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Top Forums Programming Arduino Project: iPhone to HM-10 BLE to NB-IoT Shield to NB-IoT Network to Internet to Linux Server Post 303043441 by Neo on Tuesday 28th of January 2020 10:06:10 PM
Old 01-28-2020
In an earlier test of the AIS NB-IoT Arduino shield, I touched on the fact that the AIS 923MHz NB-IoT network tested illustrated "not the best reliability" due to spotty 923MHz cell tower penetration / coverage.

However, on the ocean side of my condo, I have improved this reliability issue a few DB (my RF power meter is not very accurate, sorry) with this antenna:

Arduino Project:  iPhone to HM-10 BLE to NB-IoT Shield to NB-IoT Network to Internet to Linux Server-img_9086jpg


More importantly than potential antenna gain, the 923MHz NB-IoT signal is considerably more reliable after placing the antenna at the window and off my desktop (which is about 3 to 4 meters away from the window).

In addition, I have the Arduino sketch sending the message to a remote Linux server via BLE and the NB-IoT network and will post the code / sketch after I add a mini-app to get some server stats like the server load averages back to the iPhone. Just need to add a few lines of code to my test Python UDP server code and change the sketch to receive the result and display it on the iPhone.

So far, it's pretty simple (after working out the conflict between serial comm pins last yesterday).

More Arduino shield porn Smilie
Arduino Project:  iPhone to HM-10 BLE to NB-IoT Shield to NB-IoT Network to Internet to Linux Server-img_9087jpg
 

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ovs-vlan-test(1)						Open vSwitch Manual						  ovs-vlan-test(1)

NAME
ovs-vlan-test - check Linux drivers for problems with vlan traffic SYNOPSIS
ovs-vlan-test [-s | --server] control_ip vlan_ip Common options: [-h | --help] [-V | --version] DESCRIPTION
The ovs-vlan-test utility has some limitations, for example, it does not use TCP in its tests. Also it does not take into account MTU to detect potential edge cases. To overcome those limitations a new tool was developed - ovs-test. ovs-test is currently supported only on Debian so, if possible try to use that on instead of ovs-vlan-test. The ovs-vlan-test program may be used to check for problems sending 802.1Q traffic which may occur when running Open vSwitch. These prob- lems can occur when Open vSwitch is used to send 802.1Q traffic through physical interfaces running certain drivers of certain Linux kernel versions. To run a test, configure Open vSwitch to tag traffic originating from vlan_ip and forward it out the target interface. Then run the ovs-vlan-test in client mode connecting to an ovs-vlan-test server. ovs-vlan-test will display "OK" if it did not detect problems. Some examples of the types of problems that may be encountered are: o When NICs use VLAN stripping on receive they must pass a pointer to a vlan_group when reporting the stripped tag to the networking core. If no vlan_group is in use then some drivers just drop the extracted tag. Drivers are supposed to only enable stripping if a vlan_group is registered but not all of them do that. o On receive, some drivers handle priority tagged packets specially and don't pass the tag onto the network stack at all, so Open vSwitch never has a chance to see it. o Some drivers size their receive buffers based on whether a vlan_group is enabled, meaning that a maximum size packet with a VLAN tag will not fit if no vlan_group is configured. o On transmit, some drivers expect that VLAN acceleration will be used if it is available, which can only be done if a vlan_group is configured. In these cases, the driver may fail to parse the packet and correctly setup checksum offloading or TSO. Client Mode An ovs-vlan-test client may be run on a host to check for VLAN connectivity problems. The client must be able to establish HTTP connec- tions with an ovs-vlan-test server located at the specified control_ip address. UDP traffic sourced at vlan_ip should be tagged and directed out the interface whose connectivity is being tested. Server Mode To conduct tests, an ovs-vlan-test server must be running on a host known not to have VLAN connectivity problems. The server must have a control_ip on a non-VLAN network which clients can establish connectivity with. It must also have a vlan_ip address on a VLAN network which clients will use to test their VLAN connectivity. Multiple clients may test against a single ovs-vlan-test server concurrently. OPTIONS
-s, --server Run in server mode. -h, --help Prints a brief help message to the console. -V, --version Prints version information to the console. EXAMPLES
Display the Linux kernel version and driver of eth1. uname -r ethtool -i eth1 Set up a bridge which forwards traffic originating from 1.2.3.4 out eth1 with VLAN tag 10. ovs-vsctl -- add-br vlan-br -- add-port vlan-br eth1 -- add-port vlan-br vlan-br-tag tag=10 -- set Interface vlan-br-tag type=internal ifconfig vlan-br-tag up 1.2.3.4 Run an ovs-vlan-test server listening for client control traffic on 172.16.0.142 port 8080 and VLAN traffic on the default port of 1.2.3.3. ovs-vlan-test -s 172.16.0.142:8080 1.2.3.3 Run an ovs-vlan-test client with a control server located at 172.16.0.142 port 8080 and a local VLAN ip of 1.2.3.4. ovs-vlan-test 172.16.0.142:8080 1.2.3.4 SEE ALSO ovs-vswitchd(8), ovs-ofctl(8), ovs-vsctl(8), ovs-test(8), ethtool(8), uname(1) Open vSwitch December 2010 ovs-vlan-test(1)
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