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Evolution from Distributed to Centralized: Counting 10 Star Enterprises of Intelligent Driving Chip

Full set of video processing and image recognition IP for advanced sensing and recognition.

R-Car V4H, the central processor for ADAS and AD solutions released by Renesas in 2022, adopts 7-nanometer technology, with a deep learning performance of 34TOPS, and can recognize and process the surrounding objects at high speed through cameras, radars and lidar. The device is scheduled to start mass production in the second quarter of 2024. With the careful combination of first-class IP and professional hardware optimization, R-Car V4H has achieved an industry-leading performance-to-power ratio, which is suitable for mass production of L2+ and L3 autopilot applications.

Thanks to its high degree of integration, R-Car V4H helps customers to develop a cost-competitive single-chip ADAS electronic control unit (ECU) to support L2+ and L3 driving systems, including complete NCAP 2025 functions. R-Car V4H also supports the function of looking around and automatic parking, and has excellent 3D visual rendering effect.

Concluding remarks

The development of automobile intelligence is expected to bring trillions of market opportunities. From the current situation, L3 and above autopilot is accelerating penetration, and the demand for high-power autopilot chips is also increasing. In addition to the major enterprises mentioned above, many domestic enterprises such as CAMBRIAN, Zero Run, and Naineng have actively invested in the field of chips.

However, the research and development of autonomous driving chips is a process with huge initial investment and long payback period. Therefore, if there is no loading capacity of 1 million vehicles, it is impossible to make a profit by developing an autopilot chip with the power of a main engine factory and using it by itself.

On the whole, the smart driving chip market is still in a rapid iteration period, and China manufacturers are expected to break through, but they also have to face many uncertainties. Only by firmly grasping the certainty and market rhythm, accelerating the iteration of technology, products and tool chains, and taking the lead in forming a closed-loop business, can we further compete with the global automotive chip giants after squeezing into the table.

There are two identical NPUs in each FSD chip, which have strong computing power and are physically integrated adjacent to each other. In each calculation cycle, NPU will read 256 bytes of activation data from the built-in 32MB SRAM and combine them with another 128 bytes of weight data to enter the multiply-accumulate (MAC), and each NPU has a 96×96MAC array. After completing the MAC multiplication and accumulation operation, the data will be transferred to the Activations and Pooling parts, waiting to write the summary results in the buffer.

Tesla has also made great efforts to optimize the power consumption and cost of NNA (Neural Network Acceleration Unit) in order to make the data flow in the chip as much as possible without frequently reading and writing with memory or other modules. In the design of NNA, software is used to simplify the hardware to reduce the chip cost.

Tesla chips cover everything from autonomous driving, intelligent cockpit, domain control architecture, three electric systems, and even vehicle manufacturing and assembly. From the point of view of autonomous driving, Tesla is the only company that has realized the full-stack self-research of software and hardware at present, taking a technical route that is difficult to replicate. Tesla’s FSD chips are basically for personal use and are not for sale.

Qualcomm

Qualcomm is a mobile phone chip giant, and its entry point in the automotive field is communication and cockpit chips, with its 820A, 8155 and 8295 occupying a major share in the mid-to-high-end smart cockpit market. Previous Snapdragon Ride autopilot computing platforms, including the 5-nanometer Snapdragon 8540 and the 7-nanometer Snapdragon 9000, with a single-chip computing power of 360TOPS, have been put on the bus one after another.

At the beginning of 2023, Qualcomm introduced Snapdragon Ride Flex SoC supporting central computing architecture, which supports digital cockpit, ADAS and autopilot functions at the same time with a single SoC, providing more than 700TOPS of computing power. The first Ride Flex SoC has been sampled and is expected to be mass-produced in 2024.

At present, Qualcomm has reached cooperation with Great Wall, General Motors, BMW, Volkswagen and other manufacturers in the field of autonomous driving. In the future, the Snapdragon Ride platform will be applied to some models of the above-mentioned car factories.

In April this year, Qualcomm also completed the acquisition of Weininger, which supplemented the algorithm capability of autopilot software. Its application fields include radar, perception system, autopilot algorithm, functional safety/expected functional safety, etc.

