fax ports, whereas T.38 fax simulation over UDPTL supports unlimited channels, and constrained only by CPU capacity. MAPS™ allows the user to initiate fax calls by sending call control messages using proper scripts and profiles. Below figure depicts the bulk video call simulation and RTP video transmission in MAPS™ SIP.
Using TCL client, any real-time scenarios can be simulated by sending instructions to the MAPS™ server. GL's IPNetSim™ Handheld is a hand-held battery operated instrument that can simulate the real-time IP and Carrier Ethernet network dynamics by means of hardware controlled packet delay, loss, jitter, errors, bandwidth limitations, congestion, and duplication.


Evaluate the stability of switches and routers under static or dynamic traffic load conditions over minutes, hours ordays. IPNetSim™ Handheld is inserted between two Ethernet segments in pass through mode while operating in bidirectional packet transfer mode. Broadcast frames: Total number of Ethernet broadcast frames transmitted from the beginning of the test. Multicast frames: Transmitted Ethernet multicast frames from the beginning of the test. Control frames: Total number of Ethernet MAC control and supervision frames transmitted from the beginning of the test. Tagged frames: Total number of Ethernet VLAN frames transmitted from the beginning of the test. FCS errored frames: Frames with FCS errors transmitted from the beginning of the test. Broadcast frames: Total number of Ethernet broadcast frames received from the beginning of the test. Control frames: Total number of Ethernet MAC control and supervision frames received from the beginning of the test. Flow control frames: Total number of Ethernet Pause frames received from the beginning of the test. Tagged frames: Total number of Ethernet VLAN frames received from the beginning of the test.
FCS errored frames: Count of all the FCS errors detected from the beginning of the test. Oversized frames: Total number of received frames which are larger than the configured MTU. CAN-Analyzer - Dontronics Please note the prices for the different CAN-REports vary greatly here. CAN-Analyzer - DontronicsPlease note the prices for the different CAN-REports vary greatly here. Please consciously abide by Internet-related policies and regulations, is strictly prohibited publication of pornographic, violent, reactionary remarks. It is capable of detecting protocols such as ISDN, ATM, HDLC, MTP2, LAPD, SS7, PPP, GSM, GSM Abis, TRAU, and Frame Relay. Test cases include general messaging and call flow scenarios for multimedia call session setup and control over IP networks.
A single MAPS™ can act as more than one SIP entity at a time and can generate any SIP message on wire in VoIP network and hence equipments needed to test are reduced.
With regular RTP traffic, the maximum Simultaneous Calls up to 2500, and Calls per Second up to 250 is achievable. On a high-performance computing platform (core-i7), it is possible to generate more than 500 simultaneous video calls. MAPS™ SIP can also be configured at DUT to act as UAS, loaded with answer scripts to handle the incoming messages. All the requests received from UAC (MAPS™) are replied back with the unmodified messages as seen in the message sequence window below. The profile allows necessary parameters of call control messages to be changed during runtime.


It can transmit pre-recorded Tiff image to DUT (Real-time Fax machine), receive Pass-Through fax from DUT, and record complete fax call messages as log file along with a Tiff image.
While the call in progress, the MAPS™ also provides events related to the progress of the call. On a high-performance computing platform (core-i7), it is possible to generate more than 500 simultaneous video calls. Observe the decode part of the INVITE message showing the information about the audio and video codecs used in the request. These global parameters are defined in the call generation scripts, which are calculated and updated periodically providing call quality metrics such as Listening MOS, Conversational MOS, PacketLoss, Discarded Packets, Out of Sequence Packets, Duplicate Packets, Delay and Jitter as shown in the figure below. The advantage of such communication enables user to control MAPS™ using send and receive commands.
IPNetSim™ Handheld offers to manage network behaviors of up to 1 Gbps rates with accuracy always better than 1ms.
Filtering is configured by first enabling one or several filtering blocks and after that setting the filtering criteria. Ethernet multicast frames have their multicast bit in their destination MAC address set to '1'. An FCS errored frame may be the result of bit error insertion or a forwarded frame with a previous FCS error. A frame with a FCS error is a frame with a legal size which contains an invalid FCS field. GSM protocol analyzer also supports decoding proprietary 'Mobis' Interface (Motorola equivalent of the GSM A-bis interface) between BSC (Base Station Controller) - BTS (Base Transceiver Station) and BSC (Base Station Controller) - PCU (Packet Controller Unit). UAS replies with 180 Ringing message for the initial INVITE request message from UAC, thus testing UAC. Almost all MAPS™ IP based simulation products supports FAX simulation using any of these two methods. The multicast bit of a MAC address is the least significant bit of the more significant address byte. The multicast bit of a MAC address is the least significant bit of the more significant address byte.
Once identified, a detailed protocol analysis can be carried out by individual protocol analyzers. Test cases verify conformance of actions such as registration, call control, proxies and redirect servers. Typical applications of our Fax Simulators include load testing of fax servers, qualification testing of T.38 Gateways, testing of ATAs (Analog Terminal Adapters), testing of internet-aware fax machines, and many more.
This application is helpful in identifying traffic types at a concentration point, DSX patch panel, or multiplexed facility.



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