practical comparison: aws hong kong on vps vs other cloud vendors - who is better in terms of latency and throughput?
1. aws hong kong often excels in the network backbone and stability of the asia-pacific hub, but it does not prevail in all scenarios.
2. actual measurement relies on tools (such as iperf3 , ping, traceroute) and unified configuration to avoid the illusion caused by "inconsistent specifications".
3. throughput is affected by instance type, network enhancement, interconnection link and overbooking strategy. careful selection is more important than blindly looking at peak values.
as an engineer with many years of practical experience in networks and clouds, i used a reproducible method to conduct horizontal comparisons between the hong kong area and nearby nodes of multiple cloud vendors. the test points covered the common paths from domestic exports to hong kong, hong kong to southeast asia, and hong kong to europe and the united states. the testing tools are mainly iperf3 (concurrent streams), ping ( rtt ), and 24-hour throughput monitoring. all vps use the same operating system and kernel parameters to ensure comparability.
during the test, we found that the key indicators of short connection requests are latency (rtt) and jitter. on nodes from hong kong to southern china, taiwan, and southeast asia, aws hong kong 's rtt usually falls in a very low range with little fluctuation due to its direct connection to the local backbone and high-quality peering strategy. however, on the path across the pacific or to europe and the united states, the difference is determined by ocean routing and transit points. gcp or azure sometimes obtain better mid- and long-distance throughput through different backbones.
when it comes to throughput (bandwidth/mbps), we need to distinguish between "peak" and "stable bandwidth". experiments show that when aws 's enhanced network (ena) is enabled or large-sized instances are used, single-flow tcp throughput can approach the link upper limit in a close environment; however, on cheap or small-sized vps (with overbooking), "noisy neighbors" often occur, causing throughput to drop significantly. in contrast, some local manufacturers (such as alibaba cloud and tencent cloud ) have more direct optimization of channels in mainland china at nodes in hong kong, and their short-distance throughput is more stable.
what is also important to mention is the measurement method: a single iperf3 test will have occasional fluctuations. you must do multiple concurrent streams (8-16 streams) and record the 95th/99th quantile before you can draw reliable conclusions. we have seen in multiple tests that aws hong kong 's 95th quantile throughput is better than most small foreign manufacturers, but the gap compared with large cloud vendors (such as gcp and azure ) depends on the time period and routing strategy.
network jitter and packet loss have a great impact on real-time applications (voice/video/games). some of the nodes that claim "low latency" in actual measurements will experience jitter peaks during peak hours, causing user experience to fluctuate. rule of thumb: if your service is sensitive to latency and jitter, prefer a cloud provider with a local pop or direct connection to the backbone on the target user side, rather than just looking at a single ping.
in terms of the trade-off between cost and performance, foreign-funded clouds often win with "global high-speed backbone", which is suitable for scenarios that require cross-regional low-latency interconnection and global load balancing; local cloud vendors have more advantages in connecting to mainland china's network, price, and local support. for example: under the same specifications, alibaba cloud and tencent cloud usually have lower access delays in mainland china, but their international export quality is not necessarily better than aws .
optimization suggestions (implementable in practice): 1) select the region and availability zone closest to the end user; 2) prioritize the use of instances that support sr-iov/ena to reduce cpu overhead; 3) use multi-stream concurrency testing and adjust the tcp window and mtu, and enable bbr congestion control if necessary; 4) use quic/udp + fec or cdn for edge acceleration for real-time services.
for the operation and maintenance team, i recommend establishing a standardized performance profile: recording the latency , throughput and packet loss rate at common destinations in different time windows and different instance specifications. use these data as an important basis for selecting manufacturers and specifications, rather than being fooled by the manufacturer's "up to x gbps" label.
conclusion: there is no absolute "best cloud vendor". if your users are mainly in the asia-pacific and mainland china, the hong kong nodes of alibaba cloud and tencent cloud may be more cost-effective in terms of latency and bandwidth stability; if you need global distribution and cross-region throughput guarantee, the global backbone and flow control strategies of aws hong kong and gcp will be more advantageous. for small services that are price-sensitive and have predictable traffic patterns, choosing a cost-effective vps can also achieve ideal results through architectural optimization.
final reminder: all conclusions should be based on your own business testing. it is recommended to copy the iperf3 multi-stream, ping continuous sampling and traceroute analysis process in this article, record the 95th/99th indicators, and incorporate the results into purchasing decisions. actual combat is the way to go, and data is convincing.

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