NVIDIA

NVIDIA is a representative of the big computing chip, and has entered the field of smart cars with the evolution of GPU architecture. In NVIDIA’s NVIDIADrive series, DRIVECX faces the cockpit, and DRIVEPX faces autonomous driving; Since then, the automatic driving platforms of DRIVEPX, DRIVEPX2, DrivePXXavier, DRIVEPXPegasus and DRIVEAGX Orin have been introduced iteratively.

DRIVE Orin is a system on a chip released by NVIDIA, and it is the central computer of intelligent vehicles, which can provide 254TOPS per second, meeting the safety standards such as ISO 26262 ASIL-D. In March 2022, NVIDIA’s DRIVEAGX Orin platform began mass production and sales. The platform consists of two Orin SoC and two Ampere-based GPUs, with a maximum computing power of 2000TOPS and a power consumption of 800W W.

Orin SoC adopts 7 nm technology, which is composed of Ampere-based GPU, ARMHerculesCPU, second-generation deep learning accelerator DLA, second-generation vision accelerator PVA, video codec, and ISP with wide dynamic range. At the same time, it introduces the design of SafetyIsland. The hardware of the chip can be connected with 14 cameras, 1 laser radar, 5 millimeter-wave radars and 12 ultrasonic radars, and the sensor data is calculated 254 trillion times per second by Orin to realize high-level automatic driving function.

NVIDIA’s automobile business has formed a strong open ecology including Tier1, sensors and software manufacturers. At present, NVIDIA has dominated the high-end passenger car market of over 300,000. In the next six years, NVIDIA’s orders in hand will exceed $11 billion. According to incomplete statistics, more than 25 OEMs around the world have reached Orin cooperation with NVIDIA, including Weilai, Tucki, Ideality, Weimar, SAIC Zhiji, R Auto, Faraday Future, Lucid Group, Human Horizons Vinfast, Chinese Express and other new car-making forces; And BYD, Mercedes-Benz, Jaguar Land Rover, Volvo, Hyundai, Audi, Lotus and other traditional OEMs. In addition, Desai Siwei, Baidu Apollo, General Cruise and Google Waymo will also develop ADAS solutions based on Orin.

Mobileye

Mobileye is the earliest self-driving overlord. The "visual algorithm+chip" solution occupies about 70% market share in the L0-L2 market and was acquired by Intel in 2017.

EyeQ series chips are the core of Mobileye. Three years after mass production of EyeQ4, Mobileye launched the 7 nm FinFET process EyeQ5 in 2021. It includes multi-threaded 8-core CPU and 18-core vision processor, and its computing power is increased to 24TOPS, and its power consumption is only 10W, which can meet the driving demand of L4.

In 2022, Mobileye laid out high-level autopilot, and issued three chips in succession, including EyeQUltra for L4 autopilot, and EyeQ6L and EyeQ6H for L2 autopilot.

Compared with the previous products, the performance of the three chips has been greatly improved under the premise of controlling energy consumption. In particular, EyeQUltra, which is specially designed for autonomous driving, has 64 core processors and 12 RISC-VCPU, each with 24 threads, which can achieve high-efficiency and accurate calculation with less than 100W power consumption. It does not need the computing power and cost of integrating multiple systems, and solves the major challenges faced by the industry. EyeQUltra is expected to be fully put into production in 2025. This chip is benchmarked against Xavier of NVIDIA, but its computing power seems to be slightly lower than that of NVIDIA.

In the early days, mainstream OEMs chose EyeQ3 and EyeQ4 series in succession, which enabled Mobileye to successfully occupy the pre-assembly market. However, its black box model has shown signs of acclimatization and the market growth rate has slowed down. Previously, Mobileye EyeQ6, EyeQ6L and EyeQ6H had reached in-depth cooperation with Volkswagen Group and Ford Motor Company, and also reached an agreement with Geely. EyeQUltra is expected to provide samples in 2023 and mass-produce cars in 2024.

Heizhima intelligent

Black Sesame Intelligence is the advocator of single-chip SoC scheme. The A1000L and A1000 single-chip SoC schemes support the integration of navigation and parking without time-sharing and avoid increasing the security risks of the whole scheme.

