Last update at :2024-06-10,Edit by888u
raksmart is developing the cloud server business, and it is estimated that it may abandon the traditional VPS business. After launching the "Cloud" in its core San Jose data center, it has now launched the "cloud" in the Los Angeles data center. There are two types of cloud servers in Los Angeles: Mainland Optimization and CN2. The one we will review today is the Mainland Optimization line. The price/performance ratio is relatively higher. The bandwidth cost of CN2 makes the price too high. We will talk about it later! Data is for reference only!
Official website: https://www.raksmart.com
The CPU of the cloud server with optimized routes in Los Angeles is e5-2697v2, with a main frequency of 2.7GHz, and the hard disk I/O is approximately 469MB/S:
FIO test is more interesting:
The default cloud server used for evaluation is 10Mbps bandwidth (exclusive, unlimited traffic). We use speedtest.net’s different nodes of the three networks in China to test the effect of uplink and downlink bandwidth to see How far can you run in mainland China? !
The picture below is during the day, around 7:30 in the morning, and the uplink bandwidth and downlink bandwidth are basically stable at 9.6Mbps,
At around 21:40 during the evening rush hour, telecommunications have changed a lot, but the effects of China Unicom and China Mobile are still very stable:
Except for mainland China, other node tests in speedtest Asia:
iperf3 runs in Europe and the United States, so this doesn’t matter:
The webmaster, Guangzhou Telecom, used the Chrome browser to directly download the files on the test machine. At around 7:45 in the morning, the speed was 1097KB/S:
The speed at night is 1125KB/S, which means there is almost no change, and the impact of the evening peak is not great. However, I saw earlier that during the speedtest test, Telecom's performance was relatively poor during the evening peak hours. Perhaps it was due to network fluctuations at that time.
Test data of 80 nodes in mainland China provided by ping.chinaz.com:
For the outbound journey of China Telecom, take CN2:
China Unicom outbound, direct backbone:
Mobile outbound, Hong Kong CMI connects to HE.NET:
Return trip to China Telecom: the return trip is via CN2
Return to China Unicom: Beijing direction takes Telecom CN2 link to return to China, Shanghai and Guangzhou direction uses HE to connect China Unicom AS4837 to return to China
Return trip to mainland China: Beijing and Guangzhou direction, direct return from the Los Angeles mobile node; Shanghai direction, direct return from the San Jose mobile node
Another Unix bench score:
To summarize:
Telecom, two-way CN2, very good;
China Unicom, outbound direct, return HE connects to AS4837, no problem at all;
Mobility: outbound, CMI connects to HE, return, direct return from moving nodes in Los Angeles and San Jose, very well optimized;
Overall, this Asian optimization is really good, and the bandwidth is not expensive. It also has exclusive bandwidth, no traffic restrictions, and you can choose Windows system. Overall, it is very cost-effective and can be used for building websites and so on. a key consideration.
Official website: https://www.raksmart.com
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