![]() This contract provides for the procurement of two Radio Frequency Threat Simulators with sustainment support consisting of patch management, field engineer support, non-critical spare parts, critical spare parts, and storage. Keysight Technologies Inc., Santa Rosa, California, has been awarded an $18,507,313 definitive contract for Radio Frequency Threat Simulators. The Air Force Test Center, Edwards Air Force Base, California, is the contracting activity (FA15). Fiscal 2022 research, development, test and evaluation funds in the amount of $20,512,596 are being obligated at time of award. The contract was a sole-source acquisition. Work will be performed at Broomfield, Colorado, and is expected to be completed by Oct. ![]() This contract provides for leveraging the test data from the first Phase III Small Business Innovation Research component and integrated breadboard engine test to develop flight-weight engine component designs. Sierra Space Corp., Broomfield, Colorado, has been awarded a $22,605,083 firm-fixed-price contract for the maturation of the Advanced Upper Stage Engine (VR35K-A). ![]() The Air Force Nuclear Weapons Center, Hill Air Force Base, Utah, is the contracting activity (FA8204-23-F-0028). Fiscal 2023 research, development, test, and evaluation funds in the amount of $13,000,000 are being obligated at time of award. This contract was a sole-source acquisition. Work will be performed in Laurel, Maryland, and is expected to be completed July 23, 2026. This contract provides for procurement of engineering, systems engineering for complex systems, research, and development of specialized functions. This task order is from a previously awarded contract (FA8204-21-D-0001), and provides for continuing the strategic partnership between government and JHU/APL. In the first half of 2023, researchers found that 20% of all recaptured malware logs had an antivirus program installed at the time of successful malware execution.Johns Hopkins University Applied Physics Laboratory, Laurel, Maryland, was awarded a $165,914,899 task order for Sentinel support. Twenty-seven percent don't routinely review their application logs for signs of compromise, 36% don't reset passwords for potentially exposed applications and 39% don't terminate session cookies at the sign of exposure. ![]() According to Sp圜loud research, every infection exposes access to an average of 26 business applications.36% of organizations allow unmanaged personal or shared devices to access business applications and systems, opening the door for devices lacking robust security measures to access sensitive data and resources and minimizing oversight security teams require for proper monitoring and remediation.54% of organizations struggle with shadow IT due to employees’ unsanctioned adoption of applications and systems, creating gaps not only in visibility but also in basic security controls and corporate policies.57% of organizations allow employees to sync browser data between personal and corporate devices, enabling threat actors to siphon employee credentials and other user authentication data through infected personal devices while remaining undetected.According to the report, the most overlooked entry points for malware include: ![]()
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![]() ![]() * Enable multi-select for job and instance template variables * Reorder template variables in dashboard UI * Use `$job` template variable in selectors for all queries * Move QPS to left and remove transparency for common style * Use psql specific metric pg_up to avoid return of postgres unrelated instances The most important metrics provided by the PostgreSQL integration, which are used on the pre-built dashboard, are as follows: The PostgreSQL integration installs the following dashboards in your Grafana Cloud instance to help monitor your system. # Add here any snippet that belongs to the `_configs` section. # For a correct indentation, paste snippets copied from Grafana Cloud at the beginning of the line. # Add here any snippet that belongs to the `integrations` section. Regex: (prometheus_target_.*|prometheus_sd_discovered_targets|agent_build.*|agent_wal_samples_appended_total|process_start_time_seconds) This example also includes metrics that are sent to monitor your Grafana Agent instance. Refer to the following Grafana Agent configuration for a complete example that contains all the snippets used for the PostgreSQL integration. example configuration for Grafana Agent Configuration snippets for Grafana Agentīelow integrations, insert the following lines and change the URLs according to your environment: postgres_exporter: Make sure to change the data_source_names to the addresses of the Postgres servers you want to monitor in the agent config.įor a full description of configuration options see how to configure the postgres_exporter_config block in the agent documentation. Post-install configuration for the PostgreSQL integrationĮnable the integration by adding the provided snippets to your Grafana Agent configuration file. Click Install to add this integration’s pre-built dashboard to your Grafana Cloud instance, and you can start monitoring your PostgreSQL setup.Review the prerequisites in the Configuration Details tab and set up Grafana Agent to send PostgreSQL metrics to your Grafana Cloud instance.Find PostgreSQL and click its tile to open the integration.In your Grafana Cloud stack, click Connections in the left-hand menu.Install PostgreSQL integration for Grafana Cloud While you can use root user for testing, we strongly advice that you configure a separate user for the Grafana Agent, and give it only the strictly mandatory security privileges necessary for monitoring your node, as per the official documentation. The PostgreSQL user is required to gather metrics. This integration includes 1 pre-built dashboard to help monitor and visualize PostgreSQL metrics. PostgreSQL is a free and open-source relational database management system (RDBMS) emphasizing extensibility and SQL compliance. Grafana Cloud PostgreSQL integration for Grafana Cloud ![]() |
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