Since 2019, the series of chips launched by Black Sesame include Huashan No.1 A500, Huashan No.2 A1000, A1000L, A1000Pro and A2000. Among them, A500 focusing on autonomous driving has a computing power of 5-10TOPS, Huashan No.2 A1000 with 16 nm technology has a computing power of 40-70TOPS, the low version A1000L has a computing power of 16TOPS, and the high version A1000Pro has a single chip computing power of 196TOPS, which supports high-level autonomous driving and can realize seamless connection from parking, urban interior to high-speed scenes. A2000 is the first 250T large computing chip in China, which adopts the core IP of domestic independent intellectual property rights in 7 nm process and meets the ASIL B level security certification standard.

In April, 2023, Black Sesame Intelligent released Wudang series cross-domain computing platform for smart cars and its first chip C1200, covering the needs of different domains of smart cars such as cockpit and smart car with higher cost performance, and realizing multi-domain integration capability. Based on 7 nm process, C1200 provides powerful general-purpose computing and general-purpose rendering computing power by using A78AE and G78AE, which support lock step. The self-developed DynamAI NN low-power neural network acceleration engine supports NOA scenarios; Built-in mature and high-performance Audio DSP module and a new generation of self-developed NeuralIQ ISP module that processes 1.5G pixels per second online. It can provide the industry’s highest MCU computing power of 32KDIPMS, handle the input of more than 12 HD cameras at the same time, and support high-speed MIPI.

Up to now, Black Sesame Intelligence has cooperated with OEMs such as Jiangqi, Dongfeng, Geely, FAW, SAIC, Hechuang Automobile and SAIC-GM-Wuling, as well as enterprises such as Bosch, Zhongke Chuangda, Soto Ruian and Baolong Group for L2 and L3 ADAS and autonomous driving perception system solutions, including Baidu Apollo’s partners.

Xinchi technology

Xinchi Technology is the world’s first "full-scene, platform-based" chip product and technical solution provider. Its products cover intelligent cockpit, intelligent driving, central gateway and MCU, covering the core chip category of the future automotive electronic and electrical architecture, aiming to achieve "four cores in one".

From 2019 to 2020, Xinchi Technology released V9L/F and V9T autopilot chips, which support ADAS and domain controller respectively. In 2022, Xinchi Technology released an autopilot chip V9P/U with a computing power of 10-200T, which has higher computing power and can support L3-level autopilot. V9 series processor is a car code chip specially designed for a new generation of intelligent driver assistance system, which integrates high-performance CPU, GPU and CV engine, and can meet the increasing demand for computing power.

In 2023, Xinchi Technology will launch a V9S autopilot chip with higher computing power, which is developed for the central computing platform architecture, with a computing power of 500-1000T, and can support L4/L5 autopilot Robotaxi.

At the 2023 Shanghai Auto Show, Xinchi Technology released a new generation of vehicle regulation processor V9P, which is specially designed for the ADAS domain controller with integrated traveling and parking. The CPU performance is 70KDMIPS, the GPU is 200GFLOPS, and the overall AI performance is as high as 20TOPS. All functions of mainstream L2+ADAS such as AEB, ACC and LKA, auxiliary parking and memory parking functions can be realized on a single chip, and the driving recorder and high-definition 360-degree viewing can be integrated.

horizon

As a large-scale pre-assembly mass production enterprise of domestic car-gauge AI chips, Horizon has successively launched China’s first car-gauge AI chip Journey 2, a new generation of AIoT intelligent application acceleration engine Sunrise 2, a high-performance car-gauge AI chip Journey 3 and a new generation of AIoT edge AI chip platform Sunrise 3.

Horizon’s third-generation car-level product Journey 5 has a single-chip computing power of up to 128TOPS, which has both large computing power and high performance, and supports the needs of 16-channel camera perception computing and multi-sensor fusion, prediction and planning control required for autonomous driving. Its core IP is 100% self-developed BPU Bayesian architecture, which can support the latest convolutional neural network and Transformer architecture and meet more than 170 different operators required for various autonomous driving scenarios. Using deep learning to accelerate ultra-large-scale parallel computing, reduce the whole computing delay and improve efficiency, and its image rate has increased from 1283 frames per second in 2021 to 1531 frames per second in 2022. With the launch of Journey 5, the horizon covers the whole vehicle smart chip scheme from L2 to L4.

At present, Horizon has reached cooperation with many OEMs and Tier 1, including Changan, FAW, SAIC, GAC, Chery, Dongfeng Motor, Zhiji, Jianghuai, Ideality, BYD, Great Wall, etc., as well as mainland China, Asia Pacific, Sagitar (parameter | inquiry) Juchuang, Winch Technology, Neusoft Ruichi, ADAYO Huayang, Desai Xiwei, etc.

Huawei

As a giant in the ICT field, Huawei’s smart car business can be traced back to 2012. In 2018, it launched the smart driving computing platform, and launched the MDC600 supporting L3 and the MDC300 supporting L4. In 2019, Huawei formally established the Smart Car Solutions Division, and in 2020, it released the MDC610 computing platform, using the Ascent 610 chip, with a single chip computing power of 200TOPS.

Huawei Shengteng 910 is an AI processor with super computing power, and its maximum power consumption is 310W W. The Leonardo da Vinci architecture developed by Huawei greatly improves its energy efficiency ratio. Its 8-bit integer precision (INT8) performance reaches 640TOPS, and its 16-bit floating-point number (FP16) performance reaches 320 TFLOPS.

The Ascension series includes training and reasoning chips. The Ascension 910 used for training has a semi-precision (FP16) computing power of 256TFLOPS, which is twice that of the industry. For reasoning, the computing power of Ascension 310 and INT8 is 16TOPS, and the power consumption is only 8W.

Aiming at the demand of automatic driving for computing platform, the MDC solution introduced by Huawei integrates the self-developed Host CPU chip, AI chip, ISP chip and SSD control chip. So far, Huawei has successively launched four series products with different computing power-MDC300, MDC210, MDC610 and MDC810, covering the L2-L5 autonomous driving ecological chain.

At present, auto-driving R&D companies such as Heduo Technology, Xidi Intelligent Driving, Neolithic, Yuanrong Qixing, Tage Zhixing, Huituo, Nezha Automobile, etc. all adopt Huawei’s MDC computing platform.

Dezhou instrument

Texas Instruments (TI) is a traditional automobile chip manufacturer with rich experience in product landing and strong supply chain management ability, and its customers are all over the automobile industry. In terms of processors, TI has launched the seventh generation, and each generation uses its own IP and patents. Twenty years’ experience in digital processors has also continuously optimized this heterogeneous processor.

TI’s mainstream intelligent driving products include TDA4 VL, TDA4 VM and TDA4 VH, with computing power of 4TOPS, 8TOPS and 32TOPS respectively. Among them, the TDA4 VM of 8TOPS has been mass-produced, which is the mainstream choice for the light-weight traveling and parking integrated domain control track.

TDA4VM series processors for ADAS and self-driving cars are based on Evolutionary Jacinto 7 architecture, which combines high-performance computing, deep learning engine and special accelerator for signal and image processing in a unique way in a target architecture with safe and compatible functions, so it is very suitable for robotics, machine vision, radar and other applications.

These devices are highly integrated, which makes the advanced automobile platform supporting centralized ECU or multiple sensor modes scalable and low-cost. The key cores include the next generation DSP with scalar and vector cores, dedicated deep learning and traditional algorithm accelerators. These devices also include the latest Arm and GPU processors for general computing, integrated next generation imaging subsystem (ISP), video codec, Ethernet hub and isolated MCU island. All these are protected by automotive safety hardware accelerators.

Renesas

Renesas is a traditional automobile chip giant, and its automobile products are mainly MCU and SoC Renesas. The early product is R-CAR V3H, which is heavily used in the intelligent forward-looking integrated machine with the help of Tier1 such as Bosch and Denso. R-CAR V3H SoC supports the safety index of ASIL C level in real-time domain, which can reduce the need to use external safety microcontroller to manage sensor fusion and final decision execution. R-Car V3H has rich and verified IP, supports perception stack, ISP with radar and/or lidar sensor fusion and up to 8 megapixel cameras, and also has a full set of video processing and image recognition IP for advanced sensing and recognition.

R-Car V4H, the central processor for ADAS and AD solutions released by Renesas in 2022, adopts 7-nanometer technology, with a deep learning performance of 34TOPS, and can recognize and process the surrounding objects at high speed through cameras, radars and lidar. The device is scheduled to start mass production in the second quarter of 2024. With the careful combination of first-class IP and professional hardware optimization, R-Car V4H has achieved an industry-leading performance-to-power ratio, which is suitable for mass production of L2+ and L3 autopilot applications.

Thanks to its high degree of integration, R-Car V4H helps customers to develop a cost-competitive single-chip ADAS electronic control unit (ECU) to support L2+ and L3 driving systems, including complete NCAP 2025 functions. R-Car V4H also supports the function of looking around and automatic parking, and has excellent 3D visual rendering effect.

Concluding remarks

The development of automobile intelligence is expected to bring trillions of market opportunities. From the current situation, L3 and above autopilot is accelerating penetration, and the demand for high-power autopilot chips is also increasing. In addition to the major enterprises mentioned above, many domestic enterprises such as CAMBRIAN, Zero Run, and Naineng have actively invested in the field of chips.

However, the research and development of autonomous driving chips is a process with huge initial investment and long payback period. Therefore, if there is no loading capacity of 1 million vehicles, it is impossible to make a profit by developing an autopilot chip with the power of a main engine factory and using it by itself.

On the whole, the smart driving chip market is still in a rapid iteration period, and China manufacturers are expected to break through, but they also have to face many uncertainties. Only by firmly grasping the certainty and market rhythm, accelerating the iteration of technology, products and tool chains, and taking the lead in forming a closed-loop business, can we further compete with the global automotive chip giants after squeezing into the table.

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Where Will online celebrity Catering Go? From superficial efforts to core values

  Recently, the first "Funeral Tea" tea shop in China opened in Shanghai. Like "online celebrity Restaurant" such as "Happy Tea" and "Master Bao", the customers of "Funeral Tea" kept coming in an endless stream, which even led to the phenomenon that scalpers bought "online celebrity Food" at a higher price. At the same time, many well-known "online celebrity restaurants" have closed down one after another, and even some veteran stores have become "chicken feathers in one place". "online celebrity catering" is a world of ice and fire. What is the reason behind this?

  Queue for 7 hours just for a cup of tea

  "Food is the most important thing for the people". In the Internet age, when Internet celebrities are highly sought after, "online celebrity Catering" has also set off an iterative and updated "queuing economy". It is reported that the queuing time for buying "Hi Tea", "Master Bao" and "Cheese of Light", which are known as the "Three Giants of People’s Square" in Shanghai, can reach 7 hours, which leads to scalpers’ purchasing and queuing for payment, which makes the premium of "Hi Tea" for a cup of 20 to 30 yuan as high as 100 yuan, and merchants even introduce the regulation of real-name purchase of ID cards, causing widespread controversy.

  Not only Shanghai, but also Hongkong’s "Jenny cookies" are sold daily in limited quantities, and Beijing’s "Taoyuan Village" is called "Hermes" in the field of soybean milk fritters, and the explosive market of "online celebrity Catering" can be seen.

  Take "Xicha" as an example. In May 2012, the first store opened in Jiuzhong Street, Jiangmen City, Guangdong Province. At present, there are about 50 branches in Guangzhou, Shenzhen and Foshan. Only stores in Guangzhou and Shenzhen have an average monthly turnover of more than 1 million yuan, among which the most popular coastal city store in Shenzhen has an area of about 90 square meters and a monthly turnover of more than 1.5 million yuan.

  With the subtle influence of Internet development on the market, the catering industry in online celebrity has also experienced different stages of change. During the period of 1.0, the cognition of the traditional catering industry was subverted from the consumer level. People found that apart from "eating", there were different experiences such as personalized service and style environment.

  In the period of 2.0, which focused on the combination of marketing and products, topical packaging gave food unprecedented communication power and greatly shortened the brand’s cognitive cycle; In the period of 3.0, personalized labels such as "fashion brand", "luxury" and "ingenuity" attached importance to the overall creation of "online celebrity catering", but it was followed by increasingly severe customer loyalty.

  The consumption power of "light food" has increased by 14% annually.

  In 2016, the national catering revenue was 3,577.9 billion yuan, a year-on-year increase of 10.8%, while the GDP increased by 6.7%.

  According to international data experience, the overall growth rate of the catering industry can maintain steady and rapid development when the per capita disposable income of the country is between 5,000 and 10,000 US dollars. According to the data released by the National Bureau of Statistics, the per capita disposable income of urban residents in China in 2016 was 33,616 yuan, which is in good agreement with this data interval.

  Under the background of the booming industry, "online celebrity Restaurant" is unique in its store location, style design and service details. A simple cup of milk tea can be selected with different flavors. When it is sold, the temperature and method suitable for drinking will be indicated on the teacup, and even the image of the store attendant is required as "online celebrity".

  At the same time, "online celebrity Catering" has grasped the consumption characteristics of young people’s purchasing power in pursuit of fashion hotspots, covering people between the ages of 14 and 35. The consumption power of this kind of "light food" main consumer group is increasing at an average annual rate of 14%. The younger generation subconsciously hopes to seek a sense of collective identity and reach a certain consensus by queuing or eating the same bowl of noodles.

  In addition, emotional rendering, star effect and other highlights prompted consumers to spontaneously share recommendations on social networks. According to the analysis of people in the catering industry, compared with traditional restaurants, their marketing methods are more changeable, not only through word-of-mouth communication by diners, but also through cross-border cooperation with many brands to jointly create topics, which is worth thinking about by catering people.

  From superficial efforts to core values

  However, "parallel" restaurants, which once set a record of 52 stores in eight months, have been closed in Beijing, Fuzhou, Ningbo and other places. The pancake fruit shop "Huang Taiji", with the highest valuation of 1.2 billion yuan, has also admitted that it has closed half of its doors, and the performance of the creative dish "Carved sirloin" has dropped by nearly 80% compared with the peak period.

  The "online celebrity Restaurant" has gone wave after wave in a short-lived vortex. According to the data, in 2016, the monthly closing rate of the catering industry in China was as high as 10%, and the annual compound closing rate exceeded 100%.

  Low consumer loyalty is one of the potential risks of "online celebrity catering". Under the fast pace of life, consumer groups with distinctive personalities have the characteristics of pursuing fresh enthusiasm and easy to lose. The disconnection between marketing and products makes merchants ignore the essence of catering industry. "Fun" is only the added value of food and cannot be the core of restaurants.

  Some enterprises win the attention through gimmick marketing and charge the joining fee, which is prone to problems. The unified distribution of ingredients, the unified management of chefs, and the inspection and supervision of storefronts are all very important, and the difficulty lies in management. Some enterprises join quickly, but the depth and intensity of management and control of franchise stores are not enough.

  Experts said that "online celebrity Catering" will inevitably get lost in the noisy market in the later period, and only rely on the big waves of the market to urge some catering enterprises to awaken themselves and turn from superficial efforts to building brand core values.

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For the first time, female generals were arranged to be read in the trekking team. Cai Zhijun responded to the number of senior commanders.

       CCTV News:The press center celebrating the 70th anniversary of the founding of People’s Republic of China (PRC) held the first special group interview in the press room on the second floor of the Media Center. Major General Cai Zhijun, deputy director of the Military Parade Leading Group Office and deputy director of the Operations Bureau of the Joint Staff of the Central Military Commission, Major General Tan Min, executive deputy director of the Military Parade Joint Command Office and deputy chief of staff of the Central Theater of the Chinese People’s Liberation Army, and Senior Colonel Wu Qian, director of the Information Bureau of the Ministry of National Defense and spokesman of the Ministry of National Defense, were invited to introduce the arrangements for the military parade and answer questions from reporters.

       Central TV reporter:As mentioned just now, the number of senior commanders who have been read in this military parade arrangement exceeds that in previous military parades. My question is, what is the consideration for this arrangement and design? Thank you.

one

       Cai Zhijun:Thank you for your question. No matter in wartime or peacetime, senior commanders of the army are always the key to rallying troops, directing troops’ actions and leading troops’ construction, and are always the backbone that our party attaches great importance to training experience and entrusts with heavy responsibilities. Since the 18th National Congress of the Communist Party of China, especially after the Gutian Army Political Work Conference, the people’s army has regrouped and started again, and its overall appearance has taken on a new look. The ability, quality and style image of senior commanders have been greatly improved, which has played a very important role in implementing the goal of strengthening the army and promoting preparations for war.

       The senior commanders who arranged more military parades were read, and they focused on establishing a clear orientation of leading troops to fight and striving for victory, showing a good image of taking the lead and being above the rate, and declaring a high degree of consciousness of absolutely listening to the party’s command and courageously taking responsibility. As Major General Tan Min said just now, senior generals in their 60s are trained and read together with young officers and men. It is worth mentioning that the female soldier team arranged for two female generals to be the team leaders and appeared in the parade ground in a cool and heroic manner. This is also the first time that all previous military parades have arranged for female generals to be read in the trekking team. Thank you.

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Lu Lei, deputy governor of the central bank, attended the expert seminar on related issues in the financial field.

[Lu Lei, Vice Governor of the Central Bank, attended an expert seminar on financial issues] According to the micro-signal of the People’s Bank of China, the Financial Research Institute of the People’s Bank of China recently held an expert seminar on financial issues, attended by Lu Lei, member of the Party Committee and vice governor of the People’s Bank of China. At the seminar, Zhu Baoliang, Li Daokui, Liu Qiao, Zhang Chengsi, Zhu Ning, Wu Weixing, Wu Ge and Ding Zhijie put forward constructive opinions and suggestions on issues such as unblocking the transmission mechanism of monetary policy, strengthening the coordination between monetary policy and other policies, improving the quality and efficiency of financial services to the real economy, better guiding market expectations, and preventing and resolving financial risks. (Zhongxin Jingwei APP)

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FISU Football World Cup

Xinhua News Agency, Fuzhou, November 1st (Reporter Li Haoze, Xiao Shiyao) The 2023 FISU Football World Cup ended in Jinjiang, Fujian on October 31st. The men’s team of paulista University in Brazil and the women’s team of Beijing Normal University won the men’s team and the women’s team respectively.

On October 31st, Zhou Xinyu (right), a player of Beijing Normal University team, shot in the game. Xinhua News Agency (photo by Lai Jincai)

The men’s and women’s finals were held on October 31st. In the first women’s final, the women’s team of Beijing Normal University played against the women’s team of paulista University in Brazil. After the two sides scored twice in the regular time, they made no achievements, and the game entered a penalty shootout. In the end, the women’s team of Beijing Normal University scored five penalty kicks, defeating their opponents with a total score of 7:6 and winning the championship.

On October 31st, the starting players of Beijing Normal University team took a group photo before the game. Xinhua News Agency (photo by Lai Jincai)

In the men’s final, a penalty shootout was staged again, and the men’s team of paulista University in Brazil and the Ukrainian National University of Economics and Business competed fiercely. The two sides drew 1:1 at regular time, and drew a blank in overtime. Finally, the men’s team of paulista University of Brazil won the men’s team championship with a total score of 7:6 after a penalty shootout.

In the third-place battle held on the same day, the men’s team of the University of Uruguay and the women’s team of Bordeaux University of France beat their respective opponents and won the third place in the men’s team and the women’s team respectively.

Another China team, Hohai University Men’s Team, finished eighth in the men’s team, up five places from the last competition.

The FISU Football World Cup is held every two years, and this year is the second. The first four events were held in Jinjiang.

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Lu ‘an: A New Trend of Decoding Fashion

At the badminton fair, a down jacket was displayed.

Xu Fanting, Director of Trend Training in China District of Paris Nali Luodi Trend Office, interprets fashion trends.

  On the afternoon of December 10th, the Paris Nellie Lodi 2024-2025 International Down Fashion Trend Conference was unveiled at this badminton fair. At the press conference, Xu Fanting, director of trend training in China District of Paris Nali Luoluo Trend Office, gave participants an in-depth interpretation of the fashion trends in the new season in view of the development of down products. (Reporter Wang Juan/Wen Wangli/Figure)